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The Evolution of the T2L Science Curriculum Over the last four years, the Teach to Learn program created 20 NGSS-aligned science units in grades K-5 during our summer sessions. True to our plan, we piloted the units in North Adams Public Schools, and asked and received feedback from our science fellows and our participating teachers. This feedback served as a starting point for our revisions of the units. During year 2 (Summer of 2015), we revised units from year 1 (Summer/Fall 2014) and created new units to pilot. In year 3, we revised units from years 1 and 2 and created new units of curricula, using the same model for year 4. Our understanding of how to create rich and robust science curriculum grew, so by the summer of 2018, our final summer of curriculum development, we had created five exemplar units and established an exemplar unit template which is available in the T2L Toolkit. We made a concerted effort to upgrade all the existing units with exemplar components. We were able to do much, but not all. So, as you explore different units, you will notice that some contain all elements of our exemplar units, while others contain only some. The fully realized exemplar units are noted on the cover page. We did revise all 20 units and brought them to a baseline of “exemplar” by including the Lessons-At-A-Glance and Science Talk elements. T2L Curriculum Unit Grade 3 Weather and Climate

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TheEvolutionoftheT2LScienceCurriculumOverthelastfouryears,theTeachtoLearnprogramcreated20NGSS-alignedscienceunitsingradesK-5duringoursummersessions.Truetoourplan,wepilotedtheunitsinNorthAdamsPublicSchools,andaskedandreceivedfeedbackfromoursciencefellowsandourparticipatingteachers.Thisfeedbackservedasastartingpointforourrevisionsoftheunits.Duringyear2(Summerof2015),werevisedunitsfromyear1(Summer/Fall2014)andcreatednewunitstopilot.Inyear3,werevisedunitsfromyears1and2andcreatednewunitsofcurricula,usingthesamemodelforyear4.Ourunderstandingofhowtocreaterichandrobustsciencecurriculumgrew,sobythesummerof2018,ourfinalsummerofcurriculumdevelopment,wehadcreatedfiveexemplarunitsandestablishedanexemplarunittemplatewhichisavailableintheT2LToolkit.Wemadeaconcertedefforttoupgradealltheexistingunitswithexemplarcomponents.Wewereabletodomuch,butnotall.So,asyouexploredifferentunits,youwillnoticethatsomecontainallelementsofourexemplarunits,whileotherscontainonlysome.Thefullyrealizedexemplarunitsarenotedonthecoverpage.Wedidreviseall20unitsandbroughtthemtoabaselineof“exemplar”byincludingtheLessons-At-A-GlanceandScienceTalkelements.

T2LCurriculumUnit

Grade3 Weather

andClimate

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WeatherandClimate

EarthandSpaceScience/Grade3 Inthisunit,studentswilllearnabouttheimportanceofoursun,howtheearthmovesinrelationshiptothesun,whydifferentplacesontheearthareimpacteddifferentlybythesun,theconceptofenergyasitrelatestoheatandlight,andtheimportanceofenergyexchangebetweentheEarthandthesun.Studentswillfurtherdeveloptheirgraphingskillstocommunicateinformationvisuallyandmakepredictionsaboutweatherdata.

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Authors,Summer2017 JuliaChoi,Psychologymajor,Musicmajor,Neuroscienceminor,WilliamsCollegeJoyDeMayo,SecondGradeTeacher,ColegroveParkElementarySchool,NorthAdamsPublicSchoolsJessicaLesure,ElementaryEducationmajor,Psychologymajor,MassachusettsCollegeofLiberalArtsLisaMarceau,FifthGradeTeacher,ColegroveParkElementarySchool,NorthAdamsPublicSchoolsSofiaPhay,Psychologymajor,WilliamsCollegeSophiaRobert,Philosophymajor,Biologymajor,CognitiveScienceminor,Neuroscienceminor,WilliamsCollegeJadeSchnauber,EarlyChildhoodEducationmajor,Sociologymajor,MassachusettsCollegeofLiberalArtsNatalieTorrey,Educationmajor,InterdisciplinaryStudiesmajor,MassachusettsCollegeofLiberalArtsRevisions,Summer2018 TiffinieAlvarez,SecondaryEducationmajor,Englishmajor,MassachusettsCollegeofLiberalArtsPriscillaMercado,ComputerSciencemajor,Englishmajor,WilliamsCollegeProjectManagementLeslieRule,TeachtoLearn,MassachusettsCollegeofLiberalArts

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License/CopyrightInformationThiscurriculumunitislicensedundertheCreativeCommonsAttribution-NonCommercial-ShareAlike3.0).(CCBY-NC-SA3.0)

Pleaseseethefulltextofthislicense(http://creativecommons.org/licenses/by-nc-sa/3.0/)toviewallrightsandrestrictionsassociatedwithit.ThisunitwasdevelopedwithfundingfromtheNationalScienceFoundationDOE-IUSEAwardNo.1432591Thisunitisdownloadableathttp://mcla.edu/teach-to-learn

Underthislicense,youarefree:toShare—tocopy,distributeandtransmittheworktoRemix—toadapttheworkandincorporateitintoyourownpracticeUnderthefollowingconditions:Attribution—Youmustattributetheworkinthemannerspecifiedas“TeachtoLearnAttribution”below.Youcannotattributetheworkinanymannerthatsuggeststheprogramorstaffendorsesyouoryouruseofthework.Noncommercial—Youmaynotusethisworkforcommercialpurposes.ShareAlike—Ifyoualter,transform,orbuilduponthiswork,youmaydistributetheresultingworkonlyunderthesameCreativeCommonsAttribution-NonCommercial-ShareAlike3.0license(CCBY-NC-SA3.0).TeachtoLearn’sAttribution:©2018TeachtoLearn.Allrightsreserved.Translations:Ifyoucreatetranslatedversionsofthismaterial(incompliancewiththislicense),pleasenotifyprincipalinvestigator,[email protected]/orlinktosuchtranslatedversions(eitherasis,orasfurthermodifiedbyTeachtoLearn.)

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TableofContentsUnitOverviewandBackgroundUnitPlan············································································································································································5LessonsataGlance····························································································································································9LessonFeatureKey··························································································································································11EssentialQuestionConceptMaps······································································································································12TieredVocabularyList·····················································································································································14ScienceContentBackground············································································································································15LessonPlansLesson1:WeatherAroundtheWorld·······························································································································20Lesson2:TheEarthandtheSun~AnEssentialFriendship·······························································································27Lesson3:Energy~TeamworkMakestheDreamWork·····································································································35Lesson4:UnderstandingCollectionofWeatherData·········································································································41Lesson5(TwoPartLesson):EcosystemsandClimates······································································································48Lesson6:UnderstandingOtherRegions····························································································································56Lesson7:ARecipefor(Natural)Disaster··························································································································62Lesson8:EarthDoctors···················································································································································69Lesson9:ThinkGlobal,ActLocal······································································································································74ResourcesUnitActivityPlanner························································································································································80NGSSAlignment·······························································································································································895EInstructionalModelBackground··································································································································90ScienceTalkandOracyinT2LUnits·································································································································91MasterListofLessonMaterialsandResources··················································································································93

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UnitPlanStage1DesiredResults

MeaningGradeLevelStandards

3-ESS2-1.Usegraphsandtablesoflocalweatherdatatodescribeandpredicttypicalweatherduringaparticularseasoninanarea.ClarificationStatements:Examplesofweatherdatacouldincludetemperature,amountandtypeofprecipitation(e.g.,rain,snow),winddirectionandwindspeed.Graphicaldisplaysshouldfocusonpictographsandbargraphs.3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsoverayearvarybyregion.ClarificationStatements:Examplesofinformationcanincludeclimatedata(averagetemperature,averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.3-ESS3-1.Evaluatethemeritofadesignsolutionsthatreducesthedamagecausedbyweather.*

UNDERSTANDINGS Studentswillunderstandthat…

● Therearedifferenttypesofweatherthatoccuraroundtheworldandthatweathercanvaryfromyeartoyeardependingontheregion.

● Thesunisthedrivingforceforclimateconditions.

● Seasonsdriveweatheranditispossibletopredictweatherpatternsbasedonpreviousdata.

● Humansinteractandimpacttheclimatebywhattheydo.

ESSENTIALQUESTIONS 1. WhydodifferentplacesonEarth

havevaryingseasonalchanges?

2. HowdohumansrespondtoandinteractwiththeEarth’sClimate?

StudentLearningTargets“Ican”statements1. Icanobtainlocalandglobalweatherdata.2. Icanexplainthatthesunplaysanimportantroleondayvs.night,weather,andseasons.3. Icandescribehowtheearthmovesinrelationshiptothesun.4. Icanusedifferentmodelstoshowwhydifferentplacesontheearthareimpacted

differentlybythesun.5. Icandescribetheconceptofenergy,asitrelatestoheatandlight.6. IcanexplaintheimportanceofenergyexchangebetweentheEarthandtheSun.7. Icanexplaingraphsaretoolstocommunicateinformationvisually8. Icanusegraphstomakepredictionsandassumptionsaboutweatherdatainagivenarea

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ClarificationStatement:Examplesofdesignsolutionstoreduceweather-relateddamagecouldincludeabarriertopreventflooding,awind-resistantroof,andalightningrod.ESS2.D:WeatherandClimateScientistsrecordpatternsoftheweatheracrossdifferenttimesandareassothattheycanmakepredictionsaboutwhatkindofweathermighthappennext(3-ESS2-1)Climatedescribesarangeofanarea’stypicalweatherconditionsandtheextenttowhichthoseconditionsvaryoveryears(3-ESS2-2)ESS3.B:NaturalHazardsAvarietyofnaturalhazardsresultfromnaturalprocesses.Humanscannoteliminatenaturalhazards,butcantakestepstoreducetheirimpact

9. Icanresearchandrecordweatherdataaboutaparticularareaofinterest10. Icandefineclimateanddifferentiateitfromweather.11. Icaninvestigatewaysthatplantsandanimalsadapttotheclimateconditionsintheir

environments.12. Icanexplainhowglobalandlocalclimateconditionscreateandsustainecosystems.13. Icanexplainhowweatherandclimateindifferentregionsshapethelifestylesand

culturesofthepeoplethatlivethere.14. Icancollectdatatosupportaclaim15. Icanexplaindifferentperspectivesandexperiencesacrosstheglobeinrelationtothe

climate’simpact.16. Icanidentifyanddescribenaturaldisasters,andtheprocessesbywhichtheyoccurand

whytheyoccurinspecificlocations.17. Icanexplainandcompareimpact(magnitude).18. Icandescribeandassesshowregionsrespondtoandpreparefordisasters.19. Icanexplainanddescribehowhumansaffecttheclimate.20. Icandescribewaystobettertheenvironmentandclimate.21. Icanexplainthecoredetailsofthelessonsandcanconstructthoughtfulquestionsabout

thetopics.22. Icanelaborateandgenerateanswerstoquestionsabouthowhumansrespondtoand

interactwithEarth’sclimate.

Stage2–EvidenceEvaluativeCriteria AssessmentEvidenceSciencejournalClassdiscussionsGrouppresentationsIndividualprojects/activities

UnitAssessmentOTHEREVIDENCE: *

● Independentsciencejournalentries● Classdiscussions● Presentations(bothgroupandindividual)

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● Individual/groupactivitiessuchas,weathergraphs,trioramas,WorldMarketplace,andthewebsitescavengerhunt.Stage3–LearningPlan

Lesson1:Studentswillexplorelocalweatherdataandmakeweatherpredictions.Theywillthenexploreglobalweatherdataandpredictionsoverlongperiodsoftime.Studentswillthenmakepredictionsaboutwhytemperatureactsthewayitdoesandwhycertainplacesarewarmerthanothers.Lastly,thestudentswillbeintroducedtothesun'srelationshiptotheEarthviatheuseofaglobeandlight.Lesson2:Inthislesson,studentswillexploredifferentmodelsofthesunandearth.Throughexperimentingwithaglobeandaflashlight,andwiththeirownbodiesandspace,studentswillseektounderstandspatialandmovementfeaturesofthesunandearth.Thisexplorationwillbecontextualizedbyreinforcingtheimportancethatthesun-anditsspatialrelationshiptotheearthovertime-dictatesdifferentweatherandclimatefordifferentregionsonearth.Lesson3:Inthislesson,studentswilllearnthedefinitionofenergyandhowitmaydifferfromtheirideaofenergy.ThiswillhelptheirunderstandingofhowthesunaffectstheweatherandclimateonEarth.Studentswilllearnthroughclassroomexperiments,handsonactivitiesandshortdiscussions.Lesson4:Studentswillbeexploringdatacollectiontoolsconcerningweatherinformationtoguideunderstandingthatweatherdiffersindifferentlocations.Studentswillbeexposedtographsasameansof“seeing”dataandbeingabletomakepredictionsaboutregionalweatherpatterns.Studentswillresearchparticularareasofinterestandcollectdatatodescribeconditionsofthatarea.Lesson5:Part1:Thefirstactivitywillhelpstudentsdifferentiateweatherfromclimate.ThestudentswillexplorevariousecosystemsusingGoogleCardboardtogetasenseofvariousclimateconditionsinwellknownecosystemsaroundtheworld.Theywillthenmodelsomeoftheecosystemsandconsiderthevariousplantsandanimalsthatcouldbesustainedinsuchconditions.Lesson5:Part2:IntheGoogleEarthPhotoactivity,studentswillobservefourlocations,eachinadifferentclimatezone,andconsidertheclimateconditionsnecessarytosustainthatecosystem.Usingthisinformation,thestudentswillfindthesamelocationsontheirClimateZoneworksheetsanddeterminewhichclimatezonesarelocatedinwhichlatitudesoftheEarth.Lastly,thestudentswillbeencouragedtousetheirknowledgefromLessons2and3toexplainhowtheSunandtheEarth’spositionmightcontributetothecreationofthesebroadclimatezones.

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Lesson6:Thislessonwillserveasatransitiontothinkingaboutthesecondessentialquestion.Studentswillbeexposedtodifferentregions(familiarandunfamiliar)andthelifestylesthatrevolvearoundtheaccordingclimates.Studentswillexploresocioculturalaspectsofspecificregionsandtheirimpactontheclimate.Socioculturalaspectsincludefood,clothing,agriculture,jobs,andanyothercategoriesthatarecriticaltohumanlifeandshapedbytheforcesoftheregion’sclimate.Aftergatheringdataaboutaparticularregion,studentswillhavetheopportunitytopresenttheirresearchintheformofaworldmarketplacegame.Lesson7:Inthislesson,studentswillbeexploringnaturaldisastersthroughtheuseofcriticalthinking,modelsandroleplaying.Theywillbeaskedtothinkdeeplyabouthowhumanspreparefornaturaldisasters.Theywillbeconstructingandobservingtheirownmodelsofcertaindisastersandtheywillbeplayingagametogivethemabetterunderstandingoftheeffectsofthesedisasters.Lesson8:Thislessonwillstartwithabriefdiscussiononthefateofourtrash,whichwillconnecttotheideaofhumanbehaviorimpactingclimate.Studentswillexploreexamplesofhumanactionsthroughtheonlinescavengerhuntactivity.Then,studentswillbecomeEarthdoctorsandworktofindsolutionstoimprovetheenvironmentandclimate.Lesson9:Inthislesson,studentswillbereferringbacktoinformationfrompreviouslessons.Theywillbereviewingtheseconceptsthroughphysicalmodelsandexplanation.Theywillbegiventimetointerviewandlearnfromlocalbusinessesbeforecreatingtheirowntown.AdaptedfromMassachusettsDepartmentofElementaryandSecondaryEducation’sModelCurriculumUnitTemplate.OriginallybasedonUnderstandingbyDesign2.0©2011GrantWigginsandJayMcTighe.UsedwithPermissionJuly2012

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LessonsataGlance

Key

Independentonlinestudentresearch

TechIntegration YouTubeVideo(orothervideosite)

KinestheticLearning Outdooreducation

ResourceandModalitiesChart

Lesson CoreActivities Extensions ToolsandModalities1.WeatherAroundtheWorld ● UsingaThermometer

● WeatherAcrossAmerica● FortuneTellers

2.TheEarthandtheSun--AnEssentialFriendship

● GlobeandFlashlightDemo● KinestheticModel● Northern/SouthernHemispheres

3.Energy--TeamworkMakestheDreamwork

● LandVersusWater● SunS’mores● EnergyExchangeSkit

● Cloudrole-play

4.UnderstandingCollectionofWeatherData

● ObservingWeatherGraphs

5.1EcosystemsandClimate ● ExploringEcosystems● Trioramas

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5.2EcosystemsandClimate ● GoogleEarthPhotos● ClimateZones

6.UnderstandingOtherRegions ● WorldMarketplace ● InterviewwithBuddySchoolfromdifferentlocation,orlocalpersonwhohaslivedindifferentclimates

7.ARecipefor(Natural)Disaster

● TornadoinaBottle● SurvivalGame

8.EarthDoctors ● WebsiteScavengerHunt● EarthDoctorCollage

● Fieldtriptolocalgreenhouse

● FieldtriptoHopkinsForest(Carbonfootprint)

9.1ThinkGlobal,ActLocal ● Brainstorming● TheGreatPacificGarbagePatch● InterviewLocalBusinesses

9.2ThinkGlobal,ActLocal ● Createyourowntown

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LessonFeatureKeyLessonsinthisunitincludeseveralfeaturestohelpinstructors.Thiskeyisaquickguidetohelpidentifyandunderstandthemostimportantfeatures.

Icons

Talkscienceicon:Lookforthisicontoletyouknowwhentousesomeofthetalksciencestrategies(foundintheunitresourcesofthisunit)

Anchorphenomenonicon:Indicatesatimewhenananchoringscientificphenomenonisintroducedorwhenanactivityconnectsbacktothisimportantidea.TextFormatting:[SP#:….]Anytimeyouseeasetofbracketslikethis,itindicatesthatstudentsshouldbeengagedinaspecificscienceorengineeringpractice.Underlinedtextinthelesson:Thisformattingindicatesimportantconnectionsbacktothecentralscientificconceptsandisusefultonotetheseconnectionsasaninstructor,aswellasforstudents.

Callouts

TeachingTip Inthesecall-outboxes,you’llfindtipsforteachingstrategiesorbackgroundinformationonthetopic.

StudentThinkingAlert Lookoutforcommonstudentanswers,waysinwhichstudentsmaythinkaboutaphenomenon,ortypicalmisconceptions.

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EssentialQuestionConceptMaps

WeatherClimateIntroduction (engagement)

Thesunisadriverintheearth’senergyand theearthhasanorthernandsouthernhemisphere (explainandexplore)

Understandingthegeographyand

climateonaglobalscale

(explainandexplore)

“Whatif”statements(elaborateandevaluate)

EssentialQuestion1:WhydodifferentplacesonEarthhavevaryingseasonalchanges?

CausalfactorsofSeasonalChanges

Heatandlightareenergy

Allenergyinputsandoutputsmustbeequal

Descriptionsofseasonalchanges

Weatherpatternsonbothalocalandglobalscale

DataCollection

Ecosystems

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EssentialQuestion2:HowdohumansrespondtoandinteractwiththeEarth’sClimate?

Differentclimatesindifferentregions (engagement)

Howdoesclimateimpacthumans?

(exploreandexplain)

Howdohumansimpactclimate?

(exploreandexplain)

“Whatif”statements(elaborateandevaluate)

Lifestyles,Culture,Shelter,Resources

BasicsofClimateChange -BasicideaofGreenhousegasses,carbonfootprintanddeforestation -Howourtrashaffectsourclimate

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TieredVocabularyList

Tier1 Tier2 Tier3

ThermometerEnergyDataGraphsRecycle

TemperatureFahrenheitRotationTilt

EcosystemAbsorbExchangeBalanced

PrecipitationClimateTropicalThriveSystemCulturalLifestyle

NaturaldisasterHurricanesTornadoesLandslidesFloods

FlashfloodsClimatechangeSolarenergy

EquatorCircumference

OrbitAxis

HemisphereAirpressureAgricultural

GreenhousegassesCarbonfootprintDeforestation

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ScienceContentBackground Pleasereadthroughtheexplanationprovidedinthenextfewpagesandjotdownquestionsoruncertainties.Consultinternetresourcestoansweryourquestions,askcolleagues,andworktogetherasateamtogrowyourownunderstandingofthesciencecontentandthecentralphenomenainthisunit.Thisknowledgeprimesyoutobetterlistenandrespondtostudentideasinproductiveways.Pleasefeelfreetorevisitthisexplanationthroughouttheunittoreviseandimproveyourownunderstandingofthesciencecontent.

EssentialQuestions:

1. WhydodifferentplacesonEarthhavevaryingseasonalchanges?DifferentpartsoftheEarthreceivesmallerorlargeramountsoftheSun’senergy(atspecifictimesandoverlongerperiodsoftime),dependingontheir locationandthetimeofyear.Therefore,thedifferencesresult invariationsintemperature,amountofprecipitation,andotheraspectsofseasonalchange,whichthencreatedifferentecosystems.

1. HowdohumansrespondtoandinteractwiththeEarth’sclimate?

HumansinteractwithEarth’sclimatebyconstructingwaystosurviveandthriveinresponsetofactorsintheirenvironment,andbyovercomingthebarriersposedbytheirenvironment.Humanactivityalsocontributestochangesinglobalconditions(suchastemperature)overlongperiodsoftime,whichinturnleadstochangesinglobalclimate.

RationalefortheOrderofContent Inamorechallengingapproach,weputstudentsinthehotseatrightaway.Startingatthegrandestscale,learningabouttheSunmayentailmanystudentmisconceptions,whichwewouldliketocorrecttolaythefoundationforfuturestudentlearning.Knowingtheconcrete,causalmechanismsoftheSun’scontributiontoEarth’senergysystemscreatesascaffoldforstudentstoapplythisconcreteknowledgetofuturelessons,forexampletoexplaindescriptionsofseasonalchangesandhowthesechangesdifferbyclimateoverthegeographiclandscape.Studentsexplorenotonlythemechanismsofclimate,butalsotheinteractionsbetweenEarth’sclimateandhumans.

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AnchoringPhenomena

Inthisunitweusealong-termmysterytocreateacommonthreadbetweenalllessons.Throughouttheunit,studentsaregivenhintsaboutmysterylocations(suchasMt.GreylockandtheGreatBarrierReef)inordertoconnecthowweatherandclimateaffectdifferentplacesonEarth.

KeyScienceIdeas

1) TheSunisadrivingforceinweatherandclimatea) TheEarthorbitstheSun,androtatesonatiltedaxis→differentexposuretosunlight,basedonangleandposition,

impactstheintensitywithwhichsunlighthitsEarthi) Thisdirectlyaffectstheweatherandclimateofalocation.

b) Energy,intheformofsunlight,isexchangedwithEarthc) Itrequireslessenergytoheatuplandthantoheatupwaterd) TheEarth’senergyinputandoutputmustbebalancede) NorthernandSouthernhemispheres

i) Oppositeseasonsii) Landvs.waterdifference(ratiooflandtowaterishigherintheNorthernhemisphere)

2) Weathera) Shorttermexperiencesthataffectdaytodaylifeb) Seasonalchangesinweatherpatternsc) Naturaldisastersandtheireffectshorttermandlongterm

3) Climatea) Longtermexperiencesthataffectculturesandlifestylesb) Createdbyweatherpatternssuchasaveragetemperature,rainfall,airpressureandwindsc) Differentclimatescreatedifferentecosystems

i) Ex.Tundra(cold),Rainforest(tropical),Deserts(dry),WoodlandForest(temperate)d) Humans’impactonclimate

i) Basicideasbehindclimatechangeinvolvingdeforestation,ourcarbonfootprint,ourtrash,andgreenhousegasses

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Explanation TheSunisamajordrivingforceofweatherandtheclimatesthatexistonEarth.TheEarthrevolvesaroundtheSuneveryyearonatiltedaxis.Thisprovidesdifferentdegreesofsunexposuretodifferentlocationsbasedontheangleandpositioninintheorbit.ThefactthatdifferentlocationsonEarthreceivevaryingintensityofsunlightandlengthofsunlightoverthecourseofayeargivesEarthitsmanydifferentclimates.

Theoceanalsoexertsamajorinfluenceonweatherandclimatebecauseitiseasiertoheatuplandthanwater.TheoceanabsorbsandstoreslargeamountsofenergyfromtheSunandreleasesitveryslowly;inthatway,theoceanmoderatesandstabilizesglobalclimates.TheenergybalanceofEarth(incomingenergyfromsunlightisequaltotheoutgoingenergylosttospace)isveryimportantbecauseiftheenergybalanceonEarthisnotstable,theplanetwillbegineitherheatinguporcoolingdownandneitheraregoodforsustaininglifeonearth.

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TheNorthernandSouthernhemispheresalsoplayaroleinthemovementandbalanceofEarth'senergy,duetotheunevenratiooflandtowaterinbothhemispheres.WaterabsorbstheSun’senergymoreslowlythanlandbecause,generally,waterislightercoloredthanthelandandbecauseofwater’sphysicalproperties(especiallyitsspecificheat).Lightercoloredobjectsreflectmorelightthandarkercoloredones,sothereforedarkercoloredobjectsabsorbmorelightandalsomoreenergy. The“greenhouseeffect”keepsEarth’ssurfacewarmerthanitwouldbeotherwise.Tomaintainanyaveragetemperatureovertime,energyinputsfromtheSunandfromradioactivedecayinEarth’sinteriormustbebalancedbyenergylossdueto

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radiationfromtheupperatmosphere.However,greenhousegasesaccumulateintheatmosphereandpreventsomeoftheenergyfromradiatingbackoutintospace.Thiscausesagradualwarmingoftheatmospherebecausemoreenergyisbeingputintothesystemthanisreleased. Weather,whichvariesfromdaytodayandseasonallythroughouttheyear,istheconditionoftheatmosphereatagivenplaceandtime.Climateislongertermandlocationsensitive;itistherangeofaregion’sweatheroveroneormoreyears,and,becauseitdependsonlatitudeandgeography,itvariesfromplacetoplace.SunlighthitstheEarthmostdirectlyaroundtheequator.Duetotemperaturedifferencescausedbydifferencesintheamountofsunlightabsorbed,recurringclimaticconditionsdevelop,whicharecharacterizedbytheaveragetemperatureandprecipitation.Insomeareas,climatezonescanbeinterruptedbygreataltitudedifferencessuchasamountainrangeoroceans.Therearefourmajorclimatezones:thetropicalzone,thesubtropicsorwarmzone,thetemperatezone,andthepolarorcoldzone.Eachzoneischaracterizedbyuniqueamountsofprecipitationandtemperaturerange.Theseconditions,inturn,determinethetypesofvegetationandwildlifethateachclimatezonecansustain.Thus,ecosystemsaredependentuponclimatepatternsandzones,becausedifferentplantsandanimalsrespondbettertodifferentclimateconditions. NaturalprocessescancausesuddenorgradualchangestoEarth’ssystems,someofwhichmayadverselyaffecthumans.Throughobservationsandknowledgeofhistoricalevents,peopleknowwheresomeofthesehazards—suchasearthquakes,tsunamis,volcaniceruptions,severeweather,floods,andcoastalerosion—arelikelytooccur.Understandingthesekindsofhazardshelpsusprepareforandrespondtothem. While humans cannot eliminate natural hazards, they can take steps to reduce their impacts. For example, loss of life andeconomiccostshavebeengreatlyreducedbyimprovingconstruction,developingwarningsystems,identifyingandavoidinghigh-risklocations,andincreasingcommunitypreparednessandresponsecapability. Humansdohavetopreparefortheirsurvivalonthisplanetbutsometimesthatlosessightofmakingsuretheplanetsurvivesaswell.HumansareabigcontributortotheglobalwarmingthatishappeningonEarthrightnow.Climatechangeishighlyaffectedbyhumans.Someexampleswouldbe:theeffectsofgreenhousegasesthatarementionedaboveaswellasdeforestation,ourcarbonfootprint,andourtrash.

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Lesson1:WeatherAroundtheWorldLessonBackground

ThislessonemphasizesthecrucialrolethattheSunplaysindictatingEarth’sweathersystemsandclimate.Theamountofsunlightaregionreceivescreatesweatherandclimatecharacteristics-overshortandlong-timescales.AstheEngagementphaseofthe5Emodel,thislessonraisesquestionsandsparksintrigueforexploringwhydifferentplacesexperiencedifferentseasons.Thislessonisbuiltarounddispellingtheegocentricmisconceptionfor3rdgradersthatweatheristhesameeverywhere.*Itisimportantthatpriortoeachlessontheinstructorsreviewallinternetresources.*

ScienceContentBackground(forinstructors)

InthislessontheEarth’srelationshiptotheSunisexplainedthroughtheamountofdirectandindirectsunlightcertainlocationsoneartharereceivingandhowthisaffectsthem.TheSunshinesdirectlyattheequatorcreatinghotterclimatesandthefartherawaythelocationisfromtheequatordeterminesthevariationoftheirseasons.DayandnightarealsodirectlyaffectedbywheretheSunisshining.OurtimezonesapproximatelyfollowtheEarth'srotationsothateachtimezonehastheSunshiningdirectlyaboveatnoon.

OverviewoftheLessonStudentsexplorecurrentlocalandglobalweatherdataandpredictpatternsoverlongperiodsoftime.Studentsconstructpreliminaryexplanationsforwhydifferenttemperaturepatternsemergeindifferentregions.Lastly,studentsinitiallyexploretheSun'srelationshiptotheEarthviatheuseofaglobeandlight.

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FocusandSpiralStandard3-ESS2-1.Usegraphsandtablesoflocalweatherdatatodescribeandpredicttypicalweatherduringaparticularseasoninanarea.{Clarificationstatements:Examplesofweatherdatacouldincludetemperature,amountandtypeofprecipitation(e.g.,rain,snow),winddirection,andwindspeed.Graphicaldisplaysshouldfocusonpictographsandbargraphs.}NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)-Askingquestionsanddefiningproblems-Analyzingandinterpretingdata-Obtaining,evaluating,andcommunicatinginformation

ESS2.D:WeatherandClimateScientistsrecordpatternsoftheweatheracrossdifferenttimesandareassothattheycanmakepredictionsaboutwhatkindofweathermighthappennext(3-ESS2-1)Climatedescribesarangeofanarea’stypicalweatherconditionsandtheextenttowhichthoseconditionsvaryoveryears(3-ESS2-2)

Patterns:Patternsofchangecanbeusedtomakepredictions(3-ESS2-1),(3-ESS2-2)

LearningTargets1.Icanidentifywaystoobtainlocalandglobalweatherdata.2.Icanexplainthatthesunplaysanimportantroleondayvs.night,weather,andseasons.AssessmentStudentswillbetestedontheirabilitytomakepredictionsabouttheamountofSunexposureindifferentplaces,fromtheinformationtheyreceiveduringtheglobeactivity.

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TargetedAcademicLanguageTier1:ThermometerTier2:Temperature,FahrenheitTier3:Equator,Circumference

RESOURCESANDMATERIALSQuantity Item Source

1perstudent ScienceJournal Classroomteacher6perclass Thermometers(foroutsideuse) Bin http://www.earthcam.com/network/

https://www.timeanddate.com/worldclock/personal.htmlCMCWebsite

5perclass TiltedGlobes(orasmanyaspossiblesoeachstudentcanhavehandsontimewiththeglobe)

Bin

5perclass Flashlights(orthesameamountasglobes) Bin1perstudent TheLong-TermLocationMysteryBookletofClues(13pagestotal) Binder1perclass Globe ClassroomTeacher**Itemsinboldshouldbereturnedforusenextyear**

LESSONDETAILSLessonOpening/ActivatorLeadadiscussionabouttheweathertoday:Isithot?Isitcloudy?Whatdowethinkthetemperatureistoday?Wouldyouratherwearabathingsuitorawintercoatrightnow?Introducethetopicthatthislessonwillbeaboutandpassoutsciencejournals.DuringtheLesson1. UsingaThermometer

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A. Beforegoingoutside,demonstratehowstudentsshouldsafelyuseandreadathermometer.Thesearetools,nottoys.Havestudentswatchthethermometersongvideotoreviewhowthermometerswork.https://www.youtube.com/watch?v=Vk6rP_4wpvk

B. Onceoutside,passoutthethermometersinsmallgroupsandaskstudentstomeasureandrecordthetemperatureintheirsciencejournals.

C. Gathertheclasstosharetemperatureresultsanddiscusswhyitisthistemperature.Whatmonthisit?Whatseasonisit?Doesitlooklikethiseverywhereintheworld,andwhy?Havestudentsrecordallideasinjournals.(Dependingoncurrentweatherconditions,conductdiscussionoutsideorbackinsideclassroom).

2. LearntheContinentsA. StudentscanusedryerasemarkersontheGlobeandlabeltheEquatorandthecardinaldirections:North,South,

EastandWest.

i. ii.

B. Studentsgetinsmallgroupsandplay“Ispy”acountryintheNorthoranotherdirectiontohavethekidsgeta

senseofthecountries.

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3. WhatIsItLikeAcrossAmerica?A. Asktheclass,“WhatdoyouthinkitlookslikeinCaliforniarightnow?”Visit

http://www.earthcam.com/network/andprojectlivestreamofthelocation(visitthesitebeforeclasstomakesurethecamerasareoperational).

B. Allowstudentstomakeobservationsbasedonreal-timefootageandask:Whatseasondoesitlooklike?Whydoesitlookdifferentorsimilartowhatweseeoutsideourwindow?Whyisthetemperaturedifferent?

4. Tellthefuture A. Afterconveyingthatdifferentpeopleexperienceweatherdifferently,

transitiontopredictionsandask:Whatwilltheweatherbelikehere,inNorthAdams,in4months?WhatwilltheweatherbelikeinCaliforniain4months?

B. Havestudentsdrawpredictionsinsciencejournals.Think-Pair-Sharewithapartnerandthendiscusswiththeclass.Correctanymisconceptionsontheboard.

5. HowTheSunHitsEarth

A. Bringoutglobesandflashlightsandsplitupintosamegroupsasbefore.

B. Pickthreedifferentlocations,preferablyonesthatareonoppositesidesoftheglobe,tobestdisplaydayandnight(ex.NorthAdamsandHongKong)andonecloseandfarfromtheequator(ex.NorthAdamsandPuertoRico)tosparkdiscussionaboutsunexposureanditseffectonaveragetemperature.Toemphasizethatdifferentlocationsreceivedifferentsunexposure(andtheimpactthathas),projectaworldclockthatshowsdifferenttimezones(https://www.timeanddate.com/worldclock/personal.html)

TeachingTip Think-Pair-Shareisacommonstrategywhereyoufirstgivestudentstimetothinkontheirown,beforetalkingwithapartner/peerabouttheirideas.Youthenhavethepairsshareouttotheclass.

StudentThinkingAlert Commonstudentmisconception:Wehavethesameseasonsandweatheraseverywhereelse.Instructthestudentstousecluesandcriticalthinkingfromthepreviousactivitytocorrectthosemisconceptions.

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C. First,havestudentspredicthowtheythinktheSunshinesonEarth(fromabove,below,theside)andaskthemtoexplainwhytheythinktheyareright.ExplainthatthereisagreatsizedifferencebetweentheEarthandtheSun.They

arewelcometoexploretheseideaswiththeirmaterials. (ScienceTalk:Tryusingsentencestarterstoexplainpredictionsinfullsentences)

D. Leadstudentstowardtherightanswerthatthesunshinesdirectlyontheequator(askthestudentsiftheyknowwhatandwheretheequatoris,andiftheyareunsure,pointoutandexplainhowitrunsaroundthecircumference).Havestudentsshinetheirflashlightdirectlyattheequator.

E. Havethestudentslocateontheglobeallthreeofyourchosenlocations(maybeputstickersorsomemarkeronthelocationssothatit’seasierforkidstofind)

F. Startadiscussionaboutdayandnightbetweenyourfirsttwolocations.Havethestudentsexplorewhatdayandnightlookslikefromeachlocationandrecordinsciencejournal.

G. StartadiscussionaboutSunexposureondifferentpartsoftheplanet.Havestudentsagainexplorewhythefirstandthirdlocationshavedifferentaveragetemperatures,byusingtheirflashlightandglobe.Recordanythoughtsandideasinsciencejournals.

AssessmentRevisitthewebsitehttp://www.earthcam.com/network/andbringupallthreelocationsusedinglobeactivity,orascloseasyoucanget,andaskthestudentstolisttheminorderofwhattheythinksgetsthemostsunlightyearroundtowhichgetstheleastusingtheconceptsweexploredtodayintheirsciencejournalsandencouragethemtochangetheiranswerslateroniftheydiscoverorlearnsomethingthatchangestheirthoughts.

TeachingTip Importantdetailstonoteherearetheconcentrationofdirectversusindirectlightfrom“theSun”ondifferentareasoftheglobe

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LessonClosingWriteontheboard“Long-TermLocationMystery”--explainthatthroughoutthisunittheclasswillreceiveaclueaftereachlessonabouttwomysterylocations.HandouttheBookletofCluesandexplainthateachnewcluewillberecorded.Bytheendoftheunit,we’llsolvethemystery!(LocationA:Mt.GreylockandLocationB:GreatBarrierReef).Thengivethemthetemperatureatthattimeofbothlocationsastheirfirsthint.

TeachingTip Intheanswertothisassessment,it’snotimportantthatstudentsgettheanswercompletelyright.ItisimportantthattheyknowPuertoRicoreceivesthemostsunlight(thedistancesfromtheequatortoHongKongandNorthAdamsarenotsufficientlydifferenttobeaccuratelycompared).Theyshouldbeencouragedtocheckbackandseeiftheirnewknowledgecanhelpthembettercompletethisactivityorrevisetheirpreviousanswers(hint:latitudecoordinateswouldbehelpful).

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Lesson2:TheEarthandtheSun~AnEssentialFriendship

LessonBackgroundThislessonfocusesontherelationshipbetweentheEarthandtheSun,highlightingthespatialandphysicalmovementofeachbodyinrelationtoeachother.Coreactivitiesincludedemonstratingrelationshipswithaglobeandfloodlight,andhavingstudentsconstructamodelofthemovementwiththeirbodies.

ScienceContentBackground(forinstructors)

SincetheSunisthedrivingforceinproducingdifferentweatherandclimatesonearth(whichwillbecoveredoverthecourseoftheunit),itisimportanttoinitiallyunderstandhowtheEarthandSunmoveinrelationtoeachotherinordertothenunderstandwhydifferentpartsoftheEarthexperiencedifferentseasonalchanges.ThemaincontentcoveredinthislessonexplainsthattheEarthsimultaneouslyorbitsaroundtheSunandrotatesaroundatiltedaxis.Contentisfurtherdevelopedbyintroducingthedifferenthemispheres.TheNorthernandSouthernhemisphereexperience“opposite”seasonsbecauseoftheirorientationinrelationtotheSun(i.e.whentheNorthernhemispherereceivesmostdirectsunexposure,theSouthernhemisphereexperiencesrelativelyindirectexposure).ExposuretotheSundeterminedbythesecomponentsdictatesdifferentweatherandclimates.

OverviewoftheLessonInthislesson,studentswillexploredifferentmodelsoftheSunandEarth.StudentsseektounderstandspatialandmovementfeaturesoftheSunandEarththroughexperimentingwithaglobeandaflashlight,andwiththeirownbodiesinspace.ExplorationiscontextualizedbyreinforcingtheimportanceoftheSun-anditsspatialrelationshiptotheEarthovertime–increatingdifferentweatherandclimatefordifferentregionsonEarth.

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FocusandSpiralStandard5-ESS1-2.UseamodeltocommunicateEarth’srelationshiptotheSun,Moon,andotherstarsthatexplain(a)whypeopleonEarthexperiencedayandnight,(b)patternsindailychangesinlengthanddirectionofshadowsoveraday,and(c)changesintheapparentpositionoftheSun,Moon,andstarsatdifferenttimesduringaday,overamonth,andoverayear.NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)-Askingquestionsanddefiningproblems-Developingandusingmodels-Obtaining,evaluating,andcommunicatinginformation

ESS1.B:EarthandtheSolarSystemTheorbitsofEartharoundthesunandofthemoonaroundEarth,togetherwiththerotationofEarthaboutanaxisbetweenitsNorthandSouthpoles,causeobservablepatterns.Theseincludedayandnight;dailychangesinlengthanddirectionofshadows;anddifferentpositionsofthesun,moon,andstarsatdifferenttimesoftheday,month,andyear.(5-ESS1-2)

CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)

LearningTargets1. Icandescribehowtheearthmovesinrelationshiptothesun.2. Icanusedifferentmodelstoshowwhydifferentplacesontheearthareimpacteddifferentlybythesun.

AssessmentEngagementinconstructingmodelswithteams,participatingingroupandclassdiscussions,exitticketandsciencejournalresponses.

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TargetedAcademicLanguage Tier1: Tier2:Rotation,Tilt Tier3:Orbit,Axis,Equator,Hemisphere

RESOURCESANDMATERIALSQuantity Item Source

1perstudent ScienceJournal Classroomteacher https://www.youtube.com/watch?v=4rMYrP8feJY CMCWebsite5perclass Globe ClassroomTeacher/Bin5perclass Flashlight Bin1perstudent Sunglasses Bin1perstudent ExitWorksheet Binder5perclass PlayDough Bin**Itemsinboldshouldbereturnedforusenextyear**

LESSONDETAILSLessonOpening/Activator

1. ProjectthetimelapsevideoofAlaskawherethesunneverfullysetsduringthesummer

(https://www.youtube.com/watch?v=4rMYrP8feJY).2. Askthestudentswhattheysee,wheretheythinkthisis,andwhattimeofdaytheythinkitis.Oncesomeobservations

andinferenceshavebeenshared,tellstudentsthatthetimelapsewastakeninAlaskathroughouta24-hrperiod!Thisshouldsparknewquestionsandsomeconfusion,butletstudentsholdontothatintrigue(don’thavetogiveclearexplanationsyet).Whyhasn’tthesunsetbymidnight?

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3. Emphasizethatthetimelapsedepictsaphenomenonthatisverydifferentfromhowourskylooksoverthecourseofaday.

Distributesunglasses(oneperstudent)andhavethemwear(iftheywant)whilestartingadiscussion.Ask,“Whydowewearsunglasses?Dopeopleallacrosstheglobewearsunglasses?”Ifnotdirectlystatedbystudents,emphasizethepointsthatpeopleeverywhereintheworldseetheSun,butseeitdifferently,andrelatebacktopictureofAlaska.[SP1:AskingQuestionsandDefiningProblems]DuringtheLesson

1. Globe/flashlightdemonstration[SP2:DevelopingandUsingModels]A. Breakstudentsupintogroupsof3-4andgiveeachgroupaglobe

andaflashlight.HavegroupsexperimentwiththetoolstodemonstratehowtheythinktheSunmightshineontheEarth.Promptwithquestionssuchas,“HowfarawaydoyouthinkthesunisfromtheEarth?Whatisthesun’spositioninrelationtotheEarth?”

B. TransitionintodiscussionasthestudentsstarttoconstructamodelofhowtheSunandEarthmoveinrelationtoeachother.FindCaliforniaontheglobe(ormarkitwithasticker)andaskstudentstorecalltheir4-monthpredictionsforthatlocationfromthepreviouslesson.Ask,“HowdoyouthinktheEarth’spositioninrelationtotheSunchangesinthose4months?”toreflecttheirpredictionsinchangingweather.Calltheclass’attentionbacktogetherandhaveonegroupdemonstratethemovementmodeltheyconstructedandprovideanexplanationforwhytheythinktheSunandEarthmovesuchinsuchamanner.

TeachingTip Ifpossible,acquireatleast5tilted

globes(borrowfromotherclassroomsjustforthislesson!)soeachsmall

groupofstudentscanhavehands-ontimewithamodel.

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C. Aftervalidating(butnotcorrecting)students’models,demonstratetheaccuratemodelforthewholeclass(canstillusetwostudentstoactasSunandEarth).EmphasizethattheEarthorbitsaroundtheSun,aswellasrotatesonatiltedaxis(depictedbyglobe).Explainthatageocentricunderstanding(Earth-centeredsolarsystem)isahistoricalmisconception,butwenowunderstandthatthesolarsystemisheliocentric(Sun-centered).ExplainthatEarth’saxisofrotation(linefrompoletopole)istiltedata23°angle.Transitionintosemi-kinestheticmodelbyhavingonestudentfixedinthecenterof

acircleholdingtheflashlightastheSun,andacircleofstudentssurroundingthesunpassingtheglobearoundtorepresenttheorbit.*Makesurethetiltstaysorientedatafixedpointintheroom.

2. Kinestheticmodel[SP2:Developingandusingmodels]A. HavestudentsreturntotheirgroupsanddesignateonestudentastheSun(dependingonclassneeds,teachers

canassignrolesorhavestudentsself-designate),andanotherastheEarth.Studentscantaketurnsactingoutdifferentroles.

StudentThinkingAlert Acommonmisconceptioncanmanifestduringthismodel:studentsmightthinktheSunmovesaroundtheEarth.Letstudentsconstruct(potentially)inaccuratemodelsatfirst.

StudentThinkingAlert Addressacommonmisconception-thataplaceiswarmerwhenitgetsclosertotheSun.TheSun’simpactisnotdictatedbyEarth’sdistance,butinsteadbyintensityordensityofexposuretosunlight(eithermoreorlessdirect).Furthermore,thetiltoftheaxisdoesnotchangethetotalamountofsunlightthattheEarthreceives.Instead,thetiltoftheaxischangeswhenandwheresunlighthits.

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B. AsktheEarthstudenttomoveaccordingtothemodelthatwasjustdemonstratedwiththeglobe.ClassroomTeacherorScienceFellowscanwalkaroundandpromptstudentstoincludeimportantelementsiftheyforgetatfirst-orbit,rotation,andtilt.

[SP2:DevelopingandUsingModels]

Includeaquickdebriefofthemodels-caneitherfacilitateasadiscussion,think-pairshare,orwrittenreflectioninsciencejournals.Askstudentstothinkaboutwhatthesemodelsdemonstrateorshow.Whatdidtheyleaveout?Sciencefellowsshouldshowthefollowingvideobeforemovingontothenextactivity:https://www.youtube.com/watch?v=l64YwNl1wr0(stopat2:28)

3. Northern/Southernhemispheres:A. Asstudentsinvestigatemovementwiththeirownbodies,introducetheconceptofthetwohemispheres.Ask

studentstorecallwhattheylearnedabouttheequatorfromthepreviouslessonandhavesomeonepointitoutonaglobe.

B. Maketheconnectionbetweentheequatorlineontheglobeandtheirbellybuttonsasthemiddlelineontheirbodiesintheirkinestheticmodel.

C. Askthemtodiscussintheirgroupswhatisdifferentaboutregionsaboveandbelowtheequator-promptthemtomakeobservationsfromtheglobe(howmuchlandorwateroneitherside),andthemodeltheyhavejustconstructed(howdoeseachsidedifferinsunexposure?)

D. Askforsomegroupstoshareobservationsandwritethemontheboard,andtransitiontoabriefclassdiscussion.IntroducethevocabularyofNorthernandSouthernhemispheres,andreinforcetheobservationswrittenontheboard.Ifobservationsarenotmadebystudents,explicitlyinclude:

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● ThereisalargeramountoflandintheNorthernhemisphere,andalargeramountofwaterintheSouthernhemisphere

● WhentheNorthernhemispherereceivesdirectexposuretosunlight,theSouthernreceivesindirectexposure.

ExtensionActivity:Studentsuseplaydoughtomodelthepositionofthesunandearth(northernhemisphere)duringtheSpring,Summer,Winter,andFallsolstice.

ExitExercise[SP6:ConstructingExplanationsanddesigningsolutions]ProjecttwoimagesorlivestreamsoflocationsofroughlythesamelongitudeintheNorthernandSouthernhemispheres:NorthAdamsandSantiago,Chile.Askstudentstosharepreliminaryobservationsoftheimages,hintingatwhyseasonscanbeseemingly“opposite”betweenthehemispheres?Handouttheworksheetandaskthemtofillouttheinformation.Dependingontheleveloftheclass,theworksheetcanbecompletedindividually,inpairs,orlargergroups.LessonClosing:Long-termmystery:Givethenextclue:LocationAisexperiencingseason[x]rightnow.LocationBisexperiencingseason[y]rightnow.

● September-November:LocationAisexperiencingfallrightnow.LocationBisexperiencingspringrightnow.● December-February:LocationAisexperiencingwinterrightnow.LocationBisexperiencingsummerrightnow.● March-June:LocationAisexperiencingspringrightnow.LocationBisexperiencingfallrightnow.

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AssessmentEngagementinconstructingmodelswithteams,participatingingroupandclassdiscussions,exitticketandsciencejournalresponses.

TeachingTip TeachersandScienceFellowsshouldprepforthenextlessonbymakingthesolarovens(2-3largeboxeswillbeneededdepending

onthesizeoftheclass).Refertothiswebsitefordirections:https://climatekids.nasa.gov/smores/

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Lesson3:Energy~TeamworkMakestheDreamWork

LessonBackground Inthepreviouslesson,studentslearnedabouttheSunandEarth’spositionalrelationship.Inthislesson,weexplorehowthemechanismsandprocessesofenergyexchangeshapeweatherandclimate. ScienceContentBackground(forinstructors)ThecoreideasincludeSun’senergyasasourceoflightandheat,heatabsorptioninlandvs.water,andbalancedenergyexchangebetweentheEarthandspace.TheEarthisatalifesustainingtemperaturebecausethereisanapproximatelyequalinputofenergyasthereisanoutput.Iftheinputofenergyweregreaterthantheoutput,theEarthwouldbecomehotter.Likewise,iftheoutputweregreater,theEarthwouldbecomecooler.TheinputofenergyisintheformofsunlightabsorbedbytheEarth.TheoutputistheenergytheEarthreflectsoremitsintospace.OverviewoftheLesson Inthislesson,studentsdefineenergy,whichscaffoldstheirunderstandingofhowtheSunaffectstheweatherandclimateonEarth.Studentswilllearnimportantideasandconceptsthroughclassroomexperiments,handsonactivitiesandshortdiscussions.ItisrecommendedthattheinstructorswatchtheYouTubevideospriortothelesson.FocusandSpiralStandard 4-PS3-1.Makeobservationstoshowthatenergycanbetransferredfromplacetoplacebysound,light,heatandelectriccurrents.{ClarificationStatements:Evidenceofenergybeingtransferredcanincludevibrationsfeltasmalldistancefromasource,asolar-poweredtoythatmoveswhenplacedindirectlight,warmingametalobjectononeendandobservingtheotherendgettingwarm,andawirecarryingelectricenergyfromabatterytolightabulb.}

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NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)

-Askingquestionsanddefiningproblems-Developingandusingmodels-Obtaining,evaluating,andcommunicatinginformation-Analyzingandinterpretingdata

PS3.A:DefinitionsofEnergyEnergycanbemovedfromplacetoplacebymovingobjectsorthroughsound,light,orelectriccurrents.(4-PS3-2),(4-PS3-3)

CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)

LearningTargets

1. Icandescribetheconceptofenergy,asitrelatestoheatandlight.2. IcanexplaintheimportanceofenergyexchangebetweentheEarthandtheSun.

Assessment CheckontheSuns’moresandhandthemouttostudentstoeatattheendofclass.Reviewthestudents’sciencejournalsandchecktomakesuretheywerewritingdownthefactsandmakingtheirobservationsandpredictionsabouttheexperiments. TargetedAcademicLanguageTier1:energyTier2:absorb,exchange,balancedRESOURCESANDMATERIALS

Quantity Item Source 2 Floodlight Bin1 StickThermometer Bin2pergroup PlasticCups(anysize) Bin1 Bagofpottingsoil Bin

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LandandWaterCrashCoursehttps://www.youtube.com/watch?v=7vTfyAMu6G4

CMCWebsite

HereComesTheSunCrashCoursehttps://www.youtube.com/watch?v=6FB0rDsR_rc&t=121s

CMCWebsite

2-3 LargeCardboardbox Bin1 RollofAluminumFoil Bin1 BagofMediumSizedMarshmallows Bin1 BoxofGrahamCracker Bin20Bars Hershey’sChocolate Bin1perstudent Sunglasses Bin1box BlackPermanentMarkers ClassroomTeacher1perstudent ScienceJournals ClassroomTeacher**Itemsinboldshouldbereturnedforusenextyear**

LESSONDETAILS LessonOpening/ActivatorAskthestudentswhatdifferencestheynoticebetweennightandday.Iftheiranswersconsistof“it’sdarkeratnight”and“atnightIgotobed,”givethemadirectingquestionsuchas,“Whatdoyounoticeaboutthetemperature?”ExplainthattheSunisoursourceofheat.AsourlocationonEarthrotatesawayfromtheSun,thereislessdirectsunlightavailableatourlocationonEarth,causingcoldertemperatures.Handout(paper)sunglasses.PluginthefloodlightsandexplainthatthelampislikeourSun.Itreleasesenergyintheformoflightandheat.Discusscommonmisconceptionsofwhatenergyis(i.e.energyiswhenkidsfeelenergeticortheenergythatcomesfromanoutlet).Quicklyplaythisvideotohelpshowthedifference(https://www.youtube.com/watch?v=6FB0rDsR_rc&t=121s).Askacoupleofstudentstovolunteertocomeuptothefloodlightsandplacetheirhandinfrontofthelight(butnottooclose,asthebulbgetshot).Askthemiftheycanfeelenergyintheformofheatradiatingfromthelight.

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DuringtheLesson 1. Sunsmores

A. IntroducetheexperimentasawaywecanharnesstheSun’senergytomakes’moreswithoutafire!Thesolarcookershouldbemadepriortothelesson.Followthedirectionsfromthislink(https://climatekids.nasa.gov/smores/)

2. LandVs.WaterActivity

A. Askstudentswhattheythinkabsorbsmoreenergyintheformofheat,landorwater.(Averycommonexampleofheatabsorptioniswhenblackcarseatsgetreallyhotindirectsunlight).

B. Tellthemtheywillbedoinganexperimenttoshowwhichabsorbsmoreheatandthattheyshouldwritedowntheirpredictionsintheirsciencejournals.Iftimeallows,askifanystudentswouldliketosharetheirpredictions.Alternative:Ifitisrainingorthereisnowindowwithdirectsunlight,usethefloodlightsinstead.[SP4:Analyzingandinterpretingdata]

C. Ingroupsof3-4,distributetwoplasticcupsforeachgroup.Onecupshouldbefilledhalfwaywithwaterandtheotheronewithsoil,whicheithertheClassroomTeacherorScienceFellow(s)willbewalkingaroundwithtofillthegroup’scup.

D. Remindstudentsthattheyshouldmarktheircupswiththeirinitialsorasymbol,suchasastar,sotheyknowwhichcupstheirsare.

E. Havethestudentstaketheinitialtemperatureofthesoilandthewaterintheirsciencejournals.Ifthestudentsdonotknowhowtouseathermometer,giveaquickexplanationofhowthemeasurementswork.

F. Oncethecupsarefilledandmarked,haveeachgroupplacethemonthewindowsillwheretheywillgetthegreatestamountofsunlight.

G. Havethestudentscomebacktomeasurethetemperatureofthesoilandwaterevery20minutesorso.Askthemtorecordthetemperatureeachtimeintheirsciencejournals.

3. YouTubeVideoA. Oncethecupshavebeenplacedonthewindowsill,playthisyoutubevideotogivethemsomecontext:

https://www.youtube.com/watch?v=7vTfyAMu6G4&t=73s

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4. EnergyExchangeSkit[SP2:DevelopingandUsingModels]ThestudentswillrepresenttheEarth,energyemittedbyEarthtospace,theSun,andtheSun’senergyabsorbedbyEarth.

A. SplittheclassinhalfandassignonehalftoSunandtheotherhalftotheEarth.Givethestudentsidentificationcardstohelp.

B. Requestthat3studentsfromtheSungroupmovetotheotherandthat3studentsfromtheEarthgroupmovetoanew,neutral,thirdgroup(representingspace).Askthestudentswhatisrepresentedwhenthesestudentsmovefromtheirlocationtotheother(transferofenergy).Repeatthisactionasmanytimesasneededforcomprehension.Studentscandictatetheactivityiftheyunderstand.

C. ExplainthatthisactionrepresentstheequalenergyexchangeoftheEarth.AcertainamountofenergyreachesusfromtheSun,andtheEarthreleasesanequalamountofenergyintospace.EqualexchangeallowsourEarthtostayatastabletemperature.

D. (Talkscience:tryusingsentencestartersandmodelingsciencetalk;havestudentsanswerinfullsentences.)Askthestudents“whatif?”questions.Whatiftheenergyexchangewasn’tequal?WhatifwewereabsorbingmoreenergyfromtheSunthantheEarthwasemittingintospace?

Extension

Iftheclassismoreadvancedintheirunderstandingofenergy,addincloudsasafactor.HavethekidsbouncebackiftheybumpintothedeskswhentheymovefromtheSungroupasifthedesksweretheclouds.AlsohavesomeofthekidsfromtheEarthgroupsitdowntoshowtheyhavebeenabsorbedbytheground.Refertotheimageformoreoptionsandadditionalinformation.

TeachingTip Usefulmetaphor:unequalenergyexchangeissimilartoanoven.Toheatupanoven,theenergyinputmustbelargerthantheenergyoutput,sothatthenetenergyorheatwithintheovenishigherthantheoutside.Therefore,iftheEarthweretoabsorbmoreenergythanitreleased,itwouldheatup,justlikeanoven.

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LessonClosingReviewresultsofthesoilandwaterexperimenttocheckifinitialpredictionswerecorrect.RecallfromthepreviouslessonthattheNorthernhemispherehasmorewaterthantheSouthernhemisphere,thusiswarmeronaveragebecauseland/soilis“easier”toheatup(requireslessenergy).Projectanairtemperatureloop(http://climvis.org/anim/maps/global/tmp2m.html)and

askforobservations.Docertainareasstayhotthroughoutmostoftheyear?Ifso,whatpartoftheworld(usetermslikeNorthernandSouthernhemisphere)?Givethenextclueaboutthetwolongtermmysterylocations.Askthestudents,“WiththisknowledgeaboutLocationAandB,whichdoyouthinkiswarmer?”LocationA(Mt.Greylock):Is1.875sq.milesoflandLocationB(GreatBarrierReef):Is132,974sq.milesofwater If any student wants to make a guess to any of the locations, ask them to come up to you privately.

AssessmentCheckonthesuns’moresandhandthemouttothestudentstoeatattheendofclass.Reviewthestudents’sciencejournalsandchecktomakesuretheywerewritingdownimportantideas,andmakingobservationsandpredictionsabouttheexperiments.

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Lesson4:UnderstandingCollectionofWeatherData

LessonBackgroundThislessonfocusesonthecollectionofweatherdatabytheuseofgraphs,maps,andothertoolssostudentscaneffectivelyusesuchtoolsforfutureactivities.ScienceContentBackground(forinstructors)Throughtherecordofweatherpatternsacrosslongtimeperiodsoftimeweareabletocreatepredictionsandmonitorourclimate.Graphsareonewaytocollectandrecordthesepatternsinavisualdisplay.Linegraphsliketheoneusedinthislessonaregoodatshowingpatternsovertimeandtheyareeasytoreadbecauseyougathertheinformationthesamewayyouwouldreadabook:fromlefttoright.Mapsarealsoausefultoolforgatheringweatherdata.Themapsusedinthislessonareallcolorcodedtorepresentdifferentweatherpatternssuchastemperature,wind,andprecipitation.Allofthesetoolshelpusbetterunderstandweatherpredictionandclimateindifferentlocations.OverviewoftheLessonStudentsexploreweatherdatacollectiontoolsandtechniquestoprovidefurtherevidencethatweatherdiffersovervaryinglocations.Studentswillbeexposedtographsasameansof“seeing”dataanddrawconclusionsaboutregionalweatherpatterns.Studentsresearchindividualareasofinterestandcollectdatafromonlinesourcestodescribeconditionsofthatarea.FocusandSpiralStandard3-ESS2-1.Usegraphsandtablesoflocalweatherdatatodescribeandpredicttypicalweatherduringaparticularseasoninanarea.[ClarificationStatements:Examplesofweatherdatacouldincludetemperature,amountandtypeofprecipitation(e.g.,rain,snow),winddirection,andwindspeed.Graphicaldisplaysshouldfocusonpictographsandbargraphs.

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NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)-Planningandcarryingoutinvestigations-Analyzingandinterpretingdata-Obtaining,evaluating,andcommunicatinginformation

ESS2.D:WeatherandClimateScientistsrecordpatternsoftheweatheracrossdifferenttimesandareassothattheycanmakepredictionsaboutwhatkindofweathermighthappennext(3-ESS2-1)Climatedescribesarangeofanarea’stypicalweatherconditionsandtheextenttowhichthoseconditionsvaryoveryears(3-ESS2-2)

Patterns:Patternsofchangecanbeusedtomakepredictions(3-ESS2-1),(3-ESS2-2)

LearningTargets

1. Icanexplainthatgraphsaretoolstocommunicateinformationvisually.2. Icanusegraphstomakepredictionsandassumptionsaboutweatherdatainagivenarea.3. Icanresearchandrecordweatherdataaboutaparticularareaofinterest.

TargetedAcademicLanguageTier1:data,graphsTier2:temperature,precipitationRESOURCESANDMATERIALS

Quantity Item Source ClimateKids“Whatdoallthesegraphsmean?”webpage

[https://climatekids.nasa.gov/graphs/]CMCWebsite

Asneededperclassroom

Chartpaper ClassroomTeacher

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Asneededperclassroom

Markers ClassroomTeacher

Graphicalmapimages CMCWebsite1pergroup LaminatedUnitedStatesMap Bin1perstudent ComputeroriPad ClassroomTeacher1perstudent “WeatherObservers”Worksheet Binder1perstudent ScienceJournals ClassroomTeacher1perclassroom MiniCactus ContactSueBeauchamp**Itemsinboldshouldbereturnedforusenextyear**LESSONDETAILSLessonOpening/ActivatorEngagestudents’priorknowledgeaboutgraphs--whathavetheyseenbefore,whatdotheyknowaboutgraphs?ExploreClimateKid’s“Whatdoallthesegraphsmean?”webpage[https://climatekids.nasa.gov/graphs/].Explainthatgraphsareonewayofdescribingweatherdata.Howdoyouthinkthisweatherdatawascollected?Whilegraphsareawayofvisuallyrepresentingdata,weneedothertoolstogatherdata,thatallowustounderstanddataandpredicttypicalweatherpatterns.Thinkingaboutaspectsofweather,brainstormalistofwhatmightbeimportanttomeasuretomakeconclusionsandpredictionsabouttheweatherofaregion(Examplesshouldincludetemperature,precipitation,winddirectionandspeed).Recordanswersontheboardorchartpaper.DuringtheLesson1. ObservingWeatherGraphs[SP4:Analyzingandinterpretingdata]

Oneofthemostimportanttypesofweatherdataistemperature.

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A. Refreshstudentsontheuseofthermometerstomeasuretemperature,whichtheyhaveexploredinpreviouslessons.Temperaturechangehappensoverthecourseoftheday,themonth,andtheyear.

B. Displaythefollowingimagetotheclassroom(imagesprovidedonUnitDrive):

C. Discussmajoraspectsofthegraph,includingtitleandlegendtomakesenseoftheimage.Askthestudentswhy

thestatesofAlaskaandHawaiiarerepresentedinboxestotheside.D. Askaboutpatternsthatstudentsnoticeinthegraph,includinghowthetemperatureshowsagradientfrom

NorthtoSouth.Whatcausesthis?Whatdoesthatmeanfordifferentregionsonthemap?ShowtheclasstheGIFoftemperaturechanges(locatedontheUnitCMCWebsite)overtheglobe.Whatotherobservationscanwemakenow?Displaythefollowingimagetotheclassroom(imagesprovidedonUnitCMCWebsite):

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E. Discussthemajoraspectsofthisgraph,includingtitleandthelegendtomakesenseoftheimage.

F. (TalkScience:wholeclassdiscussionofquestions).Askstudentswhattheynoticeaboutthegraph,includingsimilaritiesanddifferencesfromthepreviousimage.Whatisthemaplacking?Askwhatthestudentsknowabouttheareasthatgetthehighestamountofprecipitationversusthelowestamounts.Whatareotherobservationsthatstudentscanmake?ShowtheclasstheGIFofprecipitationlevels(locatedontheUnitCMCWebsite)overtheglobe.Whatotherobservationscanwemakenow?

Winddirectionandwindspeedsarealsoimportanttodescribeweatherpatterns.Whatdostudentsknowaboutwind?Whatarethepotentialdamagingeffects.Howdoweusewindpower?StudentsmaybeabletospeakaboutthewindturbineslocatedintheNorthAdamsarea.Displaythefollowingimagetotheclassroom(imagesprovidedonUnitCMCWebsite):

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G. Leadasimilarconversationasthelasttwoimages.Whatarepointsofinterest,whatdostudentsnotice,whatarestudentquestions?Noticethatthewindspeedisrecordednotonlyoverlandbutoverthewateraswell.Whatistheimpactofthis?

2. BecomingWeather

Observers[SP3:Planningandcarryingoutinvestigations]A. Sortstudentsinto5differentgroups;eachgroupwillbeassignedtoonecity(Houston,TX;Chicago,IL;San

Francisco,CA;Orlando,FL;NewYork,NY).B. Studentswillpredictweatherconditionsineacharea,thenresearchtheweatherconditionsforsummerand

winterineacharea.C. Havestudentsrecordthedatatheyfindontheworksheetprovided,andsavethisintheirsciencejournal.At

teacher’sdiscretion,assigneachstudentaparticulartypeofweatherdatatoresearch,toensurestudentparticipationandaccountability.

D. TheScienceFellowsorClassroomTeachercanprovideademonstrationofhowtoresearchaparticularcity,usingNorthAdams,MAastheexamplelocation.Agreatwebsitetouseforthisresearchishttp://www.wunderground.com--usethe“History”tabaftersearchingyourcitytodiscoverweatherconditionsforaspecificdate.Forthepurposeofthislesson,useJune21ofpreviousyearforsummerdatesandDecember21ofpreviousyearforwinterdates.

E. Share-outtheinformationforeachlocation.

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3. Why? A. Leadashortdiscussiononwhyweatherdatacollectionmatters.Whydowecare?

Whatdoesitdoforus?B. Tellstudentsthatexploringweatherpatternsallowsscientiststopredictfutureweather.Whymightitbe

importanttoknowaboutfutureweather?Weusefuturepredictionstoplanvacationsandotheroutdooractivities,andtoprepareforlargestorms-aconcepttobeexploredinmoredetaillaterintheunit.

Furthermore,collectionofweatherdataisimportantforunderstandingclimateconditions,asclimateisdefinedbyweatherpatternsthatexistinanareaoverprolongedperiodsoftime.LessonClosingOpendiscussionaboutthemysterylocations--whatdotheyalreadyknowaboutMysteryLocationsAandB?Provideweatherstatisticsduringsummerandwinterdatesaboutthemysterylocations.

MysteryLocationA(Mt.Greylock): MysteryLocationB(GreatBarrierReef):AverageTemperatureforJune21,2016:67°F AverageTemperatureforJune21,2016:61°FAverageTemperatureforDecember21,2016:24°F AverageTemperatureforDecember21,2016:78°FPrecipitationLevelforJune21,2016:0.27in PrecipitationLevelforJune21,2016:0.00inPrecipitationLevelforDecember21,2016:0.00in PrecipitationLevelforDecember21,2016:0.00inWindSpeedforJune21,2016:5MPH WindSpeedforJune21,2016:6MPHWindSpeedforDecember21,2016:3MPH WindSpeedforDecember21,2016:6MPH

Discussanyimportantobservationsmade,anypredictionsthatarerefutedorconfirmedbythisdata,oranyotherstudentquestions.AssessmentReviewstudents’sciencejournalsand“WeatherObservers”worksheet.

TeachingTip SetupminicactusforLesson5afterlesson4iscomplete.Studentsshouldbemonitoringtheseplantsandwateringastheyseefit,butnoformalexplanationisrequiredatthispoint.

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Lesson5:EcosystemsandClimates

LessonBackgroundLesson5willbesplitintotwoclassperiodsduetotimeconstraints.Thefirstpartintroducestheconceptofclimatebyextendingtheknowledgefromthepreviouslessonaboutweatheranddatacollectiontohowwedefineclimates:bycollectingdataaboutweatherpatternsinspecificareasoverlongperiodsoftime.Thesecondparthasstudentsinvestigatingwaysthatdifferentplantsandanimalsrespondtospecificclimateconditions,afterwhichstudentswillunderstandhowglobalandlocalclimateconditionscreateandsustaincertainecosystems.ScienceContentBackground(forinstructors)Climateisdefinedbypatternsofweatherinspecificareasoverlongperiodsoftime.Weatheristhemomentarystateofconditionsataspecifictimeandplace.SunlighthitstheEarthmostdirectlyaroundtheequator.Duetotemperaturedifferencescausedbydifferencesintheamountofsunlightabsorbed,recurringclimaticconditionsdevelop,whicharecharacterizedbytheaveragetemperatureandprecipitation.Insomeareas,climatezonescanbeinterruptedbygreataltitudedifferencessuchasamountainrangeoroceans.Therearefourmajorclimatezones:thetropicalzone,thesubtropicsorwarmzone,thetemperatezone,andthepolarorcoldzone.Eachzoneischaracterizedbyuniqueamountsofprecipitationandtemperaturerange.Theseconditions,inturn,determinethetypesofvegetationandwildlifethateachclimatezonecansustain.Thus,ecosystemsaredependentuponclimateconditions,becausedifferentplantsandanimalsrespondbettertodifferentclimateconditions.Moredetailscanbefoundhere:https://content.meteoblue.com/en/meteoscool/general-climate-zones.OverviewoftheLessonPart1:Thefirstactivitydifferentiatesweatherfromclimatethroughavideoandtakingnoteswithaworksheet.Next,studentsexplore various ecosystems through Google Cardboard to get a sense of various climate conditions in well known globalecosystems.Theythenmodelecosystemsandconsiderthevariousplantsandanimalsthatcouldbesustainedinsuchconditions.

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Part2:IntheGoogleEarthPhotoactivity,studentsobservefourlocations,eachinadifferentclimatezone, and consider the climate conditions necessary to sustain that ecosystem. Using thisinformation, students find the same locations on their Climate Zoneworksheets and determinewhichclimatezonesarelocatedinwhichlatitudesoftheEarth.Lastly,studentsareencouragedtousetheirknowledgefromLessons2and3toexplainhowtheSunandtheEarth’spositionmightcontributetothecreationofdifferentclimatezones.FocusandSpiralStandard3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsover a year vary by region. {Clarification statement: Examples of information can include climate data (average temperature, averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.}NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)

-Askingquestionsanddefiningproblems-Developingandusingmodels-Analyzingandinterpretingdata-Constructingexplanations-Obtaining,evaluating,andcommunicatinginformation

ESS2.D:WeatherandClimateScientistsrecordpatternsoftheweatheracrossdifferenttimesandareassothattheycanmakepredictionsaboutwhatkindofweathermighthappennext(3-ESS2-1)Climatedescribesarangeofanarea’stypicalweatherconditionsandtheextenttowhichthoseconditionsvaryoveryears(3-ESS2-2)

Patterns:Patternsofchangecanbeusedtomakepredictions(3-ESS2-1),(3-ESS2-2).CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)

LearningTargets1. Icandefineclimateanddifferentiateitfromweather.2. Icaninvestigatewaysthatplantsandanimalsadapttotheclimateconditionsintheirenvironments.3. Icanexplainhowglobalandlocalclimateconditionscreateandsustainecosystems.

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AssessmentAssessstudents’sciencejournals,models,worksheets.TargetedAcademicLanguageTier1:ecosystemTier2:climate,tropical,thriveTier3:temperature,airpressureRESOURCESANDMATERIALS

Quantity Item Source ClimateandWeathervideohttps://www.youtube.com/watch?v=XirAUvS_29I CMCWebsite1perstudent ClimateandWeatherWorksheets(3pagestotal) Binder1perstudent ScienceJournal ClassroomTeacher1perstudent ClimateZoneWorksheet Binder InstructionsforTrioramaModel Binder1perstudent Whitepaper/Cardstockpaper BinForclass Coloredpencils,glue,scissors ClassroomTeacher**Itemsinboldshouldbereturnedforusenextyear**LESSONDETAILSLessonOpening/ActivatorTheclassroomhasbeentakingcareoftwodifferentplantsoverthepastweek.Tellstudentstheplants’namesandhavethemguesswhichecosystemeachplantlikelybelongsin(e.g.desert,forest)anddescribethatenvironment(e.g.dry,sunny,lotsofshade).Talkaboutthecareinvolvedinthetwoplantsthattheteacherbroughttotheclassroom(e.g.sunlight,watering).Askthemtowriteintheirsciencejournalswhyeachplantthrivesinthoseecosystems(howmuchwaterdotheyneed,whattypeofprotectionsdotheyhave)?Theycanalsowritedownanimalsthatmightliveinthesameenvironmentaseachplant.Recall

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thatlastweekwelookedatweatherchangesovershortperiodsoftime.Overthenexttwolessons,wewillexaminehowlongtermweatherpatterns(overyearsanddecades)createconditionsthatallowecosystems(suchasdesertsandforests)tothrive.Whydoesarainforeststayarainforestacrossseasonalchanges?DuringtheLesson(PartI)1. ClimateandWeatherActivity

A. Havestudentsfilloutworksheetsasthevideoplays.B. Pausethevideoatappropriatepointstoallowstudentsenoughtimetowritedownanswers.Itmaybehelpfulto

havestudentsreadthequestionsbeforethevideo.https://www.youtube.com/watch?v=XirAUvS_29I2. ExploringEcosystems(Techintegration:GoogleCardboard)

A. Posethequestion,“WhatisthebiggestdesertonEarth?”ExplainthattheanswerisactuallyAntarctica,andthesecondlargestistheArcticdesert.Desertsaredefinedbythelevelofprecipitation,notthetemperature.ThethirdlargestdesertistheSahara,whichisveryhot.WewillexploretheseplaceswithGoogleCardboard.

B. ExplorevariousecosystemsonGoogleEarthorGoogleCardboard.ForGoogleEarth,typeinthefollowinglocationsastheyarewritteninthebrackets():(Antarctica),(Saharadesert)lookforphotosphereasthereisnostreetview,theAmazonrainforest(NovoAirao),andtheAfricansavannah(TheSavannahAfrica).

3. Trioramaactivity[SP2:DevelopingandUsingModels]

ForScienceFellows:BelowisalinktoaYouTubetutorialthatexplainshowtocreateatriorama:https://www.youtube.com/watch?v=vlDrGFBR8yw

A. Splittheclassintogroupsof4andtellthemthatwearemakingmodelsofdifferentecosystems.B. Eachstudentinthegroupwillmodeloneoffourecosystems:ahotdesert(liketheSahara),atropicalrainforest

(liketheAmazon),atemperateforest(likeHopkinsForest),andtundra(liketheArctic).C. Promptstudentstothinkabouttheplantsandanimalsthatwouldbepresentinthoseecosystemstogivethem

ideasforwhattodraw.

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D. Oncestudent’scompleteindividualecosystemsandfoldthemintotriangularprisms,havethemgluetogetherallgroupmember’secosystems.Instructionsfortrioramamodelscanbefoundinthebinder.

LessonClosing(PartI)Tellstudentstoopenuptheirlong-termmysterybooklets.DisplaytheimagesofredspruceandalgaeincludedontheCMCWebsitesothattheycansketchitontheirsheets.Theotherscanbesketchedfrompriorknowledge,butifnotfeelfreetolookthemup.Encouragestudentstofindoutmoreabouttheseanimalsandplants.Theycanaskorresearchathome.LocationAhasredsprucetreesandhawks.LocationBhasalgaeandturtles.

--EndofClassPeriod1--DuringtheLesson(PartII)1. GoogleEarthPhotosactivity

A. Pickfourecosystems,oneineachofthefourmajorclimatezones(asshownontheworksheet).B. Foreachecosystem,startzoomedoutonthemap,andthenclickonthephotosthatareattachedtothenameof

thelocation.Foreachecosystem,havethestudentswritedownthelocation(countryandcontinent)asthetitleintheirsciencejournalsandwhatclimateconditions(notweather)wouldhelpsustainthatecosystem(e.g.itshouldbewarmingeneral,thereshouldbelotsofprecipitation).

C. Thefollowingsuggestionsshouldbetypedintogooglemaps/earthasquoted:i. “Greenland,Denmark”(snowymountains)=arcticclimatezone

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ii. “NewEngland,USA”(pineforest)=temperateclimatezoneiii. “AmazonRainforest,Codajás-StateofAmazonas,Brazil”(tropicalrainforest)

=tropicalclimatezoneiv. “Saharadesert”(desert)=subtropicalclimatezone

2. ClimateZoneactivity

A. HandouttheClimateZonesworksheet.ProjectanimageofGoogleEarth(a3-dimensionalrepresentation),andhavestudentsidentifytheequatoranddrawitintheappropriatelocationontheworksheet(a2-dimensionalrepresentation).

B. ThenlocatetheecosystemsweexploredonGoogleEarth(veryzoomedoutview)ontheClimateZonesworksheetmapandmarktheirapproximatelocations.Studentsshoulddeterminethelocationofeachecosystemasaclass,andmarktheanswerontheirownworksheet.AScienceFellowshouldwalkaroundandensurethattheecosystemsarewithintheboundariesofthecorrectclimatezone.

C. Explainthatareasaroundtheworldwithsimilarlongtermclimateconditionsformclimatezones.DottedlinesonthesheetmarkfourmajorclimatezonesonEarth.Explainthatwewillusetheinformationwejustgatheredtofigureoutwhichclimatezoneisinwhichregion.

D. First,weneedtounderstandthelegend,whichindicatesfourclimatezonesthatwewilllabel.AskthestudentstothinkaboutNewEngland’sclimate(NorthAdams’climate):Howmanyseasonsdowehave?Whatareourseasonslike?ExplainthatNewEnglandhastemperateweather:define“temperate”ontheboardandhavestudentscopyintheirsciencejournalsoronthebackonclimatezoneworksheet.i. Temperate:withoutextremeclimateconditions(temperatureandprecipitation),generallyhasfour

seasons(winter,spring,summer,fall).E. Next,askstudentstothinkabouttheAmazonrainforest:isitevercoldthere?TheAmazonrainforestisa

tropicalrainforest,categorizedbyatropicalclimatezone.i. Tropical:extremeclimateconditions(alltwelvemonthshaveanaveragetemperatureof64 °F),generally

hastwoseasons(dryandwet).

TeachingTip Onlyclickonphotosthatshownaturalphenomenarelatedtotheintendedecosystem,tonotconfusestudents.

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F. Applynewandpriorknowledgeaboutthefourecosystemstocolorinthefourmajorclimatezones.i. Ifstudentsdonotunderstandthedistinctionbetweensubtropical(warm)and

tropical,elaboratethatwhilethetropicsarewarmandwet,the‘warm’climatezoneischaracterizedbywarmthanddryness.

3. ConceptualExtension A. Ingroups,discusstherelationshipbetweentheSunandtheEarth’spositionthatmightcauseclimatezones.B. Discussioncanbefacilitatedwithquestionsaboutthelocationoftheequator,itsprolongedexposuretomostof

theSun’sintensity,etc.Forexample:atropicalclimatezoneisdefinedbywarmtemperaturesallyeararound,andseasonsareonlydictatedbyprecipitation(dryandwet).Whatisitaboutthelocationofthetropicalclimatezonethatcausesthis(focusmainlyonthewarmtemperaturesyearround)?

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LessonClosing(PartII) (TalkScience:sentencestartersandarguingfromevidence)Beforepresentingtheclueforthisweek,havestudents(ingroupsof4-5)refertothecluesfrompreviouslessonsandpredicttheclimatezonesofthemysterylocations(cluesfromLesson4andPartIofLesson5shouldbehelpful).Encouragestudentstowritenotesaboutpreviouscluesinthespaceprovidedthatmighthelpthemfigureitout.Onceagrouphaschosentheclimatezoneforeachlocation,havethemwritedownarationaleastowhytheythink“Location___isinClimateZone______________.”Oncethegroupshavefinished,providethemwiththeaccurateclimatezones:LocationAisinthetemperateclimatezone,LocationBisin

thetropicalclimatezone.AssessmentInPartI,studentswillbeassessedbytheiranswerstotheclimateandweatherworksheet,theresultsofthematchinggameintheirsciencejournals,andanevaluationoftheirtrioramamodels.InPartII,theywillbeassessedontheClimateZoneworksheetandtheirparticipationindiscussion.

StudentThinkingAlert StudentsshouldconnecttheinformationthattheylearnedinLessons2and3towhattheylearnedtoday-locationsneartheequatorreceivethemostconsistentanddirectsunlight.

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Lesson6:UnderstandingOtherRegionsLessonBackgroundThislessontransitionstheunittoEssentialQuestion2bysynthesizinginformationfrompreviouslessons.Usingtheirknowledgeofclimatezonesfrompreviouslessons,studentsnowexplorethesocioculturalimplicationsofdifferentecosystemsandclimates.BecausestudentshavelearnedaboutthescientificprocessesthatdriveandconnecttoEarth’sclimate,theyarepushedtoconsiderhowclimateultimatelyimpactshumanlife,thusencouragingthemtothinkaboutthebidirectionalrelationshipbetweenhumansandtheEarth’sclimate.

ScienceContentBackground(forinstructors)Sincethisisatransitionlesson,allthesciencecontentfromprecedinglessonsapplies.Inaddition,StudentsshouldunderstandthathumansinteractwithEarth’sclimatebyconstructingwaystosurviveandthriveinresponsetofactorsintheirenvironmentandbyovercomingthebarriersposedbytheirenvironment.Peopleofdifferentregionsneedavarietyoftoolsandclothingtoprotectthemselvesfromtheweatherandclimateconditionstheyexperience.Thisalsoimpactstheproduce,naturalresources,jobs,andindustriesthatthepeopleofaregionhaveavailabletothem.OverviewoftheLessonInthislessonstudentsreferbackto,andintegrateinformationfrom,previouslessons.Theyreviewtheseconceptsthroughresearchandrole-playingactivitiesandareaccountablefortheknowledgeacquiredthroughouttheunit.Studentsexploredifferentregions(familiarandunfamiliar)andthelifestylesthatrevolvearoundtheseclimates.Insmallgroups,studentsresearchdifferentregions,exploringthesocioculturalaspectsofthatspecificregionasaproductofclimate.Socioculturalaspectsincludefood,clothing,agriculture,jobs,andanyothercategoriesthatarecriticaltohumanlife.Aftergatheringdataabouttheirparticularregion,studentswillhavetheopportunitytopresentandapplytheirresearchintheformofaworldmarketplacegame.

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FocusandSpiralStandard3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsoverayearvarybyregion.{Clarificationstatement:Examplesofinformationcanincludeclimatedata(averagetemperature,averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.{{Stateassessmentboundary:Anunderstandingofclimatechangeisnotexpectedinstateassessment.}NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)-Askingquestionsanddefiningproblems-Engaginginanargumentfromevidence-Constructingexplanations-Planningandcarryingoutinvestigations-Analyzingandinterpretingdata-Obtaining,evaluating,andcommunicatinginformation

ESS2.D:WeatherandClimateScientistsrecordpatternsoftheweatheracrossdifferenttimesandareassothattheycanmakepredictionsaboutwhatkindofweathermighthappennext(3-ESS2-1)Climatedescribesarangeofanarea’stypicalweatherconditionsandtheextenttowhichthoseconditionsvaryoveryears(3-ESS2-2)

CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)InfluenceofEngineering,Technology,andScienceonSocietyandtheNaturalWorld:Engineersimproveexistingtechnologiesordevelopnewonestoincreasetheirbenefits,decreaseknownrisks,andmeetsocietaldemands(3-ESS3-1)

LearningTargets

1. Icanexplainhowweatherandclimateindifferentregionsshapethelifestylesandculturesofthepeoplethatlivethere.2. Icancollectdatatosupportaclaim.3. Icandescribedifferentperspectivesandexperiencesacrosstheglobeinrelationtotheclimate’simpact.

AssessmentScienceJournalworksheets

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TargetedAcademicLanguageTier2:culture,lifestyle,ecosystemsTier3:agriculture

RESOURCESANDMATERIALSQuantity Item Source

http://www.earthcam.com/network/ CMCWebsite1perclass Computerprojector

ClassroomTeacher

10pergroup Countingchips Bin1perstudent ScienceJournals ClassroomTeacher1perstudent WorldMarketMerchantWorksheet(2pagestotal) Binder1perstudent WorldMarketShopperWorksheet(2pagestotal) Binder**Itemsinboldshouldbereturnedforusenextyear**

LESSONDETAILSLessonOpening/Activator

(TalkScience:wholeclassdiscussionstrategies.)Probingquestions:Whatifyoulivedinadifferentregion?Whatwouldyouseeornotseethere?Whatkindsofthingswouldyoufeel,hear,smell,andtaste?Explainthatsincedifferentregionshavedifferentweatherandclimate,peoplehavedifferenteverydayexperiences.Askstudentsifanyonehasbeenoutsideourclimateregionandwhatkindofdifferencestheyobservedandfelt?Noteifanyonehasbeendrasticallyoutofthecurrentclimateregion(forexample,fromNewEnglandstatestoSouthAmerica).

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DuringtheLesson1. EcosystemsReview

A. Ifneeded,playashortvideoforeachoftheecosystemsbeforetheactuallessonwitha4sensesreflection.

B. Afterasmalldiscussionaboutexperiencesindifferentregions,projectalistofdifferentecosystemswithcorrespondingimages.

C. Thisisashortreview/refresherofwhatwaspreviouslylearned.http://www.earthcam.com/network/2. WorldMarketplaceGame[SP8:Obtaining,evaluating,andcommunicatinginformation]

A. Dividetheclassintosmallgroupsofthreeorfour,andhavethempickalocationfromalist.Thelistshouldincludethefollowingecosystems(thespecificlocationsareuptotheteacher’spreference.Thesearejustpotentialexamples):i. Tundra:Alaskaii. Desert:ArizonaorEgyptiii. TropicalRainforest:Braziliv. BorealForest:Canadav. DeciduousForest:Korea,Japan,orChinavi. Grassland:Zimbabwe

B. Studentswillusebooksandtheinternettoresearchrelevantplantsandanimals(onesthatareraised,grown,orconsumed),typesofclothingpeoplewear(accessiblematerials),andanyspecifictools/objectsforactivitiesortoprepareforaweathercondition.

Linksforresearch:1. Tundra:Alaska-

https://sciencing.com/plants-animals-alaska-6122269.htmlhttps://weather.com/weather/tenday/l/Anchorage+AK+USAK0012:1:US

2. Desert:Egypthttps://weather.com/weather/tenday/l/Cairo+Egypt+EGXX0004:1:EGhttps://www.britannica.com/place/Egypt/Plant-and-animal-life

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3. TropicalRainforest:Brazil

http://lntreasures.com/brazil.html

https://weather.com/weather/tenday/l/Rio+de+Janeiro+Brazil+BRXX0201:1:BR4. BorealForest:Canada

https://sciencing.com/plants-animals-canada-6755090.htmlhttps://weather.com/weather/tenday/l/Toronto+Canada+CAXX0504:1:CA

5. DeciduousForest:Japanhttps://weather.com/weather/tenday/l/Tokyo+Japan+JAXX0085:1:JAhttp://lntreasures.com/japan.html

6. Grassland:Zimbabwehttps://weather.com/weather/tenday/l/Harare+Zimbabwe+ZIXX0004:1:ZIhttp://lntreasures.com/zimbabwe.html

C. Recordinformationinthe“MerchantWorksheet”(informationisrevisitedlaterinthegame).Promptgroupstoconsider,“Whatdoesthisinformationinformusaboutyourregion’sclimate?Whatmaterialsareaccessibleduringcertainseasons?Forexample,wouldweneedtobuyandsellsnowbootsintropicalrainforests?”

D. Afterstudentsgatherenoughinformation,setupastationforeachgrouparoundtheclassroom.Eachstationrepresentsamarketstandfromthegroup’sregion.Studentssetupmarketstandswithdrawnandlabeledpicturesofitemsthattheypreviouslyresearched(fruits,vegetables,livestock,tools,clothing,etc.).Eachgroupreceives10countingchips(forsimplicity,everycolorwillhavethesamevalue).Groupsshouldlistpricesforeachitem,rangingfrom1chipto5chips.

E. Assignhalfthegroupsasmerchantsinthefirstround,andtheotherhalfasshoppers.Merchantswillprovideinformationabouttheirproductstotheircustomers,usingtheresearchfromtheir“MerchantWorksheet.”Sellyouritemsbyexplainingwhycustomersneedcertainitemsiftheyweretovisityourregion.Eachshopper/pairofshoppersbuysgoodsfromeverymarketstand,sobesuretowarnthemtobeeconomicalwiththeirchips.Ifthereareleftoverchips,revisitafavoritemarket.Shoppersalsofilloutaworksheetastheyshopandmerchantsteachthemabouttheirgoods.

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F. Afterthefirstgroupofshoppershasvisitedeverystand(about10-15minutes),movetothesecondroundandswitchroles.

G. Inthesamegroups,studentscansharewhatkindsofitemstheyboughtfromeachmarketandwhyitwasimportanttobuythem.Askquestionssuchas:Whydoyouthinkthemarketsoldsuchitems?CouldanitemfromMarketStandAbesoldfromMarketStandB?

Extension:1. Student-basedInterview:Ifpossible,connectwithaschoolfromasignificantlydifferentregionandarrangeaSkypecall

(orsimilar)withtheclass.Letstudentspreparequestionstoasktotheotherstudents.Examplesinclude:Whatistheweatherliketheretoday?Whatareyourseasonslike?Alsohavethemnoteanydifferencestheymightobserve.Whataretheywearing?

a. Alternative:IfdifficulttoconnectwithaschoolorarrangeaSkypecall,findalocalperson(fromanearbycollege,aschoolstaff,communityworker,etc.)whohaslivedinadifferentecosystemforsomepartofhisorherlifeandleadastudent-basedinterviewwiththatperson.

LessonClosingLong-TermMysteryHint:MysteryLocationA(Mt.Greylock):You’llneedsnowbootstogohereinthewinter!MysteryLocationB(TheGreatBarrierReef):You’llneedswimmingsuitstogohere!AssessmentStudents’knowledgewillbeassessedbyexaminingwhattheywroteintheworksheetsintheirScienceJournals.

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Lesson7:ARecipefor(Natural)DisasterLessonBackgroundThiswillbeatwo-partlesson.ClassroomTeachersandScienceFellowsmaydecidehowtoteachthelesson,butwehaveincludedasuggestedbreakingplace.)Thislessonallowsstudentstoexploredifferenttypesofnaturaldisasters,theirimpacts,andhowcommunitiesrespondtoandprepareforsevereweatherandnaturaldisasters.ScienceBackgroundContent(forinstructors)Themainnaturaldisastersfeaturedinthislessonarehurricanes,tornadoes,landslides,andflooding.Thesecondpartofthislessonallowsstudentstothinkcriticallyaboutwayspeopleandcommunitiesrespondtoandpreventnaturaldisasterdamage.Hurricane:startastropicalstormsthatformoverwarmoceanwaters,becomestormswithhighwindsandheavyrain.Tornado:fastspinningcolumnofairstretchingfromthunderstormclouddowntoEarth’ssurface,characterizedbyextremewinds.Landslide:occurwhenaslopebecomesunstable,andmass(canberocks,debris,etc.)movesdowntheslopeundertheforceofgravity.Flood:aftermathwhentoomuchrainforcesrivers,streams,andlakestooverflow,sendingwaterwhereitdoesn’tbelong.Notincludedinourlessonareearthquakes,whicharenotcoveredbecausetheyarerelatedmoreto(andcausedby)tectonicmovementsratherthanclimaticandweatherconditions.

OverviewoftheLessonInthislesson,studentsexplorethecausesandeffectsofnaturaldisastersthroughcriticalthinking,models,androleplaying.Theyconstructandobservetheirownmodelsofcertaindisastersandroleplayanaturaldisasterscenariotogivethemabetterunderstandingoftheeffectsofthesedisasters.FocusandSpiralStandard(s)3-ESS3-1.Evaluatethemeritofdesignsolutionthatreducesthedamagecausedbyweather.{Clarificationstatement:Examplesofdesignsolutionstoreduceweather-relateddamagecouldincludeabarriertopreventflooding,awind-resistantroof,andalightningrod.}4-ESS3-2.Evaluatedifferentsolutionstoreducetheimpactsofanaturaleventsuchasanearthquake,blizzardorfloodon

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humans*{Clarificationstatement:Examplesandsolutionscouldincludeanearthquake-resistantbuildingoraconstructedwetlandtomediateflooding.}NGSSAlignment

Science/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)-Askingquestionsanddefiningproblems-Planningandcarryingoutinvestigations-Analyzingandinterpretingdata-Constructingexplanationsanddesigningsolutions-Obtaining,evaluating,andcommunicatinginformation

ESS3.B:NaturalHazardsAvarietyofnaturalhazardsresultfromnaturalprocesses.Humanscannoteliminatenaturalhazards,butcantakestepstoreducetheirimpacts(3-ESS3-1)

CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)InfluenceofEngineering,Technology,andScienceonSocietyandtheNaturalWorld:Engineersimproveexistingtechnologiesordevelopnewonestoincreasetheirbenefits,decreaseknownrisks,andmeetsocietaldemands(3-ESS3-1)

LearningTargets

1. Icanidentifyanddescribenaturaldisasters,theprocessesbywhichtheyoccur,andwhytheyoccurinspecificlocations.

2. Icanexplainandcompareimpact(magnitude).3. Icandescribeandassesshowregionsrespondtoandpreparefordisasters.

Assessment(s)ParticipationinroleplayingactivityandreviewofsciencejournalsTargetedAcademicLanguageTier2:naturaldisaster,hurricane,tornado,landslide,flood(flashflood)

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RESOURCESANDMATERIALS

Quantity Item Source1perstudent ScienceJournal ClassroomTeacher Naturaldisasterpicture+clip

https://www.youtube.com/watch?v=-dfi0b6w0JYCMCWebsite

SevereWeatherCrashCoursehttps://www.youtube.com/watch?v=QVZExLO0MWA

CMCWebsite

AsNeeded Variousartssupplies(constructionpaper,pipecleaners,pompoms,glue,markers) BinandClassroomTeacher

**Itemsinboldshouldbereturnedforusenextyear**

LESSONDETAILSLessonOpening/Activator

Anchorimage:Projectthe“NaturalDisasterPicture”andaskstudentswhattheyseeandwhattheythinkisgoingon?Howdidthishappen?Confusionandquestionsaregood!Trytosparkintrigue,butexplanations/answersarenotnecessaryyet.Next,showthenaturaldisasterclip(https://www.youtube.com/watch?v=-dfi0b6w0JY)andpromptdiscussionaboutwhatstudentsobserveandhowitrelatestothepicturebefore.WatchthevideoasecondtimeandaskthestudentstomatchwhattheyseewithallapplicablewordsfromthewordbankthattheClassroomTeacherorScienceFellowwritesontheboard(Hurricanes,Tornadoes,Landslide,Floods(flashfloods),Rain,Snow,Wind;boldwordsarethecorrectmatchanswers).Basedonthedefinitionofeachnaturaldisastercreateavisualrepresentation.Discussanswersandprovidefactstobattleanymisconceptions.Thenpromptadiscussiononhowtheycouldpreventorreducethedamageofthedisastershown.

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DuringtheLesson

1. TornadoinaBottle:Thisactivityallowsstudentstoconstructtheirownmodelofatornado,andextrapolateimportantfeatures/characteristicsofthisnaturaldisaster.Activityadaptedfromhttp://www.sciencekids.co.nz/experiments/makeatornado.html.Preparationrequiresfillingeachgroup’sbottlewithwater(unlessstudentsareabletofilltheirownbottles,atteacher’sdiscretion)

A. Dividetheclassintogroupsof3-4.Distributeaplasticbottle(withthetopon)about¾fullwithwatertoeachgroup,alongwithasmallcupofdishsoap,andasmallcupofglitter.

B. Instructeachgrouptouncapthebottleandputafewdropsofdishsoapin,andsprinkleafewpinchesofglitterin.Putthecapbackontightly.

C. Eachgroupcanthenhaveonestudent(andtaketurnssoeachstudenthastheopportunity)turnthebottleupsidedownandholditbytheneck.Quicklyspinthebottleinacircularmotionforafewseconds,thenpauseandwatchtoseeifyoucanobserveaminitornadoforming.

D. Aftereachstudenthastheopportunitytotryactivatingthetornado,askthemtothink-pair-shareintheirgroupsaboutthesequestions:Whatdoweseeinthebottle?Encouragespecificobservations(notjust“Iseeatornado,”or“Iseeglitter”),andpromptwithquestions“Whydoyouthinkit’satornado?Whatistheglitterdoing/howisitmoving?Whatdoestheglitterrepresent?”(Targetedvocabularyshouldattempttoincludefunnelorvortexshaped.)

2.CrashCourseA. Watchthecrashcourseonsevereweather(https://www.youtube.com/watch?v=QVZExLO0MWA)andencourage

studentstotakenotes.B. DrawaquadVenndiagram(examplebelow)ontheboardandaskstudentstofollowalonginsciencejournals.C. Labeleachcirclewithonenaturaldisaster(Hurricanes,Tornadoes,Landslide,Floods)andaskstudentsforshared

anddifferentcharacteristicsofeachdisaster.D. Focusonstudents’input,butScienceFellowsandClassroomTeachermightguidefurtherthinking.Theexampleto

therightconveysknowledgethatstudentsshouldbeabletoexplainfromprioractivities.

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Extension:Createafoldablewiththenaturaldisastersandthecriteriagivenfromthevideo.Thestudentsworkingroupstodiscussandplacetheinformationtothenaturaldisaster.Endthesessionbylettingthestudentsworkina“community”wherethereisanalertforaparticulardisaster.Thestudentswillbetheleadersandcreateaplanfortheircommunitytostaysafe.LongTermMystery:HavestudentstakeouttheirLongTermMysterybookletsandgetreadytoreceiveLesson8’sclue:LocationAwasaffectedbyalandslideintheyear1990.LocationBismostlikelytobeaffectedbyahurricaneduetoitslocation.(Thisisthesuggestedbreakingpointinthelesson.)ResponseandPreparationFacilitateintroductoryconversationabouthowhumansocietieshavelearnedtorespondtoandpreparefornaturaldisastersgivenwhatwasjustlearnedaboutthefeaturesandimpactsofnaturaldisasters.Postfourpiecesofchartpaperwitheachnaturaldisasteratthetop(1perpaper)aroundtheroom;studentswalkaroundandwritedownanswersforhowpeoplemightrespondtoorprepareforthedifferentnaturaldisasters.TeachersandSciencefellowscanstandnearpaperandpromptstudentswithquestions.

Happensincoastalareas Causedbychangingairpressure Happensmostlyintemperateandwarm

Normallywillhappen onflatland Haslowairpressureinthemiddleandcreatesafunnelshape Happensmostlyintemperateandwarmclimates

Canbepredicted Normallywillhappeninlowelevation

Cannotbeeasilypredicted Happensonmountains

High Wind

Rain

Canhappeninanyclim

atezone

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SurvivalGameStudentshavetheopportunitytoactoutandthinkcriticallyabouthowtheywouldrespondtonaturaldisasters.This3-dayresponsescenarioisbrokendown:howweprepare(day1),howwereactandrespond(day2)andhowwemoveforwardandprevent(day3).

1. Dividestudentsinto5teamsandassignthemalocationandnaturaldisaster-Oklahoma,tornadoes-Florida,hurricanes-Virginia,flooding-California,landslides-NorthAdams,tobeusedasacomparison,or“control,”weatherlocation

2.Studentsroleplayeventsfor3daysconcerningtheirlocationandnaturaldisaster.

Day1:Deliverweatherpredictiontoeachgroup(impendingnaturaldisasterandextremeweather)andaskstudentsintheirteamstodecidehowtoprepareindividuallyandasacommunity.Brainstormalist(onestudentcanscribe)intheirgroupsandchooseoneitemofpreparationfromthelisttofurtherdevelop.Construct/representacreativemodelofchosenitem(actitout,buildoutofmaterials).ClassroomTeachersandScienceFellowscirculateandguidebrainstormingprocess.Ideastoinclude:howdowepreparehouses,food,decisiontoleaveorstay,etc.Havestudentsconnecteachoptiontheycomeupwithtothefeatureoftheirspecificnaturaldisaster(i.e.hurricaneshavestrongwinds,soI’mgoingtoboardupthewindowsonmyhouse).Next,havegroupsshareorpresentthecreativemodelandexplainrationaleforpreparation.ClassroomTeacherorScienceFellowcanwriteanswersontheboardtocollectallinoneplaceforreference.

Day2: (ScienceTalk:usesmallgroupdiscussionstrategies.)Thepredictedweatherisnowhappening!Askgroupstodiscusswhatishappeningtothemindividuallyandwhatishappeningtotheirphysicalcommunity.Thenhavegroupsshareandhavetheteacherorsciencefellowwriteanswersontheboardtocollectthemallinoneplaceforallgroupstoreference.

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Day3:Extremeweatherhasended,askgroupstodiscusswhathappenedandhowtheyplanonfixingdamageonindividualandcommunitylevels.Howisourcommunitygoingtodealwiththeaftermath,andhowwouldweprepareforthisnaturaldisasterinthefuture?Again,havestudentschooseoneoptionfromtheirlisttorepresentcreatively(eitherbuildoractout,etc.)infrontoftheclass.HavetheClassroomTeacherorScienceFellowwriteanswersontheboardtocollectforreference.

LessonClosing: (TalkScience:useguidingquestionsinwholeclassdiscussiontoconnectideas.)Leadstudentsinaclosingdiscussionaboutwhattheyfoundinterestingorchallengingabouttheroleplayingactivity.TiethisbacktotopicscoveredinLesson4concerningwhyitisimportanttomakepredictionsaboutweather.Howlongdoyouthinkisanadequatetimetoprepare?Whatifyoudidnothavethatmuchtimetoprepare?AssessmentParticipationinroleplayingactivityandreviewofsciencejournals

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Lesson8:EarthDoctorsLessonBackgroundInpreviouslessons,studentslearnedhowclimateshapeshumanlifeandhowhumanssurvive,thrive,andprotectthemselvesagainstclimate.Inthislesson,studentswillshifttheperspectiveandlearnhowhumansimpactclimate.Thislessondevelopsawarenessofhowouractionsimpacttheclimateandinstillresponsibilitytoprotectourenvironmentandclimate.

ScienceContentBackground(forinstructors)Thislessonfocusesonthegreenhouseeffectandwaysthatstudentscanworktomaketheircarbonfootprintsmaller.Thegreenhouseeffectissimilartohowagardengreenhouseworks.AgreenhouseholdsintheheatfromtheSuntohelpplantsgrowallyearround.Itworksbylettinginsunlightbuttrappingheat(intheformofinfraredradiation).Similarly,gassesinouratmospheretrapheatbutletinsunlight,causingtheEarth’saveragetemperaturetobemuchhigherthanitwouldbeotherwise.Oneoftheprimaryheat-trappinggassesisCarbonDioxide.Ourcarbonfootprintistheamountofcarbonemissions(especiallyCarbonDioxide)producedfromourconsumptionneeds(includingalloftheenergyneededtoproduceourfoodandproducts,andtheenergywedirectlyconsumetopowerourcars,houses,etc.).Examplesofwaystoreduceourcarbonfootprintorenergyconsumptioninclude:rememberingtoturnoffallelectronicsandlightswhennotinuse,usingpublicinsteadofprivatetransportation,eatinglocallyproducedfoodandlessmeatanddairy,wastinglesswater,reusingandrecyclingproducts,andinsulatingourhomes.

OverviewoftheLessonThislessonstartswithabriefdiscussiononthefateofourtrash,whichlaterconnectstotheideaofhumanbehaviorimpactingclimate.Studentsexploreexamplesofhumanactionsthroughanonlinescavengerhuntactivityandcorrespondingworksheets.Then,studentswillbecomeEarthDoctorstofindsolutionstoprotecttheenvironment/climate.FocusandSpiralStandard5-ESS3-1.ObtainandcombineinformationaboutwayscommunitiesreducehumanimpactontheEarth’sresourcesandenvironmentbychanginganagricultural,industrial,orcommunitypracticeorprocess.

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NGSSAlignmentScience/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)-Askingquestionsanddefiningproblems-Planningandcarryingoutinvestigations-Constructingexplanationsanddesigningsolutions-Engaginginanargumentfromevidence-Obtaining,evaluating,andcommunicatinginformation

LS2.C:EcosystemDynamics,Functioning,andResilienceWhentheenvironmentchangesinwaysthataffectaplace’sphysicalcharacteristics,temperature,oravailabilityofresources,someorganismssurviveandreproduce,othersmovetonewlocations,yetothersmoveintothetransformedenvironment,andsomedie.(3-LS4-4)

CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)InfluenceofEngineering,Technology,andScienceonSocietyandtheNaturalWorld:Engineersimproveexistingtechnologiesordevelopnewonestoincreasetheirbenefits,decreaseknownrisks,andmeetsocietaldemands(3-ESS3-1)

LearningTargets

1. Icanexplainanddescribehowhumansaffecttheclimate.2. Icandescribewaystobettertheenvironmentandclimate.

AssessmentReviewworksheetsTargetedAcademicLanguageTier1:RecycleTier2:ClimateChange,SolarEnergyTier3:GreenhouseGasses,CarbonFootprint,Deforestation

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RESOURCESANDMATERIALS

Quantity Item Source1perclass Computerprojector ClassroomTeacher ToyStoryCliphttps://www.youtube.com/watch?v=QtQPmDjuA5s CMCWebsite1perstudent ClassroomLaptops ClassroomTeacher1pergroup PrinterPaper ClassroomTeacher1setpergroup Coloredpencils/markers ClassroomTeacher1perstudent ScavengerHuntWorksheet(3pagestotal) Binder**Itemsinboldshouldbereturnedforusenextyear**

LESSONDETAILSLessonOpening/ActivatorAsk,“Wheredoesourtrashgo?”Ifstudentsanswer“trashcan,”prompttothinkfurtherbyasking,“Wheredoesitgoafterwethrowitawayinthetrashcan?”Next,asavisualandrelatableexample,showtheYouTubeclipfromthemovieToyStory3(https://www.youtube.com/watch?v=QtQPmDjuA5s).Brieflydiscusswhathappenedintheclip:wheredidthescenetakeplace?Whatdidyounoticeaboutthelocation?Importantpoints:“Thetoyswereinthefurnace”and“Thetrashwasbeingburned.”Explainthatalotofourtrashistakentoanincinerator/furnaceandburned.Askthemthefollowingquestions:

- Isburningeveryone’strashgoodorbad?Why?- Whereelsedoesourtrashendup?(answersincludetheriver,lake,ocean,landfill,underground,etc.)

DuringtheLesson

1. TrashTalkA. Haveashortdiscussionwiththestudentsabouttheimpactofourtrashontheenvironment.Weoftenhandle

trashirresponsibly,whichmakestheEarthsick!

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B. Ask,“Howdowetellifsomeoneissick?”Wemightcheckifthatpersonhasafever.Similarly,wecantellthattheEarthissickbylookingattheglobaltemperature.

C. Introducetheconceptofclimatechange:Notonlydoestheclimateaffectoureverydaylives,we,ashumans,alsohaveagreatimpactontheclimatebythethingswedo.Theglobaltemperatureisrisingbecauseofhumanactivity.

2.ScavengerHunt

A. Studentspairuptoengageinanonlinescavengerhuntonlaptops,visitingClimateKidswebsite(climatekids.nasa.gov).

B. Distributethescavengerhuntworksheetsandallowstudentstoexplorethewebsiteabouttheclimateandclimatechange.

C. Afterstudentsfinish,reviewworksheetasaclass.Discusswaysthatstudentscanhelpwithglobalwarming.

D. Whengivinganswersabouthowhumansarethemaincauseofglobalwarming,discussingreaterdetailtheideasofourcarbonfootprintanddeforestation(mayrequirepreparationbytheClassroomTeacherand/orScienceFellows).

3.EarthDoctorCollage[SP6:Constructingexplanationsanddesigningsolutions]

A. WearenowEarthDoctorsandwillbrainstormwaystomaketheEarthfeelbetter(Optional:handouttoydoctorequipmentforstudentstowear,andtheClassroomTeacherandScienceFellowscanbethepatient--Earth).

B. Asaclass,havestudentscomeupwithseveralideasandrecordontheboard.Examples:rideabikeinsteadofacar,recycle,usesolar/wind/waterenergy,turnoffelectricitywhennotinuse,usereusablewaterbottles,etc.

C. Dividetheclassintogroupsof3-4,andinstructeachgrouptopickasolutionfromtheboardanddrawapicturewithacaption.Thefinisheddrawingsshouldbehungonaclassroomwalllabeled“AsEarthDoctors,WeCan…”

TeachingTip Gamesfeaturedonthiswebsitemightdistractstudentsfromtask.

TeachingTip Captionsforthepicturesshouldbefullsentencesthatfeaturetheproblem,thesolution(s),andtheWHYorHOW

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Optional:Createachartlistingthesolutionsthatthestudentscameupwith,andthroughouttheyeareverytimesomeoneannouncesthatheorshehasdonesomethingonthesolutionchart,putastickeronthechart.

Extension*Willneedtobeplannedinadvance*

1. Fieldtriptoalocalgreenhousewherestudentscanexploreandasktheworkersquestionstheymayhaveabouthowgreenhouseswork,andhowthisrelatestotheEarth.

2. FieldtriptoHopkinsForesttoexploretheimpactsofdeforestation.

LessonClosingGivestudentsanotherhintabouttheirlongtermmysterylocationtorecordintheirbooklets.Thehintsare:LocationA(Mt.Greylock)hasbeenchangedoverthecourseofmanyyearsduetoweatheringanderosion.Naturaldisastershavecausedafacetoappearonit.LocationB(TheGreatBarrierReef)hasbeenchangedduetocoalpollution,whichisbleachingandkillingthesurroundingwildlife.

AssessmentReviewworksheets.

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Lesson9:ThinkGlobal,ActLocal

LessonBackgroundThiswillbeatwo-partlesson.ClassroomTeachersandScienceFellowsmaydecidehowtosplitthelesson,butwehaveincludedasuggestedbreakingpoint.Synthesizinginformationfrompreviouslessons,Lesson10seekstoassessstudents’understandingandelaborateonthematerialbyinterviewinglocalbusinessesandconstructingmodelsofatownthatcanprepareforandrespondtoclimateconditions.Studentsconstructcausalexplanationsthatdrawonconceptualframeworksfrompreviouslessons.StudentsshouldbeabletocohesivelyanswerEssentialQuestions1and2(butthislessonfocusesonEQ2).HumansinteractwithEarth’sclimatebyconstructingwaystosurviveandthriveinresponsetofactorsintheirenvironmentandbyovercomingthebarriersposedbytheirenvironment.Humanactivityalsocontributestochangesinglobalconditions(suchastemperature)overlongperiodsoftime,whichinturnleadstochangesinglobalclimate.ScienceContentBackground(forinstructors)Sincethisisaevaluatelessonallthesciencecontentfromeveryprecedinglessonapplies. OverviewoftheLesson

Thislessonrequiresstudentstointerviewlocalbusinessesorindividuals.ContactshouldbemadepriortotheteachingofPart1ofthislessontoprepareinstructors,students,andintervieweesfortheirassignments.Inthislesson,studentswillbereferringtoinformationfrompreviouslessonstoshowtheirmasteryoftheconcepts.Theywillbereviewingtheseconceptsthroughphysicalmodelsandexplanations.Theywillbegiventimetointerviewandlearnfromlocalbusinessesbeforecreatingtheirowntown.

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FocusStandard(s) 3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsoverayearvarybyregion.{Clarificationstatement:Examplesofinformationcanincludeclimatedata(averagetemperature,averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.}{Stateassessmentboundary:Anunderstandingofclimatechangeisnotexpectedinstateassessment.} 3-ESS3-1.Evaluatethemeritofdesignsolutionthatreducesthedamagecausedbyweather.{Clarificationstatement:Examplesofdesignsolutionstoreduceweather-relateddamagecouldincludeabarriertopreventflooding,awind-resistantroof,andalightningrod.} NGSSAlignment Science/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)

-Askingquestionsanddefiningproblems -Constructingexplanationsanddesigningsolutions -Engaginginanargumentfromevidence -Obtaining,evaluating,andcommunicatinginformation

LS2.C:EcosystemDynamics,Functioning,andResilience Whentheenvironmentchangesinwaysthataffectaplace’sphysicalcharacteristics,temperature,oravailabilityofresources,someorganismssurviveandreproduce,othersmovetonewlocations,yetothersmoveintothetransformedenvironment,andsomedie.(3-LS4-4)

InfluenceofEngineering,Technology,andScienceonSocietyandtheNaturalWorld: Engineersimproveexistingtechnologiesordevelopnewonestoincreasetheirbenefits,decreaseknownrisks,andmeetsocietaldemands(3-ESS3-1)

LearningTargets

1. Icanexplainthecoredetailsofthelessonsandcanconstructthoughtfulquestionsaboutthetopics.2. IcanelaborateandgenerateanswerstoquestionsabouthowhumansrespondtoandinteractwithEarth’sclimate.

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RESOURCESANDMATERIALS

Quantity Item Source

Markers ClassroomTeacher

Coloredpencils ClassroomTeacher 1perstudent Whiteprinterpaper ClassroomTeacher 1perstudent MyTownWorksheet(3pagestotal) Binder 1pack Constructionpaper Bin

112pack Gluesticks ClassroomTeacher 2pergroup Scissors ClassroomTeacher **Itemsinboldshouldbereturnedforusenextyear** LESSONDETAILS

LessonOpening/Activator Engagestudents’priorknowledgebycreatingamindmapofthebigideasthatweretalkedaboutinpreviouslessons.Studentsareencouragedtofindtheconnectionsbetweenallthemainideasandconcepts(regions,naturaldisasters,andoureffectsonclimate)thattheylearnedpreviouslyastheydrawouttheirmaps.Supplythestudentswithmarkersandorcoloredpencilssotheycancolorcoordinateconnectingideas,iftheywish.Thisshouldtakearound10minutes.

TeachingTip Mindmaps(sometimescalledconceptmaps)areagoodwayforstudentstovisualizetheirideas,andtheconnectionsbetweenthoseideas.Toconnectideas,theycanusearrowstoindicatedirection,aswellastexttoindicatetherelationship(e.g.,“leadsto”or“resultsfrom”).

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DuringtheLesson Part1:

1. ReadGreatGarbagePatcha. Discussthemainideaandsupportingdetailstoenhancebackgroundknowledge.b. Consideraskingthefollowingdiscussionquestions:

i. Lookcloselyatthepicturesprintedonpage21.1. DescribethecontentsofthejarMiriamisholding.2. Explainwhythemussels,crabs,andseaanemonesarelivingonapieceofdiscardedrope.

ii. Lookcloselyatthepictureprintedonpage37.1. Observethetinyfishandplasticpiecescapturedtogetherinthecleardish.2. Tellhowthispicturemakesyoufeel.3. Doyouthinkthetinyfishhavebeenaffectedbytheplastic?Explainhow.

iii. Lookcloselyatthepictureprintedonpage40.1. Comparethepictureofthelitteredbeachwiththeonefeaturedontheleft.Inwhatwaysarethetwo

thesame?Contrastthepictures.c. Timepermitting,watchthefollowingvideo:https://www.youtube.com/watch?v=VT4GUhWMjog(7:38min)

i. VideoOverview:InsidethePlasticVortex:AgroundbreakingScrippsvoyageledbystudentshelpsdefinearisingenvironmentalthreat.

2. Brainstorm!A. Explainthatwewillinterviewlocalbusinessestocollectdataforthefinalproject.Conveydetailsofthefinalproject,sostudentsunderstandtheexpectations(directionsforfinalprojectfoundinPart2).B. Facilitateadiscussionabouteffectiveinterviewingandquestionsrelatedtocontentfrompreviouslessons.Worktogethertobrainstormalistofinterviewquestionsthatfocusonimportantfactorsofclimate.

Questionsmayinclude: ● Whatdoesyourbusinessdo? ● Howdoesyourbusinesschangeorrespondtothechangingseasonsandweather?Doyouhavetodoanything

differentlyfromwintertosummer? ● Wouldyourbusinesssurvive/thriveinadifferentclimatezone? ● Whatnaturalresourcesdoesyourbusinessuse?Howdoyougetthem? ● Doyoutakepartinanymeasuresto“gogreen”orreduceyoureffectontheEarth’sclimate?Ifso,whatarethey?

1. InterviewLocalBusinesses[SP8:Obtaining,evaluating,andcommunicatinginformation]

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Allowthestudentstointerviewlocalpeoplearoundthecommunityonhowtheirbusinessaffects the environment in both good and badways and on someways their business isreducing their negative impact. (Interviewee examples: Local museum, Schools, Colleges,Localbusinesses)

● Classroom Teacher & Science Fellows: Please record and/or take notes on theinterviewanswers.

LessonClosing Tellstudentsthatthiswillbetheirlastcluefortheirlongtermmysteries.ForLocationA,thecluewillbeParkRangersandforLocationB,theclueisSnorkelingbusiness.Havestudentsconsidertheimpactsonthelocalenvironmentsthatthesetypesofbusinessesmighthave.Itmaybehelpfultotellthemwhateachbusiness/organizationdoes,e.g.parkrangerspatrolthegroundsandmakesurethatcampers,hikers,andothervisitorsarefollowingtherules-includingfiresafetyregulations;andsnorkelinganddivingbusinessesallowtouriststocomeandgetclosetolotsoffishandotherseacreatures.Withthisinformation,thestudentscanthinkabouthowthesejobsmayimpactthelocalenvironment,positivelyornegatively. LessonPart2:

1. FinalProject:Createyourowntown[SP2:Developingandusingmodels]Thisprojectprovidesstudentstheopportunitytoapplyknowledgeaboutenvironmentalimpactsonatownandconsiderationsatownmusttakeintoaccounttoreduceimpactonclimatechange.

a. Encouragestudentstoconsidertheideaspresentedbythelocalbusinessinterviewsandevaluatewhattheythoughtwerethemosteffectiveplans.Theyshouldalsofeelfreetocomeupwithmodificationsorgenerateideasoftheirown.

b. Providestudentswiththeartsuppliesneeded/desiredfortheconstructionoftheirtown.Itemssuchasconstructionpaper,printerpaper,markers/coloredpencils,scissorsandgluessticksshouldbedistributedtoeachgroup.Allowupto20minutesforthestudentstocreateavisualofthetown.

c. PassouttheTownWorksheetthatthestudentscanfillout.Thisworksheetwillhavespaceforthestudentstotakedowntheimportantfactorsofhowtheirtownruns.Thingssuchashowtheycombatclimatechange,whatproductstheysell,andhowweatherandclimateaffectsthemshouldbewrittendown.

d. (ScienceTalk:oralpresentationsshouldbestructuredsostudentscanpracticepresentationskillsandtheirpeerscanpracticeactivelistening.)Onceeveryoneisdonewiththeprojects,allowforstudentstopresenttheirtownseitherfromtheirdesksorinfrontoftheclass.Theclassisencouragedtoaskthepresentersanyquestions

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theymighthave.Ifthestudentswhoarepresentingarehavingtroubleansweringanyquestions,theClassroomTeacherandScienceFellowsarewelcometojumpinandhelpthem.

LessonClosing (FinalpageintheirMysterybooklets.)Havestudentstakeacoupleguessesastowhattheythinkthemysterylocationsare;askstudentswhytheyguessedwhattheydid.Ifastudentguessescorrectlyandhasn’ttoldanyoftheirpeers,rewardthemwithcandyorsmalltoy/trinket.Ifnooneguessescorrectly,revealtotheclass(withdrumroll)thatthemysterylocationswereMountGreylock(locationA)andtheGreatBarrierReef(locationB). Assessment Reviewstudents’mindmapsandfinalprojects-boththeirparticipationinthecreationoftheprojectandthequalityofthefinishedproduct.

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UnitActivityPlannerActivity LearningTargets ScienceConnectionto

PhenomenaMAStandards

Lesson1Activity1:UsingaThermometer

Iobtainlocalandglobalweatherdata.Icanexplainthatthesunplaysanimportantroleindayandnight,weather,andseasons.

TheSunhasadirectrelationshiptotheEarth’sweathersystemsandclimate.Specifically,theaveragetemperatureisdependentontheamountofsunlightanareareceives.

3-ESS2-1.Usegraphsandtablesoflocalweatherdatatodescribeandpredicttypicalweatherduringaparticularseasoninanarea.[ClarificationStatements:Examplesofweatherdatacouldincludetemperature,amountandtypeofprecipitation(e.g.,rain,snow),winddirectionandwindspeed.Graphicaldisplaysshouldfocusonpictographsandbargraphs.]

Lesson1Activity2:WeatherAcrossAmerica

Lesson1Activity3:FortuneTellers

Lesson1Activity4:HowtheSunHitstheEarth

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Lesson2Activity5:GlobeandFlashlightDemonstration

IcandescribehowtheEarthmovesinrelationshiptothesun.IcanusedifferentmodelstoshowwhydifferentplacesontheEarthareimpacteddifferentlybythesun.

TheSunshinesdirectlyontheequator.TheNorthernandSouthernhemispheresexperienceoppositeseasons,becausetheEarthsimultaneouslyorbitstheSunandrotatesonitstiltedaxis.

5-ESS1-2.UseamodeltocommunicateEarth’srelationshiptotheSun,Moon,andotherstarsthatexplain(a)whypeopleonEarthexperiencedayandnight,(b)patternsindailychangesinlengthanddirectionofshadowsoveraday,and(c)changesintheapparentpositionoftheSun,Moon,andstarsatdifferenttimesduringaday,overamonth,andoverayear.

Lesson2Activity6:KinestheticModelsoftheEarthandSun

Lesson2Activity7:DiscussingNorthernandSouthernHemispheres

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Lesson3Activity8:LandVersusWaterLesson3Activity9:EnergyExchangeSkit

Icandescribetheconceptofenergy,asitrelatestoheatandlight.IcanexplaintheimportanceofenergyexchangebetweentheEarthandtheSun.

LandandwaterabsorbandretainheatfromtheSunatdifferentrates.TheNorthernhemispherehasagreaterproportionofland,whiletheSouthernhemispherehasagreaterproportionofwater,thusleadingtodifferencesinclimate.TheenergyexchangebetweentheEarthandtheSunisbalanced.Anyimbalancesinenergydistributionwouldleadtodrasticclimateproblems.

4-PS3-1.Makeobservationstoshowthatenergycanbetransferredfromplacetoplacebysound,light,heatandelectriccurrents.[ClarificationStatements:Evidenceofenergybeingtransferredcanincludevibrationsfeltasmalldistancefromasource,asolar-poweredtoythatmoveswhenplacedindirectlight,warmingametalobjectononeendandobservingtheotherendgettingwarm,andawirecarryingelectricenergyfromabatterytolightabulb.]

Lesson4Activity10:ObservingWeatherGraphs

Icanexplaingraphsaretoolstocommunicateinformationvisually.Icanusegraphstomakepredictionsandassumptionsaboutweatherdatainagiven

Collectionofweatherdataisnecessarytorecordpatternsacrossdifferenttimesandareasinordertomakepredictionsaboutfutureweather.

3-ESS2-1.Usegraphsandtablesoflocalweatherdatatodescribeandpredicttypicalweatherduringaparticularseasoninanarea.

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Lesson4Activity11:BecomingWeatherObservers

area.Icanresearchandrecordweatherdataaboutaparticularareaofinterest.

Tounderstandclimate,weatherpatternsareobservedoverprolongedperiodsoftime.

[ClarificationStatements:Examplesofweatherdatacouldincludetemperature,amountandtypeofprecipitation(e.g.,rain,snow),winddirectionandwindspeed.Graphicaldisplaysshouldfocusonpictographsandbargraphs.]

Lesson4Activity12:WhyDoWePredict?

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Lesson5Activity13:ClimateandWeatherActivity14:ExploringEcosystemsActivity15:TrioramasActivity16:GoogleEarthPhotosActivity17:ClimateZones

Icandefineclimateanddifferentiateclimatefromweather.Icaninvestigatewaysthatplantsandanimalsadapttotheclimateconditionsintheirenvironments.

Climateandweatheraredifferentconcepts.Climateisdefinedbycollectingdataaboutweatherpatternsinspecificareasoverlongperiodsoftime.Ecosystemsaredependentuponclimatepatternsandzones,becausedifferentplantsandanimalsrespondbettertodifferentclimateconditions.

3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsoverayearvarybyregion.[ClarificationStatements:Examplesofinformationcanincludeclimatedata(averagetemperature,averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.]

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Lesson6Activity20:WorldMarketplaceGame

Icanexplainhowweatherandclimateindifferentregionsshapethelifestyleandculturesofthepeoplethatlivethere.Icancollectdatathatsupportsaclaim.Icanexplaindifferentperspectivesandexperiencesacrosstheglobeinrelationtotheclimate’simpact.

Climateconditionsdictatesocioculturalaspectsofhumans’lives.Differencesinclimatecancausedifferencesinhowpeoplelivetheirdaytodaylives-fromlifestylechoicestocareeroptions,fromavailableresourcestothestateoftheeconomy.HumansinteractwithEarth’sclimatebyconstructingwaystosurviveandthriveinresponsetofactorsintheirenvironmentandbyovercomingthebarriersposedbytheirenvironment.

3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsoverayearvarybyregion.[ClarificationStatements:Examplesofinformationcanincludeclimatedata(averagetemperature,averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.]

Lesson7Activity21:TornadoinaBottle

Icanidentifyanddescribenaturaldisasters,theprocessbywhichtheyoccur,andwhytheyoccurinspecificlocations.Icanexplain

Naturaldisastersareanimportantaspectofweatherandclimatethatcanplayalargeroleinshapingthebidirectional

3-ESS3-1.Evaluatethemeritofadesignsolutionsthatreducesthedamagecausedbyweather.*

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Lesson7Activity22:CrashCourseonNaturalDisasters

andcompareimpact(magnitude).Icandescribeandassesshowregionsrespondtoandpreparefordisasters.

relationshipbetweenhumansandtheirenvironment.Localcommunitiesconstructwaysofrespondingtoandpreparingfornaturaldisasters.

[ClarificationStatement:Examplesofdesignsolutionstoreduceweather-relateddamagecouldincludeabarriertopreventflooding,awind-resistantroof,andalightningrod.]4-ESS3-2.Evaluatedifferentsolutionstoreducetheimpactsofanaturaleventsuchasanearthquake,blizzardorfloodonhumans.*[ClarificationStatement:Examplesandsolutionscouldincludeaearthquake-resistantbuildingoraconstructedwetlandtomediateflooding.]

Lesson7Activity23:ResponseandPreparation

Lesson7Activity24:SurvivalGame

Lesson8Activity25:TrashTalk

Icanexplainanddescribehowhumansaffecttheclimate.Icandescribewaystobettertheenvironmentandclimate.

Humans’impactontheclimatecanbemeasuredthroughourcarbonfootprint,whichconsidersprocesseslikedeforestationandenergyconsumption.Therearewaysofreducinghumans’negativeeffectsontheenvironmentby

5-ESS3-1.ObtainandcombineinformationaboutwayscommunitiesreducehumanimpactontheEarth’sresourcesandenvironmentbychanginganagricultural,industrial,orcommunitypracticeorprocess.

Lesson8Activity26:ClimateKid’sScavengerHunt

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Lesson8Activity27:EarthDoctorCollage

reducingtheirconsumptionandwasteoutput,andbyrecycling,ridingabikeinsteadofdrivinginacar,andusingcleansourcesofenergy.

Lesson9Activity28:BrainstormforInterviews

Icanexplainthecoredetailsofthelessonsandcanconstructthoughtfulquestionsaboutthetopics.IcanelaborateandgenerateanswerstoquestionsabouthowhumansrespondtoandinteractwithEarth’sclimate.

HumansinteractwithEarth’sclimatebyconstructingwaystosurviveandthriveinresponsetofactorsintheirenvironmentandbyovercomingbarriersposedbytheirenvironment.Humanactivitycontributestochangesinglobalconditions,suchastemperature,overlongperiodsoftime,whichinturnleadstochangesinglobalclimate.

3-ESS2-2.Obtainandsummarizeinformationabouttheclimateofdifferentregionsoftheworldtoillustratethattypicalweatherconditionsoverayearvarybyregion.[ClarificationStatements:Examplesofinformationcanincludeclimatedata(averagetemperature,averageprecipitation,averagewindspeed)orcomparativedescriptionsofseasonalweatherfordifferentregions.]3-ESS3-1.Evaluatethemeritofadesignsolutionsthatreducesthedamagecausedbyweather.*

Lesson9Activity29:InterviewingLocalBusiness

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Lesson9Activity30:CreateYourOwnTown

[ClarificationStatement:Examplesofdesignsolutionstoreduceweather-relateddamagecouldincludeabarriertopreventflooding,awind-resistantroof,andalightningrod.]

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NextGenerationScienceStandards(NGSS)Alignment

PerformanceStandard

Science/EngineeringPractice(SP) DisciplinaryCoreIdea(DCI) CrossCuttingConcepts(CCC)

3-ESS2-1.Representdataintablesandgraphicaldisplaystodescribetypicalweatherconditionsexpectedduringaparticularseason.3-ESS2-2.Obtainandcombineinformationtodescribeclimatesindifferentregionsoftheworld.3-ESS3-1.Makeaclaimaboutthemeritofadesignsolutionthatreducestheimpactsofaweather-relatedhazard.W.3.7Conductshortresearchprojectsthatbuildknowledgeaboutatopic

AnalyzingandInterpretingData:Representdataintablesandvariousgraphicaldisplays(bargraphsandpictographs)torevealpatternsthatindicaterelationships(3-ESS2-1)EngaginginArgumentfromEvidence:Makeaclaimaboutthemeritofasolutiontoaproblembycitingrelevantevidenceabouthowitmeetsthecriteriaandconstraintsoftheproblem(3-ESS3-1)Obtaining,Evaluation,andCommunicatingInformation:Obtainandcombineinformationfrombooksandotherreliablemediatoexplainphenomena(3-ESS2-2)

ESS2.D:WeatherandClimateScientistsrecordpatternsoftheweatheracrossdifferenttimesandareassothattheycanmakepredictionsaboutwhatkindofweathermighthappennext(3-ESS2-1)Climatedescribesarangeofanarea’stypicalweatherconditionsandtheextenttowhichthoseconditionsvaryoveryears(3-ESS2-2)ESS3.B:NaturalHazardsAvarietyofnaturalhazardsresultfromnaturalprocesses.Humanscannoteliminatenaturalhazards,butcantakestepstoreducetheirimpacts(3-ESS3-1)

Patterns:Patternsofchangecanbeusedtomakepredictions(3-ESS2-1),(3-ESS2-2).CauseandEffect:Causeandeffectrelationshipsareroutinelyidentified,tested,andusedtoexplainchange(3-ESS3-1)InfluenceofEngineering,Technology,andScienceonSocietyandtheNaturalWorld:Engineersimproveexistingtechnologiesordevelopnewonestoincreasetheirbenefits,decreaseknownrisks,andmeetsocietaldemands(3-ESS3-1)ScienceisaHumanEndeavor:Scienceaffectseverydaylife(3-ESS3-1)

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5EInstructionalModelBackgroundThisinstructionalmodelexistsasasetofphasesforscienceinstructionthatstartswithstudents’priorknowledgeinordertoreconstructanewknowledgewithdeeperunderstanding.TheEngagementphaseisfirst,inwhichteachersandstudentsbegintomulloverquestions,priorknowledgeandunderstanding,andpotentialfrustrationstheymighthavewithatopic.Thisphaseismeanttobeinformal–thisisthestartofthelesson.ThesecondstepinvolvesExploringphenomena,whichactsasanintroductiontothelargerconceptsthatengagesstudentsinahands-onapproach.Afterexploration,Explanationofscientificconceptsbegins.Tofurtherstudentunderstanding,Elaborationisnext,inwhichstudentsarepresentedwithevenmorechallengingactivitiesandproblems.FollowingthelearningprocesscomesEvaluation,asdeemednecessarybylearninggoalsanddefinedachievements.Themodelisbasedonscientificresearchabouthowchildrenlearnandismeanttobefollowedchronologically,althoughsomestepsmayberepeated.

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ScienceTalkandOracyinT2LUnits Sciencetalkismuchmorethantalkingaboutscience.Inlinewiththescienceandengineeringpractices,studentsareexpectedtomakeaclaimthatcanbesupportedbyscientificevidence.TheMASTEStandards(andtheNGSS)valuetheimportanceofengaginginanargumentfromevidence.NGSSdefineshowthispracticetakesformintherealworld:“Inscience,reasoningandargumentareessentialforidentifyingthestrengthsandweaknessesofalineofreasoningandforfindingthebestexplanationforanaturalphenomenon.Scientistsmustdefendtheirexplanations,formulateevidencebasedonasolidfoundationofdata,examinetheirownunderstandinginlightoftheevidenceandcommentsofferedbyothers,andcollaboratewithpeersinsearchingforthebestexplanationforthephenomenonbeinginvestigated.”

Studentsareaskedtoparticipateinarticulateandsensibleconversationsinwhichtheyareabletocommunicatetheirideaseffectively,listentootherstounderstand,clarifyandelaborateideas,andreflectupontheirunderstanding.TheseformsoftalkcanbedevelopedusingscaffoldssuchastheA/BTalkprotocol(below)andstrategiesforclassdiscussions(fromtheTalkSciencePrimer,linkbelow).Oracyisdevelopedinthephysical,linguistic,cognitive,andsocial-emotionalrealms;eachoftheserealms can be expanded upon over time in order to develop a thoughtful speaker. Being able to display appropriate bodylanguage, use proper tone and grammar, be thoughtful and considerate thinkers, and allow space for others thoughts andopinionsareallimportantfacetsoforacytoworkonandthroughwithstudents.Incorporatingtheappropriatescaffoldingisanimportant aspect of fostering these skills. Techniques for teaching effective science talk often includemodeling, discussionguidelines, sentence-starters, and generating roles, while gradually putting more responsibility on students to own theirthinkingandlearning.

Partofcreatingasafeschoolenvironmentforstudentsisallowingthemaspacethatiscomfortableenoughforthemtoexpressideasandaskquestions,whilebeingvalidatedfortheirthoughtsandquestions;studentsshouldbefeelcomfortableandconfidentwhenspeakingandlisteningforunderstanding.Effectivetalkisanimportantpartofbeinganactive,intelligentmemberofacommunityandsociety.Successfuldevelopmentinoracyisimportantforfutureemployabilityandgeneralwell-beingofadults.Thefollowingresourcesshouldbehelpfulexamplesofhowtoemployeffectiveuseofprogressiveoracyandsciencetalkinyourclassrooms. ● OracyintheClassroom:https://www.edutopia.org/practice/oracy-classroom-strategies-effective-talk ● ScienceTalkPrimer:https://inquiryproject.terc.edu/shared/pd/TalkScience_Primer.pdf

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A/BTalkProtocolAdaptedfromhttps://ambitiousscienceteaching.org/ab-partner-talk-protocol/

1.Shareyourideas

PartnerA● Ithink_______happenedbecause… ● Evidencethatsupportsmyideais… ● Theactivitywedidwith_______helpsme

knowmoreabout_______because… ● OnethingI’mwonderingaboutis…

2.ListentoUnderstandPartnerB● Iheardyousay_______.Whatmakesyouthinkthat? ● Iheardyousay_______.Whatif_______? ● Canyouexplainthepartabout_______again? ● Whatdoyoumeanwhenyousay_______?

3.ClarifyandelaboratePartnerA

Answerpartner’squestionsoraskforclarificationinordertounderstandaquestion.

4.Repeatsteps2&3untilallquestionsareanswered

5.Switchrolesandrepeatsteps1-4

6.Reflectonyourunderstandinginwriting● Myideaabout_______changedwhenmypartnersaid

_______. ● Iwilladd_______tomyideaabout_______because… ● Istillhavequestionsabout… ● Imaybeabletoanswermyquestion(s)ifIcould

investigate_______.

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ListofUnitResources

Lesson1

Quantity Item Source1perstudent ScienceJournal Classroomteacher6perclass Thermometers(foroutsideuse) Bin http://www.earthcam.com/network/

https://www.timeanddate.com/worldclock/personal.htmlCMCWebsite

5perclass TiltedGlobes(orasmanyaspossiblesoeachstudentcanhavehandsontimewiththeglobe)

Bin

5perclass Flashlights(orthesameamountasglobes) Bin1perstudent TheLong-TermLocationMysteryBookletofClues(13pagestotal) BinderLesson2

Quantity Item Source1perstudent ScienceJournal Classroomteacher https://www.youtube.com/watch?v=4rMYrP8feJY CMCWebsite5perclass Globe ClassroomTeacher/Bin5perclass Flashlight Bin1perstudent Sunglasses Bin1perstudent ExitWorksheet Binder

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Lesson3

Quantity Item Source2 Floodlight Bin1 StickThermometer Bin2pergroup PlasticCups(anysize) Bin1 Bagofpottingsoil Bin LandandWaterCrashCourse

https://www.youtube.com/watch?v=7vTfyAMu6G4CMCWebsite

HereComesTheSunCrashCoursehttps://www.youtube.com/watch?v=6FB0rDsR_rc&t=121s

CMCWebsite

2-3 LargeCardboardbox Bin1 RollofAluminumFoil Bin1 BagofMediumSizedMarshmallows Bin1 BoxofGrahamCracker Bin20Bars Hershey’sChocolate Bin1perstudent Sunglasses Bin1box BlackPermanentMarkers ClassroomTeacher1perstudent ScienceJournals ClassroomTeacherLesson4

Quantity Item Source ClimateKids“Whatdoallthesegraphsmean?”webpage

[https://climatekids.nasa.gov/graphs/]CMCWebsite

Asneededperclassroom

Chartpaper ClassroomTeacher

Asneededperclassroom

Markers ClassroomTeacher

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Graphicalmapimages CMCWebsite1pergroup LaminatedUnitedStatesMap Bin1perstudent ComputeroriPad ClassroomTeacher1perstudent “WeatherObservers”Worksheet Binder1perstudent ScienceJournals ClassroomTeacher1perclassroom MiniCactus ContactSueBeauchampLesson5

Quantity Item Source ClimateandWeathervideo

https://www.youtube.com/watch?v=XirAUvS_29ICMCWebsite

1perstudent ClimateandWeatherWorksheets(3pagestotal) Binder1perstudent ScienceJournal ClassroomTeacher1perstudent ClimateZoneWorksheet Binder InstructionsforTrioramaModel Binder1perstudent Whitepaper/Cardstockpaper BinForclass Coloredpencils,glue,scissors ClassroomTeacherLesson6

Quantity Item Source5piecesperclassroom

LargePosterpaper Bin

1perStudent Markers ClassroomTeacher

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1perclassroom AnsweringtheBigQuestions:TeacherResourcesandWorksheet(5pagestotal)

Binder

1packetperstudent AllSystemsGoWorksheetPacket(9pagestotal) BinderLesson7

Quantity Item Source http://www.earthcam.com/network/ CMCWebsite1perclass Computerprojector

ClassroomTeacher

10pergroup Countingchips Bin1perstudent ScienceJournals ClassroomTeacher1perstudent WorldMarketMerchantWorksheet(2pagestotal) Binder1perstudent WorldMarketShopperWorksheet(2pagestotal) BinderLesson8

Quantity Item Source1perstudent ScienceJournal ClassroomTeacher Naturaldisasterpicture+clip

https://www.youtube.com/watch?v=-dfi0b6w0JYCMCWebsite

SevereWeatherCrashCoursehttps://www.youtube.com/watch?v=QVZExLO0MWA

CMCWebsite

AsNeeded Variousartssupplies(constructionpaper,pipecleaners,pompoms,glue,markers)

BinandClassroomTeacher

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Lesson9

Quantity Item Source1perclass Computerprojector ClassroomTeacher ToyStoryCliphttps://www.youtube.com/watch?v=QtQPmDjuA5s CMCWebsite1perstudent ClassroomLaptops ClassroomTeacher1pergroup PrinterPaper ClassroomTeacher1setpergroup Coloredpencils/markers ClassroomTeacher1perstudent ScavengerHuntWorksheet(3pagestotal) Binder