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We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!! This affects…

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Page 1: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…
Page 2: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

We are still using the idea of the kinetic-molecular theory. All particles are in motion› We are still relating this to ideal gases!!!!

This affects…› Pressure› Volume

Page 3: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Pressure (P)- is defined as the force per unit area on a surface

Tire pressure-› When you have a flat tire, you either air it

up or call someone to air it up.› When air is inserted into the tire, more air

particles, more collisions, more pressure.

Page 4: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Pressure= Force/Area› Unit of force is a newton (N)

Force= mass * acceleration (remember the f=ma weird videos from 8th grade)

› Unit of area Unit of length2

Page 5: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The atmosphere exerts pressure on the Earth due to all the gases.› Atmospheric pressure› Pressure is lower at higher altitudes

Changes of altitudes (pressure) causes your ears pop when you go up and down hills, taking off or landing an airplane.

Page 6: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Barometer-a device to measure atmospheric pressure

Developed by Torricelli in the early 1600’s

Units of pressure› mm Hg (millimeter of mercury)› atm (atmosphere of pressure)› Pa (pascal)› psi (pounds per square inch) *** only in

America

Page 7: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

1 torr = 1mm Hg 1 atm = 760 mm Hg 1 atm = 760 torr 1 atm = 1.01234 x 105 Pa 1 atm = 101.325 kPa 1atm = 14.700 psi 1 psi = 6.89286 x 103 Pa

Page 8: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Covert a pressure of 1.75 atm to kPa and to mm Hg.

The critical pressure of carbon dioxide is 72.2 atm. What is this value in units of Pascal's?

Page 9: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The sum of the partial pressures of a mixture of gases is the total pressure exerted by the enclosed gases.

Ptotal = Pgas 1 + Pgas 2 + ….

If the pressure of air in this room is 100 kPa and nitrogen represents 80% and oxygen 20%, what is the pressure of each gas?

Page 10: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Some hydrogen gas is collected over water at 20oC. The levels of water inside and outside the gas-collection bottle are the same. The partial pressure of hydrogen is 742.5 torr. What is the barometric pressure at the time the gas is collected?

Page 11: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Robert Boyle was the first person to collect a gas for study and analysis.

The volume of a gas in an enclosed container varies inversely as the pressure, IF the temperature remains constant.

V1P1 = V2P2

Page 12: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The volume of a balloon is 454 cm3 at 1.25 atm. What is the volume if the pressure decreases to 0.95 atm?

Page 13: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

A balloon filled with helium gas has a volume of 500 mL at a pressure of 1 atm. The balloon is released and reaches an altitude of 6.5 km, where the pressure is 0.5 atm. If the temperature has remained the same, what volume does the gas occupy at this height?

Page 14: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

http://www.youtube.com/watch?v=YD_uixZoVuc

Page 15: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

French scientist Jacques Charles-1787 The volume of a gas varies directly as

the Kelvin temperature, IF the pressure remains constant.

K= 273.15 + oC **We will use 273

V1 = V2

T1 T2

Page 16: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

What volume will a sample of nitrogen occupy at 28.0oC if the gas occupies a volume of 457 cm3 at a temperature of 0.0oC at constant pressure?

Page 17: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

A sample of neon gas has a volume of 752 mL at 25.0oC. What will the volume at 100oC be if pressure is constant?

Page 18: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Coke Can demo

Page 19: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Joseph Bay-Lussac in 1802 The pressure of a gas varies directly

with the Kelvin temperature IF the volume remains constant.

P1 = P2

T1 T2

Page 20: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

What happens to tire pressure on cold days?

Page 21: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The pressure in a container is 700 mmHg at 25oC. What is the pressure when the temperature reaches 100oC?

Page 22: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

P1V1 = P2V2

T1 T2

The temperatures MUST be in Kelvin. The pressures and volumes must be in the same units of measure on both sides.

Page 23: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

A 150 mL container is filled with hydrogen at 15.0oC and exerts a pressure of 110.0 kPa. What will the volume of the gas occupy at 40.0oC and 94.5 kPa?

Page 24: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The volume of a gas is 27.5 mL at 22.0oC and 0.974 atm. What will the volume be at 15.0oC and 0.993 atm?

Page 25: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

If the problem indicates constant pressure, ignore P1 and P2 (Charles’s law)

If the problem indicates constant volume, ignore V1 and V2 (Gay-Lussac’s law)

If the problem indicates constant temperature, ignore T1 and T2 (Boyle’s law)

Page 26: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

What is the temperature of the air in a tire if the pressure doubles from 1.5 atm to 3.0 atm if the original temperature was 35oC? Assume the tire has a constant volume.

Page 27: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Gases are commonly collected by bubbling through water.

The water vapor molecules will exert a pressure, which will affect the pressure of the dry gas.

Ptotal = Pgas + Pwater vapor

Therefore, a correction must be made Pdry gas = Ptotal – Pwater vapor (from the table)

Page 28: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

A gas is collected over water at 30oC at a pressure of 745 torr (mmHg). What is the pressure of the dry gas?

A gas is collected by water displacement at 45oC at 122 kPa. What is the pressure of the dry gas?

A gas is collected over water at 23oC at a pressure of 1.6 atm. What is the pressure of the dry gas?

Page 29: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

What is the volume of dry hydrogen at STP if 45 mL was collected by water displacement at 55oC and 98 kPa?

Page 30: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Five hundred liters of oxygen was collected over water at 20.0oC and 800 mmHg. What will the volume of the dry gas be at 30.0oC and 1200 mmHg?

Page 31: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

We can use the coeffiecents of balanced equations to compare› Volume and molecules

We also have what we call standard molar volume of a gas…› STP (standard temperature and pressure)› At 1 atmosphere of pressure, 273 K, then

we will have 22.4L of 1 mole of gas.

Page 32: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

At STP, what is the volume of 7.08 moles of nitrogen gas?

A sample of hydrogen gas occupies 14.1 L @ STP. How many moles of the gas are present.

Assuming all volume measurements are made at the same temperature and pressure, what volume of hydrogen gas is needed to react completely with 4.55 L of oxygen gas to produce water vapor?

Page 33: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The mathematical relationship amount pressure, volume, temperature, and the number of moles of a gas. › PV=nRT› P=pressure› V=volume in L except when dealing with

Pa› n= number of moles› R= ideal gas constant› T= temperature in Kelvins

Page 34: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Ideal Gas Constant, R, Values› 62.4 when using mm Hg› 0.0821 when using atm› 8.314 when using Pa› 8.314 when using kPa

Page 35: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

What pressure, in atmospheres, is exerted by 0.325 mole of hydrogen gas in a 4.08 container at 35oC?

A gas sample occupies 8.77 L at 20oC. What is the pressure, in atmospheres, given that there are 1.45 moles of gas in the sample?

Page 36: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

The relative rate at which two gases at the same temperature and pressure will effuse (pass through a small opening; ie. tire,balloon, etc) varies as the square root of the ratio of the molecular masses of the gases.

Rate A / Rate B = sqrt (mass B / mass A)

Page 37: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

Quick lab on page 387

Page 38: We are still using the idea of the kinetic- molecular theory. All particles are in motion › We are still relating this to ideal gases!!!!  This affects…

What is the ratio of helium balloon effusion to nitrogen (air) if they are at the same temperature and pressure?