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Introduction to igneous rocks + kegiatan gunung berapi (volcanism

Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

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Page 1: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

Introduction to igneous rocks

+ kegiatan gunung berapi (volcanism)

Page 2: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

LEARNING OBJECTIVES: 3 teras idea

1 Pembentukan, pengelasan dan pengecaman batuan igneus (Formation, classification and Identification of igneous rocks)

2 Evolusi batuan igneus (Igneous rock evolution)

3 Tektonik Keping dan taburan batuan igneus (Plate Tectonics and igneous rock distribution)

Page 3: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

Kejadian-hasil

• Batuan igneus terjadi hasil drpd pemejalan (solidification) magma

Page 4: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

Apa itu magma?

• Magma ialah satu leburan (melt) yang sangat panas (> 600 C) yg mengandungi hampir semua unsur (terdapat 105 unsur yg diketahui setakat ini) yg bercampur secara kimia dan menghablur (crystallize) dalam pelbagai pola geometri (geometric patterns) untuk membentuk 8 jenis mineral pembentuk batuan (rock forming minerals)

Page 5: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

Bagimana magma terjadi?

• Terhasil drpd peleburan separa dan penghabluran berperingkat kerak bumi benua ataupun lautan (partial melting of continental and oceanic crust and fractional crytsallization)

• Kedalaman 600 km

Page 6: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

Di mana terjadi?

• Convergent plate boundaries

• Divergent plate boundaries

• Strike-slip boundaries

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Kejadian-hasil

• Batuan igneus terjadi hasil drpd pemejalan (solidification) magma sama ada di dalam perut bumi, di dalam air lautan atau di permukaan bumi

1 Kegiatan gunung berapi di luar permukaan bumi atau di dasar laut=>batuan ekxtrusif/gunung berapi (extrusive/volcanic rocks)

2 Pejal di dalam => batuan intrusif (intrusive)

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sill

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Mt Etna, Sicily 2002-03

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Batuan lava

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Mt Nyirangongo, Central Africa

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Eruption products

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Classification of igneous rocks

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SIRI TINDAK BALAS BOWEN(Bowen Reaction Series)

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olivin

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Piroksen (Pyroxene)

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amphibole

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Mika (mica)

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Potassium feldspar

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Mika muskovit

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Kuarza (Quartz)

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Calcium feldspar

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Na feldspar

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Original minerals (Chemical formula)

• Quartz SiO2

• Microcline KAlSi3O8

• Orthoclase KAlSi3O8

• Na-Plagioclase NaAlSi3O8

• Ca-Plagioclase CaAlSi3O8

• Muscovite KAlSi3O10

• Biotite KAl(Mg-Fe)3Si3O10 (OH)2

• Horneblende Ca2Al2Mg2Fe3, Si6O (OH)2

• Augite Ca2(Al-Fe)4(Mg-Fe)4Si6O 24

Page 44: Introduction to igneous rocks + kegiatan gunung berapi (volcanism)

Siri Tindak Balas Bowen

• Memperihalkan tertib mineral menghablur drpd magma yg menyejuk, berdasarkan kpd prinsip bahawa setiap bahan mempunyai takat lebur yang unik.

• Ada kaitan dengan gambarajah fasa (phase diagram) eg. Eutektik diagram, ternary diagram

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Tindak balas

• Continous series (selanjar)

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Tindak balas tak selanjar

• Discontinous series -

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soalan

• Mineral dan batuan manakah yang paling banyak ditemui di dalam kerak bumi?

• Mineral dan batuan manakah yang lazim ditemui di permukaan? Di dalam perut bumi?

• Mineral dan batuan manakah yang mudah terurai? Yg payah terurai? Kenapa?

• Apakah mineral dan batuan kekal dalam keadaan asal ia terjadi? Tidak berubah? Kalau berubah, bentuk baru apakah yang terjadi?

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andesite

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basalt

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diorite

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gabbro

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granite

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obsidian

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olivine

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Olivine basalt

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Pink granite

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Porphyritic granite

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Porphyritic granite

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Pumice granite

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pumice

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pyro

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rhyolite

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scoria

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vesicles

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