glg 101 - physical geology bob leighty igneous rocks

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GLG 101 - Physical Geology GLG 101 - Physical Geology Bob Leighty Bob Leighty Igneous Rocks Igneous Rocks

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Page 1: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

GLG 101 - Physical GeologyGLG 101 - Physical Geology Bob LeightyBob Leighty

Igneous RocksIgneous Rocks

Page 2: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

These lecture notes are very similar to the ones I use in my traditional classes. You’ll find they are loaded with imagery and streamlined text that highlight the most essential terms and concepts. The notes provide a framework for learning and, by themselves, are not meant to be a comprehensive source of information.

To take advantage of the global knowledge base known as the Internet, I have included numerous hyperlinks to external web sites (like the Wikipedia, USGS, NASA, etc.). Follow the links and scan them for relevant info. The information from linked web sites is meant to supplement and reinforce the lecture notes – you won’t be responsible for knowing everything contained in them.

As a distance learning student, you need to explore and understand the content more independently than in a traditional class. As always, I will help guide you through this learning adventure. Remember, email Dr. Bob if you have any questions about today’s lecture ([email protected]).Leave no questions behind!

Explore and have fun!Explore and have fun!

These notes and web links are your primary “lecture” content in this class. Additionally, various articles are assigned each week to supplement this “lecture” information. I believe you’ll have enough information to reference without having to purchase a costly textbook.

Page 3: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

> cool and crystallize at depth as intrusions

> migrate to the surface and erupt as extrusions

Most magma initially rises because of its greater buoyancy

The Life of MagmaThe Life of MagmaIgneousIgneous

RocksRocks

Page 4: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Crustal melting felsic magmas

Texture (crystal size) - mostly related to the cooling rate

(largely controlled by where the magma cools)

Composition (mineralogy) - mostly related to what was

melted

coarse-grained texture

Cool slowly

at depth

fine-grained texture

Cool fast

on surface

granite

rhyolite

Composition & TextureComposition & TextureIgneousIgneous

RocksRocks

Page 5: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Naming Igneous RocksNaming Igneous RocksIgneousIgneous

RocksRocks

click on the chart

Page 6: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

magma

MaficMafic

Ca

Ca

Fe

Fe

Mg

Mg

Si

Si O

O

O

O

O

OO

O

Mafic magmas are rich in Fe, Mg, & Ca, but poor in Si, Na,

& K

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 7: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

basalt

gabbro

…which compose most mafic igneous rocks

Upon cooling, mafic magmas crystallize mafic minerals…

olivine

pyroxene

Ca-feldspar

MaficMafic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 8: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Abundant in the oceanic crust & mantle

peridotitegabbrobasalt

Mafic & Mafic & UltramaficUltramafic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 9: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

peridotitegabbrobasalt

Mafic rocks form by partial melting of ultramafic mantle

Mafic & Mafic & UltramaficUltramafic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 10: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

magma

K

K

Si

Si

Na

Na

Si

Si O

O

O

O

O

OO

O

Felsic magmas are poor in Fe, Mg, & Ca, but rich in Si, Na,

& K

FelsicFelsic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 11: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

…which compose most felsic igneous rocks

rhyolite

granite

Upon cooling, felsic magmas crystallize felsic minerals…

quartz

K-feldspar

Na-Feldspar

mica

FelsicFelsic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 12: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

rhyolite granitepumice

Abundant in the continental crust

FelsicFelsic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 13: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

rhyolite granitepumice

Form by melting continental crust

FelsicFelsic

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 14: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

magma

K

Ca

Fe

Si

Mg

Na

Si

Si O

O

O

O

O

OO

O

“Combo deal” includes some mafic & felsic elements

IntermediateIntermediate

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 15: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

andesite

diorite

…which compose intermediate igneous rocks

Upon cooling, intermediate magmas crystallize int.

minerals…

amphibole

Ca/NaFeldspar

IntermediateIntermediate

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 16: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

andesite diorite

Abundant in the continental crust

IntermediateIntermediate

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 17: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

andesite diorite

Form by “wet” melting of the mantle and crust

IntermediateIntermediate

Igneous CompositionsIgneous CompositionsIgneousIgneous

RocksRocks

Page 18: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Big crystals (coarse-grained texture)

granite

> slow cooling at depth (intrusive)

microscope view

Igneous TexturesIgneous TexturesIgneousIgneous

RocksRocks

Page 19: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Small crystals (fine-grained texture)

basaltrhyolite

> fast cooling on the surface (extrusive)

Igneous TexturesIgneous TexturesIgneousIgneous

RocksRocks

Page 20: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

No crystals (glassy texture)

> ultra-fast to cool (quenching) on the surface

(extrusive)

obsidian

Igneous TexturesIgneous TexturesIgneousIgneous

RocksRocks

Page 21: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Big & small crystals (porphyritic texture)

porphyritic andesite

> two stages of cooling: slower & faster cooling (int &

ext)

microscope view

Igneous TexturesIgneous TexturesIgneousIgneous

RocksRocks

Page 22: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

> gas bubbles escaping the magma (extrusive)

Igneous TexturesIgneous TexturesIgneousIgneous

RocksRocks

Holes or vesicles (vesicular texture)

scoria

Page 23: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

Pieces of rock (pyroclastic texture)

> explosive eruption (extrusive)

Volcanic breccia, lapilli, & tuff

increasing

explosivenes

s

Igneous TexturesIgneous TexturesIgneousIgneous

RocksRocks

Page 24: GLG 101 - Physical Geology Bob Leighty Igneous Rocks

WWW Links in this LectureWWW Links in this Lecture> Magma - http://en.wikipedia.org/wiki/Magma

> Buoyancy - http://en.wikipedia.org/wiki/Buoyancy

> Intrusions - http://en.wikipedia.org/wiki/Intrusion

> Extrusions - http://en.wikipedia.org/wiki/Extrusive

> Mafic - http://en.wikipedia.org/wiki/Mafic

> Basalt - http://en.wikipedia.org/wiki/Basalt

> Gabbro - http://en.wikipedia.org/wiki/Gabbro

> Oceanic crust - http://en.wikipedia.org/wiki/Oceanic_crust

> Mantle - http://en.wikipedia.org/wiki/Mantle_%28geology%29

> Peridotite - http://en.wikipedia.org/wiki/Peridotite

> Felsic - http://en.wikipedia.org/wiki/Felsic

> Rhyolite - http://en.wikipedia.org/wiki/Rhyolite

> Granite - http://en.wikipedia.org/wiki/Granite

> Continental Crust - http://en.wikipedia.org/wiki/Continental_crust

> Pumice - http://en.wikipedia.org/wiki/Pumice

> Andesite - http://en.wikipedia.org/wiki/Andesite

> Diorite - http://en.wikipedia.org/wiki/Diorite

> Obsidian - http://en.wikipedia.org/wiki/Obsidian

> Scoria - http://en.wikipedia.org/wiki/Scoria

> Tuff - http://en.wikipedia.org/wiki/Tuff

IgneousIgneous

ProcessesProcesses