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Igneous%20Rocks

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Title: Igneous%20Rocks


1
Igneous Rocks
2
Whats behind Mt. Rushmore
3
Igneous Rocks
4
Magma vs. Lava
  • Magma
  • Molten (melted) rock
  • Gases
  • Mineral crystals
  • Beneath the surface
  • Lava
  • Magma on the surface

5
Composition of Magma
  • Elements
  • O, Si, Al, Fe, Mg, Ca, K, Na
  • Compounds
  • SiO2 - Silica
  • Most abundant
  • Greatest effect on magma characteristics

6
Composition of Magma
  • Basaltic Magma
  • 50 Silica
  • Oceanic Lithosphere
  • Andesitic Magma
  • 60 Silica
  • Granitic Magma
  • 70 Silica
  • Continental Lithosphere

7
Mineral Composition
  • Felsic
  • Form from granitic magma
  • Continental Lithosphere
  • Light-colored
  • Gray, white, pink
  • High silica content
  • Low iron and magnesium

8
Mineral Composition (cont.)
  • Intermediate
  • Forms from andesitic magma
  • Dark Light-colored
  • 50/50
  • Half black/half white
  • Moderate levels of silica content and iron and
    magnesium
  • DOES NOT HAVE
  • K-SPAR
  • No pink

9
Mineral Composition (cont.)
  • Mafic
  • Forms from basaltic magma
  • Oceanic Lithosphere
  • Dark-colored
  • Black/dark green
  • Low silica content
  • High iron and magnesium

10
Environment of Formation
  • Intrusive
  • Magma inside the earth
  • Cools slowly
  • Large crystals
  • Extrusive
  • Lava on surface
  • Cools quickly
  • Small crystals (if any)

11
Texture
  • Glassy
  • Non-crystalline
  • Fine
  • Less than 1 mm
  • Coarse
  • 1mm to 10 mm
  • Very Coarse
  • 10 mm or larger

Extrusive

Intrusive
12
Texture (cont.)
  • Vesicular
  • Has gas pockets
  • Non-vesicular
  • No gas pockets

13
Some Igneous Rocks Are Named on Textural Criteria
  • Pegmatite Extremely large crystals
  • Pumice - Porous
  • Obsidian - Glass
  • Tuff - Cemented Ash

14
Porphyritic Texture
  • Large well-formed crystals surrounded by small
    finer-grained crystals
  • Complex cooling history
  • Cools slowly
  • Creating large crystals
  • Then cools very fast
  • Creating small crystals

15
Granite The Wisconsin State Rock
16
Obsidian
Vesicular Scoria Basalt
(red)
Felsic Inter Mafic
17
Sedimentary Rocks
18
Origin of Sedimentary Rocks
  • Erosion
  • Creating of sediments
  • Physical and chemical weathering
  • Transportation
  • Sediments are brought together

19
Origin of Sedimentary Rocks
  • Deposition
  • Water deposition commonly forms layers
  • Sorting
  • Glaciers and landslides do not create layers
  • Burial
  • To create heat and pressure
  • Lithification
  • Cementing (gluing) together of sediments
  • Making sedimentary rocks

20
Sedimentary Structures
  • Bedding Layers of Rock
  • Graded Bedding largest on the bottom and
    smallest particles on the top

21
Sedimentary Structures
  • Bedding Layers of Rock
  • Horizontal Bedding
  • Layers deposited horizontally

22
Sedimentary Structures
  • Bedding Layers of Rock
  • Cross Bedding
  • Layers at angles

23
Sedimentary Structures
  • Ripple Marks
  • Symmetrical
  • Beach
  • Water
  • movement in
  • two directions

24
Sedimentary Structures
  • Ripple Marks
  • Asymmetrical
  • Stream
  • Water
  • movement in
  • one direction

25
Not this One Direction
26
Types of Sedimentary Rocks
  • Clastic
  • Sediments glued together
  • Clastic pieces Greek
  • Chemical
  • Precipitation of dissolved minerals in water
  • Organic
  • Accumulation of remains of once living things

27
Clastic Sedimentary Rocks
  • Coarse-Grained Clastics
  • Gravel sized particles
  • Transported by high energy flows
  • Conglomerates
  • Gravel-sized rounded particles
  • Transported great distances
  • Breccias
  • Gravel-sized angular particles
  • Transported short distances

28
Clastic Sedimentary Rocks
  • Conglomerate
  • Breccia

29
Clastic Sedimentary Rocks
  • Medium-Grained Clastics
  • Sand sized particles
  • High Porosity
  • of open space
  • Can contain fluids
  • Groundwater, air, natural gas, and oil

30
Clastic Sedimentary Rocks
  • Fine-Grained Clastics
  • Siltstone
  • Shale
  • Low porosity
  • Particles are too small

31
Chemical Sedimentary Rocks
  • Minerals dissolve during chemical weathering
  • Carried to lakes and oceans
  • Water evaporates, minerals are supersaturated,
    and precipitate out
  • Called evaporites
  • Calcite, halite, and gypsum

32
Organic Sedimentary Rocks
  • Limestone
  • Calcite from sea organisms shells
  • Reacts with acid
  • Coal
  • Lithification of plant remains

33
Organic Sedimentary Rocks
  • Limestone
  • Coal

34
Sedimentary Rock Identification
35
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36
Metamorphic Rocks
37
Metamorphic Rocks
  • Metamorphism
  • The mineralogical, chemical, and structural
    adjustment of solid rocks to the physical and
    chemical conditions imposed at a depth below the
    surface zones of weathering and cementation,
    which differ from the conditions under which the
    rocks were originated.
  • Sedimentary and igneous rocks are changed due to
    pressure and heat or chemical reactions while
    remaining solid.

38
Causes of Metamorphism
  • Temperature
  • Earths internal heat
  • Igneous Intrusion
  • Pressure
  • Increases with depth
  • Vertical pressure from weight of overlaying rocks
  • Mountain Building
  • Horizontal pressure form colliding plates.
  • Chemistry
  • Fluids flowing through the rocks react, forming
    new minerals

39
Causes of Metamorphism
  • Rocks change form while remaining solid
  • If rock melts, it becomes
  • Magma, which will then produce
  • Igneous Rocks.
  • Metamorphism ends when a rock melts

40
Metamorphic Rocks
41
Metamorphic Textures
  • Foliated
  • Have a banded appearance because the minerals in
    the rock are in parallel alignment
  • An animation of metamorphic rocks forming

42
Grades of Metamorphism
43
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44
Metamorphic Textures
  • Foliated

45
Metamorphic Textures
  • Nonfoliated
  • No banding
  • Interlocking mineral grains
  • THE MARSHMALLOW EFFECT

46
Metamorphic Textures
  • Nonfoliated Foliated

47
Metamorphic Rocks
48
Grades of Metamorphism

49
Metamorphic Rocks
50
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51
Igneous Sedimentary Metamorphic




52
Igneous Sedimentary Metamorphic
Crystals Cooling rate Sediments Gravel, sand, silt/clay Foliated Bands
Mineral Composition Felsic, Intermediate, Mafic Fossils Foliated Bands
Glassy Layers Nonfoliated Crystals smooshed together Marshmallow Effect
Vesicular Some react with acid Nonfoliated Crystals smooshed together Marshmallow Effect
53
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54
The Rock Cycle
  • The circular process by which each of the three
    major rock types is formed from the others

55
The Rock Cycle
56
The Rock Cycle
Granite Sandstone Quartzite
57
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58
What Rocks Tell Us
59
Rock Type How Classified How Classified What They Tell Us What They Tell Us
Igneous Composition   Felsic Light   Continental Lithosphere
Igneous Composition   Intermediate 50/50 Tectonic Setting Boundary Between
Igneous Composition   Mafic Dark   Oceanic Lithosphere
Igneous Texture   Intrusive Magma Cooling Slowly DEEP
Igneous Texture   Extrusive Lava History Quickly Surface Volcanic
Sedimentary Composition Clastic (Pieces)   Erosion Sedimentary Structures
Sedimentary Composition Chemical (PPT) Surface Environment Water
Sedimentary Composition Organic (Fossils)   Life Forms Present
Sedimentary Grain Size/Shape Large   High
Sedimentary Grain Size/Shape Small Energy of Low
Sedimentary Grain Size/Shape Rounded Environment High
Sedimentary Grain Size/Shape Angular   Low
Metamorphic Composition Quartzite   Sandstone
Metamorphic Composition Marble Original Rock Type Limestone
Metamorphic Composition Slate   Shale
Metamorphic Texture Foliated Degree of Low to High
Metamorphic Texture Nonfoliated Change Low
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