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Silicon Tetrahedra by Charina Cameron • 4 oxygen atoms • 1 silicon atom in the center • Forms a 4-sided geometry • Each side is like an equilateral triangle • Creates a 4- ion
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Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

Dec 16, 2015

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Page 1: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

Silicon Tetrahedra by Charina Cameron

• 4 oxygen atoms

• 1 silicon atom in the center

• Forms a 4-sided geometry

• Each side is like an equilateral triangle

• Creates a 4- ion

Page 2: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

Some Silicate structures• Single tetrahedrons, single chains, double chains,

sheets, rings, and 3-D networks

Page 3: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.
Page 4: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

SINGLE SILICATE TETRAHEDRA

• Garnet (red)

• Olivine (green)(Fe,Mg)SiO4

crystal

Page 5: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

SINGLE CHAIN SILICATES

• Pyroxene Group [Fe,Mg,Ca,Al silicates]:

– Augite (note the near 90o angle of the two cleavages)

Page 6: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

DOUBLE CHAIN SILICATES

• Amphibole Group [Na,Ca,Fe,Mg,Al silicates w/ H2O]:

– The mineral hornblende is common– Nnote the 156 degree angle of the two cleavages

Page 7: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

SHEET SILICATES

• Muscovite mica [K,Al + H2O] Biotite mica [K,Mg,Fe,Al + H2O]

– Note the single perfect cleavage and elastic sheets

• Talc Kaolinite (clay)

[K,Al + H2O]

Page 8: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

ZEOLITE RING SILICATES

• Naturalite from North Mountain Basalt Formation

Page 9: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

FRAMEWORK SILICATES• Feldspar group:

– Most abundant mineral group– Orthoclase (K-feldspar)

– Albite (Na-Plagioclase)

– Labradorite (Ca-rich Plagioclase)

2 cleavages

note twinning lines

Page 10: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

FRAMEWORK SILICATES• Quartz (SiO2), the most common mineral:

• Chalcedony (SiO2):– microcrystalline quartz– many var. (chert, jasper, flint)

amethyst

quartz crystal

milky quartzrose quartz

Page 11: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

FRAMEWORK SILICATES

• Hexagonal quartz crystal

Page 12: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

FRAMEWORK SILICATES

• Amethyst (quartz) geode from the Scots Bay Formation

Page 13: Silicon Tetrahedra by Charina Cameron 4 oxygen atoms 1 silicon atom in the center Forms a 4-sided geometry Each side is like an equilateral triangle Creates.

FRAMEWORK SILICATES

• Amethyst (quartz) geode replacing small straight tree trunk surrounded by chert (from Scots Bay Fm)