3. Tetragonal tin (Sn) has a unit cell with lattice constants a = b = 5.82 Å and c = 3.17 Å, and interaxial angles a = ẞ= y = 90°. a. Make a perspective drawing of the unit cell of tetragonal Sn. Do not draw in any Sn atoms, just lattice points. b. Outline the planes (011) and (011) in your drawing from part (a). c. What direction is common to the (011) and (011) planes in tetragonal tin? d. Calculate the angle between the [011] and [011] directions in tetragonal tin.

Chemistry & Chemical Reactivity
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Chapter12: The Solid State
Section12.6: Phase Changes
Problem 3.2ACP
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3. Tetragonal tin (Sn) has a unit cell with lattice constants a = b = 5.82 Å and c = 3.17 Å, and
interaxial angles a = ẞ= y = 90°.
a. Make a perspective drawing of the unit cell of tetragonal Sn. Do not draw in any Sn
atoms, just lattice points.
b. Outline the planes (011) and (011) in your drawing from part (a).
c. What direction is common to the (011) and (011) planes in tetragonal tin?
d. Calculate the angle between the [011] and [011] directions in tetragonal tin.
Transcribed Image Text:3. Tetragonal tin (Sn) has a unit cell with lattice constants a = b = 5.82 Å and c = 3.17 Å, and interaxial angles a = ẞ= y = 90°. a. Make a perspective drawing of the unit cell of tetragonal Sn. Do not draw in any Sn atoms, just lattice points. b. Outline the planes (011) and (011) in your drawing from part (a). c. What direction is common to the (011) and (011) planes in tetragonal tin? d. Calculate the angle between the [011] and [011] directions in tetragonal tin.
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