10. Universal Testing Machine can be used to conduct both tensile and compressive testing. a) True b) False 11. Detemine the crystal structure for the following: (a) a metal with ao = 4.9489 A, r = 1.75 A and one atom per lattice point; and (b) a metal with ao = 0.42906 nm, r = 0.1858 nm and one atom per lattice point. 12. Calculate the radius of a vanadium atom, given that V has a BCC crystal structure, a density of 5.96 g/cm?, and an atomic weight of 50.9 g/mol. 13. A hypothetical metal has the simple cubic crystal structure shown in Figure 1 below. If its atomic weight is 70.4 g/mol and the atomic radius is 0.126 nm, compute its density. 1 Hard-sphere unit cell representation of the simple cubic crystal structure. 14. Calculate the force of attraction between a K' and an O² ion the centers of which are separated by a distance of 1.5 nm. 15. Zirconium has an HCP crystal structure and a density of 6.51 g/cm³. (a) What is the volume of its unit cell in cubic meters? (b) If the c/a ratio is 1.593, compute the values of c and a . 16. Rhodium has an atomic radius of 0.1345 nm (1.345 A) and a density of 12.41 g/cm³. Determine whether it has an FCC or BCC crystal structure.

Introductory Chemistry: A Foundation
9th Edition
ISBN:9781337399425
Author:Steven S. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Donald J. DeCoste
Chapter14: Liquids And Solids
Section: Chapter Questions
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Chemistry for Engineers Final Mc x
O File | C:/Users/HP/Downloads/Chemistry%20for%20Engineers%20Final%20Module.pdf
178
of 231
A) Read aloud
V Draw
F Highlight
d) 4
O Erase
10. Universal Testing Machine can be used to conduct both tensile and compressive testing.
a) True
b) False
11. Determine the crystal structure for the following:
and one atom per lattice point; and (b) a metal with ao = 0.42906 nm, r = 0.1858 nm and one
atom per lattice point.
a metal with ao = 4.9489 A, r = 1.75 Å
12. Calculate the radius of a vanadium atom, given that V has a BCC crystal structure, a density
of 5.96 g/cm3, and an atomic weight of 50.9 g/mol.
ORGASSROOM
13. A hypothetical metal has the simple cubic crystal structure shown in Figure 1 below. If its
atomic weight is 70.4 g/mol and the atomic radius is 0.126 nm, compute its density.
AT FOR PUBLIC
Figure 1 Hard-sphere unit cell representation of the simple cubic crystal structure.
14. Calculate the force of attraction between a K* and an 02 ion the centers of which are
separated by a distance of 1.5 nm.
15. Zirconium has an HCP crystal structure and a density of 6.51 g/cm3.
(a) What is the volume of its unit cell in cubic meters?
(b) If the c/a ratio is 1.593, compute the values of c and a .
16. Rhodium has an atomic radius of 0.1345 nm (1.345 A) and a density of 12.41 g/cm3.
Determine whether it has an FCC or BCC crystal structure.
Transcribed Image Text:Chemistry for Engineers Final Mc x O File | C:/Users/HP/Downloads/Chemistry%20for%20Engineers%20Final%20Module.pdf 178 of 231 A) Read aloud V Draw F Highlight d) 4 O Erase 10. Universal Testing Machine can be used to conduct both tensile and compressive testing. a) True b) False 11. Determine the crystal structure for the following: and one atom per lattice point; and (b) a metal with ao = 0.42906 nm, r = 0.1858 nm and one atom per lattice point. a metal with ao = 4.9489 A, r = 1.75 Å 12. Calculate the radius of a vanadium atom, given that V has a BCC crystal structure, a density of 5.96 g/cm3, and an atomic weight of 50.9 g/mol. ORGASSROOM 13. A hypothetical metal has the simple cubic crystal structure shown in Figure 1 below. If its atomic weight is 70.4 g/mol and the atomic radius is 0.126 nm, compute its density. AT FOR PUBLIC Figure 1 Hard-sphere unit cell representation of the simple cubic crystal structure. 14. Calculate the force of attraction between a K* and an 02 ion the centers of which are separated by a distance of 1.5 nm. 15. Zirconium has an HCP crystal structure and a density of 6.51 g/cm3. (a) What is the volume of its unit cell in cubic meters? (b) If the c/a ratio is 1.593, compute the values of c and a . 16. Rhodium has an atomic radius of 0.1345 nm (1.345 A) and a density of 12.41 g/cm3. Determine whether it has an FCC or BCC crystal structure.
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