Project 3: Figure 1 shows the atomic packing schemes for several different crystallographic directions f nypothetical metal. For each direction, the circles represent only those atoms contained withi cell, which circles are reduced from their actual size. 0.40 nm 100L, (0101 0.50 nm (001) -0.64 nm 1011L (I01) 0.566 nm Figure 1 (a) To what crystal system does the unit cell belongs. (b) What would this crystal structure be called?

Elements Of Electromagnetics
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Project 3:
Figure 1 shows the atomic packing schemes for several different crystallographic directions for some
hypothetical metal. For each direction, the circles represent only those atoms contained within a unit
cell, which circles are reduced from their actual size.
-0.40 nm
(1001, (0101
0.50 nm
(001)
0.64 nm
(011L (101)
0.566 nm-
110)
Figure 1
(a) To what crystal system does the unit cell belongs.
(b) What would this crystal structure be called?
(c) If the density of this metal is 18.91 g/cm, determine its atomic weight?
(d) Explain how atomic structure and composition (Alloying elements) influence the properties of
parent material.
Transcribed Image Text:Project 3: Figure 1 shows the atomic packing schemes for several different crystallographic directions for some hypothetical metal. For each direction, the circles represent only those atoms contained within a unit cell, which circles are reduced from their actual size. -0.40 nm (1001, (0101 0.50 nm (001) 0.64 nm (011L (101) 0.566 nm- 110) Figure 1 (a) To what crystal system does the unit cell belongs. (b) What would this crystal structure be called? (c) If the density of this metal is 18.91 g/cm, determine its atomic weight? (d) Explain how atomic structure and composition (Alloying elements) influence the properties of parent material.
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