5. a) Use the rules in Example 4.4 (p. 99) and calculate sizes of octahedral and tetrahedral cavities in titanium and in zirconium. Use values for atomic radii given in Fig. 9.1 (p.291). (3 points) b) Consider the formation of carbides (MC) of these metals. Which metal is able to accommodate carbon atoms better, and which cavities (octahedral or tetrahedral) would be better suited to accommodate C atoms into metal's lattice? (4 points)

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5.
a) Use the rules in Example 4.4 (p. 99) and calculate sizes of octahedral and tetrahedral
cavities in titanium and in zirconium. Use values for atomic radii given in Fig. 9.1 (p.291).
(3 points)
b) Consider the formation of carbides (MC) of these metals. Which metal is able to
accommodate carbon atoms better, and which cavities (octahedral or tetrahedral) would be better
suited to accommodate C atoms into metal's lattice?
(4 points)
Transcribed Image Text:5. a) Use the rules in Example 4.4 (p. 99) and calculate sizes of octahedral and tetrahedral cavities in titanium and in zirconium. Use values for atomic radii given in Fig. 9.1 (p.291). (3 points) b) Consider the formation of carbides (MC) of these metals. Which metal is able to accommodate carbon atoms better, and which cavities (octahedral or tetrahedral) would be better suited to accommodate C atoms into metal's lattice? (4 points)
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