$A$ solid has $CCP$ arrangement having atoms $A, B, C$. If $A$ atoms are present at face centres,$B$ at corners and $C$ atoms occupy $50\%$ tetrahedral voids,then the molecular formula of the solid will be:

  • A
    $A_3 B C_4$
  • B
    $A_3 B C_8$
  • C
    $A_4 B C_3$
  • D
    $A_3 B C_2$

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In $FCC$,the distance between the nearest tetrahedral voids is:

In a hexagonal close-packed $(HCP)$ structure,the third layer covers the ........ holes created between the first and second layers.

Fill in the blanks:
$(a)$ In $ccp$ structure,$a = \dots \dots r$.
$(b)$ In $hcp$ structure,packing efficiency $= \dots \dots \%$.
$(c)$ In $bcc$ structure,percentage of packing efficiency $= \dots \dots \%$.

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$Ga$ (atomic mass $70 \, u$) crystallizes in a hexagonal close packed structure. The total number of voids in $0.581 \, g$ of $Ga$ is $\dots \dots \dots \dots \dots \times 10^{21}$. (Round off to the Nearest Integer).

Give two examples of metals that crystallize in the $hcp$ (hexagonal close-packed) structure.

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