Question:

Total volume of atoms present in a face centred cubic unit cell of a metal is ($r$ is atomic radius)

Updated On: Jun 7, 2022
  • $\frac{16}{3} \pi r^3$
  • $\frac{20}{3} \pi r^3$
  • $\frac{24}{3} \pi r^3$
  • $\frac{12}{3} \pi r^3$
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The Correct Option is A

Solution and Explanation

In $fcc$, no. of spheres in the unit cell
$= 8 \times \frac{1}{8} + 6 \times \frac{1}{2} = 4 $
Volume of 4 spheres = $4 \times \frac{4}{3} \pi r^3 = \frac{16}{3} \pi r^3$
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Concepts Used:

Solid State

Solids are substances that are featured by a definite shape, volume, and high density. In the solid-state, the composed particles are arranged in several manners. Solid-state, in simple terms, means "no moving parts." Thus solid-state electronic devices are the ones inclusive of solid components that don’t change their position. Solid is a state of matter where the composed particles are arranged close to each other. The composed particles can be either atoms, molecules, or ions. 

Solid State

Types of Solids:

Based on the nature of the order that is present in the arrangement of their constituent particles solids can be divided into two types;

  • Amorphous solids behave the same as super cool liquids due to the arrangement of constituent particles in short-range order. They are isotropic and have a broad melting point (range is about greater than 5°C).
  • Crystalline solids have a fixed shape and the constituent particles are arranged in a long-range order.