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Calculations Involving Unit Cell Dimensions Video Lecture - NEET

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1. What are unit cell dimensions in crystallography?
Ans. Unit cell dimensions in crystallography refer to the lengths of the edges and angles between them that define the unit cell, which is the basic repeating structural unit of a crystal lattice. These dimensions determine the overall size and shape of the crystal.
2. How are unit cell dimensions calculated?
Ans. Unit cell dimensions can be calculated using various techniques in crystallography. One common method is X-ray crystallography, where X-ray diffraction patterns are analyzed to determine the angles and distances between atoms in the crystal lattice. These measurements are then used to calculate the unit cell dimensions.
3. Why are unit cell dimensions important in crystallography?
Ans. Unit cell dimensions are important in crystallography as they provide valuable information about the crystal structure. They help determine the arrangement of atoms or molecules within the crystal lattice, which in turn affects various physical and chemical properties of the material.
4. How do unit cell dimensions affect the properties of a crystal?
Ans. Unit cell dimensions influence several properties of a crystal, such as density, thermal expansion, and mechanical strength. For example, a smaller unit cell may result in a denser crystal, while changes in unit cell dimensions due to temperature variations can affect thermal expansion coefficients. These properties have significant implications in fields like materials science and solid-state physics.
5. Can unit cell dimensions be altered or manipulated?
Ans. Yes, unit cell dimensions can be altered or manipulated through various methods. External factors such as temperature, pressure, and doping can cause changes in the unit cell dimensions. Additionally, crystal growth techniques like epitaxy can be used to control the size and shape of the unit cell, allowing for the development of tailored materials with specific properties.
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