The vacant space in the BCC lattice cell is: 

1. 26%

2. 48%

3. 23%

4. 32%

Subtopic:  Voids, Radius Ratio & Coordination Number |
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The number of octahedral void(s) per atom present in a cubic close-packed structure is: 

1. 1

2. 3

3. 2

4. 4

Subtopic:  Voids, Radius Ratio & Coordination Number |
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Structure of a mixed oxide is cubic close-packed (CCP). The cubic unit cell of mixed oxide is composed of oxide ions. One-fourth of the tetrahedral voids are occupied by divalent metal A and the octahedral voids are occupied by a monovalent metal B. The formula of the oxide is:

1. A2BO2
2. A2B3O4
3. AB2O2
4. ABO2

Subtopic:  Voids, Radius Ratio & Coordination Number |
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A solid compound XY has NaCl structure. If the radius of the cation is 100 pm, the radius of the anion (Y) will be:

1. 165.7 pm 

2. 175.1 pm

3. 322.5 pm 

4. 241.5 pm

Subtopic:  Voids, Radius Ratio & Coordination Number |
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Copper crystallizes in a face-centered cubic lattice with a unit cell length of 361 pm. The radius of the copper atom is:

1. 128 pm

2. 157 pm

3. 181 pm

4. 108 pm

Subtopic:  Voids, Radius Ratio & Coordination Number |
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If 'a’ stands for the edge length of the cubic systems: simple cubic, body-centered cubic, and face-centered cubic, then the ratio of radii of the spheres in these systems will be respectively: 

1. 12a : 34a : 122a

2. 12a : 3a : 12a

3. 12a : 32a : 22a

4. 1a : 3a : 2a

Subtopic:  Voids, Radius Ratio & Coordination Number |
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If NaCl is doped with 10-4mol% of SrCl2, the concentration of cation vacancies will be (NA= 6.02×1023mol-1):

1. 6.02×1015 mol-1

2. 6.02×1016 mol-1

3. 6.02×1017 mol-1

4. 6.02×1014 mol-1

Subtopic:  Voids, Radius Ratio & Coordination Number |
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