A ferric oxide crystallizes in a hexagonal close-packed array of oxide ions with two out of every three octahedral holes occupied by ferric ions. The formula of the ferric oxide is-

1. FeO

2. Fe2O3

3. Fe3O4

4. Fe3O2

Subtopic:  Voids, Radius Ratio & Coordination Number |
 72%
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A compound forms a hexagonal close-packed structure. The total number of voids in 0.5 moles

of the compound will be -

1. 9.033 × 1023
2. 3.011 × 1023
3. 6.023 × 1023
4. 8.024 × 1023

Subtopic:  Voids, Radius Ratio & Coordination Number |
 53%
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A compound is formed by two elements M and N. The element N forms ccp and atoms of M occupy 1/3rd of tetrahedral voids. The formula of the compound would be -

1. MN

2. M3N4

3. M2N3

4. M3N2

Subtopic:  Voids, Radius Ratio & Coordination Number |
 76%
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In a cubic close-packed structure, the coordination number of atoms is -

1. 12

2. 8

3. 1

4. 4

Subtopic:  Voids, Radius Ratio & Coordination Number |
 67%
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A cubic solid is made of two elements P and Q. Atoms of Q occupy the corners of the cube and P occupy the body centre. The formula of this compound and the coordination number of Q are respectively - 

1. PQ, 8

2. P2Q, 8

3. P2Q2, 8

4. PQ, 12

Subtopic:  Voids, Radius Ratio & Coordination Number |
 76%
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If the radius of the octahedral void is r and the radius of the atoms in close packing is R, the relation between r and R would be -

1. r = 0.114R

2. r = 0.444R

3. r = 1.414R

4. r = 0.414R

Subtopic:  Voids, Radius Ratio & Coordination Number |
 66%
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