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What is the two-dimensional coordination...

What is the two-dimensional coordination number of a molecule in square close-packed layer?

A

2

B

4

C

6

D

12

Text Solution

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The correct Answer is:
C
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Three-dimensional close packing in solids is referred to as stacking the second square closed packing exactly above the first. In this tight packing, the spheres are horizontally and vertically correctly balanced. Similarly, we can obtain a simple cubic lattice by adding more layers, one above the other. This can be done in two ways. Three-dimensional close packing from two-dimensional square close-packed layers: By putting the second square closed packing exactly above the first, it is possible to form three-dimensional close packing. In this tight packing, the spheres are horizontally and vertically correctly balanced. Similarly, we can obtain a simple cubic lattice by adding more layers, one above the other.Three-dimensional close packing from two-dimensional hexagonal close-packed layers: With the assistance, of two-dimensional hexagonal packed layers, three-dimensional close packing can be obtained. The coordination number of cubic closed packing is:

Three-dimensional close packing in solids is referred to as stacking the second square closed packing exactly above the first. In this tight packing, the spheres are horizontally and vertically correctly balanced. Similarly, we can obtain a simple cubic lattice by adding more layers, one above the other. This can be done in two ways. Three-dimensional close packing from two-dimensional square close-packed layers: By putting the second square closed packing exactly above the first, it is possible to form three-dimensional close packing. In this tight packing, the spheres are horizontally and vertically correctly balanced. Similarly, we can obtain a simple cubic lattice by adding more layers, one above the other.Three-dimensional close packing from two-dimensional hexagonal close-packed layers: With the assistance, of two-dimensional hexagonal packed layers, three-dimensional close packing can be obtained. The correct statement about zns crystal is:

Three-dimensional close packing in solids is referred to as stacking the second square closed packing exactly above the first. In this tight packing, the spheres are horizontally and vertically correctly balanced. Similarly, we can obtain a simple cubic lattice by adding more layers, one above the other. This can be done in two ways. Three-dimensional close packing from two-dimensional square close-packed layers: By putting the second square closed packing exactly above the first, it is possible to form three-dimensional close packing. In this tight packing, the spheres are horizontally and vertically correctly balanced. Similarly, we can obtain a simple cubic lattice by adding more layers, one above the other.Three-dimensional close packing from two-dimensional hexagonal close-packed layers: With the assistance, of two-dimensional hexagonal packed layers, three-dimensional close packing can be obtained. What will be the ratio of radii of the spheres in cubic systems simple cubic, body centred cubic and face centred cubic systems. if 'a' stands for the edge length.

TARGET PUBLICATION-SOLID STATE-QUESTION
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  2. In a simple or primitive unit cell, what is the number of atoms per un...

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  3. What is the two-dimensional coordination number of a molecule in squar...

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  4. In planar square close packing , each sphere is surrounded by .

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  5. In a close packed array of N spheres, the number of tetrahedral holes ...

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  6. the number of tetrahedral voids per unit cell in NaCl crystal is ...

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  7. Position of octahedral voids in fcc structure is//are

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  8. The coordination number in hcp is

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  9. The packing efficiency of a two-dimensional square unit cell shown bel...

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  10. The space occupied by b.c.c. arrangement is approximately

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  11. The maximum percentage of available volume that can be filled in a fac...

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  12. A solid is made of two element X and Y .The atoms Z are in C CP arrang...

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  13. A solide A^(+)B^(-) has the B^(-) ions arranged as below. If the A^(+)...

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  14. IF the radius ratio of cation to anion is in the range of 0.2...

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  15. For tetrahedral co-ordination the radius ratio (r^(+) //r^(-))should b...

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  16. For cubic - coordination the value of ratio is

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  17. In CsCI lattice the coordination number of Cs ion is

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  18. In NaCl lattice , the radius ratio is [ Given : r(Na^(+))=0.95 ...

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  19. For some crystals , the radius ratio for cation and anion is 0.525 its...

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  20. How many chloride ions are there around sodium ion in sodium chloride ...

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