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Crystal Structures Lowersixth Science Chemistry
 

Crystal Structures Lowersixth Science ChemistryVersión en línea

Test your knowledge of crystal structures in chemistry.

por YAKILI LMS
1

Diamond has a metallic lattice with free electrons.

2

The primitive cell is larger than the conventional unit cell.

3

Lattice parameters are used to describe the dimensions of a crystal lattice.

4

The close-packing of spheres in crystals leads to hexagonal close-packed (hcp) and face-centered cubic (fcc) structures.

5

The unit cell is the smallest repeating unit of a crystal lattice.

6

An ionic solid always has a cubic unit cell.

7

The melting point of ionic crystals is generally high due to strong ionic bonds.

8

All crystals are perfect without defects.

9

Metallic crystals exhibit a sea of delocalized electrons.

10

Metals do not conduct electricity in the solid state.

11

In a simple cubic lattice, there are four atoms per unit cell.

12

Ionic crystals often form crystals with high hardness and brittleness.

13

The density of a crystal is influenced by its packing efficiency.

14

All ionic crystals are brittle.

15

Diamond can conduct electricity as a semiconductor.

16

Graphite exhibits anisotropic properties due to its layered structure.

17

In a body-centered cubic (BCC) crystal, there is one atom at each corner and one in the center.

18

Silicon forms a simple cubic crystal in its natural form.

19

Graphite consists of layers of carbon atoms arranged in hexagonal rings with weak interlayer forces.

20

The unit cell is the largest repeating unit in a crystal lattice.

21

The density of a crystal does not depend on packing.

22

An ionic crystal can have a low melting point.

23

Graphite layers are held together by strong covalent bonds between layers.

24

Lattice parameters can describe only the shape, not the size.

25

Crystal defects can affect physical properties such as conductivity.

26

The primitive cell contains the smallest possible number of lattice points in a crystal.

27

Coordination number in graphite is 4.

28

In a FCC lattice, there are 2 atoms per unit cell.

29

Hexagonal close-packed contains 3 atoms per unit cell.

30

A covalent network crystal like diamond has atoms bonded in a continuous three-dimensional network.

31

In a cubic close-packed arrangement, there are 4 atoms per unit cell.

32

Diamond and silicon have a tetrahedral covalent network structure.

33

In an ionic crystal, electrostatic attraction between oppositely charged ions holds the lattice together.

34

Graphite's layers are held together by ionic bonds.

35

The melting point of covalent molecular crystals is typically very high.

36

Sodium chloride forms a face-centered cubic lattice.

37

A crystal lattice cannot be magnetic.

38

In metallic crystals, electrons are localized to specific atoms.

39

In a face-centered cubic (FCC) crystal, each corner atom and each face-centered atom contributes to the unit cell.

40

A crystal cannot have vacancies as defects.

41

Bragg's law relates the angles at which X-rays are diffracted by crystal planes.

42

The coordination number in a BCC lattice is 6.

43

The metallic bond involves a lattice of positive ions in a sea of electrons.

44

The simplest cubic unit cell contains one atom.

45

Silicon is widely used in semiconductors due to its crystal structure containing a tetrahedral network.

46

A crystal lattice can exist without any repeating unit.

47

Crystal structures cannot influence optical properties.

48

The coordination number in a face-centered cubic lattice is 12.

49

The coordination number in diamond is 4.

50

Crystals have a repeating 3D arrangement of atoms called a lattice.

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