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Bonding & Structure Lowersixth Science Chemistry
 

Bonding & Structure Lowersixth Science ChemistryOnline version

Quick true/false on bonding and structure

by YAKILI LMS
1

Polarity of a molecule is determined solely by the number of atoms, not their arrangement.

2

All noble gases form compounds easily because of their full valence shells.

3

Hydrogen bonds require hydrogen to bond only with oxygen in all cases.

4

All substances containing carbon form covalent bonds exclusively.

5

Covalent bonds always involve equal sharing of electrons between atoms.

6

Giant ionic lattices are held together by covalent bonds between ions.

7

Metallic bonding involves the sharing of valence electrons in a fixed, localized pair.

8

The boiling point of a substance is not affected by its molecular structure.

9

A molecule with a linear geometry cannot be polar.

10

Graphite conducts electricity poorly due to its ionic bonds.

11

Ionic compounds dissolve in water to form non-conductive solutions.

12

Ionic bonding occurs when electrons are completely transferred from one atom to another.

13

The physical properties of a substance are entirely determined by its color.

14

In metallic bonding, the electrons do not move freely and are fixed in place.

15

Mass and density of a substance are unaffected by its bonding type.

16

Van der Waals forces are negligible in all liquids and gases.

17

Non-polar molecules always have high boiling points.

18

Liquid water has no hydrogen bonding between its molecules.

19

A polar molecule has equal sharing of electrons in all bonds.

20

The bonding in neon gas is covalent and highly reactive.

21

Diamond is an example of a molecule with ionic bonds.

22

The term 'bond length' refers to the distance between nuclei in a bond only in ionic compounds.

23

The melting point of ionic compounds is generally low due to weak attractions.

24

All metals conduct electricity in solid state due to delocalized electrons.

25

Hydrogen bonding only occurs in compounds containing carbon-hydrogen bonds.

26

Electrostatic attraction in ionic compounds occurs only at the surface of crystals.

27

A metallic bond involves a sea of localized positive ions with fixed electrons.

28

The strength of van der Waals forces is greater than that of ionic bonds in most substances.

29

The strength of ionic bonds is generally weaker than hydrogen bonds in most substances.

30

In an ionic lattice, all ions have the same charge, resulting in a neutral solid.

31

Ionic compounds are always liquids at room temperature.

32

The difference between boiling and melting points is due to changes in chemical identity.

33

Ionic compounds can have a random arrangement of ions in the solid without a lattice.

34

Covalent network solids consist of discrete molecules held together by ionic bonds.

35

A non-polar molecule has a large difference in electronegativity between bonded atoms.

36

Hydrogen bonding is a type of covalent bond between hydrogen and carbon.

37

Electronegativity is not used to predict bond type between atoms.

38

Covalent bonds share electron pairs between atoms.

39

A substance with strong ionic bonds cannot dissolve in water.

40

Polar covalent bonds result in nonpolar overall molecules in all cases.

41

The VSEPR theory is used to predict the shapes of ions in a crystal lattice.

42

The water molecule is non-polar because its bonds are nonpolar.

43

A covalent bond can form between two ions with opposite charges.

44

In a polar covalent bond, electrons are shared but spend more time with one atom.

45

Intermolecular forces are stronger than the chemical bonds within molecules.

46

Ionic compounds conduct electricity when melted.

47

In metallic bonding, electrons are localized around individual atoms.

48

London dispersion forces are a type of strong permanent dipole-dipole interaction.

49

Molecule polarity only depends on the presence of polar bonds, not their geometry.

50

Intermolecular forces do not affect boiling points of substances.

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