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Worksheets

Intermolecular Forces

Total questions: 10

Worksheet time: 5mins

Name
Class
Date
1.

Which of the following compounds consists of dipole molecules?

a)

H2S

b)

CH4

c)

CO2

d)

N2

2.

Which element is expected to demonstrate the strongest dispersion forces and have the highest boiling point?

a)

Ne

b)

Kr

c)

Xe

d)

Rn

3.

A compound has the molecular formula C30H62. The compound is known to have nonpolar molecules and exists as a solid at room temperature. Which is the biggest factor responsible for the properties of this compound?

a)

ion-molecule attractions

b)

London dispersion forces

c)

dipole-dipole attractions

d)

hydrogen bonding

4.

Which statement explains why Br2 is a liquid at STP and I2 is a solid at STP?

a)

Molecules of Br2 are polar, and molecules of I2 are nonpolar

b)

Molecules of Br2 are nonpolar, and molecules of I2 are polar

c)

Molecules of Br2 have stronger intermolecular forces than molecules of I2.

d)

Molecules of I2 have stronger intermolecular forces than molecules of Br2.

5.

In which molecule is hydrogen bonding the strongest?

a)

HF

b)

HCl

c)

HBr

d)

HI

6.

The correct ranking of intermolecular forces in order of greatest to least

a)

dipole-dipole, Hydrogen bonding, van der Waal forces

b)

van der Waal forces, hydrogen bonding, dipole-dipole attraction

c)

Hydrogen bonding, dipole-dipole attraction, van der Waals forces

d)

van der waal forces, dipole-dipole attractions, Hydrogen bonding

7.

Molecule-ion attraction are found in

a)

Cu (s)

b)

CO2 (g)

c)

KBr (l)

d)

NaCl (aq)

8.

These intermolecular forces permit Helium and Hydrogen to exist in liquid or solid phases under conditions of low temperature and high pressure

a)

molecule-ion attraction

b)

dipole-dipole attraction

c)

van der Waal forces

d)

Hydrogen bonds

9.

Which term represents an intermolecular force in a sample of water?

a)

hydrogen bonding

b)

covalent bonding

c)

metallic bonding

d)

ionic bonding

10.

The attraction that exists between carbon dioxide molecules in solid carbon dioxide is due to

a)

covalent bonding

b)

Hydrogen bonding

c)

dipole-dipole attractions

d)

van der Waal forces