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Worksheets

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Total questions: 66

Worksheet time: 33mins

Name
Class
Date
1.

What is an atom?

a)

The smallest part of an element

b)

A substance made of two or more elements, chemically joined

c)

A substance made of two or more elements, not chemically joined

d)

The largest part of an element

2.

What is the radius of an atom?

a)

1 x 10-10 m

b)

1 x 1010 m

c)

1/1000 m

3.

What is an isotope?

a)

An atom of an element with a different number of neutrons

b)

An atom of an element with a different number of protons

c)

An atom of an element with a different number of electrons

4.

What is an ion?

a)

An atom of an element with a different number of neutrons

b)

An atom of an element with a different number of protons

c)

An atom of an element with a different number of electrons

5.

What is radioactive decay?

a)

An unstable nucleus breaks down to become more stable, giving off radiation

b)

An unstable atom breaks down to become more stable, giving off radiation

c)

An unstable element breaks down to become more stable, giving off radiation

d)

An unstable compound breaks down to become more stable, giving off radiation

6.

What is radioactive decay?

a)

An unstable nucleus breaks down to become more stable, giving off radiation

b)

An unstable atom breaks down to become more stable, giving off radiation

c)

An unstable element breaks down to become more stable, giving off radiation

d)

An unstable compound breaks down to become more stable, giving off radiation

7.

What is activity?

a)

The rate that nuclei decay

b)

The rate that ions decay

c)

The rate that protons decay

d)

The rate that electrons decay

8.

What is an atom?

a)

The smallest part of an element

b)

A substance made of two or more elements, chemically joined

c)

A substance made of two or more elements, not chemically joined

d)

The largest part of an element

9.

What is the radius of an atom?

a)

1 x 10-10 m

b)

1 x 1010 m

c)

1/1000 m

10.

What is an isotope?

a)

An atom of an element with a different number of neutrons

b)

An atom of an element with a different number of protons

c)

An atom of an element with a different number of electrons

11.

What is an ion?

a)

An atom of an element with a different number of neutrons

b)

An atom of an element with a different number of protons

c)

An atom of an element with a different number of electrons

12.

What is radioactive decay?

a)

An unstable nucleus breaks down to become more stable, giving off radiation

b)

An unstable atom breaks down to become more stable, giving off radiation

c)

An unstable element breaks down to become more stable, giving off radiation

d)

An unstable compound breaks down to become more stable, giving off radiation

13.

What is activity?

a)

The rate that nuclei decay

b)

The rate that ions decay

c)

The rate that protons decay

d)

The rate that electrons decay

14.

What is the unit of activity?

a)

Becquerels (Bq)

b)

Coulombs (C)

c)

Hertz (Hz)

d)

Pascals (Pa)

15.

What is count rate?

a)

Number of decays per second by a Geiger-Muller tube

b)

Number of ions per second by a Geiger-Muller tube

c)

Number of atoms per second by a Geiger-Muller tube

d)

Number of neutrons per second by a Geiger-Muller tube

16.

What is half life?

a)

The time taken for half of the nuclei in a sample to decay

b)

The time taken for half of the atoms in a sample to decay

c)

The time taken for half of the ions in a sample to decay

d)

The time taken for half of the neutrons in a sample to decay

17.

What is contamination?

a)

Coming into contact with radioactive materials

b)

Being exposed to radioactive materials

18.

What is irradiation?

a)

Coming into contact with radioactive materials

b)

Being exposed to radioactive materials

19.

What is ionisation?

a)

The process of removing electrons from atoms

b)

The process of removing protons from atoms

c)

The process of removing neutrons from atoms

d)

The process of removing nucei from atoms

20.

Select the effects of ionisation on human cells

a)

Cell death

b)

Cancer

c)

Mutation

21.

What is mass number?

a)

Total number of protons and neutrons in the nucleus of an atom

b)

Total number of protons and electrons in the nucleus of an atom

c)

Total number of neutrons and electrons in the nucleus of an atom

d)

Total number of particles that make up an atom

22.

How do electrons orbit atoms?

a)

In energy levels

b)

In shells

c)

In layers

d)

In locations

23.

What happens to an electron that absorbs electromagnetic radiation such as light?

a)

The electron moves away from the nucleus, to a higher energy level

b)

The electron moves closer to the nucleus, to a lower energy level

c)

The electron's position does not change

d)

The electron will be removed from the atom

24.

What happens to an electron that emits electromagnetic radiation such as light?

a)

The electron moves away from the nucleus, to a higher energy level

b)

The electron moves closer to the nucleus, to a lower energy level

c)

The electron's position does not change

d)

The electron will be removed from the atom

25.

Which model of the atom is JJ Thompson responsible for?

a)

Billiard ball model

b)

Plum pudding

c)

Nuclear model

d)

He is not responsible for a model, he contributed to understanding electron energy levels

26.

Which model of the atom is John Dalton responsible for?

a)

Billiard ball model

b)

Plum pudding

c)

Nuclear model

d)

He is not responsible for a model, he contributed to understanding electron energy levels

27.

Which model of the atom is Niels Bohr responsible for?

a)

Billiard ball model

b)

Plum pudding

c)

Nuclear model

d)

He is not responsible for a model, he contributed to understanding electron energy levels

28.

Which statement describes the billiard ball model?

a)

Atoms are tiny spheres that can't be split into anything smaller

b)

Atoms are balls of positive charge with negative electrons embedded throughout

c)

A central positive charge surrounded by negative charge

29.

Which statement describes the plum pudding model?

a)

Atoms are tiny spheres that can't be split into anything smaller

b)

Atoms are balls of positive charge with negative electrons embedded throughout

c)

A central positive charge surrounded by negative charge

30.

Which statement describes the nuclear model?

a)

Atoms are tiny spheres that can't be split into anything smaller

b)

Atoms are balls of positive charge with negative electrons embedded throughout

c)

A central positive charge surrounded by negative charge

31.

Which investigation did Rutherford carry out?

a)

Alpha particle scattering

b)

Beta particle scattering

c)

Gold atom scattering

d)

Electron scattering

32.

What discovery did James Chadwick make?

a)

The nucleus is positively charged

b)

Atoms have a nucleus

c)

The nucleus contains protons and neutrons

d)

Electrons orbit in energy levels

33.

Which particle is NOT located in the nucleus

a)

Proton

b)

Neutron

c)

Electron

34.

What is the relative charge of a proton?

a)

+1

b)

-1

c)

0

35.

What is the relative charge of a neutron?

a)

+1

b)

-1

c)

0

36.

What is the relative charge of an electron?

a)

+1

b)

-1

c)

0

37.

What is the relative mass of a proton?

a)

1

b)

0

c)

-1

38.

What is the relative mass of a neutron?

a)

1

b)

0

c)

-1

39.

What is the relative mass of an electron?

a)

1

b)

0

c)

-1

40.

Which of the following are types of radiation given off during decay? (Choose more than one)

a)

Alpha

b)

Beta

c)

Gamma

d)

Delta

41.

What is an alpha particle?

a)

Two protons and two neutrons

b)

An electron given off when a neutron breaks down

c)

A wave of electromagnetic radiation

42.

What is an alpha particle?

a)

Two protons and two neutrons

b)

An electron given off when a neutron breaks down

c)

A wave of electromagnetic radiation

43.

What is a beta particle?

a)

Two protons and two neutrons

b)

An electron given off when a neutron breaks down

c)

A wave of electromagnetic radiation

44.

What is the range of alpha radiation in air?

a)

3-5cm

b)

10-15cm

c)

Many metres

45.

What is the range of beta radiation in air?

a)

3-5cm

b)

10-15cm

c)

Many metres

46.

What is the range of gamma radiation in air?

a)

3-5cm

b)

10-15cm

c)

Many metres

47.

Which materials absorb alpha radiation?

a)

Paper and dead skin cells

b)

Thin aluminium foil

c)

Several centimetres of lead

48.

Which materials absorb beta radiation?

a)

Paper and dead skin cells

b)

Thin aluminium foil

c)

Several centimetres of lead

49.

What is the ionising power of alpha radiation

a)

Very high

b)

Medium

c)

Low

50.

What is the ionising power of beta radiation

a)

Very high

b)

Medium

c)

Low

51.

What is the ionising power of gamma radiation

a)

Very high

b)

Medium

c)

Low

52.

How does alpha decay alter the atomic number of the parent nucleus?

a)

Increases by 2

b)

Decreases by 2

c)

Increases by 1

d)

The atomic number does not change

53.

How does beta decay alter the atomic number of the parent nucleus?

a)

Increases by 2

b)

Decreases by 2

c)

Increases by 1

d)

The atomic number does not change

54.

How does gamma decay alter the atomic number of the parent nucleus?

a)

Increases by 2

b)

Decreases by 2

c)

Increases by 1

d)

The atomic number does not change

55.

How does alpha decay alter the mass number of the parent nucleus?

a)

Increases by 4

b)

Decreases by 4

c)

Decreases by 2

d)

The mass number does not change

56.

How does beta decay alter the mass number of the parent nucleus?

a)

Increases by 4

b)

Decreases by 4

c)

Decreases by 2

d)

The mass number does not change

57.

How does gamma decay alter the mass number of the parent nucleus?

a)

Increases by 4

b)

Decreases by 4

c)

Decreases by 2

d)

The mass number does not change

58.

Which type of radiation does the equation represent?

a)

Alpha

b)

Beta

c)

Gamma

59.

Which type of radiation does the equation represent?

a)

Alpha

b)

Beta

c)

Gamma

60.

Which type of radiation does the equation represent?

a)

Alpha

b)

Beta

c)

Gamma

61.

Which type of radiation does the equation represent?

a)

Alpha

b)

Beta

c)

Gamma

62.

Which type of radiation does the equation represent?

a)

Alpha

b)

Beta

c)

Gamma

63.

Which type of radiation is represented by the symbol:


a)

Alpha

b)

Beta

c)

Gamma

64.

Which type of radiation is represented by the symbol:


a)

Alpha

b)

Beta

c)

Gamma

65.

Which type of radiation is represented by the symbol:


β

a)

Alpha

b)

Beta

c)

Gamma

66.

Which type of radiation is represented by the symbol:


Ɣ

a)

Alpha

b)

Beta

c)

Gamma