wayground logo

Free Printable Worksheets

NEW

Font size

S
M
L
XL
Worksheets

GENERAL PHYSICS REVIEW

Total questions: 15

Worksheet time: 8mins

Name
Class
Date
1.

What is the value of the electric field, in N/C, exactly in the midway between two equally positive particles?

a)

0

b)

1

c)

3

d)

2

2.

Which area is positively charged?

a)

A

b)

B

c)

C

d)

D

3.

Given the electric field, in which direction would the electron go into?

a)

A

b)

B

c)

C

d)

D

4.

Electric lines of force about negative point charge are?

a)

Circular, anticlockwise

b)

Circular, clockwise

c)

Radial, outward

d)

Radial, inward

5.

The electric field lines passing through a surface area are called:

a)

Electric Flux

b)

Electric Field

c)

Electric Charge

d)

Electric Lines

6.

A positive test charge placed near a negative charge would have________ potential energy.

a)

zero

b)

high

c)

low

d)

one

7.

The electric flux Φ through a surface

a)

is the electric field multiplied by the area.

b)

is the amount of electric field piercing the surface

c)

does not depend on the area involved

d)

is the line integral of the electric field around the edge of the surface

8.

A charge is sitting outside a closed surface. The net flux is

a)

double because it passes through two surfaces

b)

zero because it passes through two surfaces

c)

squared because it passes through two surfaces

d)

half because it passes through two surfaces

9.

What does a radial direction of an electric field signify?

a)

The magnitude of the electric field throughout all the points of the spherical Gaussian surface is inversely proportional to the linear charge density.

b)

The magnitude of the electric field is undeterminable throughout all the points of the spherical Gaussian surface.

c)

The magnitude of the electric field throughout all the points of the spherical Gaussian surface is directly proportional to the area

d)

The magnitude of the electric field is equal throughout all the points of the spherical Gaussian surface.

10.

Define potential difference

a)

The amount of energy per charge

b)

The amount of charge per second

c)

The amount of charge per energy

d)

The amount of voltage per second

11.

It refers to the “rate of the flow of the electric field”, and is signified by electric field flux lines coming out or going into a particle.

a)

Electric flux  

b)

Gauss’s Law

c)

Law of conservation of mechanical energy

12.

This law states that in any closed surface, the electric flux is equivalent to the net charge inside the closed surface divided by E0

a)

Electric flux  

b)

Gauss’s Law

c)

Law of conservation of mechanical energy

13.

It refers to the energy needed to move a charge against an electric field. The work done by an electric force to move a charge is expressed in terms of potential energy

a)

Electric potential energy

b)

Law of conservation of mechanical energy

14.

The _______________________ , when applied to electric charges, refers to the total kinetic and potential energies present in a system.

a)

Electric flux  

b)

Gauss’s Law

c)

Law of conservation of mechanical energy

15.

It is the charge of an electron in coulomb

a)

–1.602 ✕ 10 ^–19 C

b)

1.602 ✕ 10 ^–19 C