Skip to content
StickMan Physics

StickMan Physics

Animated Physics Lessons

Menu
  • Home
    • Stickman Physics Music: Blending Science with Sound
    • Unit 1: One Dimensional Motion: Physics Introduction
    • Unit 2: Two Dimensional Motion: Projectile and Non-Projectile
    • Unit 3: Newton’s Laws of Motion and Force
    • Unit 4: Universal Gravitation and Circular Motion
    • Unit 5: Work, Power, Mechanical Energy, and Simple Machines
    • Unit 6: Momentum Impulse and Conservation of Momentum
    • Unit 7: Electrostatics
    • Unit 8: Current and Circuits
    • Unit 9: Magnets and Magnetism
    • Unit 10: Waves
    • Unit 11: Electromagnetic Waves
    • Unit 12: Nuclear Physics
  • Table of Contents
  • Practice
  • Equation Sheet
  • Digital Learning
  • Contact
Menu

Work Power and Energy Physics Practice

Work, Power, and Energy Physics Practice

Get the work, power, and energy physics practice you need for your test. Generate 10 and 20 question quizzes here and find other useful practice.

Find a direct link to the work and power section, the simple machines, or energy section of the equation sheet or click below for the entire equation sheet.

  • Physics Equation Sheet
Work Power Energy Physics Practice

Random 10 Questions from the Work, Power, and Energy Test Bank

10 Work Power and Mechanical Energy Questions

1 / 10

A 460 N box is hoisted above a truck by John who applies 60 N of force.  What is the actual mechanical advantage of the pulley system?

q2

2 / 10

John pushes a box up a ramp using a 10 m plank.  The box moves a vertical distance of 2 m and weighs 500 N, ideally with how much force must he push?

q1

3 / 10

Simple Machine

The picture above is of a(n) ___________________.

4 / 10

Which is a simple machine consisting of a bar or plank that turns around a pivot point?

5 / 10

How much does kinetic energy change when the velocity of an object doubles?

kinetic energy changes

6 / 10

How much more potential energy do you have when an object is five times higher?

GPE times different

7 / 10

How much work would you have done if you pushed on a 2100 kg car with a force of 210N that did not move?

W = Fd

You have to move the object in the direction of force to do work.  No work is done if the object does not move.

8 / 10

A student lifts a physics book applying a force equal to is 10N weight a distance of 3m up. How much work did the student do on the book?

Work equals force times distance (W = Fd) and the force is the weight of the book that is lifted up

W = Fd = (10)(3) = 20 N

 

9 / 10

What is the unit of work?

The joule is the unit of work and all of the energies (ME, KE, PE, Heat)

10 / 10

What is the power output when it takes a force of 50N forward is applied to move a box 6 meters in the same direction in 6 seconds?

power 1

Your score is

LinkedIn Facebook Twitter

Random 20 Questions from the Work, Power, and Energy Test Bank

20 Work Power and Mechanical Energy Questions

1 / 20

Tom pushes a 50 kg box up a 15 meter incline plane by pushing with a force of 100 N.  The end result is that the box was lifted 2 meters.  What was the efficiency of this simple machine?

q8

2 / 20

What is the efficiency of 4 meters ramp used to lift a 1400 N sled full of toys 1 meter off the ground pushing with a force of 500 N?

q7

3 / 20

What is the ideal mechanical advantage when a ramp of 4 meters is used to lift a 1400 N sled full of toys 1 meter off the ground pushing with a force of 500 N?

q6

4 / 20

A 460 N box is hoisted above a truck by John who applies 60 N of force.  What is the actual mechanical advantage of the pulley system?

q2

5 / 20

Simple Machine

The picture above is of a(n) ___________________.

6 / 20

A pool ball is flung off of a 0.68 m high table and the ball hits the floor with a speed of 6.0 m/s.  How fast was the ball moving when it left the pool table?

conservation of energy

7 / 20

If a car has a mass of 750 kg, how much force is required to stop the car if it was traveling 12.5 m/s and took 10 m to stop?

Work to stop KE

8 / 20

Potential energy is dependent on __________________.

Location or height which is a type of location

how far you pull the a bow back or how high you lift an object

See types of distance and height in the equations below

Potential energy is equal to the work done, force applied over a distance, to store it  (PE = Fd)

Gravitational potential energy is equal to its weight (mass times gravity) lifted a height to store it (GPE = mgh)

9 / 20

How much kinetic energy does a 30 kg boar have when running 6 m/s?

10 / 20

Mechanical Energy is composed of ____________.

Mechanical energy is composed of potential energy plus kinetic energy.  Its the total of the moving and what could be released as moving energy.

ME = KE + PE

11 / 20

How much more potential energy do you have when an object is five times higher?

GPE times different

12 / 20

How much potential energy does a 568 N ballerina have when she leaped 0.35 meters off the ground?

GPE = mgh or GPE = Fwh

you are given weight not mass so use this form:

GPE = Fwh = (568)(0.35) = 198.8 J

GPE = mgh or GPE = Fwh

You are given weight not mass so use this form:

GPE = mgh = (50)(3.5) = 175 J

13 / 20

How much potential energy is in a  50kg boulder 3.5m off the ground?

14 / 20

Sergio pushed a box with 50 Newtons of force forward.  When it did not move he pushed the box even harder with 100 Newtons of force but the box still did not move.  When did Sergio do more work?

W = Fd

If you do not move the object, you have done no work no matter how much force you apply

15 / 20

How much work would you have done if you pushed on a 2100 kg car with a force of 210N that did not move?

W = Fd

You have to move the object in the direction of force to do work.  No work is done if the object does not move.

16 / 20

How much work would a 75 kg student do to climb up a ladder 9 meters?

You must lift your weight as the force when going up

Fw = mg = (75)(9.8) = 735 N

W = Fd = (735)(9) = 6615 J

17 / 20

A student lifts a physics book applying a force equal to is 10N weight a distance of 3m up. How much work did the student do on the book?

Work equals force times distance (W = Fd) and the force is the weight of the book that is lifted up

W = Fd = (10)(3) = 20 N

 

18 / 20

What is the unit of energy?

Joules (J) is the unit for energy (ME,PE,KE,Heat, or work)

Work is the transformation of one form of energy to another.

19 / 20

What is the unit of power?

Watt is the unit of power which is a Joule per second  W = F/d

20 / 20

What is the power output when it takes a force of 50N forward is applied to move a box 6 meters in the same direction in 6 seconds?

power 1

Your score is

LinkedIn Facebook Twitter

Resources

  • StickMan Physics Home Page
  • Work, Power, and Energy Content Page
  • Stickman Physics Table of Contents: Use the search bar or click here to easily find a unit or topic
  • Physics Equation Sheet: commonly used equations, variables, and units
  • Rule of Ones: analyzing equations to determine how other variables change
  • Holdensclass.com: Video walk-through of Many Physics Concepts

StickMan Physics Logo  StickMan Physics Home

Stickman Physics Music Page

Unit 1: One Dimensional Motion
Unit 2: 2D Motion
Unit 3: Newton’s Laws and Force
Unit 4: Universal Gravitation and Circular Motion
Unit 5: Work, Power, Mechanical Advantage, and Simple Machines
Unit 6: Momentum, Impulse, and Conservation of Momentum
Unit 7: Electrostatics
Unit 8: Current and Circuits
Unit 9: Magnetism and Electromagnetism
Unit 10: Intro to Waves
Unit 11: Electromagnetic Waves
Unit 12: Nuclear Physics

AP Physics 1 Pages (Deeper Dive into Concepts)

DIY Creations for Fun and Physics

Teachers: Do you want lessons and handouts already put together?  Find resources at TeachersPayTeachers.

©2026 StickMan Physics | Built using WordPress and Responsive Blogily theme by Superb

Terms and Conditions - Privacy Policy