New game
Download
Get Academic Plan
Share game
Integrate it into your platform

You can integrate the game into an LMS compatible with LTI 1.1 or LTI 1.3 such as Canvas, Moodle, or Blackboard. This way, the scores will be automatically saved into the platform’s gradebook.
Download
You have exceeded the maximum number of games you can integrate into Google Classroom with your current Plan.

To integrate as many games as you want in Google Classroom, you need an Academic Plan or a Commercial Plan.

You have exceeded the maximum number of games you can integrate into Microsoft Teams with your current Plan.

To integrate as many games as you want in Microsoft Teams, you need an Academic Plan or a Commercial Plan.

Downloading games is an exclusive feature for users with an Academic Plan or a Commercial Plan.

Get your Academic Plan or your Commercial Plan now and start integrating your games into your LMS, website or blog.

If you wish, you can download a demo game here and test its integration:

Motion, Electricity & Light Quiz

Yes or No

Played 0

About this activity

Test your physics basics with quick true/false prompts.

Created by

India

Download the paper version to play

Make your own free game from our game creator
Compete against your friends to see who gets the best score in this game

Top Games

%
Anonymous
Anonymous
%
%
%
You have exceeded the maximum number of games you can print with your current Plan.

To print as many games as you want, you need an Academic Plan or a Commercial Plan.

Print your game
Motion, Electricity & Light Quiz
 

Motion, Electricity & Light QuizOnline version

Test your physics basics with quick true/false prompts.

by Vamika Sunil
1

A current-carrying wire in a magnetic field experiences a force that is perpendicular to both the velocity of the charge and the magnetic field.

2

The distance traveled on a velocity–time graph is negative.

3

A magnetic field exerts the same force on all moving charges regardless of orientation.

4

The power of a lens with a 20 cm focal length is +5 diopters.

5

Resistance is calculated as R = V / I, so a bulb drawing 10 A from 220 V has R = 22 Ω.

6

A body of 3 kg accelerated at 3 m/s^2 experiences a force of 9 N.

7

The force on the 3 kg body would be 1 N.

8

The resistance for the bulb is 0.022 Ω.

9

The retina itself produces light.

Are you sure you want to leave the page?

If you leave the page, you will lose your game progress.