Unit 5: Torque and Rotational Dynamics
Physics 1 · Unit 5 · Paper 1

Torque and Rotational Dynamics unit test

A test on this unit alone, marked as a percentage and a letter grade — for the test your class is actually sitting, rather than for May. Answer everything, then submit once: seeing the answer to question 3 before attempting question 4 makes the final percentage meaningless.

Each paper is built from this unit’s 38 terms and is the same for everyone, so a teacher can assign “Unit 5, Paper 1” and every student sits the identical test. Multiple choice is marked objectively; the written sections you mark yourself against the model answer and rubric.
Suggested time 34 min 31 points0/17 attempted
1

I depends on the axis, not just the object

2

Why a wrench with a longer handle works

3

Torque

4

Tangential vs centripetal acceleration

5

Torque sign convention

6

Ranking the shape coefficients

7

Center of gravity and tipping

8

Linear and angular quantities

9

Two equilibrium conditions, not one

10

Rotational vs translational analogues

11

Angular displacement, velocity, acceleration

12

Parallel axis theorem qualitatively

Short answer 1. Define or explain: Lever arm

3 pts

Short answer 2. Define or explain: Choosing a pivot

3 pts

Short answer 3. Define or explain: Angular acceleration from torque

3 pts

Short answer 4. Define or explain: Rotational kinematic equations

3 pts

Free response

7 pts

A uniform plank of mass 8.0 kg and length 4.0 m rests on two supports. Support A is at the left end and support B is 3.0 m from the left end. A block of mass 12.0 kg is placed 3.5 m from the left end. (a) Draw a free-body diagram for the plank, labeling all forces. (b) Calculate the force exerted by support B on the plank. (c) The block is slowly moved toward the right end. Determine the distance from the left end at which the plank will begin to tip, and explain the physical condition that defines tipping.

Draw a free-body diagram for the plank, labeling all forces.

Calculate the force exerted by support B on the plank.

The block is slowly moved toward the right end. Determine the distance from the left end at which the plank will begin to tip, and explain the physical condition that defines tipping.