Unit 3: Work, Energy, and Power
Physics C: Mech · Unit 3 · Paper 1

Work, Energy, and Power 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 19 terms and is the same for everyone, so a teacher can assign “Unit 3, 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 37 min 34 points0/17 attempted
1

Deriving force from U(x)

2

Gravitational potential energy in general

3

Potential energy curves

4

Stability from a potential curve

5

Escape energy

6

Work done by a variable force from a graph

7

Spring potential energy

8

Turning points

9

Work done by friction

10

Conservative forces and path independence

11

Reading kinetic energy from a potential curve

12

When to use energy rather than forces

Short answer 1. Define or explain: Power delivered by a constant force

3 pts

Short answer 2. Define or explain: Energy in a spring-mass system

3 pts

Short answer 3. Define or explain: Work-energy theorem

3 pts

Short answer 4. Define or explain: Instantaneous power

3 pts

Free response

10 pts

A 0.50 kg particle moves along the x-axis in a region where its potential energy is U(x) = 2x³ − 9x² + 12x, with U in joules and x in meters. (a) Determine the force F(x) on the particle. (b) Find all positions of equilibrium and classify each as stable or unstable, justifying with a second derivative. (c) The particle is released from rest at x = 2.5 m. Determine its total mechanical energy and its speed as it passes x = 2.0 m. (d) Determine whether the particle released in part (c) can reach x = 0.50 m, and describe the resulting motion. (e) A second particle of the same mass is displaced slightly from x = 2.0 m. Determine the period of its small oscillations.