2. How much work (Wnet) is done on the box by the net force? √net = 3. Find the coefficient of kinetic friction between the box and the floor?

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Chapter7: Work And Kinetic Energy
Section: Chapter Questions
Problem 91AP: At hokey puck of mass 0.17 kg is shot across a rough floor with the roughness different at different...
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Questions 2 and 3
AP Physics1
Problem Set #
1-3. A box with mass M = 10 kg is pulled across a floor by a
rope. There is friction between the box and the floor. The
tension in the rope is T= 25 N. Consider an interval during
which the box moves a distance of Ax = 3 m and its velocity
increases from 2 m/s to 3 m/s.
1. How much work (WT) is done on the box by the rope?
Fd cos
25.3
(75J
kinetic coefficient
FN=100N
Fr=100 м
2. How much work (Wnet) is done on the box by the net force?
Wnet =
3. Find the coefficient of kinetic friction between the box and the floor?
Name: Aidan Sear
Date:
k=250 N/m
4-8. A 2.5 kg box is held released from rest 1.5 meters above
the ground and slides down a frictionless ramp. It slides across
a floor that is frictionless, except for a small section 0.5 meters
wide that has a coefficient of kinetic friction of 0.4. At the left
end, is a spring with spring constant 250 N/m. The box compresses
the spring, and bounces back to the right. Use only work-energy theorem to find to solve the problem
4. What is the speed of the box at the bottom of the ramp?
0.4
M
d=0.50 m
T
|h=1.5
Transcribed Image Text:AP Physics1 Problem Set # 1-3. A box with mass M = 10 kg is pulled across a floor by a rope. There is friction between the box and the floor. The tension in the rope is T= 25 N. Consider an interval during which the box moves a distance of Ax = 3 m and its velocity increases from 2 m/s to 3 m/s. 1. How much work (WT) is done on the box by the rope? Fd cos 25.3 (75J kinetic coefficient FN=100N Fr=100 м 2. How much work (Wnet) is done on the box by the net force? Wnet = 3. Find the coefficient of kinetic friction between the box and the floor? Name: Aidan Sear Date: k=250 N/m 4-8. A 2.5 kg box is held released from rest 1.5 meters above the ground and slides down a frictionless ramp. It slides across a floor that is frictionless, except for a small section 0.5 meters wide that has a coefficient of kinetic friction of 0.4. At the left end, is a spring with spring constant 250 N/m. The box compresses the spring, and bounces back to the right. Use only work-energy theorem to find to solve the problem 4. What is the speed of the box at the bottom of the ramp? 0.4 M d=0.50 m T |h=1.5
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