d) What is the work done by the gravitational force? Answer: - 196 J e) What is Wnet, the net work done on the box? Answer: 34.5 J f) The box starts from rest. What is the speed of the box after it has travelled the distance d = 10 m up the incline plane? Answer: 4.2 m/sec F = 40 N m = 4 kg 0 = 30° Mk = 0.5

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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 answer the d, e and f part only

Problem 2:
In the figure below we have a force F = 40 N pushing a box up an inclined plane with an angle
0 = 30°. The box has a mass m = 4 kg, the coefficient of kinetic friction between the box and
the inclined is μ = 0.5, and the block moves a distance d = 10 m up the inclined plane.
a) What is the work done by the force F? Answer: 400 J.
b) What is the normal force from the inclined plane? Answer: 33.9 N
c) What is the work done by the kinetic friction force? Answer: - 169.5 J
d) What is the work done by the gravitational force? Answer: - 196 J
e) What is Wnet, the net work done on the box? Answer: 34.5 J
f)
The box starts from rest. What is the speed of the box after it has travelled the distance
d = 10 m up the incline plane? Answer: 4.2 m/sec
F = 40 N
m = 4 kg
0 = 30°
Mk=0.5
Transcribed Image Text:Problem 2: In the figure below we have a force F = 40 N pushing a box up an inclined plane with an angle 0 = 30°. The box has a mass m = 4 kg, the coefficient of kinetic friction between the box and the inclined is μ = 0.5, and the block moves a distance d = 10 m up the inclined plane. a) What is the work done by the force F? Answer: 400 J. b) What is the normal force from the inclined plane? Answer: 33.9 N c) What is the work done by the kinetic friction force? Answer: - 169.5 J d) What is the work done by the gravitational force? Answer: - 196 J e) What is Wnet, the net work done on the box? Answer: 34.5 J f) The box starts from rest. What is the speed of the box after it has travelled the distance d = 10 m up the incline plane? Answer: 4.2 m/sec F = 40 N m = 4 kg 0 = 30° Mk=0.5
W = F₁Ax = F· Ax, Wnet = m(v₁) ² - ² m(v₁)², W = F₂dx, W = F·dr
Transcribed Image Text:W = F₁Ax = F· Ax, Wnet = m(v₁) ² - ² m(v₁)², W = F₂dx, W = F·dr
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