A force of constant magnitude pushes a box up a vertical surface as shown in the figure. The box moves at a constant speed. If the mass of the box is 5.30 kg, it is pushed 3.70 m vertically upward, the coefficient of friction is 0.350 and the angle e is 30.0°, determine the following. (a) work done on the box by F A force diagram will help you determine the magnitude of the force F acting on the box. Can you write an expression for the work done by the force F in terms of the magnitude of the force, the distance the force acts and the angle between the direction of the force and the displacement vector? )

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter7: Energy Of A System
Section: Chapter Questions
Problem 19P: (a) A force F=(4xi+3yj), where F is in newtons and x and y are in meters, acts on an object as the...
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A force of constant magnitude pushes a box up a vertical surface as shown in the figure. The box moves at a constant speed. If the mass of the box is 5.30 kg, it is pushed 3.70 m vertically upward, the coefficient of friction is 0.350 and the angle e is 30.0°,
determine the following.
F
(a) work done on the box by F
A force diagram will help you determine the magnitude of the force F acting on the box. Can you write an expression for the work done by the force F in terms of the magnitude of the force, the distance the force acts and the angle between the direction of
the force and the displacement vector? J
(b) work done on the box by the force of gravity
|-192.178
(c) work done on the box by the normal force
(d) increase in gravitational potential energy of the box as it moves up the wall
192.178
Transcribed Image Text:A force of constant magnitude pushes a box up a vertical surface as shown in the figure. The box moves at a constant speed. If the mass of the box is 5.30 kg, it is pushed 3.70 m vertically upward, the coefficient of friction is 0.350 and the angle e is 30.0°, determine the following. F (a) work done on the box by F A force diagram will help you determine the magnitude of the force F acting on the box. Can you write an expression for the work done by the force F in terms of the magnitude of the force, the distance the force acts and the angle between the direction of the force and the displacement vector? J (b) work done on the box by the force of gravity |-192.178 (c) work done on the box by the normal force (d) increase in gravitational potential energy of the box as it moves up the wall 192.178
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