Question 5.1a: The figure shows a box of mass m = 5.15 kg pulled to the right across a horizontal surface by a constant tension force of magnitude T 24.5 N. The tension force is inclined at an angle e- 23.0° above the horizontal and the friction force has magnitude f= 13.5 N. The box is pulled a distance d= 1.65 m. Determine the work done on the box by the tension force, the normal force, and the kinetic friction force. We'll use W, W and W, to represent the magnitudes of the tension, normal, and friction forces, respectively. Wn W.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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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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ADDITIONAL PROBLEMS
Question 5.1a:
The figure shows a box of mass m = 5.15 kg pulled to the right across a horizontal surface by a constant tension force of magnitude T= 24.5 N. The tension force is inclined at an angle e = 23.0° above the
horizontal and the friction force has magnitude f, = 13.5 N. The box is pulled a distance d = 1.65 m.
Determine the work done on the box by the tension force, the normal force, and the kinetic friction force. We'll use W, Wa and W, to represent the magnitudes of the tension, normal, and friction forces,
respectively.
W =
W. =
Question 5.1b:
The figure below shows a 1.70 x 10*-N car rolling down a ramp inclined at an angle of 0 = 34.5° above the horizon. The car rolls a distance of 14.0 m.
Transcribed Image Text:s Checkout Gradebook 9 physics (1).pdf G atrial fibrillation - Goo x W PHY 206 HW Bonus- C Find The X- And Y-com x G how to use arctan on t i webassign.net/web/Student/Assignment-Responses/tutorial?dep=25444823&tags=autosave#question4499918 12 ADDITIONAL PROBLEMS Question 5.1a: The figure shows a box of mass m = 5.15 kg pulled to the right across a horizontal surface by a constant tension force of magnitude T= 24.5 N. The tension force is inclined at an angle e = 23.0° above the horizontal and the friction force has magnitude f, = 13.5 N. The box is pulled a distance d = 1.65 m. Determine the work done on the box by the tension force, the normal force, and the kinetic friction force. We'll use W, Wa and W, to represent the magnitudes of the tension, normal, and friction forces, respectively. W = W. = Question 5.1b: The figure below shows a 1.70 x 10*-N car rolling down a ramp inclined at an angle of 0 = 34.5° above the horizon. The car rolls a distance of 14.0 m.
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