Instruction: Answer according to the given sequence, unable to do this will lead to zero mark!!!! And please read the question!!!!!. As shown in the figure, forces are applied to the box that has a mass of 75 kg. Given that the coefficient of kinetic friction between the box and surface is u = 0.297. If the box is originally at rest and currently moving with a speed of v = 5 m/s: 450 N 200 N 35° 50° 1. Draw the free body diagram and find the normal and friction force of the box. . 2. Find its initial and final kinetic energy - 1* 3. Determine the distance that the box has travelled by using the principle of work and energy [/ 4. Calculate each work that is done to the box [1. rk]

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Matric No:
Instruction: Answer according to the given sequence, unable to do this will lead to zero
mark!!!! And please read the question!!!!!.
As shown in the figure, forces are applied to the box that has a mass of 75 kg. Given that the
coefficient of kinetic friction between the box and surface is uk = 0.297. If the box is originally
at rest and currently moving with a speed of v = 5 m/s:
450 N
200 N
35°
50°
1. Draw the free body diagram and find the normal and friction force of the box. .
2. Find its initial and final kinetic energy - 1**
3. Determine the distance that the box has travelled by using the principle of work and
energy [/
4. Calculate each work that is done to the box [1.
1
of 1
Transcribed Image Text:ame. Matric No: Instruction: Answer according to the given sequence, unable to do this will lead to zero mark!!!! And please read the question!!!!!. As shown in the figure, forces are applied to the box that has a mass of 75 kg. Given that the coefficient of kinetic friction between the box and surface is uk = 0.297. If the box is originally at rest and currently moving with a speed of v = 5 m/s: 450 N 200 N 35° 50° 1. Draw the free body diagram and find the normal and friction force of the box. . 2. Find its initial and final kinetic energy - 1** 3. Determine the distance that the box has travelled by using the principle of work and energy [/ 4. Calculate each work that is done to the box [1. 1 of 1
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