4. Calculate A) the resultant, R, of the three following forces: F₁ = (36 N, 36 deg), F2 = (25 N, 60 deg), F3 = (50 N, 150 deg). B) the acceleration vector resulting from the 3 forces being applied simultaneously to a 20 kg mass. C) Also, calculate the equilibrant. Give answers in standard unit vector form (i, j, k).
4. Calculate A) the resultant, R, of the three following forces: F₁ = (36 N, 36 deg), F2 = (25 N, 60 deg), F3 = (50 N, 150 deg). B) the acceleration vector resulting from the 3 forces being applied simultaneously to a 20 kg mass. C) Also, calculate the equilibrant. Give answers in standard unit vector form (i, j, k).
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
Transcribed Image Text:4. Calculate A) the resultant, R, of the three following forces: F₁ = (36 N, 36 deg), F2 = (25 N, 60 deg), F3 = (50
N, 150 deg). B) the acceleration vector resulting from the 3 forces being applied simultaneously to a 20 kg
mass. C) Also, calculate the equilibrant. Give answers in standard unit vector form (i, j, k).
Expert Solution
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Step 1
Given:
The magnitude and the direction of the three forces are given as
The mass where the three forces acted is m = 20 kg
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Solved in 4 steps
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