Knight P6.24 A stubborn, 120 kg mule sits down and refuses to move. To drag the mule to the barn, the exasperated farmer ties a rope around the mule and pulls with a maximum force of 800 N. The coefficients of friction between the mule and the ground are g = 0.8 and k = 0.5. Is the farmer able to move the mule? Draw a free body diagram as part of your solution.

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Chapter1: Units, Trigonometry. And Vectors
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Useful information
Newton's 2nd law component form
ΣFx = max
ΣFy = may
Static, kinetic, and rolling friction
Quadratic drag
Fs ≤s FN
Fk = MkFN
Fr= FN
F₁ = CpAu²
Transcribed Image Text:Useful information Newton's 2nd law component form ΣFx = max ΣFy = may Static, kinetic, and rolling friction Quadratic drag Fs ≤s FN Fk = MkFN Fr= FN F₁ = CpAu²
Questions
1. Knight P6.24 A stubborn, 120 kg mule sits down
and refuses to move. To drag the mule to the
barn, the exasperated farmer ties a rope around
the mule and pulls with a maximum force of 800
N. The coefficients of friction between the mule
and the ground are g = 0.8 and k = 0.5. Is the
farmer able to move the mule?
-
s
Draw a free body diagram as part of your solution.
Transcribed Image Text:Questions 1. Knight P6.24 A stubborn, 120 kg mule sits down and refuses to move. To drag the mule to the barn, the exasperated farmer ties a rope around the mule and pulls with a maximum force of 800 N. The coefficients of friction between the mule and the ground are g = 0.8 and k = 0.5. Is the farmer able to move the mule? - s Draw a free body diagram as part of your solution.
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