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Problem 1 (20 points) 1A) A box weighing 10-lbs, has impending motion down the rod when 0 = 36.87. Determine the minimum coefficient of
Problem 1 (20 points) 1A) A box weighing 10-lbs, has impending motion down the rod when 0 = 36.87. Determine the minimum coefficient of static friction (min) between the box and the rod to maintain static equilibrium. If the weight of the box was increased, how would this change the minimum coefficient of static equilibrium (min)? (5 Pts) Hmin = (3 pts) m Hmin Increase Decrease Remain the Same (Circle One) (2 pts) =
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