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Bank with mini M = 6.00 kg. The total length of the ark le & = 3.00 m . The plank is supported by two

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Bank with mini M = 6.00 kg. The total length of the ark le & = 3.00 m . The plank is supported by two sawhorses. The center of mass of the plank is a distance dy - 0.850 m 10 the left of sawhorse B. The cat has a mass of 3.7 bag. What is the dy when the plank begins to app when the plank tipa, the normal force on the lah supportA, FA = 0 Part A . Find dy oop 2 digits after the decimal point, in mobars. Submit Part B - What is the delance between the cal and the RIGHT End of the plank? Keep 2 digits after the decimal point, in meters. From Cat to RIGHT End of the plank distance m Submit Suggestion: Self Assessment Part A String A Find T's . the tension in string A. Express your answer in newtons using three significant figures. *View Available Hint's) String B AEh On ? The figure shows a model of a crane that may be mounted on a truck A rigid uniform horizontal bar of mass me = 100 kg and langth _ = 5 30 m is supported TA = N by two vertical massless strings. String A is stacked at a distance d = 1.40 m from the loft and of the bar and is connected to the top plate. String B is allached to the left end of the bar and is connected to the floor. Submit An object of mass mig = 3500 big Is supported by the crane at a distance & = 6.10 m from the loft end of the bar. Throughout this problem, positive torque is counterclockwise and use 9,80 Part B m/'s" for the magnitude of the acceleration due to gravity. Find Th, the magnitude of the tension in string B. Express your answer in newtons using three significant figures. * View Available Hints) AEd Learning Goal: To understand the conditions necessary for stado equilibrium. The condition of static equilibrium is equivalent to the statement that the bodies involved have neither linear nor angular acceleration. Hence stoic mechanical equilibrium requires that the forces acting on a body simultaneously saisty two conditions: F =0and >

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