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fThe plant in the picture has mass of 27 kg, and is hanging at a distance of 2.1 meters from the wall. The horizontal rod

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\fThe plant in the picture has mass of 27 kg, and is hanging at a distance of 2.1 meters from the wall. The horizontal rod has mass of 6.2 kg. Assume that its weight is evenly distributed, therefore it can be treated as a single force at the center of mass. The rod is 2.4 meters Long, and there is a cable at a 37 angle supporting it at the end. Find the tension in the cable if the rod is in static equilibrium. T = N m Using the wall as the axis of rotation, and assuming F is the contact force between the rod and the wall, find the horizontal component of F that must be present for the rod to be at equilibrium. E, = N Find the vertical component of F that must be present for the wall to keep the rod up. Pg: N

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