as shown below a beam of length l is in equilibrium while being fully submerged in water. the beam is horizontal and a vertical string is attached to one end. the dot represents the center of mass and is 0.23l from where the string is attached. the buoyant force acts on the geometric center of the beam. the buoyant force on the beam is 900 N. determine the beams weight and tension in. the string
as shown below a beam of length l is in equilibrium while being fully submerged in water. the beam is horizontal and a vertical string is attached to one end. the dot represents the center of mass and is 0.23l from where the string is attached. the buoyant force acts on the geometric center of the beam. the buoyant force on the beam is 900 N. determine the beams weight and tension in. the string
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as shown below a beam of length l is in equilibrium while being fully submerged in water. the beam is horizontal and a vertical string is attached to one end. the dot represents the center of mass and is 0.23l from where the string is attached. the buoyant force acts on the geometric center of the beam. the buoyant force on the beam is 900 N. determine the beams weight and tension in. the string
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