5 kg on 30-degree ramp, coefficient of friction 0.25, 4 kg hanger, pulley moment of inertia =X kg-meter- meter, radius 0.3 meter, no friction and no slipping pulley, Construct a simulation table of acceleration versus the (string tension on the 4 kg T1 – the 5 kg T2) string tension on
5 kg on 30-degree ramp, coefficient of friction 0.25, 4 kg hanger, pulley moment of inertia =X kg-meter- meter, radius 0.3 meter, no friction and no slipping pulley, Construct a simulation table of acceleration versus the (string tension on the 4 kg T1 – the 5 kg T2) string tension on
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
Transcribed Image Text:5 kg on 30-degree ramp, coefficient of friction 0.25, 4 kg hanger, pulley moment of inertia =X kg-meter-
meter, radius 0.3 meter, no friction and no slipping pulley,
Construct a simulation table of acceleration versus the (string tension on the 4 kg T1 – string tension on
the 5 kg T2)
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Follow-up Question
5 kg on 30-degree ramp, coefficient of friction 0.35, 97 kg hanger, pulley moment of inertia = Z. kg-
meter-meter, radius 0.3 meter, no rotation friction pulley and no slipping pulley,
Find the acceleration and the tension on the vertical mass T1 and ramp mass T2
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