5. The figure below represents a pulley system where where two blocks with masses M-10 kg and m=6 kg, are connected by a rope over a frictionless pulley. If the system moves with an acceleration of 0.95 m/s², calculate: a) The tension in the rope. b) The coefficient of kinetic friction between the block of mass Mand the table. M= 10 kg m=6 kg

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Chapter1: Units, Trigonometry. And Vectors
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5. The figure below represents a pulley system where where two
blocks with masses M=10 kg and m=6 kg, are connected by a rope
over a frictionless pulley. If the system moves with an acceleration of
0.95 m/s², calculate:
a) The tension in the rope.
b) The coefficient of kinetic friction between the block of mass Mand
the table.
M= 10 kg
|Бу 9=ш
..
Transcribed Image Text:5. The figure below represents a pulley system where where two blocks with masses M=10 kg and m=6 kg, are connected by a rope over a frictionless pulley. If the system moves with an acceleration of 0.95 m/s², calculate: a) The tension in the rope. b) The coefficient of kinetic friction between the block of mass Mand the table. M= 10 kg |Бу 9=ш ..
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