Q6.2 The questions refer to the layout of the figure. There is no friction in the shafts of the pulleys, the cord has negligible mass. The friction between the pulleys and the cord is large enough that the cord does not slide against the pulley. You additionally assume that the pulleys have negligible mass MI M2 a) Draw a figure with all relevant forces. Draw the direction of movement of the various objects in the system, but not in such a way that they can be confused with the forces. Assume that the block with mass m1 moves downwards. b) What must be the ratio between the masses m1 and m2 for the system to be able to be at rest?

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Q6.2 The questions refer to the layout of the figure. There is no friction in the shafts of the pulleys,
the cord has negligible mass. The friction between the pulleys and the cord is large enough that the
cord does not slide against the pulley. You additionally assume that the pulleys have negligible mass.
MI
M2
a) Draw a figure with all relevant forces. Draw the direction of movement of the various objects in
the system, but not in such a way that they can be confused with the forces. Assume that the block
with mass m1 moves downwards.
b) What must be the ratio between the masses m1 and m2 for the system to be able to be at rest?
Transcribed Image Text:Q6.2 The questions refer to the layout of the figure. There is no friction in the shafts of the pulleys, the cord has negligible mass. The friction between the pulleys and the cord is large enough that the cord does not slide against the pulley. You additionally assume that the pulleys have negligible mass. MI M2 a) Draw a figure with all relevant forces. Draw the direction of movement of the various objects in the system, but not in such a way that they can be confused with the forces. Assume that the block with mass m1 moves downwards. b) What must be the ratio between the masses m1 and m2 for the system to be able to be at rest?
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