56. Part a of the drawing shows a bucket of water suspended from the pulley of a well; the tension in the rope is 92.0 N. Part b shows the same bucket of water being pulled up from the well at a constant velocity. What is the tension in the rope in part b?

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My question is that of number 56. I’m stumped on what to do since I’m given only one piece of info. If you could please explain the problem thoroughly I would greatly appreciate it.
56. Part a of the drawing shows a bucket of water suspended from the pulley of a well; the
tension in the rope is 92.0 N. Part b shows the same bucket of water being pulled up from the
well at a constant velocity. What is the tension in the rope in part b?
(a)
(b)
A girl is sledding down a slope that is inclined at 30.0° with respect to the horizontal. The
wind is aiding the motion by providing a steady force of 105 N that is parallel to the motion of
the sled. The
90.
combined mass of the girl and the sled is 65.0 kg, and the coefficient of kinetic
friction between the snow and the runners of the sled is 0.150. How much time is required for the
sled to travel down a 175
lone startir
Transcribed Image Text:56. Part a of the drawing shows a bucket of water suspended from the pulley of a well; the tension in the rope is 92.0 N. Part b shows the same bucket of water being pulled up from the well at a constant velocity. What is the tension in the rope in part b? (a) (b) A girl is sledding down a slope that is inclined at 30.0° with respect to the horizontal. The wind is aiding the motion by providing a steady force of 105 N that is parallel to the motion of the sled. The 90. combined mass of the girl and the sled is 65.0 kg, and the coefficient of kinetic friction between the snow and the runners of the sled is 0.150. How much time is required for the sled to travel down a 175 lone startir
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