1. Consider the system shown below. Block A weighs 95.0N and block B weighs 55.0N. Once block B is set to downward motion, it descends at a constant speed. A) Calculate the coefficient of kinetic friction between block A and the tabletop. B) A dog, also of weight 95.0N, Falls asleep on top of block A. If block B is now set into downward motion, what is its acceleration (magnitude and direction)? A P B

Elements Of Electromagnetics
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please solve and write the format (given, required, and solution)
1. Consider the system shown below. Block A weighs 95.0N and block B weighs
55.0N. Once block B is set to downward motion, it descends at a constant speed. A) Calculate
the coefficient of kinetic friction between block A and the tabletop.
B) A dog, also of weight 95.0N, Falls asleep on top of block A. If block B is now set into
downward motion, what is its acceleration (magnitude and direction)?
A
B
Transcribed Image Text:1. Consider the system shown below. Block A weighs 95.0N and block B weighs 55.0N. Once block B is set to downward motion, it descends at a constant speed. A) Calculate the coefficient of kinetic friction between block A and the tabletop. B) A dog, also of weight 95.0N, Falls asleep on top of block A. If block B is now set into downward motion, what is its acceleration (magnitude and direction)? A B
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