Two blocks are connected by a string, as shown in the figure below. The frictionless inclined surface makes an angle of 35° with the horizontal, and the block on the incline has a mass of 5.7 kg. The mass of the hanging block is m = 3.2 kg. Find the direction and the magnitude of the hanging block's acceleration. 5.7 kg m 35°
Two blocks are connected by a string, as shown in the figure below. The frictionless inclined surface makes an angle of 35° with the horizontal, and the block on the incline has a mass of 5.7 kg. The mass of the hanging block is m = 3.2 kg. Find the direction and the magnitude of the hanging block's acceleration. 5.7 kg m 35°
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
Transcribed Image Text:Two blocks are connected by a string, as shown in the figure below. The frictionless
inclined surface makes an angle of 35° with the horizontal, and the block on the incline
has a mass of 5.7 kg. The mass of the hanging block is m = 3.2 kg. Find the direction and
the magnitude of the hanging block's acceleration.
5.7 kg
m
35°
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