The two blocks started at rest. The surface of the inclined plane is frictionless. (note: neglect mass and friction of the pulley) Given Weight of A 200 lb. Weight of B380 ib. Calculate: a) acceleration of A (tis). 30 with the horizontal b) Acceleration of B (s) downward c) the tension in the cable (b.)

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The two blocks started at rest. The surface of the inclined plane is frictionless.
(note: neglect mass and friction of the pulley)
Given
Weight of A 200 lb.
Weight of B-380 ib.
Calculate
a) acceleration of A (ftis). 30 with the horizontal
b) Acceleration of B (fts), downward
c) the tension in the cable (b.)
Transcribed Image Text:The two blocks started at rest. The surface of the inclined plane is frictionless. (note: neglect mass and friction of the pulley) Given Weight of A 200 lb. Weight of B-380 ib. Calculate a) acceleration of A (ftis). 30 with the horizontal b) Acceleration of B (fts), downward c) the tension in the cable (b.)
The two blocks started at rest. The surface of the inclined plane is frictionless.
(note: neglect mass and friction of the pulley)
Given
Weight of A 200 lb.
Weight of B-380 ib.
Calculate
a) acceleration of A (ftis). 30 with the horizontal
b) Acceleration of B (fts), downward
c) the tension in the cable (b.)
Transcribed Image Text:The two blocks started at rest. The surface of the inclined plane is frictionless. (note: neglect mass and friction of the pulley) Given Weight of A 200 lb. Weight of B-380 ib. Calculate a) acceleration of A (ftis). 30 with the horizontal b) Acceleration of B (fts), downward c) the tension in the cable (b.)
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