T1 2. Mass m-5kg which is on an inclined plane with @ 37 is connected to m-2kg with a massless rope through a im, massless and frictionless pulley. Also, mass m-8kg is connected to m2 with another massless rope. mi Draw a free body diagram for each mass. Calculate the magnitudes of tensions (Ti and T:) of the ropes. Calculate the common magnitude of the accelerations of the blocks.
T1 2. Mass m-5kg which is on an inclined plane with @ 37 is connected to m-2kg with a massless rope through a im, massless and frictionless pulley. Also, mass m-8kg is connected to m2 with another massless rope. mi Draw a free body diagram for each mass. Calculate the magnitudes of tensions (Ti and T:) of the ropes. Calculate the common magnitude of the accelerations of the blocks.
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![2.
Mass mi-5kg which is on an
inclined plane with e = 37 is connected to
m:-2kg with a massless rope through a
massless and frietionless pulley. Also, mass
ms
m-Skg is connected to m: with another
massless rope.
Draw a free body diagram for each mass.
Calculate the magnitudes of tensions (T1 and T2) of the ropes.
Calculate the common magnitude of the accelerations of the blocks.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdfe3564b-1d48-486e-b402-fecc0f207c1e%2F7edae38e-b0fb-4824-9d0f-0dec4a4ec44d%2Fws2xn9v_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2.
Mass mi-5kg which is on an
inclined plane with e = 37 is connected to
m:-2kg with a massless rope through a
massless and frietionless pulley. Also, mass
ms
m-Skg is connected to m: with another
massless rope.
Draw a free body diagram for each mass.
Calculate the magnitudes of tensions (T1 and T2) of the ropes.
Calculate the common magnitude of the accelerations of the blocks.
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