)Problem 14: Two blocks are connected by a massless rope. The rope passes over an ideal (frictionless and massless) pulley such that one block with mass m 12 kg is on a horizontal table and the other block with mass my 95 kg hangs vertically. Both blocks experience gravity and the tension force, T. Use the coordinate system specified in the diagram. m. m, Cticespertta.com - Part (a) Assuming friction forces are negligible, write an expression, using only the variables provided, for the acceleration that the block of mass m, experiences in the x-direction. Your answer should involve the tension, T. Tin, Cerreett Part (b) Under the same assumptions, write an expression for the acceleration, ay, the block of mass my experiences in the y-direction. Your answer should be in terms of the tension, 7 and m. (Tng) Allmpt Remale Feedhack i availae Part (e) Carefully consider how the accelerations a, and az are related. Solve for the magnitude of the acceleration, a, of the block of mass , in meters per square second. 433 Correct! Part (d) Find the magnitude of the tension in the rope, T, in newtons. T 44.04
)Problem 14: Two blocks are connected by a massless rope. The rope passes over an ideal (frictionless and massless) pulley such that one block with mass m 12 kg is on a horizontal table and the other block with mass my 95 kg hangs vertically. Both blocks experience gravity and the tension force, T. Use the coordinate system specified in the diagram. m. m, Cticespertta.com - Part (a) Assuming friction forces are negligible, write an expression, using only the variables provided, for the acceleration that the block of mass m, experiences in the x-direction. Your answer should involve the tension, T. Tin, Cerreett Part (b) Under the same assumptions, write an expression for the acceleration, ay, the block of mass my experiences in the y-direction. Your answer should be in terms of the tension, 7 and m. (Tng) Allmpt Remale Feedhack i availae Part (e) Carefully consider how the accelerations a, and az are related. Solve for the magnitude of the acceleration, a, of the block of mass , in meters per square second. 433 Correct! Part (d) Find the magnitude of the tension in the rope, T, in newtons. T 44.04
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