Question 5 The exercise machine is designed with a lightweight cart which is mounted on small rollers so that it is free to move along the inclined ramp. Two cables are attached to the cart-one for each hand. If the hands are together so that the cables are parallel and if each cable lies essentially in a vertical plane, determine the force P which each hand must exert on its cable in order to maintain an equilibrium position. The mass of the person is 70 kg, the ramp angle theta is 15 degrees, and the angle beta is 18 degrees. In addition, calculate the force R which the ramp exerts on the cart.

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
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ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
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Chapter11: Heat Transfer By Radiation
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Question 5
The exercise machine is designed with a lightweight cart which is mounted on small rollers so that it
is free to move along the inclined ramp. Two cables are attached to the cart-one for each hand. If
the hands are together so that the cables are parallel and if each cable lies essentially in a vertical
plane, determine the force P which each hand must exert on its cable in order to maintain an
equilibrium position. The mass of the person is 70 kg, the ramp angle theta is 15 degrees, and the
angle beta is 18 degrees. In addition, calculate the force R which the ramp exerts on the cart.
sky
N N
dy
Transcribed Image Text:p/483383/mod_resource/content/7/Christmas_Assignment.pdf 100% | 9 / 9 Question 5 The exercise machine is designed with a lightweight cart which is mounted on small rollers so that it is free to move along the inclined ramp. Two cables are attached to the cart-one for each hand. If the hands are together so that the cables are parallel and if each cable lies essentially in a vertical plane, determine the force P which each hand must exert on its cable in order to maintain an equilibrium position. The mass of the person is 70 kg, the ramp angle theta is 15 degrees, and the angle beta is 18 degrees. In addition, calculate the force R which the ramp exerts on the cart. sky N N dy
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