A heavy object of mass m is located on an inclined ramp that is unpolished. The ramp makes an angle θ with the horizontal, and the heavy object has come to and remains at rest against a spring with spring constant k that is compressed by a distance d from its neutral position. From the options offered, check all of the forces that should appear on the free body diagram of the heavy object. A force due to kinetic friction acting on the inclined ramp due to the heavy object. A force due to static friction acting on the inclined ramp due to the heavy object. The weight of the spring. A force due to static friction acting on the heavy object due to the inclined ramp. The weight of the heavy object. A force due to kinetic friction acting on the heavy object due to the inclined ramp. A spring force, also known as an elastic force. A normal force on the heavy object due to the inclined ramp. A normal force on the inclined ramp due to the heavy object.
A heavy object of mass m is located on an inclined ramp that is unpolished. The ramp makes an angle θ with the horizontal, and the heavy object has come to and remains at rest against a spring with spring constant k that is compressed by a distance d from its neutral position. From the options offered, check all of the forces that should appear on the free body diagram of the heavy object. A force due to kinetic friction acting on the inclined ramp due to the heavy object. A force due to static friction acting on the inclined ramp due to the heavy object. The weight of the spring. A force due to static friction acting on the heavy object due to the inclined ramp. The weight of the heavy object. A force due to kinetic friction acting on the heavy object due to the inclined ramp. A spring force, also known as an elastic force. A normal force on the heavy object due to the inclined ramp. A normal force on the inclined ramp due to the heavy object.
Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter1: Physics And Measurement
Section: Chapter Questions
Problem 26P: Review. Prove that one solution of the equation 2.00x43.00x3+5.00x=70.0 is x = 2.22.
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A heavy object of mass m is located on an inclined ramp that is unpolished. The ramp makes an angle θ with the horizontal, and the heavy object has come to and remains at rest against a spring with spring constant k that is compressed by a distance d from its neutral position.
From the options offered, check all of the forces that should appear on the free body diagram of the heavy object.
A force due to kinetic friction acting on the inclined ramp due to the heavy object. |
A force due to static friction acting on the inclined ramp due to the heavy object. |
The weight of the spring. |
A force due to static friction acting on the heavy object due to the inclined ramp. |
The weight of the heavy object. |
A force due to kinetic friction acting on the heavy object due to the inclined ramp. |
A spring force, also known as an elastic force. |
A normal force on the heavy object due to the inclined ramp. |
A normal force on the inclined ramp due to the heavy object. |
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