1. A rusty bolt is hard to get turned. What could be done to help get the bolt turned? * A. use a long-arm lever B. use a short-arm lever C. decrease the force D. apply the force at a 30 degree angle 2.Which of the following statements show the properties of angular displacement and linear displacement? A. θ, for points on a rotating object depends on their distance from the axis. B. The displacement, for point on a rotating object, does not depends on their distance from the axis of rotation C. θ, for points on a rotating object does not depends on their distance from the axis. D. The displacement, for point on a rotating object, depends on their distance from the axis of rotation.
1. A rusty bolt is hard to get turned. What could be done to help get the bolt turned? * A. use a long-arm lever B. use a short-arm lever C. decrease the force D. apply the force at a 30 degree angle 2.Which of the following statements show the properties of angular displacement and linear displacement? A. θ, for points on a rotating object depends on their distance from the axis. B. The displacement, for point on a rotating object, does not depends on their distance from the axis of rotation C. θ, for points on a rotating object does not depends on their distance from the axis. D. The displacement, for point on a rotating object, depends on their distance from the axis of rotation.
Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Oscillatory Motion
Section: Chapter Questions
Problem 43AP
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Question
1. A rusty bolt is hard to get turned. What could be done to help get the bolt turned? *
A. use a long-arm lever
B. use a short-arm lever
C. decrease the force
D. apply the force at a 30 degree angle
2.Which of the following statements show the properties of angular displacement and linear displacement?
A. θ, for points on a rotating object depends on their distance from the axis.
B. The displacement, for point on a rotating object, does not depends on their distance from the axis of rotation
C. θ, for points on a rotating object does not depends on their distance from the axis.
D. The displacement, for point on a rotating object, depends on their distance from the axis of rotation.
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