Solution to problem 9.7.9 from the collection of Kepe O.E.

Problem 9.7.9 is to determine the acceleration of point M, located on a moving wheel with radius R = 2r = 0.2 m, when the crank OA rotates according to the law? = 0.5t. The answer to the problem is 0.05.

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Problem 9.7.9 is to determine the acceleration of point M, located on a moving wheel with radius R = 2r = 0.2 m, when the crank OA rotates according to the law? = 0.5t. The solution to this problem is presented in our product and will help you easily understand the material and successfully solve the problem.

Purchase our digital product today and gain access to useful information in a beautiful and convenient format!

Our digital product is the solution to problem 9.7.9 from the collection of Kepe O.?. This task is to determine the acceleration of point M, which is located on a moving wheel with a radius R = 2r = 0.2 m, when the crank OA rotates according to the law? = 0.5t. Our product provides a detailed description of the solution to this problem, which will help you quickly and easily understand the material. Our digital product is presented in a beautiful html format and has a pleasant design, which allows you to conveniently study the material without tiring your eyes. By purchasing our product, you will gain access to useful information in a convenient format and will be able to successfully solve this problem. The answer to the problem is 0.05.


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Solution to problem 9.7.9 from the collection of Kepe O.?. is associated with determining the acceleration of point M of the moving wheel when the crank OA rotates according to the law? = 0.5t. The radius of the wheel in this problem is R = 2 r = 0.2 m.

To solve the problem, you need to use a formula to determine the acceleration of a point on a rotating body. Is the acceleration of a point related to the angular acceleration? and radius R according to the formula a = R * ?. Angular acceleration? can be defined as the derivative of angular velocity? by time t.

In this problem, the law of change in angular velocity is specified? = 0.5t. The derivative of this function with respect to time is equal to the angular acceleration? = d?/dt = 0.5. Thus, the acceleration of point M is equal to a = R *? = 0.2 * 0.5 = 0.1 m/s².

However, the problem states that it is necessary to determine the acceleration of point M of the moving wheel, and not the acceleration of a point on the wheel. The moving wheel moves together with point M, so its acceleration coincides with the acceleration of point M and is equal to 0.1 m/s².

Thus, the answer to problem 9.7.9 from the collection of Kepe O.?. is 0.1 m/s².


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