Solution to problem 20.2.13 from the collection of Kepe O.E.

Task: with a moment M = 25 N • m transmitted to belt drive pulley 3, determine the generalized force corresponding to the angle ?3 of rotation of wheel 3. It is known that the mass of load 1 is 10 kg, and the radii are R2 = 0.5 m, r2 = 0.4 and R3 = 0.2 m. The answer to the problem is 9.30.

Solution to problem 20.2.13 from the collection of Kepe O.?.

We present to you the solution to problem 20.2.13 from the collection of Kepe O.?. in electronic format. This digital product is designed for those who are looking for an effective way to prepare for exams and are interested in in-depth study of mechanical theory.

In this solution, we considered the problem associated with determining the generalized force corresponding to the angle of rotation of wheel 3 at a moment M = 25 N•m transmitted to the belt pulley 3. We also took into account the mass of load 1, which is 10 kg, and the radii R2 = 0.5 m, r2 = 0.4 and R3 = 0.2 m. The answer to the problem is 9.30.

By purchasing this digital product, you get access to a complete and detailed solution to the problem, which can be used to independently study mechanical theory, prepare for exams, or solve similar problems. In addition, you save time on searching for materials and receive a quality product that will help you achieve success in your studies.

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This product is a solution to problem 20.2.13 from the collection of Kepe O.?.

The task is to determine the generalized force at a given moment M = 25 N • m, which is applied to pulley 3 of the belt drive together with a load weighing 10 kg. To solve the problem, it is necessary to select the angle ?3 of rotation of wheel 3 as a generalized coordinate. The radii of the pulleys are also known: R2 = 0.5 m, r2 = 0.4 and R3 = 0.2 m.

After carrying out the necessary calculations, the answer to the problem was obtained, which is 9.30.

Thus, this product is a ready-made solution to problem 20.2.13 from the collection of Kepe O.?. and may be useful to people studying physics and mechanics.


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