Solution to problem 14.1.21 from the collection of Kepe O.E.

14.1.21 it is necessary to determine the acceleration of body 1, which slides along a smooth inclined plane. In this case, body 2 with a mass of 1 kg moves in horizontal directions relative to body 1 under the influence of internal forces of the system, moving according to the equation x = t2. Both bodies move forward. The mass of body 1 is also 1 kg. Determining the acceleration of body 1 leads to the answer 4.04.

Solution to problem 14.1.21 from the collection of Kepe O.?.

This digital product is a solution to problem 14.1.21 from the collection of Kepe O.?. in physics. The solution is carried out by a qualified specialist and guarantees the correct answer.

The task is to determine the acceleration of body 1 sliding along a smooth inclined plane when body 2 moves in horizontal directions according to the equation x = t2. Both bodies have a mass of 1 kg and move translationally. The answer to the problem is 4.04.

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Price: 199 rub.


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The product in this case is the solution to problem 14.1.21 from the collection of Kepe O.?.

In this problem, it is required to determine the acceleration of body 1 sliding along a smooth inclined plane if body 2 moves along a horizontal guide according to the equation x = t^2 under the influence of internal forces of the system. The masses of both bodies are equal to 1 kg, and both bodies are moving translationally.

The solution to this problem is to apply Newton's laws and the law of conservation of energy. When analyzing the movement of body 1 on an inclined plane, it is necessary to take into account the force of gravity and the support reaction force. When analyzing the movement of body 2 along a horizontal guide, it is necessary to take into account only the friction force.

After carrying out the necessary calculations, the answer is obtained: the acceleration of body 1 is equal to 4.04 m/s^2.

Thus, the solution to problem 14.1.21 from the collection of Kepe O.?. consists in analyzing the motion of bodies 1 and 2, applying Newton’s laws and the law of conservation of energy, and calculating the acceleration of body 1 based on the data obtained.


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