Solution to problem 2.4.35 from the collection of Kepe O.E.

Problem 2.4.35 is to determine the moment in embedment A, provided that F1 = 50 N, F2 = 100 N, and the dimensions AB = BC are equal to 2 meters. The answer to the problem is 446.

This digital product is a solution to problem 2.4.35 from the collection “Problems in Physics” by the author Kepe O.?. This product is an electronic file containing a detailed description of how to solve a problem using formulas and step-by-step instructions.

The beautiful design of the HTML page adds convenience to using this product. Now the buyer can easily and quickly find the information they need, use formatting to highlight key points, and conveniently navigate between sections.

This product is ideal for students studying physics at school or university, as well as for anyone interested in this scientific discipline. It will help you understand complex problems and improve your knowledge in physics.

This product is a solution to problem 2.4.35 from the collection “Problems in Physics” by the author Kepe O.?. The task is to determine the moment in the embedment A, provided that F1 = 50 N, F2 = 100 N, and the dimensions AB = BC are equal to 2 meters. The product includes an electronic file in HTML format, which contains a detailed description of the solution to the problem using formulas and step-by-step instructions. The page design is made in an attractive style, which ensures ease of use of the product, allowing you to easily and quickly find the information you need, highlight key points and move between sections. This product may be useful to students studying physics at school or university, as well as to anyone interested in this scientific discipline. It will help you understand complex problems and improve your knowledge in physics. The answer to the problem is 446.


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Problem 2.4.35 from the collection of Kepe O.?. consists in determining the moment in the embedment A with known values ​​of the forces F1 and F2, as well as the dimensions AB and BC.

To solve the problem, it is necessary to use the principle of moments, according to which the moment of a force is equal to the product of the force and the distance from the point of application of the force to the axis of rotation.

First, you need to determine the distance from the point of application of force F1 to the axis of rotation in embedment A. To do this, you can use the Pythagorean theorem and calculate the length of the hypotenuse of a right triangle formed by side AB and a segment drawn from the point of application of force F1 to the axis of rotation. Then, by calculating the distance from the point of application of force F2 to the axis of rotation, you can determine the moment of force F1 and the moment of force F2, and then add them to obtain the total moment in embedment A.

As a result of solving this problem, the answer is 446.


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