Problem 2.4.31 is related to determining the force acting on the hydraulic cylinder rod 3 if the body 1 weighing G = 10 kN is in equilibrium with the help of the power hydraulic cylinder 2. Distances l = 3 m, b = 1.2 m, AO = 1 m, and the angle is ?=30o. The answer to the problem is 11.5 kN.
This digital product is a solution to problem 2.4.31 from the collection of problems in physics by Kepe O.?. The solution to this problem is associated with determining the force acting on the rod 3 of the hydraulic cylinder, if the body 1 weighing G = 10 kN is in equilibrium with the help of power hydraulic cylinder 2. Distances l = 3 m, b = 1.2 m, AO = 1 m, and angle ?=30o.
This digital product is intended for those who are studying physics and want to improve their knowledge in this field. The solution to the problem is presented in a convenient format that makes it easy to understand and master the material.
By purchasing this digital product, you will gain access to the complete solution to Problem 2.4.31, which will help you better understand and apply physics. Beautiful design in html format will make the learning process even more fun and effective.
The digital product you will purchase is a complete solution to problem 2.4.31 from the collection of physics problems by Kepe O.?. In this problem, it is necessary to determine the force acting on the rod 3 of the hydraulic cylinder if the body 1 weighing 10 kN is in equilibrium with the help of power hydraulic cylinder 2. In the problem, the distances are given: l = 3 m, b = 1.2 m, AO = 1 m and the angle ?=30o. The answer to the problem is 11.5 kN.
This digital product will be useful to those who study physics and want to improve their knowledge in this area. The solution to the problem is presented in a convenient format that is easy to understand and accessible for mastering the material. By purchasing this product, you will have access to a beautifully designed solution to the problem in HTML format, which will help you better understand the laws of physics and apply them in practice.
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The product is the solution to problem 2.4.31 from the collection of Kepe O.?. The task is to determine the force acting on the hydraulic cylinder rod that keeps the body in balance. The weight of the body, the distances between the mounting points of the hydraulic cylinder and the shock, as well as the angle between the horizontal and the direction of the hydraulic cylinder are known.
To solve the problem it is necessary to apply the laws of mechanics and gravity. First, the vertical and horizontal components of the force acting on the hydraulic cylinder are determined, then the pressure force on the shock is calculated, and finally the force acting on the shock is determined.
As a result of solving the problem, the value of the force acting on the shock of the hydraulic cylinder is equal to 11.5 kN.
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