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This product presents a solution to problem 17.3.8 from the collection of Kepe O.. using the principles of mechanics and equilibrium equations. The solution is presented in the form of a beautifully designed HTML document with a detailed description of each stage of the solution and is accompanied by graphic illustrations and formulas.
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?electronic product "Solution to problem 17.3.8 from the collection of Kepe O." is a high-quality solution to a physics problem, which contains a detailed and understandable description of each step of the solution. The product is presented as a beautifully designed HTML document and contains graphic illustrations and formulas.
This problem is to determine the force in rod A, to which three bodies with equal masses are connected and which move along a horizontal guide under the action of forces F1 = 3 kN and F2 = 12 kN.
The solution to the problem is based on the principles of mechanics and equilibrium equations, which are described in detail in the product. By purchasing this product, you can easily master these principles and improve your knowledge of physics.
The answer to the problem is 2·103 and it is also explained in detail in the solution. Buy "Solution to Problem 17.3.8 from the collection of Kepe O." and improve your knowledge in physics today!
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The product is the solution to problem 17.3.8 from the collection of Kepe O.?. The task is to determine the force in rod A, to which three bodies of equal mass are connected, moving along a horizontal guide under the action of two forces F1 = 3 kN and F2 = 12 kN.
To solve the problem, it is necessary to apply Newton's laws and create equilibrium equations for each of the bodies. Then you should solve the system of equations and find the unknown force in rod A.
The answer to the problem is 2 10^3 N (newton), which is equal to 2 kN (kilotonton).
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