Solution to problem 1.2.13 from the collection of Kepe O.E.

Solution to problem 1.2.13 from the collection of Kepe O.?.

This solution is a digital product in a digital goods store and is an answer to problem 1.2.13 from the collection of problems by Kepe O.?.

In the problem there are two rods - AC and BC, which are hinged at point C. A load 1 weighing 12 N is suspended from point C through block D. It is necessary to determine the reaction of rod BC if the angle between rods AC and BC is 60 degrees.

The solution to the problem is presented in PDF format and is available for downloading after placing an order. It provides detailed calculations and a step-by-step solution, accompanied by graphic diagrams and explanations.

By purchasing this solution, you are guaranteed to receive the correct answer to the problem, which will help you successfully solve the problem and increase your level of knowledge in the relevant field.

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Our digital goods store offers a solution to problem 1.2.13 from the collection of problems by Kepe O., designed in the form of a beautiful and easy-to-read HTML document. This solution is an answer to a problem in which it is necessary to determine the reaction of a rod BC connected to a hinge with another rod AC at point C, to which a load 1 weighing 12 N is suspended through a block D at an angle between rods AC and BC equal to 60 degrees.

After placing an order, you will receive access to a high-quality PDF document containing a detailed solution to the problem with graphic diagrams and explanations. This solution will guarantee the correct answer to the problem and will help you improve your knowledge in the relevant field.

Don't miss the opportunity to purchase a quality digital product and improve your knowledge!


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Solution to problem 1.2.13 from the collection of Kepe O.?. consists in determining the reaction of rod BC, to which block D is attached, supporting a load of mass 1 and weight 12 N.

To solve the problem it is necessary to use the laws of equilibrium of a rigid body. In this case, under the condition of equilibrium, the sum of all forces and moments of forces acting on the system must be equal to zero.

To determine the reaction of rod BC, it is necessary to first determine the tension forces in rods AC and BC. These forces are equal to the horizontal and vertical components of the tension force in the wire passing through block D, respectively.

Then you can apply the law of equilibrium of moments of forces relative to point C, which will allow you to determine the reaction of the rod BC.

As a result of solving this problem, the answer is -6.


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Peculiarities:




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