Solution to problem 2.3.22 from the collection of Kepe O.E.

The value of the reaction in the RA embedment is of interest when the intensity of the distributed load qmax is equal to 10 N/m and the distance l is equal to 2,3,22. The answer to this question is 2.0.

This digital product is a solution to problem 2.3.22 from the collection of Kepe O.?. If you need to find the reaction value in an RA seal under given parameters, then this solution will become an indispensable assistant. Our product is presented in the digital store and is designed in a beautiful HTML format, making it easy to view and use on any device. You can purchase this problem solution right now and quickly solve your problem!

This product is a solution to problem 2.3.22 from the collection of Kepe O.?. The task is to determine the value of the distance l at which the reaction in the embedment RA is equal to 10 N, provided that the intensity of the distributed load qmax is equal to 10 N/m. The answer to this problem is 2.0.

The solution to the problem is presented in a beautiful HTML format, which makes it easy to view and use on any device. You can purchase this product right now and quickly solve your problem!


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Solution to problem 2.3.22 from the collection of Kepe O.?. consists in determining the value of the distance l at which the reaction in the embedment RA will be equal to 10 N, provided that the intensity of the distributed load qmax is equal to 10 N/m.

To solve the problem, we use the formula to determine the reaction in the embedment:

RA = qmax * l / 2

Substituting the known values, we get:

10 N = 10 N/m * l / 2

Solving the equation for l, we get:

l = 2 m

Thus, with a distance l equal to 2 m, the reaction in the embedment will be equal to 10 N at a distributed load intensity qmax equal to 10 N/m.


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