Question: A beam is subjected to a triangular load distribution ww with a maximum pressure of wmaxwmax. It is connected at one end by a pin

A beam is subjected to a triangular load distribution ww with a maximum pressure of wmaxwmax. It is connected at one end by a pin connection and is supported at point A by a cable. (Figure 2) Complete the free-body diagram of the beam by adding the missing forces acting on it. Express the load distribution as one resultant force, FRFR, at the appropriate location.
Draw the missingforces ending at the appropriate black dots. The location and orientation of the vectors will be graded. The length of the vectors will not be graded. A beam is subjected to a triangular load distribution \( w \) with a maximum pressure of \( w_{\max }\). It is connected at one end by a pin connection and is supported at point \( A \) by a cable. (Figure 2) Complete the free-body diagram of the beam by adding the missing forces acting on it. Express the load distribution as one resultant force, \(\mathbf{F}_{R}\), at the appropriate location.
Draw the missing forces ending at the appropriate black dots. The location and orientation of the vectors will be graded. The length of the vectors will not be graded.
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A beam is subjected to a triangular load

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