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(Solved): The beam supports the triangular distributed load shown below with \( w_{\max }=940 \mathrm{lb} / \ ...




The beam supports the triangular distributed load shown below with \( w_{\max }=940 \mathrm{lb} / \mathrm{ft} \). The reactio
The beam supports the triangular distributed load shown below with \( w_{\max }=940 \mathrm{lb} / \mathrm{ft} \). The reactions at \( A \) and \( B \) are vertical. Part A Determine the resultant internal loadings on the cross section at point \( C \). Express your answers, separated by commas, to three significant figures.


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the reactions are determined by using the equilibrium equation as following ?Fy=0Ra+Rb=0.5×18×940+0.5×9×940=12,690 lb?Ma=00.5×18×940×23×18+0.5×9×940×(
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