Determine the external reactions at the roller and pin supporting the above beam. Determine the internal reactions (shear and bending moment) at points B, D and F using the method of s Determine the shear and moment equations for the beam section under the triangular load, and the shea

Elements Of Electromagnetics
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Use n=14. Determine the external reactions at the roller and pin supporting the above beam. Determine the internal reactions (shear and bending moment) at points B, D and F using the method of sections. Determine the shear and moment equations for the beam section under the triangular load, and the shear and moment equations for the beam section under the rectangular load. Draw the shear and bending moment diagrams using the area method showing the differential relations that exist between the load, shear and moment at each section of the beam. Label the diagrams properly indicating where the shear and moment values are positive and negative. Also show on the diagram all the maximum and minimum shear and moment values. ​
3xn KN/m
6xn KN
2xn KN/m
11.5xn KN.m
3 m
2m.
2m
3m
your assigned n value.
1. Determine the external reactions at the roller and pin supporting the above beam.
2. Determine the internal reactions (shear and bending moment) at points B, D and F using the method of se
3. Determine the shear and moment equations for the beam section under the triangular load, and the shear
4. Draw the shear and bending moment diagrams using the
method chowing
difforontial
Transcribed Image Text:3xn KN/m 6xn KN 2xn KN/m 11.5xn KN.m 3 m 2m. 2m 3m your assigned n value. 1. Determine the external reactions at the roller and pin supporting the above beam. 2. Determine the internal reactions (shear and bending moment) at points B, D and F using the method of se 3. Determine the shear and moment equations for the beam section under the triangular load, and the shear 4. Draw the shear and bending moment diagrams using the method chowing difforontial
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