The beam shown has an overall length L of 2 metres. A uniform distributed load of 3.7 kN/m is applied as shown. If the distance x is 1 metre, what is the equation for the resisting shear force (V) in section a-a of the beam. O a. None of these options O b. V 13.69 KN O c. V = 7.40 KN O d. V 1.00 KN B O e. V = 3.7 kN -X->

Elements Of Electromagnetics
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The beam shown has an overall length L of 2 metres. A uniform distributed load of 3.7 kN/m is applied as shown. If the distance
x is 1 metre, what is the equation for the resisting shear force (V) in section a-a of the beam.
A
O a. None of these options
O b. V
13.69 KN
O
c. V =
7.40 kN
O d. V 1.00 kN
C
O e. V = 3.7 kN
-X->
L
Transcribed Image Text:The beam shown has an overall length L of 2 metres. A uniform distributed load of 3.7 kN/m is applied as shown. If the distance x is 1 metre, what is the equation for the resisting shear force (V) in section a-a of the beam. A O a. None of these options O b. V 13.69 KN O c. V = 7.40 kN O d. V 1.00 kN C O e. V = 3.7 kN -X-> L
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