Figure 3 below shows a 16 m length of beam with a pinned support at A and roller support at C. The beam carries a uniformly distributed load (UDL) of 20 kN/m across section A to B and a transverse uniformly distributed load (UDL) of 10 kN/m across section D to E. i) Sketch the Free Body Diagram (FBD) of the beam then identify the reaction force. ii) Analyze the shear force, V and sketch Shear Force Diagram (SFD). ii) Analyze the bending moment, M and sketch the Bending Moment Diagram (BMD).
Figure 3 below shows a 16 m length of beam with a pinned support at A and roller support at C. The beam carries a uniformly distributed load (UDL) of 20 kN/m across section A to B and a transverse uniformly distributed load (UDL) of 10 kN/m across section D to E. i) Sketch the Free Body Diagram (FBD) of the beam then identify the reaction force. ii) Analyze the shear force, V and sketch Shear Force Diagram (SFD). ii) Analyze the bending moment, M and sketch the Bending Moment Diagram (BMD).
Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter4: Shear Forces And Bending Moments
Section: Chapter Questions
Problem 4.5.14P: The beam AB shown in the figure supports a uniform load of intensity 3000 N/m acting over half the...
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