2.) Analyze the bridge shown in the figure above. Using
influence diagrams, it has been determined that in order to produce
the maximum positive moment in Span 2, a uniform load, w must be
loaded fully in Spans 2 and 4. Determine the reactions at the pier
supports (assume abutments to be roller supports and piers to be
pin supports) and draw the shear and moment diagrams.
3.) Analyze the same bridge with the uniform load, w fully
loaded in spans 2 and 3. Determine the reactions and draw the shear
and moment diagrams.
w=6kn/m
L=10m
L1= 5m
analyze as continuous beam ELEVATION L L1 L L1 Span 1 Span 2 Span 3 Span 4 H RE abutment pier USING THREE-MOMENT EQUATION: 2. Analyze the bridge shown in the figure above. Using influence diagrams, it has been determined that in order to produce the maximum positive moment in Span 2, a uniform load, w must be loaded fully in Spans 2 and 4. Determine the reactions at the pier supports (assume abutments to be roller supports and piers to be pin supports) and draw the shear and moment diagrams.
2.) Analyze the bridge shown in the figure above. Using influence diagrams, it has been determined that in order to prod
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2.) Analyze the bridge shown in the figure above. Using influence diagrams, it has been determined that in order to prod
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