Truss bridges can span long distances and support heavy weight without intermediate supports. They are economical to construct and a re available in a wide variety of styles. Consider the following planar truss, constructed of aluminum alloy, which can be used in parallel to form bridges. a-Determine the deflections at each point of the truss under the given loading conditions.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Truss bridges can span long distances and support heavy weight without intermediate supports.
They are economical to construct and a re available in a wide variety of styles. Consider the
following planar truss, constructed of aluminum alloy, which can be used in parallel to form
bridges.
a-Determine the deflections at each point of the truss under the given loading conditions.
b-Create a report of your full analysis(including total deformation, equivalent von mises stresses
and strains, max. and min principal stresses and strains etc.)
Material= Aluminum alloy
Member cross section;
1 m
Height=6cm
Width=6cr
(Please be careful for the units you can use meter as unit)
1m
1m
1 m
1 m
(Use Cross Section of Rectangular from the Concept drop-down menu in design modeler)
30 kN
30 kN
30 kN
Transcribed Image Text:Truss bridges can span long distances and support heavy weight without intermediate supports. They are economical to construct and a re available in a wide variety of styles. Consider the following planar truss, constructed of aluminum alloy, which can be used in parallel to form bridges. a-Determine the deflections at each point of the truss under the given loading conditions. b-Create a report of your full analysis(including total deformation, equivalent von mises stresses and strains, max. and min principal stresses and strains etc.) Material= Aluminum alloy Member cross section; 1 m Height=6cm Width=6cr (Please be careful for the units you can use meter as unit) 1m 1m 1 m 1 m (Use Cross Section of Rectangular from the Concept drop-down menu in design modeler) 30 kN 30 kN 30 kN
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