A truss system is connected with a beam as shown in the figure, where A is a fixed support, F is a pin support, and the structure is roller-connected between B and E. Determine the force in each of the eight struts using the method of consistent deformations. Neglect axial and shear deformation of the beam. B D E 2m 10 kN G 2m 2m Ibeam 150(10-6)m² = = Astrut 1.25(10-³)m² E=200 GPa for both the beam and struts

Structural Analysis
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Chapter2: Loads On Structures
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A truss system is connected with a beam as shown in the figure, where A is a fixed
support, F is a pin support, and the structure is roller-connected between B and E.
Determine the force in each of the eight struts using the method of consistent
deformations. Neglect axial and shear deformation of the beam.
B
D
E
2m
10 kN
G
2m
2m
Ibeam 150(10-6)m²
=
=
Astrut 1.25(10-³)m²
E=200 GPa for both the
beam and struts
Transcribed Image Text:A truss system is connected with a beam as shown in the figure, where A is a fixed support, F is a pin support, and the structure is roller-connected between B and E. Determine the force in each of the eight struts using the method of consistent deformations. Neglect axial and shear deformation of the beam. B D E 2m 10 kN G 2m 2m Ibeam 150(10-6)m² = = Astrut 1.25(10-³)m² E=200 GPa for both the beam and struts
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