Determine the horizontal deflection at joint D of the truss shown in the figure by using the virtual work method.
Q: 100 kN 300 kN–m A B 3 m 6 m 21 I E = constant = 70 GPa %3D I = 500 (106) mm %3D
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Q: Use the virtual work method to determine the horizontal deflection at joint C of the frame shown. 2…
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Q: Determine the slope and deflection at point B of the beam shown by the conjugate beam method.
A: IN CONJUGATE BEAM METHOD FREE END BECOME FIXED END: DRAW BENDING MOMENT DIAGRAM: FOR PORTION…
Q: 30 kN 15 kN 3m 6m 3m
A: Let the reaction at A be RA and the reaction at D be RD ALso, let the moment of inertia along the…
Q: Use the virtual work method to determine the vertical deflection at joint C of the frame shown.
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Q: 7. For the frame shown below, determine the vertical deflection at point C (Ac) using the virtual…
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Q: 2. Use the virtual work method to determine the horizontal and vertical components of the deflection…
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Q: Use the moment-area method to determine the slope at point A and the deflection at point C of the…
A: Solution: ∑MC=0RA×6-170×3=0RA=85 kNRD+RE=85+70=155…
Q: 1. Using the method of superposition, find the deflection at a point midway between the supports of…
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Q: Problem 14.2. Determine the maximum deflection of the cantilevered beam. The beam is made of…
A: Given:- RA=37.5kN MA=67.5kNm E=200GPa I=65.0 x 10 6mm4 To find:- maximum deflection
Q: Use the virtual work method to determine the vertical deflection at joint B of the frame shown. 20…
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Q: 4. Use the virtual work method to determine the slopes and deflections at points B and D of the beam…
A: Let us determine the Deflection at point B and D by virtual work method in the upcoming steps.
Q: 2. Use the virtual work method to determine the horizontal and vertical components of the deflection…
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Q: Areas: E O AD = 400 mm2 CE = 500 mm² %3D 5 m D 2 m А В A C -2 m→-2 m→
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Q: Determine the slope and deflection at point Bof the beam shown by the direct integration method. 50…
A: Solution: Given data: Youngs modulus E=70 GPaMoment of Inertia I=164×106 mm4 Consider flexural…
Q: 2. Determine the maximum deflection of the simply supported beam using double integration method. E…
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Q: Use the virtual work method to determine the horizontal deflection at joint C of the frame shown
A: Given:-E=200GPa=200 ×106kN/mI=400×106mm4=400×10-6m4To find:-horizontal deflection at joint C
Q: Use the virtual work method to determine the horizontal and vertical components of the deflection at…
A: at joint B FABsinθ+75=0 sinθ=ACAB=1220 and cosθ=1620FAB=-75sinθ=751220=-125 kand…
Q: to solve for the vertical
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Q: 90 kN b. 5 m El = constant E = 200 GPa = 800 (106) mm4 %3D
A: Direct integration method: Direct integral method is a type of structural method used to calculate…
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Q: 1. Use the virtual work method to determilne the vertical deflection at joint of the truss chown. D…
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Q: For the cantilevered beam shown in the figure below, use the virtual work method to prove that the…
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Q: Use the conjugate-beam method to determine the slope and deflection at point c of the beams shown in…
A: an imaginary beam for which the load diagram is the M/EI diagram is called the conjugate beam . the…
Q: Use the virtual work method to determine the horizontal deflection at joint E of the frame shown in…
A: Draw free body diagram of real beam
Q: Use the conjugate-beam method to determine the slope and deflection at point D of the beam shown.
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Q: Calculate the Midspan Deflection of the Beam using Double Integration Method (Macaulay's METHOD…
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Q: Use the virtual work method to determine the horizontal and vertical components of the deflection at…
A: use virtual work methods to find deflection
Q: Use the virtual work method to determine the horizontal and vertical components of the deflection at…
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Q: Q. I Determine the slope at the supports of the beam shown in Fig. I using the moment-area method.…
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Q: 1. Use the virtual work method to determine the vertical deflection at joint C of the truss shown.…
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Q: Use the virtual work method to determine the slope and deflection at point D of the beam. EI=…
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Q: 270 kN 45 kN/m В 3 m 3 m 3 m El = constant E = 200 GPa I = 1665x10°mm
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Q: Use the virtual work method to determine the horizontal and vertical components of the deflection at…
A: Given:- Truss E=10000ksi To find:- Horizontal and vertical components of the deflection at joint B
Q: Using the method of superposition, find the deflection at a point midway between the supports of the…
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Q: Use the conjugate-beam method to determine the slope and deflection at point B of the beams.
A: The given figure is shown below:
Q: -6 ft- 60 k-ft B 12 ft El = constant E = 10,000 ksi I = 800 in.4 %3D %3D
A: given beam:-
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A: General equation of castigliano's method; ∆(deflection) = ∫0L∂M∂PMEIdx θ(slope) = ∫0L∂M∂MMEIdx…
Q: For the truss shown below, determine the horizontal deflection of joint B by using the virtual work…
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Q: 2. Use the virtual work method to determine the horizontal deflections at joint C of the frame…
A: Given data:
Q: Problem 6.42 Use the conjugate beam method to determine the slope and deflection at point B of the…
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Q: Use the virtual work method to determine the vertical deflection at joint C the frame shown (you can…
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Q: Use the virtual work method & Castigliano's theorem to determine the horizontal deflection at joint…
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Q: Determine the slopes and deflections at points B and D of the beam shown using the Conjugate Beam…
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Q: Determine the horizontal deflection at joint E of the truss shown due to a temperature increase of…
A: Given data, Member BC is 18 mm too long and member CE is 15 mm too short.
Q: 1.5 m B 100 kN 4.5 m
A: Given that:
Q: Use the moment-area method to determine the slope and deflections at point B and C of the beam…
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Determine the horizontal deflection at joint D of the truss shown in the figure by using the virtual work method.
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