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Civil Engineering

Structures, surveying, soil mechanics

53 Q 2 Topics Take Test
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Difficulty: All Easy Medium Hard 31–40 of 53
Topics in Civil Engineering
All Structural Analysis 92 Concrete Technology 19
The stiffness matrix in matrix method of structural analysis represents:
A Load-displacement relationship
B Displacement-force relationship
C Moment-rotation relationship
D Stress-strain relationship
Correct Answer:  B. Displacement-force relationship
EXPLANATION

[K]{D} = {F}, where stiffness matrix K relates displacements D to forces F. K represents member/structure stiffness.

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In virtual work method, if a unit load is applied instead of actual load, the virtual displacement is equal to:
A Actual displacement
B Zero displacement
C Slope of the beam
D Curvature of the beam
Correct Answer:  A. Actual displacement
EXPLANATION

Virtual work principle: Work done by actual loads through virtual displacements equals work by virtual loads through actual displacements.

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A fixed beam of length L with central point load P has the fixed end moment equal to:
A PL/8
B PL/6
C PL/4
D PL/2
Correct Answer:  A. PL/8
EXPLANATION

For fixed beam with central point load, fixed end moment = PL/8 and maximum deflection = PL³/(192EI).

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In Castigliano's theorem, the partial derivative of total strain energy with respect to a load gives:
A Slope at that point
B Deflection at that point
C Bending moment at that point
D Shear force at that point
Correct Answer:  B. Deflection at that point
EXPLANATION

∂U/∂P = Deflection at point of application of load P. ∂U/∂M = Slope at point of application of moment M.

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The influence line for a reaction at support A of a simply supported beam is represented by:
A A straight line with value 1 at A and 0 at B
B A parabolic curve
C A triangular diagram
D A rectangular diagram
Correct Answer:  A. A straight line with value 1 at A and 0 at B
EXPLANATION

Influence line for reaction is linear: value = 1 at support A and linearly decreases to 0 at support B, representing unit load position effect on reaction RA.

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In plastic analysis of structures, the collapse load is determined by assuming:
A Elastic behavior throughout
B Formation of plastic hinges at critical sections
C Linear strain hardening
D Brittle failure mode
Correct Answer:  B. Formation of plastic hinges at critical sections
EXPLANATION

Plastic analysis assumes yielding at critical sections forms plastic hinges where full plastic moment capacity is achieved, leading to collapse mechanism.

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In the conjugate beam method, the conjugate load diagram is obtained by dividing the bending moment diagram of the actual beam by:
A EI throughout
B EI in different segments based on variation
C Young's modulus E only
D Moment of inertia I only
Correct Answer:  A. EI throughout
EXPLANATION

Conjugate beam method applies M/EI diagram as load on conjugate structure. Deflection and slope are obtained as reactions and moments on conjugate beam.

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A frame with 'j' joints and 'm' members with 'r' reaction components is unstable if:
A m + r < 2j
B m + r > 2j
C m + r = 2j
D m + r = 3j
Correct Answer:  A. m + r < 2j
EXPLANATION

For a frame to be stable and determinate: m + r = 2j. If m + r < 2j, the frame is unstable (insufficient members/supports). If m + r > 2j, frame is indeterminate.

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For a beam-column subjected to axial compression P and bending moment M, the interaction equation used in design codes is based on:
A Linear relationship between P and M
B Secant formula
C Nonlinear interaction formula
D Euler's buckling theory
Correct Answer:  C. Nonlinear interaction formula
EXPLANATION

IS 800:2007 uses nonlinear interaction equations for combined bending and compression, typically: (P/Pc) + (M/Mc) ≤ 1.0, where Pc and Mc are critical values.

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The stiffness coefficient k₁₂ in a stiffness matrix represents:
A Force at DOF 1 due to unit displacement at DOF 1
B Force at DOF 1 due to unit displacement at DOF 2
C Displacement at DOF 2 due to unit force at DOF 1
D Rotation at DOF 2 due to unit moment at DOF 1
Correct Answer:  B. Force at DOF 1 due to unit displacement at DOF 2
EXPLANATION

Stiffness coefficient k_ij represents the force/moment at DOF i due to unit displacement at DOF j. k₁₂ means effect at location 1 from displacement at location 2.

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