Chapter:
deflections
1. A free end of a cantilever beam rotates by 0.001 radians under a point load 10 kN. Then deflection at free end due to a moment of 100 KN - m is:
2. For a simply supported beam of given material and cross section, if udl throughout is replaced by a central point load equal to total load due to udl, central deflection of beam would
3. Which of following represents bending at a section of beam?
4. The ratio of deflection at center of a fixed beam and simply supported beam under a concentrated load up at centre of space is.
5. The deflection of a simply supported beam with an uniformly distributed load w per unit length, having flexural rigidity EI and of length L is
6. Bending moment at any section in a conjugate beam gives _______ in actual beam.
7. Reaction at level of prop, at free end of a cantilever of span I carrying a u.d.I. 'W' per unit length is
8. A cantilever beam of length, L, with uniform cross-section and flexural rigidity, EI, is loaded uniformly by a vertical load, w per unit length. The maximum vertical deflection of beam is given by
9. The ratio of deflections of free end of a cantilever due to an isolated load at 1/3rd and 2/3rd of span is
10. In case of a beam simply supported at both ends, if same load instead of being concentrated at centre is distributed uniformly throughout length, n deflection at centre will get reduced by
All Chapters
View all Chapter and number of question available From each chapter from Structural-Engineering
Simple Stress and Strain
Simple Stress and Strain
Stresses in Members
Stresses in Members
Strain Energy and Resilience
Strain Energy and Resilience
Center of Gravity and Moment of Inertia
Center of Gravity and Moment of Inertia
Shear Force and Bending Moment
Shear Force and Bending Moment
Pure Bending
Pure Bending
Shear Stress
Shear Stress
Direct and Bending Stress
Direct and Bending Stress
Slope and Deflection
Slope and Deflection
Indeterminate Beams
Indeterminate Beams
Torsion
Torsion
Plastic and Local Buckling Behaviour of Steel
Plastic and Local Buckling Behaviour of Steel
Cables and Arches
Cables and Arches
Influence Lines and Approximate Analysis for Statically Determinate Structures
Influence Lines and Approximate Analysis for Statically Determinate Structures
Deflections
Deflections
Deflections Using Energy Methods
Deflections Using Energy Methods
Displacement Method of Analysis: Slope-Deflection Equations
Displacement Method of Analysis: Slope-Deflection Equations
Displacement Method of Analysis: Moment Distribution
Displacement Method of Analysis: Moment Distribution
Influence line diagram mcqs
Influence line diagram mcqs
Structural engineering important exam questions
Structural engineering important exam questions
Structural engineering important exam questions II
Structural engineering important exam questions II
Structural engineering important exam questions III
Structural engineering important exam questions III
Plastic Analysis
Plastic Analysis
Structural Engineering Loksewa Questions
Structural Engineering Loksewa Questions
Topics
This Chapter deflections consists of the following topics
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