Mechanics Of Materials & Structures Online Test - Paper 3
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Mechanics of Materials & Structures Online Test – Paper 3

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Created by 83a36dcfd5c4caff12bc80f0020c9c749e12cbbbdb7c406dc1dd39996cb85836?s=32&d=monsterid&r=g gkaimVikash chaudhary

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  • Total Questions: 50
  • Time Allotted: 50 minutes
  • Passing Score: 70%
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1. *Stress may be defined as force

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2. *A diagram that shows the variation of axial force

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3. *The magnitude of a shear force at a distance of L/4 from either end of a simply supported beam with load P applied at midspan is equal to:

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4. The ratio of the effective length of a column and the minimum radius of gyration of its cross-sectional area is known as

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5. The beam strongest in flexure will have the maximum

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6. The moment of inertia of an area will be least with respect to

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7. For a column, with both ends fixed, the crippling load will be equal to

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8. The shear center may be defined as

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9. *Compression members always tend to buckle in the direction of the

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10. The maximum deflection of a simply supported beam subjected to a uniformly distributed load (w) over the span is

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11. The actual breaking stress of a ductile material from a tension test will be

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12. If a constant section is subjected to a uniform/ pure bending moment throughout, its length bends to

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13. *The stress at which the extension of a material takes place more quickly as compared to the increase in load is called

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14. *A point where SF is zero, BM is

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15. Find the maximum SF induced in a cantilever beam subjected to a point load of 10 KN and a length of the beam is 10 m. The load is located at a distance of 3 m from the free end

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16. *BM in a cantilever beam having a span of 1.8m and a uniformly distributed load of 4kg/m

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17. The diagram showing the variation of BM along the span of the beam is called

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18. Moment of inertia of a rectangular beam bxd is

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19. Shear strain is defined as

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20. What is strain energy?

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21. *Centrifugal force is given by

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22. The expression EI(d^4y/dx^4) at any section for a beam is equal to

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23. *Thrust is induced in the case of

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24. *If a beam is loaded transversely, the maximum compressive stress develops on

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25. If the elasticity of the material is zero then the material is said to be

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26. The slenderness ratio of a vertical column of square cross-section of 10 cm side and 500 cm long is

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27. *The tension in a cable supporting a lift

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28. The equivalent length of column fixed at one end and free at the other end is

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29. *The ratio of the largest load in a test to the original cross-sectional area of the piece is called:

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30. The maximum bending moment caused by a moment M applied at a distance 'a' from one end on a simply supported beam is.... (where L=span, a>L/2)

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31. *A truss is completely analyzed, when

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32. The moment of inertia of a square section is given by

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33. *The shear force and bending moment are related by

34 / 50

34. The bending moment in a cable carrying a system of loads will be

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35. *"A simply supported beam of span L carries a uniformly distributed load W. The maximum bending moment, M is:

36 / 50

36. The stress necessary to initiate yielding is considerably

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37. *Find the maximum bending moment in a simply supported beam loaded with a UDL of 2 t/m having a span of 4m

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38. *Short column taking maximum load having equal section

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39. *Which of the following gives Modulus of Elasticity

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40. *The shear flow in a section can be defined as

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41. The impact tests are used to determine

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42. The slenderness ratio of a vertical column of a square section of 2.5 cm sides and an effective length of 1.75 m is

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43. Permanent set is

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44. *A tie is a member which

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45. *The stress at which the extension of a material takes place more quickly as compared to the increase in load is called

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46. Effective length of column fixed at one end and hinged at the other end is

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47. *The maximum bending moment in a simply supported beam UDL is applied

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48. *Maximum bending moment occurs where

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49. Identify the correct relationship that exists among the modulus of elasticity (E), modulus of rigidity (N), and bulk modulus (k) is

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50. In an I section, almost all the shear force is taken by

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