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

2 / 50

2. Rate of change of bending moment is equal to

3 / 50

3. The variation of the bending moment in the segment of a beam where no external load is present is

4 / 50

4. *The law which states that within elastic limits strain produced is proportional to stress producing it is known as:

5 / 50

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

6 / 50

6. *The relation between the radius of curvature (R), bending moment (M), and flexural rigidity (EI) is given by

7 / 50

7. *Moment of inertia of an object having rectangular section of 'b' as width and 'd' as depth is given by:

8 / 50

8. Shape of the bending moment diagram for a simply supported beam having a point load at the center is

9 / 50

9. In rectangular column having cross section b X h, the core is

10 / 50

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

11 / 50

11. *The compression test is commonly used for testing

12 / 50

12. *The velocity of a moving body is:

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13. Buckling load for a given column depends upon

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14. Euler's formula for a column of length 1, with one end fixed and other hinged is

15 / 50

15. The ratio of elongations of a conical bar due to its own weight and that of a prismatic bar of the same length is

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16. *In a simply supported beam with span (L) having a triangular load with its intensity 0 at both ends and W at center. The maximum BM will be

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17. The crippling load for column of length 1, with one end fixed and the other end free is

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18. *The amount of shear force at the maximum bending moment

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19. *If the shear force along a section of a beam is zero, the bending moment at the section is:

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20. The number of reaction components at a hinged end of a general loading is

21 / 50

21. The maximum deflection of a beam occurs at

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22. If the length of a simply supported beam carrying a concentrated load at the center is doubled, the deflection at the center will become

23 / 50

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

24 / 50

24. Bending moment diagram of simply supported beam with a point load at the centre of the span is

25 / 50

25. The number of points of contraflexture in a simply supported beam carrying udl is

26 / 50

26. A simply supported beam of length I carries a load varying uniformly from zero at the left end to the maximum at the right end. The maximum bending moment occurs at a distance of

27 / 50

27. *Fatigue is the failure of a material under:

28 / 50

28. *The ratio of the intensity of stress in a case of a suddenly loaded to that of gradually applied load is

29 / 50

29. The maximum shear stress will always occur at

30 / 50

30. *The Young's Modulus of elasticity is defined as the ratio of stress & strain within the

31 / 50

31. *Stress may be defined as force

32 / 50

32. A section of a beam is said to be in pure bending if it is subjected to

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33. *The shear force in a concrete beam is assumed to act

34 / 50

34. Find the maximum BM 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:-

35 / 50

35. If the stress produced by a prismatic bar is equal to the working stress, the area of the cross-section of the prismatic bar becomes

36 / 50

36. *Maximum deflection of a simply supported beam subjected to concentrated load (w) at the mid-point is

37 / 50

37. The reaction at end A of the beam shown is

38 / 50

38. The variation of the bending moment in the portion of the beam carrying a linearly varying load is

39 / 50

39. The difference between BM values at any two sections will be equal to

40 / 50

40. *Maximum bending moment occurs where

41 / 50

41. The method of increasing fatigue resistance by overstressing the metal by successively increasing the loading is known as

42 / 50

42. The maximum bending moment caused by a large number of equally spaced identical loads on a simply supported beam is (W = wL)

43 / 50

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

44 / 50

44. If the value of Young's Modulus of elasticity for a material is zero, it implies that the material is

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45. A column that fails primarily due to direct stress is called

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46. *The property of a material by which a body returns to its original shape after removal of the force is called

47 / 50

47. If the Poisson's ratio of a material is 0.25, the ratio of Modulus of Rigidity to the Young's Modulus is

48 / 50

48. *A cable subjected to U.D.L. over its entire span assumes a shape of

49 / 50

49. *The bending moment at a section tends to bend or deflect the beam and internal stresses resist its bending. The resistance offered by the internal stress to the bending, is called:

50 / 50

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

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