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
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1. *In a simply supported beam subjected to a point load at the center, the maximum bending moment occurs at

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

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3. The section modulus of a rectangular section is proportional to

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

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5. *The maximum deflection of a simply supported beam subjected to a concentrated load (W) at the midpoint is

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6. *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:

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

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8. A perfectly elastic body is

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9. A brittle material will

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10. *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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11. Load carrying capacity of fixed beam is

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12. The bending moment diagram for a cantilever beam subjected to a moment at the end of the beam would be

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13. The number of reaction components at a hinge on rollers support is

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

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15. The square root of the ratio of moment of inertia and cross-section area of the member is known as

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16. *Which of the following gives Bulk Modulus?

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17. The maximum deflection in a cantilever beam carrying a concentrated load 'w' at the free end is (Where L is span of bean, W is total load and EI is flexural rigidity)

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18. The moment of inertia of a rectangular (Bx D) section about its base is

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19. The impact tests are used to determine

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

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21. *Centrifugal force is given by

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22. A member that is subjected to reversible tensile or compressible stress may fail at a stress lower than the ultimate stress of the material. The property of the metal is called

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23. *Load required to produce unit deflection is called

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24. The slope of the curve of S.F. diagram at any section will be equal to

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

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26. The maximum bending moment in a simply supported beam loaded with a UDL of w/m having span l is

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

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28. *Tensile internal force tends to:

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29. Buckling load for a given column depends upon

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30. The shear center in the case of a T-beam section is

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

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

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33. *A beam is said to be loaded in pure bending when

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34. *The tension in a cable supporting a lift

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35. If y is the deflection of the beam, then shear force is

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36. The maximum number of transverse shear forces possible at one end of an element of a plane truss are

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

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38. A long vertical member subjected to an axial compressive load is called

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39. The rate of change of shear force is called

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

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41. *Bending moment diagram of a simply supported beam having a uniformly distributed load is

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42. *If a cantilever beam of 8m long has a uniformly distributed load of 2KN/m throughout the length and a 10KN point load at the center of the beam, find the moment at the center:

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43. *The velocity of a moving body is:

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

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

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

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48. The maximum bending moment caused by a moving load on a fixed-end beam occurs

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49. The region of c/s of a column in which compressive load may be applied without producing tensile load is known as

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50. In the case of an H section, the maximum shear stress will occur at

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