CUET PG 2022 Question Paper Civil Engineering Shift-2

Instructions

For the following questions answer them individually

Question 91

A cantilever of length 2.0 m carries a uniformly distribute load of 1.5 kN/m run over its entire length. In addition. a point load of 2 kN also acts at a distance of 0.5 m from the free end. What will be the magnitude of the maximum shear force for this cantilever?

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Question 92

Identify the incorrect statement in the context of bending beams:

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Question 93

A simply supported beam has a span of 9.0 m and carries a uniformly distributed load of 10 KN/m for a distance of 6.0 m from one of its end. What will be the magnitude of maximum bending moment for this beam?

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Question 94

Consider a simply supported beam with a span โ€˜Lโ€™ carrying a uniformly varying load from zero at end โ€˜Aโ€™ to โ€˜wโ€™ per meter length at end โ€˜Bโ€™. The maximum bending moment in this beam will occur at a distance of _______________ from the end โ€˜Aโ€™.

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Question 95

โ€˜What will be the magnitude of uniformly distributed load that a beam (30 cm wide and 20 cm deep). having a span 8 m, can carry such that the bending stress does not exceed 120 N/mm$$^2$$?

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Question 96

โ€˜What will be the magnitude of average shear stress in a beam that a 200 mm wide and 250 mm deep if it is subjected to a maximum shear force of 75 kN.

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Question 97

Which of the following is not part of the assumptions made in Eulerโ€™s column theory?

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Question 98

Match List I with List II

Figure

Choose the correct answer from the options given below:

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Question 99

Two circular columns, C-1 and C-2. made up of the same material have equal effective length. The diameter of C-1 is half of that of C - 2. Provided that the crippling stress is less than the crushing stress for both the columns, the ratio of crippling load for C-1 and C-2 will be _____________

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Question 100

What thrust will a round steel rod (EI = 225 N-m$$^2$$) take without buckling if it is 1.5 m long. perfectly straight. pin-jointed at both the ends and the load being applied exactly along the axis of the rod?

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