MCQ Questions Civil Engineering Theory of Structures

MCQ Questions Civil Engineering Theory of Structures (1)

MCQ Questions Civil Engineering Theory of Structures

Take a look at these MCQ Questions Civil Engineering Theory of Structures interview questions and our tips on how to answer them. If you’re applying for an engineering internship, graduate scheme or entry-level job, you’ll face at least one interview as part of an engineering employer’s recruitment process. You may be interviewed by one or more members of the HR team, senior members of the engineering team you’d be joining or a mixture of both. In this section we will study MCQ Questions Civil Engineering Theory of Structures. 
As well as questions about your reasons for applying to the role and the employer in question, engineering recruiters will be assessing your potential in the areas that is crucial to any engineering role: technical expertise. Engineers may be asked to perform feats of fantastic technical prowess, but it will be as as part of a Justice League rather than as a solo engineering super hero.
 

The interviewer is almost as nervous as the candidate in most interviews. You might wonder if you look confident enough, if you will hire the right person, or if you are asking the right engineering interview questions. The last question is arguably the most crucial part to worry about when you’re interviewing candidates. Other topics on Civil Engineering Multiple Choice Questions can be accessed 

MCQ Questions Civil Engineering Theory of Structures - Set - 1

Question 1: 

A close coil helical spring when subjected to a moment M having its axis along the axis of the helix

A. It is subjected to pure bending

B. Its mean diameter will decrease

C. Its number of coils will increase

D. All the above

Correct Answer – (A)

Question 2: 

Maximum strain theory for the failure of a material at the elastic limit, is known as

A. Guest’s or Trecas’ theory

B. St. Venant’s theory

C. Rankine’s theory

D. Haig’s theory

Correct Answer – (B)

Question 3: 

A shaft subjected to a bending moment M and a torque T, experiences

A. Maximum bending stress = 32M d3

B. Maximum shear stress = 16 T d3

C. Both A. and B.

D. Neither A. nor B.

Correct Answer – (C)

Question 4: 

Pick up the correct statement from the following:

A. The moment of inertia is calculated about the axis about which bending takes place

B. If tensile stress is less than axial stress, the section experiences compressive stress

C. If tensile stress is equal to axial stress, the section experiences compressive stress

D. All the above

Correct Answer – (D)

Question 5: 

Pick up the correct statement from the following:
A. The structural member subjected to compression and whose dimensions are small as
B. compared to its length, is called a stmt
The vertical compression members are generally known as columns or stanchions
C. Deflection in lateral direction of a long column, is generally known as buckling
D. All the above

Correct Answer – (D)

MCQ Questions Civil Engineering Theory of Structures

Question 6: 

Slenderness ratio of a long column, is

A. Area of cross-section divided by radius of gyration

B. Area of cross-section divided by least radius of gyration

C. Radius of gyration divided by area of cross-section

D. Length of column divided by least radius of gyration

Correct Answer – (D)

Question 7: 

A two hinged parabolic arch of span l and rise h carries a load varying from zero at the left end to
A. /4h thrust is

B. /8h

C. /12h

D. /16h

Correct Answer – (D)

Question 8: 

A composite beam is composed of two equal strips one of brass and other of steel. If the temperature is raised

A. Steel experiences tensile force

B. Brass experiences compressive force

C. Composite beam gets subjected to a couple

D. All the above

Correct Answer – (D)

Question 9: 

Maximum principal stress theory for the failure of a material at elastic point, is known

A. Guest’s or Trecas’ theory

B. St. Venant’s theory

C. Rankine’s theory

D. Von Mises’ theory

Correct Answer – (C)

Question 10: 

P=4²EI/L² is the equation of Euler’s crippling load if
A. Both the ends are fixed
B. Both the ends are hinged
C. One end is fixed and other end is free
D. One end is fixed and other end is hinged

Correct Answer – (A)

MCQ Questions Civil Engineering Theory of Structures
MCQ Questions Civil Engineering RCC Structures Design

Multiple Choice Questions for Competitive Exams