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Engineering Mechanics
Comments
Question
In a framed structure, as shown in the below figure, the force in the member
AC
is numerically equal to the force in member
BC
.
Options
A. Correct
B. Incorrect
Correct Answer
Correct
Engineering Mechanics problems
Search Results
1. The centre of gravity of a semi-circle lies at a distance of __________ from its base measured along the vertical radius.
Options
A. 3
r
/ 8
B. 4
r
/ 3?
C. 8
r
/3
D. 3
r
/4?
Show Answer
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Discuss
Correct Answer: 4
r
/ 3?
2. In ideal machines, mechanical advantage is __________ velocity ratio.
Options
A. equal to
B. less than
C. greater than
Show Answer
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Discuss
Correct Answer: equal to
3. The maximum acceleration of a particle moving with simple harmonic motion is
Options
A. ?
B. ?
r
C. ?
2
r
D. ?/
r
Show Answer
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Correct Answer: ?
2
r
4. Which of the following are vector quantities?
Options
A. Linear displacement
B. Linear velocity
C. Linear acceleration
D. all of these
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Correct Answer: all of these
5. The velocity ratio of a differential pulley block with D and d as the diameters of larger and smaller pulley, is
Options
A.
B.
C.
D.
Show Answer
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Correct Answer:
6. The centre of gravity of an is osceles triangle with base (
p
) and sides (
q
) from its base is
Options
A.
B.
C.
D.
Show Answer
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Correct Answer:
7. Two bodies of masses
m
1
,and
m
2
are hung from the ends of a rope, passing oyer a frictionless pulley as shown in the figure below. The acceleration of the string will be
Options
A.
B.
C.
D.
Show Answer
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Correct Answer:
8. Tension in the cable supporting a lift is more when the lift is moving __________ with an acceleration.
Options
A. upwards
B. downwards
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Correct Answer: upwards
9. The moment of inertia of a square of side
a
about its diagonal is
Options
A.
a
2
/8
B.
a
3
/12
C.
a
4
/12
D.
a
4
/16
Show Answer
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Correct Answer:
a
4
/12
10. According to the law of moments, if a number of coplaner forces acting on a particle are in equilibrium, then
Options
A. their algebraic sum is zero
B. their lines of action are at equal distances
C. the algebraic sum of their moments about any point in their plane is zero
D. the algebraic sum of their moments about any point is equal to the moment of their resultant force about the same point.
Show Answer
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Correct Answer: the algebraic sum of their moments about any point in their plane is zero
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