Rotational Motion (NEET Physics): Questions 115 - 119 of 123

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Question number: 115

» Rotational Motion » Moment of Inertia

MCQ▾

Question

The moment of inertia of uniform rectangular plate about an axis passing through its mid-point and parallel to its length l is, (b = breadth of rectangular plate)

Choices

Choice (4) Response
a.

Mb36

b.

Mb24

c.

Mb212

d.

Mb312

Question number: 116

» Rotational Motion » Rotational Kinetic Energy

MCQ▾

Question

The moment of a uniform disc about an axis, perpendicular to the disc, at the centre is 12MR2 (M = mass, R = radius of disc). If the disc is rolling on its edge without slipping on a straight line path, the ratio of rotation kinetic energy to translation one is,

Choices

Choice (4) Response
a.

1

b.

18

c.

14

d.

12

Question number: 117

» Rotational Motion » Values of Moments of Inertia

MCQ▾

Question

Moment of inertia of a ring of mass m = 10 gm and radius r = 5 cm about an axis passing through its edge and parallel to its natural axis is

Choices

Choice (4) Response
a.

8 gm-cm 2

b.

500 gm-cm 2

c.

10 gm-cm 2

d.

1 gm-cm 2

Question number: 118

» Rotational Motion » Moment of Inertia

MCQ▾

Question

Moment of inertia of a disc about its own axis is 6I its moment of inertia about a tangential axis in its plane is

Choices

Choice (4) Response
a.

3I

b.

12 I

c.

15I

d.

52I

Question number: 119

» Rotational Motion » Concepts of Rotational Motion

Assertion-Reason▾

Assertion (Ꭺ)

Two cylinders, one hollow (metal) and the other solid (wood) with the same mass and identical dimensions are simultaneously allowed to roll without slipping down an inclined plane from the same height. The hollow cylinder will reach the bottom of the inclined plane first.

Reason (Ꭱ)

By the principle of conservation of energy. The total kinetic energies of both the cylinders are identical when they reach the bottom of the incline.

Choices

Choice (4) Response
a. Both Ꭺ and Ꭱ are false
b. Ꭺ is true but Ꭱ is false
c. Ꭺ is false but Ꭱ is true
d. Both Ꭺ and Ꭱ are true and Ꭱ is the correct explanation of Ꭺ

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