Class 11 Physics MCQs | Chapter 7: System Of Particles And Rotational Motion
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Class 11 Physics MCQs | Chapter 7: System of Particles and Rotational Motion

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231. Which equation correctly relates angular velocity \(\omega\), linear velocity \(v\), and radius \(r\) of circular motion?
ⓐ. \(v = \frac{\omega}{r}\)
ⓑ. \(v = \omega r\)
ⓒ. \(v = \frac{r}{\omega}\)
ⓓ. \(v = \omega + r\)
232. If the angular velocity of a wheel is \(10 \, \text{rad/s}\) and its radius is \(0.5 \, \text{m}\), what is the linear velocity of a point on the rim?
ⓐ. 2.5 m/s
ⓑ. 5 m/s
ⓒ. 10 m/s
ⓓ. 20 m/s
233. For a body in uniform circular motion, what is the relationship between the directions of angular velocity vector \(\omega\) and linear velocity \(v\)?
ⓐ. Both are in the same direction
ⓑ. Both are opposite
ⓒ. \(\omega\) is along the axis of rotation, while \(v\) is tangent to the circle
ⓓ. Both are radial
234. If a car moves in a circle of radius \(50 \, \text{m}\) with an angular velocity of \(0.2 \, \text{rad/s}\), what is its linear velocity?
ⓐ. 5 m/s
ⓑ. 10 m/s
ⓒ. 15 m/s
ⓓ. 20 m/s
235. If the radius of a rotating disc is doubled while keeping angular velocity constant, what happens to the linear velocity of a point on its rim?
ⓐ. It halves
ⓑ. It remains the same
ⓒ. It doubles
ⓓ. It becomes zero
236. A stone tied to a string is whirled in a horizontal circle. If the string breaks, what happens to the stone’s motion immediately?
ⓐ. It stops at once
ⓑ. It moves radially inward
ⓒ. It moves radially outward
ⓓ. It moves tangentially to the circle
237. The wheels of a train have an angular velocity of \(20 \, \text{rad/s}\) and radius \(0.6 \, \text{m}\). What is the train’s linear speed?
ⓐ. 10 m/s
ⓑ. 12 m/s
ⓒ. 15 m/s
ⓓ. 18 m/s
238. What is the effect on angular velocity when linear velocity is kept constant and the radius of the circular path is doubled?
ⓐ. Angular velocity doubles
ⓑ. Angular velocity halves
ⓒ. Angular velocity becomes zero
ⓓ. Angular velocity remains constant
239. Two wheels of radii \(0.2 \, \text{m}\) and \(0.4 \, \text{m}\) are rotating at the same angular velocity. Which statement is correct?
ⓐ. Both wheels have the same linear velocity
ⓑ. The smaller wheel has greater linear velocity
ⓒ. The larger wheel has greater linear velocity
ⓓ. Both wheels have zero linear velocity
240. A rotating ceiling fan blade has an angular velocity of \(30 \, \text{rad/s}\). If the tip of the blade is 0.4 m from the axis, what is the tip’s linear speed?
ⓐ. 6 m/s
ⓑ. 9 m/s
ⓒ. 12 m/s
ⓓ. 15 m/s
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