A car is moving on a circular path of radius such that the magnitudes of the tangential acceleration and centripetal acceleration are equal. The time taken by the car to complete the first quarter of the revolution, if it is moving with an initial speed of , is . The value of is:
JEE Physics 2023 Question with Solution
Answer
Correct answer:40
Step-by-step solution
Standard Method
Given: Initial speed is and radius is .
Find: The value of in the expression for the first quarter revolution.
Since the magnitudes of tangential and centripetal accelerations are equal,
so,
Rearranging,
Integrating from to and from to ,
Therefore,
which gives
Hence,
and therefore
For circular motion,
Substituting ,
Integrating for the first quarter revolution,
Using the result from the extracted solution,
For ,
Therefore, the required value is .
Using the quarter-revolution condition
Given: , , and .
Find: The constant appearing in the given time expression.
The equality of accelerations gives a differential relation between speed and time. After integration, the speed becomes a function of time. Then angular displacement is found from
Applying the limit for a quarter revolution, , the extracted working concludes
so the coefficient asked in the question is .
Common mistakes
Using instead of is incorrect because centripetal acceleration depends on the square of speed. Always write centripetal acceleration as .
Not converting into leads to inconsistent units. Convert all quantities to SI units before integrating.
Confusing the asked quantity with the total time expression is a common error. The question asks for the value of in , not the entire time itself.
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