A body cools from to in minutes. If the temperature of the surroundings is , then after the next minutes, its temperature will be —— .
JEE Physics 2023 Question with Solution
Answer
Correct answer:28
Step-by-step solution
Standard Method
Given: The body cools from to in minutes, and the surrounding temperature is .
Find: The temperature after the next minutes.
Using Newton’s law of cooling, the average rate of cooling is taken as proportional to the excess temperature over surroundings.
For the first interval,
So,
For the second interval, let the temperature after the next minutes be . Then,
Substituting ,
Solving this gives
Therefore, the temperature after the next minutes is .
Using the two interval equations
Given: Two equal time intervals of minutes each are considered.
Find: The final temperature in the second interval.
From the solution working:
The average temperature during the first interval is , so excess over surroundings is . Hence,
Now for the second interval,
Substitute :
Multiply by :
Multiply by :
Therefore, the required temperature is .
Common mistakes
Using the initial excess temperature for the entire process is incorrect because Newton’s law depends on the changing excess temperature. Use the average excess temperature over each interval as shown in the working.
Taking is incorrect. The average temperature is , but the excess over surroundings is . Always subtract the surrounding temperature after averaging.
Substituting incorrectly into the second interval equation leads to a wrong final value. First find from the first interval, then use the same constant carefully in the second interval.
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