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प्रश्न
Explain the factors that affect the heat generated in a current-carrying conductor. Derive its formula.
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उत्तर
i. The heat (H) generated in a conductor depends on three main factors:
1. Electric Current (I): The heat produced is directly proportional to the square of the current passing through the conductor.
H ∝ I2
2. Resistance (R): The heat produced is directly proportional to the electrical resistance of the conductor.
H ∝ R
3. Time (t): The heat produced is directly proportional to the time duration for which the current flows.
H ∝ t
Combining all three factors gives Joule's Law of Heating:
H ∝ I2Rt
or
H = I2Rt
ii. Derivation of the Formula:
Let a current (I) flow through a conductor of resistance (R) when a potential difference (V) is applied across its ends for a time (t).
1. Work Done by Charge: By definition of potential difference, the work done (W) to move a charge (Q) across the conductor is:
W = V × Q ....(1)
2. Expressing Charge in Terms of Current: Since electric current is the rate of flow of charge (\(I = \frac{Q}{t}\)), we can write:
Q = I × t .......(2)
3. Substituting Equation 2 into Equation 1:
W = V × I × t
4. Applying Ohm's Law: According to Ohm's Law, (V = I × R). Substituting this value of (V):
W = (I × R) × I × t
W = I2Rt
5. Conversion to Heat: Assuming all the electrical work done by the current is converted entirely into heat energy (H = W):
H = I2Rt
