KCET · Physics · Current Electricity
Variation of resistance of the conductor with temperature is as shown

The temperature co-efficient \( (\alpha) \) of the conductor is
- A \( \frac{R_{0}}{m} \)
- B \( \mathrm{mR}_{0} \)
- C \( m^{2} R_{0} \)
- D \( \frac{m}{R_{0}} \)
Answer & Solution
Correct Answer
(D) \( \frac{m}{R_{0}} \)
Step-by-step Solution
Detailed explanation
According to equation of straight line, we have
\(y=m x+c\)
Temperature coefficient \( (\alpha) \) of the conductor is
\(\alpha=\frac{\text { slope }}{y-\text { intercept }}=\frac{m}{R_{0}}\)
\(y=m x+c\)
Temperature coefficient \( (\alpha) \) of the conductor is
\(\alpha=\frac{\text { slope }}{y-\text { intercept }}=\frac{m}{R_{0}}\)
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