Q.The resistance of the platinum wire of a platinum resistance thermometer at the ice point is and at steam point is . When the thermometer is inserted in a hot bath, the resistance of the platinum wire is . Calculate the temperature of the bath.
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Start your 14-day free trial to unlock the full solution →The problem uses the linear temperature-resistance relation for platinum: . By first finding from the ice and steam points, then substituting the measured resistance, the bath temperature comes out to .
The key idea here is that platinum resistance thermometers rely on the predictable, nearly linear increase in resistance with temperature. For a pure metal like platinum, over a moderate temperature range, the resistance changes according to:
where is the resistance at (ice point), is the resistance at temperature (in °C), and is the temperature coefficient of resistance — a constant for the material.
We are given two calibration points: the ice point (, ) and the steam point (, ). These let us determine for this specific wire. Once is known, any measured resistance can be converted directly to temperature.
Let’s work through it step by step.
- Find the temperature coefficient At the steam point, and . Using the formula:
Substitute the known values:
Divide both sides by 5:
Subtract 1:
So:
Notice that is simply the fractional change in resistance per degree Celsius. Here, the resistance increases by over , so the fractional change per degree is , which matches.
- Set up the equation for the unknown temperature The hot bath gives a resistance . Using the same linear relation: …
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