Topic 1 of 5
Temperature on an absolute scale
Temperature determines the direction of net heating when systems are put in thermal contact. Gas equations use an absolute temperature scale, so a Celsius reading must be converted before substitution.
A temperature does not depend on the thermometer's substance
A thermodynamic temperature scale has an absolute zero and is independent of the property of any particular substance. Mercury expansion, electrical resistance and a gas's pressure can all change with temperature. Calibrated thermometers use such properties to indicate the same physical quantity; the choice of material does not define a different thermodynamic temperature.
The SI unit is the kelvin, K, written without a degree symbol. Here T denotes thermodynamic temperature and θ denotes the Celsius reading. Other texts may use T for a Celsius reading too, so read the named quantity and its unit.
Convert a reading, then compare it
This equation relates the numerical readings on the two scales. Absolute zero is 0 K = -273.15°C. A reading of 26.85°C corresponds to 300.00 K.
The same temperature has two different readings
Matching levels represent the same physical temperature. Both scales use the same linear spacing: a change of 1 K has the same size as a change of 1 °C.
From 300 to 360 K, the rise is 60 K. The Celsius rise is also 60 °C, but gas-law ratios must use the absolute readings in kelvin.
A temperature interval of 1 K is the same size as an interval of 1°C. The 273.15 offset cancels when two readings are subtracted, but it does not cancel when their ratio is taken.
Worked temperature comparison
Warming from 20.00°C to 40.00°C
ΔT = 313.15 - 293.15 = 20.00 K
T2/T1 = 313.15/293.15 ≈ 1.068
The temperature rise is also 20.00°C, but the absolute temperature has increased by about 6.82%, not doubled. Use the kelvin ratio in ideal-gas and mean-particle-energy comparisons.
Optional check A gas warms from 20.00 degrees C to 40.00 degrees C. Which statement correctly describes its temperature change and absolute-temperature ratio?
Interpret a thermometer reading
For a contact thermometer, establish good thermal contact and wait for a stable reading before using it as the object's temperature. Select a suitable range, record the scale or display resolution and check calibration. The surroundings' temperature is not automatically the temperature of an object that is still warming or cooling.
In the classical ideal-gas model, mean translational kinetic energy tends to zero as T tends to zero. This does not establish that every possible microscopic motion in every real material stops. Likewise, extending an ideal-gas graph to 0 K does not show that a real gas stays gaseous and ideal all the way there.