In PV = nRT, which statement about units is true?

Study for the CIE Chemistry Advanced Subsidiary (AS) Level Test. Prepare with multiple-choice questions and detailed explanations. Master the exam!

Multiple Choice

In PV = nRT, which statement about units is true?

Explanation:
The equation is solved most clearly when the units are consistent in the SI system. For this form, pressure in pascals, volume in cubic metres, and temperature in kelvin are used, with R = 8.314 J mol−1 K−1. Kelvin is an absolute temperature scale, so it measures temperature from zero without any offset; Celsius would shift the temperature values and disrupt the direct proportionality in PV ∝ T. With these SI units, the left-hand side PV has units of the energy-like joules, matching nRT. That’s why using pressure in pascals and temperature in kelvin is the true statement. Volume depends on temperature at fixed pressure and amount of gas, so it is not independent of temperature. Temperature in Celsius isn’t compatible with the standard form, and while you could use atmospheres and litres if you adjust R accordingly, that isn’t the universal unit requirement.

The equation is solved most clearly when the units are consistent in the SI system. For this form, pressure in pascals, volume in cubic metres, and temperature in kelvin are used, with R = 8.314 J mol−1 K−1. Kelvin is an absolute temperature scale, so it measures temperature from zero without any offset; Celsius would shift the temperature values and disrupt the direct proportionality in PV ∝ T. With these SI units, the left-hand side PV has units of the energy-like joules, matching nRT. That’s why using pressure in pascals and temperature in kelvin is the true statement. Volume depends on temperature at fixed pressure and amount of gas, so it is not independent of temperature. Temperature in Celsius isn’t compatible with the standard form, and while you could use atmospheres and litres if you adjust R accordingly, that isn’t the universal unit requirement.

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