9702 · 15.1
The mole — FAQ
Frequently asked questions for 9702 The mole. Direct answers first, then deeper explanation — then practise with marking.
Why is the mole used instead of just counting individual particles?
Individual atoms and molecules are incredibly tiny, meaning even a small sample of substance contains trillions upon trillions of particles. The mole provides a practical unit to group these vast numbers, making calculations and comparisons manageable in chemistry and physics.
What's the difference between 'n' and 'N' in gas equations?
'n' represents the number of moles of the gas (e.g., 0.5 mol), used with the molar gas constant (R). 'N' represents the total number of individual particles (atoms or molecules) in the gas, used with the Boltzmann constant (k). They both quantify the 'amount' but at different scales.
Why must temperature be in Kelvin for gas law calculations?
Gas laws describe how gas properties relate to absolute temperature, where zero Kelvin (-273.15°C) signifies the theoretical point of zero molecular motion. The Celsius scale is arbitrary and would lead to incorrect results (e.g., zero Celsius would imply zero volume or pressure in a simple gas law, which is not physical).
What is the difference between mass and molar mass?
Mass (m) is the amount of matter in a specific sample, measured in kg or g. Molar mass (M) is a property of a substance itself; it's the mass of exactly one mole of that substance, measured in kg/mol or g/mol. You use the molar mass to convert the mass of your sample into moles.