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In the early 1800's, Amedeo Avogadro hypothesised that if you have samples of different gases, of the same volume, at a fixed temperature and pressure, then the samples must contain the same number of freely moving particles (i.e. atoms or molecules).
Equal volumes of gases, at the same temperature and pressure, contain the same number of molecules.
You will remember from an earlier section, that we combined different gas law equations to get one that included temperature, volume and pressure. In this equation, pV = kT, the value of k is different for different masses of gas. If we were to measure the amount of gas in moles, then k = nR, where n is the number of moles of gas and R is the universal gas constant. The value of R is 8.3143 J.K .mol , or for most calculations, 8.3 J.K .mol . So, if we replace k in the general gas equation, we get the following ideal gas equation .
The following table may help you when you convert to SI units.
Variable | Pressure ( p ) | Volume ( V ) | moles ( n ) | universal gas constant ( R ) | temperature ( K ) |
SI unit | Pascals (Pa) | m | mol | J.K .mol | Kelvin (K) |
Other units and conversions | 760 mm Hg = 1 atm = 101325 Pa = 101.325 kPa | 1 m = 1000000 cm = 1000 dm = 1000 litres | K = C + 273 |
Khan academy video on the ideal gas law - 1
Khan academy video on the ideal gas law - 2
Two moles of oxygen (O ) gas occupy a volume of 25 dm at a temperature of 40 C. Calculate the pressure of the gas under these conditions.
p = ?
V = 25 dm
n = 2
T = 40 C
Therefore,
Carbon dioxide (CO ) gas is produced as a result of the reaction between calcium carbonate and hydrochloric acid. The gas that is produced is collected in a 20 dm container. The pressure of the gas is 105 kPa at a temperature of 20 C. What mass of carbon dioxide was produced?
p = 105 kPa
V = 20 dm
T = 20 C
Therefore,
Therefore,
The molar mass of CO is calculated as follows:
Therefore,
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