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What is the molar mass of amonia gas?

The molar mass of ammonia gas (NH3) is approximately 17.03 g/mol.


What is the mass of 1 mole of gas?

39.95 because that is the molar mass of Argon


What is the relationship between the molar mass of a gas and its density?

The relationship between the molar mass of a gas and its density is that as the molar mass of a gas increases, its density also increases. This means that gases with higher molar masses will be denser than gases with lower molar masses.


How can one determine the molar mass of a gas using the ideal gas law?

To determine the molar mass of a gas using the ideal gas law, you can rearrange the equation to solve for molar mass. The ideal gas law is PV nRT, where P is pressure, V is volume, n is the number of moles, R is the gas constant, and T is temperature. By rearranging the equation to solve for molar mass (M), you get M (mRT)/(PV), where m is the mass of the gas. By measuring the pressure, volume, temperature, and mass of the gas, you can calculate the molar mass using this formula.


What is the vapour density of the gas if 5.6dm3of a gas weighs 60g at S.T.P?

The molar volume of a gas at STP (standard temperature and pressure) is 22.4 L/mol. To calculate the molar mass of the gas, you can use the formula: Molar mass = (mass of gas / volume of gas) x molar volume at STP. In this case, with a mass of 60g and a volume of 5.6 dm3, the molar mass would be 60g/5.6dm3 x 22.4L/mol = 240 g/mol. Vapour density is calculated as 2 x molar mass, so in this case the vapour density would be 480 g/mol.


What is the relationship between the molar mass and the ideal gas law?

The molar mass of a gas is directly related to the ideal gas law, which states that the pressure, volume, and temperature of a gas are related to the number of moles of gas present. The molar mass affects the density of the gas, which in turn influences its behavior according to the ideal gas law.


What gas has a molar mass of 28.019?

There are more than one gas which has their molar mass of 28 g/mol. Nitrogen N2 and ethene C2H4 are two examples.


Find the mass of a gas?

To find the mass of a gas, you need to know the volume of the gas, its pressure, temperature, and molar mass. Use the ideal gas law equation (PV = nRT) to calculate the number of moles of gas present. Then, multiply the number of moles by the molar mass of the gas to determine its mass.


What is the molar mass of oxygen gas?

Oxygen gas is composed of diatomic O2 molecules. From the Periodic Table, the atomic weight indicates that the molar mass of oxygen atoms is 16.0g/mole. The diatomic molecule O2 has twice the molar mass as oxygen atoms, and its molar mass is 32g/mole.


An unknown gas with a mass of 8.32 g is held at 25 degrees Celsius in an 8.42 L tank under 1147.6 mmHg pressure What is the molar mass of the gas?

Using the ideal gas law, we can solve for the molar mass of the gas. The formula is Molar Mass = (mass of gas * gas constant * temperature)/(pressure * volume). Plugging in the values: Molar Mass = (8.32 g * 0.0821 L atm/mol K * 298 K)/(1147.6 mmHg * 1 atm/760 mmHg * 8.42 L). This gives a molar mass of approximately 31.98 g/mol, which suggests the gas could be carbon dioxide (CO2) with a molar mass of 44.01 g/mol.


Properties of mass gas?

The speed of the molecules in a gas is proportional to the temperature and is inversely proportional to molar mass of the gas.


What is Oxygen (O2) is an example of?

The molar mass of any gas in liters is 22.4 For example The molar mass of O2 and O are both 22.4 since gas is compressible.