It is 445.088 L
V=n(22.4mol/L)
=19.87mol (22.4mol/L)
To find the volume of 19.87 mol of NH₄Cl at STP (standard temperature and pressure), we can use the ideal gas law. At STP, 1 mol of gas occupies 22.4 L. Therefore, 19.87 mol of NH₄Cl will occupy 19.87 mol x 22.4 L/mol = 445.888 L.
At standard temperature and pressure (STP), the gas that occupies the highest volume is hydrogen.
The molar volume of hydrogen gas at STP (Standard Temperature and Pressure) is 22.4 liters per mole.
To calculate the volume of CO2 at STP (Standard Temperature and Pressure), you can use the ideal gas law equation: PV = nRT. First, find the number of moles of CO2 using the ideal gas law equation. Then, use the molar volume of a gas at STP (22.4 L/mol) to find the volume at STP.
1 mole of gas particles at STP (Standard Temperature and Pressure) occupies a volume of 22.4 liters.
The volume is 695,85 cm3.
The volume is 695,62 cm3.
To find the volume of 19.87 mol of NH₄Cl at STP (standard temperature and pressure), we can use the ideal gas law. At STP, 1 mol of gas occupies 22.4 L. Therefore, 19.87 mol of NH₄Cl will occupy 19.87 mol x 22.4 L/mol = 445.888 L.
Yes, ammonium chloride (NH4Cl) is highly soluble in water. When added to water, it dissociates into its ions, ammonium ions (NH4+) and chloride ions (Cl-), which makes it easily dissolve in the water.
Gaseous at STP
The volume of 10.9 mol of helium at STP is 50 litres.
At standard temperature and pressure (STP), the gas that occupies the highest volume is hydrogen.
At STP conditions, 11g of SO2 will occupy a volume of approximately 5.6 liters.
The molar volume of hydrogen gas at STP (Standard Temperature and Pressure) is 22.4 liters per mole.
At STP (standard temperature and pressure), one mole of any gas occupies a volume of 22.4 liters. This is known as the molar volume of a gas at STP.
To calculate the volume of CO2 at STP (Standard Temperature and Pressure), you can use the ideal gas law equation: PV = nRT. First, find the number of moles of CO2 using the ideal gas law equation. Then, use the molar volume of a gas at STP (22.4 L/mol) to find the volume at STP.
The volume is 27,8 L.