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1.783 grams/liter x 22.4 liters/mole = 40 grams/mole = Argon

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āˆ™ 13y ago
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āˆ™ 14y ago

Ar

(argon)

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Q: If the density of a noble gas id 1.783 gL at STP that gas is?
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If the density of a noble gas is 1.783 gL at STP that gas is .?

Ar (argon)


What is the density of H2S gas at STP?

The density of hydrogen sulfide is 1.363 g/cm3.


What is the density of neon gas at STP?

The Density of Neon at STP is: a 0.89994 mg/cm-3.


Density of natural gas at STP?

STP stands for Standard Temperature and Pressure. At STP, the pressure of natural gas is 1 atm, and 1 mole of gas takes up 22.4 liters.


What is the density of clorine?

Chlorine is a gas at STP. Density is 71/22.4 = 3.17 g/L


What is the heliums description?

Helium is a noble gas, it is colourless, odourless gas at STP. It is a chemically inert element.


Why is it important to know the mass and volume of gas at STP?

To find it's density


What is the density of CO2 gas at STP?

1.799 kg/m3 at 25 Co .


What is the density of argon gas at stp in gallons?

Argon has a density of 1.78 g/L at STP. One gallon =3.785 liters. So 1.78 g * 3.785 = 6.74 grams per gallon.


The molar mass of a gas at STP is the density of that gas?

Density is mass per volume. Density of gas is mostly the same in mol/volume. The molecular mass play large role in the different of density. Weak intermolecular force and interaction among different species of gases may give extra additional to the different in density of mix gas but at very small fraction.


Are the noble gases always in the gas state of matter?

At STP, all noble gases are gases. However, helium can be converted to liquid below-268.93 Ā°C.


Calculate the density of nitrogen gas, in grams per liter, at STP?

At Standard Temperature and Pressure (STP), which is defined as 0 degrees Celsius (273.15 Kelvin) and 1 atmosphere pressure, the molar volume of an ideal gas is approximately 22.4 liters/mol. The molar mass of nitrogen gas (Nā‚‚) is approximately 28.02 grams/mol. To calculate the density (D) of nitrogen gas at STP, you can use the ideal gas law: ļæ½ = Molar mass Molar volume at STP D= Molar volume at STP Molar mass ā€‹ ļæ½ = 28.02 ā€‰ g/mol 22.4 ā€‰ L/mol D= 22.4L/mol 28.02g/mol ā€‹ ļæ½ ā‰ˆ 1.25 ā€‰ g/L Dā‰ˆ1.25g/L Therefore, the density of nitrogen gas at STP is approximately 1.25 grams per liter.