for a provided mass of gas at constant temperature, the volume of gas varies inversely v the pressure
At a continuous volume and also temperature, the complete pressure exerted by a mixture the gases equal to the sum of the partial pressure of the ingredient gases.

You are watching: A box with a volume of 22.4 l contains 1.0 mol of nitrogen and 2.0 mol of hydrogen at 0 c

The volume of a fixed mass of gas is directly proportional come the kelvin temperature if the volume is preserved constant
As the temperature that a solved volume that gas increases, the pressure willA.vary inversely.B.be unchanged.C.decreaseD.increase
A breathing mixture supplied by deep-sea divers consists of helium, oxygen, and also carbon dioxide. What is the partial push of oxygen at 101.3 kPa complete pressure if PHe=84.0 kPa and Pc02=0.10 kPa?A.10.3 kPaB. 34.4 kPaC.17.2 kPaD.185.4 kPa
Increasing the volume that a given amount the gas at continuous temperature reasons the pressure to diminish becauseA. The molecules room striking a larger area with the very same force.B. There room fewer molecules.C. The molecules room moving an ext slowly.D. There are much more molecules.
When a container is filled v 3.00 mol of H2, 2.00 mol that O2, and also 1.00 mol that N2, the press in the container is 465 kPa. The partial push of O2 isA.78 kPa.B.116 kPa.C.155 kPa.D.212 kPa.
A box v a volume that 22.4 L includes 1.0 mol that nitrogen and also 2.0 mol of hydrogen at 0°C. I m sorry of the adhering to statements is true?A.The total pressure in package is 202.6 kPa.B.The partial push of N2 and also H2 are equal.C.The full pressure is 101.3 kPa.D.The partial push of N2 is 101.3 kPa.
The volume the a gas is double while the temperature is held constant. The pressure of the gasA.remains unchanged.B. Is reduced by one half.C.is doubled.D. Counts on the sort of gas.
As the temperature the the gas in a balloon decreasesA.the volume increases.B. The push increases.C.the median kinetic power of the gas particles decreases.D. Every one of the above are true.
The volume that a gas is raised from 0.5 together to 4.0 l while the temperature is held constant. The press of the gasA.increases by a element of four.B.decreases through a aspect of eight.C.increases through a factor of eight.D.increases through a element of two.
A gas occupies 40.0 mL in ~ -123°C. What volume go it occupy at 27°C, assuming pressure is constant?A. 182 mLB. 8.80 mL C. 80.0 mLD. 20.0 mL
A gas rectal a volume the 0.2 L at 25 kPa. What volume will the gas occupy at 2.5 kPa?A. 4 LB. 20 LC. 2 LD. 0.02 L
Which the these changes would not cause rise in the press of a contained gas?A.Another gas is added to the container.B.Additional quantities of the very same gas are included to the container.C.The temperature is increased.D.The gas is relocated to a bigger container.

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If a balloon include 1000 l of gas at 50°C and also 101.3 kPa rises come an altitude where the press is 27.5 kPa and the temperature is 10°C, the volume there is
A gas has a pressure of 655 kPa at 227°C. What will certainly its press be in ~ 27°C if the volume does not change?
A 10-g fixed of krypton occupies 15.0 L at a push of 156 kPa. Discover the volume that the krypton as soon as the press is boosted to 215 kPa at the exact same temperature.
A gas occupies a volume the 180 mL at 35.0°C and also 95.9 kPa. What is the volume the the gas at conditions of STP?
A gas has a volume of 550 mL at a temperature that -55.0°C. What volume will the gas occupy at 30.0°C, assuming constant pressure?
Two tiny bicycle pumps are filled with different gases; one contains He, the various other Ar. Making use of the same pressure, it will certainly take much longer to pressure out the He than the Ar.NT(Not True)AT(Always True)ST(Sometimes True)
Theoretically, perfect gas will certainly contract in volume with raising pressure and also reduced temperature until absolute zero is reached.NT(Not True)AT(Always True)ST(Sometimes True)
To attain a value for the variety of moles making use of the ideal gas law, one uses the conditions of STP.NT(Not True)AT(Always True)ST(Sometimes True)
The kinetic energy of a relocating body is directly proportional to the square of its velocity.NT(Not True)AT(Always True)ST(Sometimes True)
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