The pressure of 2 moles of an ideal gas at 546 K having volume 44.8 L is

(1) 2 atm

(2) 3 atm

(3) 4 atm

(4) 1 atm

Subtopic:  Ideal Gas Law |
 80%
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3.2 g of oxygen (At. wt. = 16) and 0.2 g of hydrogen (At. wt. = 1) are placed in a 1.12 litre flask at 0°C. The total pressure of the gas mixture will be [CBSE PMT 1992]

(1) 1 atm

(2) 4 atm

(3) 3 atm

(4) 2 atm

Subtopic:  Ideal Gas Law |
 74%
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Equal weights of methane and oxygen are mixed in an empty container at 25°C. The fraction of the total pressure exerted by oxygen is 

(1) 1/3

(2) 1/2

(3) 2/3

(4) 1/3×273/298  

Subtopic:  Dalton's Law |
 66%
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The rate of diffusion of methane at a given temperature is twice that of gas X. The molecular weight of X is 

(1) 64.0

(2) 32.0

(3) 4.0

(4) 8.0

Subtopic:  Graham's Law |
 75%
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The kinetic energy for 14 grams of nitrogen gas at 127°C is nearly (mol. mass of nitrogen = 28 and gas constant = 8.31JK–1mol–1) 

(1) 1.0 J

(2) 4.15 J

(3) 2493 J

(4) 3.3 J

Subtopic:  Kinetic Theory of Gas |
 76%
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If the average velocity of N2 molecules is 0.3 m/s at 27°C, then the velocity of 0.6 m/s will take place at 

(1) 273 K

(2) 927 K

(3) 1000 K

(4) 1200 K

Subtopic:  Kinetic Theory of Gas |
 79%
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A gas such as carbon monoxide would be most likely to obey the ideal gas law at

(1) high temperatures and low pressures

(2) low temperatures and high pressures

(3) high temperatures and high pressures

(4) low temperatures and low pressures

Subtopic:  Kinetic Theory of Gas |
 86%
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A gaseous mixture was prepared by taking equal moles of CO and N2. If the total pressure of the mixture was found 1 atmosphere, the partial pressure of the nitrogen (N2) in the mixture is

(a) 0.8 atm

(b) 0.9 aim

(c) 1 atm

(d) 0.5 atm

Subtopic:  Dalton's Law |
 87%
NEET - 2011
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What volume of oxygen gas (O2) measured at 0°C and 1 atm, is needed to burn completely 1 L of propane gas (C3H8) measured under the same conditions?

(1) 7L

(2) 6L

(3) 5L

(4) 10L

Subtopic:  Gas Laws |
 79%
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NEET - 2008
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A certain volume of argon gas (Mol. wt. = 40) requires 45 s to effuse through a hole at a certain pressure and temperature. The same volume of another gas of unknown molecular weight requires 60s to pass through the same hole under the same conditions of temperature and pressure. The molecular weight of the gas is

(A) 53                                 

(B) 35

(C) 71                                 

(D) 120

Subtopic:  Graham's Law |
 79%
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