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Class 11
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Chemistry
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States of Matter
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Ideal Gas Equation
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Derivation of Ideal Gas Equation
Derivation of Ideal Gas Equation
10 Mins
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Important Questions
What will be the pressure exerted by a mixture of
$3.2g$
of methane and
$4.4g$
of
$CO_{2}$
contained in a
$9dm_{3}$
flask at
$27C$
.
Medium
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>
Density of a gas is found to be
$5.46g/dm_{3}$
at
$27_{∘}C$
and
$2bar$
pressure. What will be its density at STP?
Medium
View solution
>
Calculate the volume occupied by 8.8 g of CO
$_{2}$
at 31.1
$_{∘}C$
and 1 bar pressure. (R = 0.083 bar L K
$_{−1}$
mol
$_{−1}$
)
Hard
View solution
>
Using the equation of state
$pV=nRT$
, show that, at a given temperature the density of a gas is proportional to its gas pressure
$p$
.
Medium
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>
Pressure of 1 g of an ideal gas A at 27
$_{∘}C$
is found to be 2 bar. When 2 g of another ideal gas B is introduced in the same flask at same temperature the pressure becomes 3 bar. Find a relationship between their molecular masses?
Hard
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>
Derive a relation between density and molar mass of the gas with the help of ideal gas equation.
Medium
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>
At
$0_{o}$
C, the density of a certain oxide of a gas at
$2$
bar is same as that of dinitrogen at
$5$
bar. What is the molecular mass of the oxide?
Medium
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>
A neon-dioxygen mixture contains
$70.6g$
dioxygen and
$167.5g$
neon. If the pressure of the mixture of gases in the cylinder is
$25$
bar. What is the partial pressure of dioxygen and neon in the mixture?
Medium
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>
Choose the correct statement from the following:
This question has multiple correct options
Medium
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>
Equal masses of
$H_{2},O_{2}$
and methane have been taken in a container of volume
$V$
at temperature
$27_{o}C$
in identical conditions. The ratio of the volumes of gases
$H_{2}:O_{2}$
: methane would be:
Hard
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>