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Answer;
Pressure that is exerted by one gas as if it occupied a container by itself
Explanation;
- Partial pressure refers to the pressure exerted by an individual gas in a mixture of gases.
- According to Dalton's law of partial pressure, the total pressure of a mixture of gases is equivalent to the sum of the partial pressures of the component gases.
- Therefore; The partial pressure of one gas in a mixture of gases, contained in a given volume, is the pressure that one gas would exert if it occupied the entire volume all by itself.
Considering the Dalton's partial pressure, the correct answer is the second option: "pressure that is exerted by one gas as if it occupied a container by itself" defines partial pressure in a mixture of gases.
Dalton's law
The pressure exerted by a particular gas in a mixture is known as its partial pressure.
So, Dalton's law states that the total pressure of a gas mixture is equal to the sum of the pressures that each gas would exert if it were alone:
[tex]P_{T}=P_{1} +P_{2} +...+P_{n}[/tex]
where n is the amount of gases present in the mixture.
This relationship is due to the assumption that there are no attractive forces between the gases.
Dalton's partial pressure law can also be expressed in terms of the mole fraction of the gas in the mixture. The mole fraction is a dimensionless quantity that expresses the ratio of the number of moles of a component to the number of moles of all the components present.
So in a mixture of two or more gases, the partial pressure of gas A can be expressed as:
[tex]P_{A} =x_{A} P_{T}[/tex]
In summary, the correct answer is the second option: "pressure that is exerted by one gas as if it occupied a container by itself" defines partial pressure in a mixture of gases.
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