The temperature-volume law states that: "For an ideal gas kept at constant pressure, the volume of the gas is proportional to its absolute temperature"
In formula: [tex]\frac{V}{T}=const.[/tex]
Explanation:
The temperature-volume law, also called Charles's law, states that:
"For an ideal gas kept at constant pressure, the volume of the gas is proportional to its absolute temperature"
Mathematically, it can be written as:
[tex]\frac{V}{T}=const.[/tex]
Where
V is the volume of the gas
T is the absolute temperature of the gas (measured in Kelvin)
When an ideal gas undergoes an isobaric (=constant pressure) transformation, the equation can be rewritten as
[tex]\frac{V_1}{T_1}=\frac{V_2}{T_2}[/tex]
where the suffix 1,2 refer to the initial and final conditions of the gas, respectively. So, this equation can be used to found the final temperature of volume of the gas, knowing the other 3 quantities.
Learn more about ideal gases here:
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