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Charles law graph - Charles's Law Graph ~ ChemistryGod





In the figure below, volume-temperature data for a 1-mole sample of methane gas at 1 atm are listed and graphed.

What is the graph of Charles Law? Example 2: Statement: The initial and final temperature of neon is 289 K and 323 K.



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We can calculate the volume or temperature at any unknown condition if the volume and temperature at a condition is known.



Thus, from the above equation, we arrive at Charles' law, Charles' law and absolute zero As per Charles' law when the absolute temperature approaches zero, the volume of the gas should approach zero.











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Description: If instead of a balloon we had a solid container then expansion of gas would have been restricted by the walls of the container thereby increasing pressure.

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The above expression is valid for a fixed amount of a gas and at constant pressure.
Extend the curve until it intersects with the x-axis and that gives the absolute zero temperature which would approximately be -273 o C.

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    +194reps
    Graphical Representation Of Charles Law ISOBAR- Graph between V and T at constant pressure is known as isobar or isoplestics and it always gives a straight line. A plot of V versus T (°C) at constant pressure is a straight line at – 273.15°C. -273.15-degree Celcius is the lowest possible temperature. Charles Law Application In Real Life
    By: coraxnews|||https://www.facebook.com/coraxnews/|||https://twitter.com/coraxnews|||https://www.reddit.com/r/coraxnews/
    +200reps
    What is the graph of Charles Law? The graph of Charles’s law is a volume-temperature graph. And it is as follows: The plot in the volume vs temperature (in K) graph is a straight line passing through the origin. The above graph is a volume vs temperature graph plotted as a constant pressure for a fixed amount of gas.
    By: djtrackstar|||https://www.facebook.com/realdjtrackstar|||https://twitter.com/djtrackstar/status/990050858803970049|||https://www.djtrackstar.com/
    +83reps
    According to Charles’s law V 1 / T 1 = V 2 /T 2 = k 566/283 = 746/373 =2= k Greater the mass of gas taken, greater will be the slope of straight line. The reason is that greater the number of moles greater the volume occupied. All these straight lines when extrapolated meet at a single point of -273.16 o C (0 Kelvin).
    By: djmacbest|||https://www.facebook.com/djmacbest|||https://twitter.com/djmacbest/status/953938985197408256|||https://www.youtube.com/user/djmacbest
    +335reps
    Charles’ Law: Graphical Representation [Click Here for Sample Questions] When the volume is altered at a constant pressure, the volume-temperature connection follows a straight line on the graph, and when the volume is reduced to zero, all lines cross at -273.15 C on the temperature axis.
    By: bigbusta|||https://www.facebook.com/bigbusta.gray|||https://twitter.com/BigBusta_|||https://www.youtube.com/watch?v=J3Il8MNLS3w
    +17reps
    Ideal gas equation. The ideal gas law (PV = nRT) Worked example: Using the ideal gas law to calculate number of moles. Worked example: Using the ideal gas law to calculate a change in volume. Practice: Calculations using the ideal gas equation. Derivation of gas constants using molar volume and STP. Boyle's law. Charles's law.
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