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explain the relationship of pressure volume and temperature in Charles law in combined gas law​

Sagot :

Answer:

1. Charles's Law: Charles's Law states that the volume of a given mass of gas varies directly with the absolute temperature of the gas when pressure is kept constant. This means that as the temperature of a gas increases, its volume also increases proportionally, and vice versa. The formula for Charles's Law is V/T = k, where V is volume, T is temperature in Kelvin, and k is a constant.

2. Combined Gas Law: The Combined Gas Law combines the relationships between pressure, volume, and temperature in gases. It states that the pressure, volume, and absolute temperature of a fixed amount of gas are related. The formula for the Combined Gas Law is P1V1/T1 = P2V2/T2, where P is pressure, V is volume, and T is temperature.

Charles's Law is a scientific law formulated by Jacques Charles on 1787. It is a principle in physics and chemistry that relates to the behavior of gases. It states that, at constant pressure, the volume of a given mass of gas is directly proportional to its absolute temperature. In simpler terms, as the temperature of a gas increases, so does its volume, assuming the pressure remains constant.

Charles's Law states that at constant pressure, the volume of a gas is directly proportional to its absolute temperature. Mathematically, it can be expressed as:

[tex] \frac{v1}{t1} = \frac{v2}{t2} [/tex]

Where V1 and T1 are the initial volume and temperature. While, V2 and T2 are the final volume and temperature, respectively.

Charles's Law within the Combined Gas Law illustrates how volume and temperature are directly proportional when pressure and the amount of gas remain constant. This relationship is crucial for understanding how gases behave under varying conditions of temperature, pressure, and volume.

Learn more about the Charles Law on:

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