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Relates that if held under constant pressure the ratio of Vol/Temp remains constant. i.e,

V1 / T1 = V2 / T2 (where T is in Kelvin)

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13y ago
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4mo ago

The Charles' Law formula is V1/T1 = V2/T2, where V is volume and T is temperature. This formula describes the relationship between the volume of a gas and its temperature at constant pressure.

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13y ago

T1 V2 / V1 = T2 V1 / V1

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Q: Charles Law formula
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What are the gas laws?

Boyle' Law P1V1 = P2V2 Charles' Law V1 / T1 = V2 / T2 Gay-Lussac's Law P1 ÷ T1 = P2 ÷ T2 The Combined Gas LawP1V1 / T1 = P2V2 / T2 The Ideal Gas Law PV=nRT KEY: P = pressure V = volume T = temperature R = 0.0821atm*L/mol*K n = number of mole of gas


When using Charles's law temperature must be on the?

Temperature must be in Kelvin when using Charles's law, as it is a gas law that states that the volume of a gas is directly proportional to its absolute temperature when pressure and amount of gas are constant.


Which gas law has the assumptions of a fixed amount and a fixed temperature of a gas?

The ideal gas law has the assumptions of a fixed amount and fixed temperature of a gas. It relates the pressure, volume, and temperature of a gas through the equation PV = nRT, where P is pressure, V is volume, n is the number of moles of gas, R is the gas constant, and T is temperature.


Which of the laws states that the volume of the gas and its pressure are inversely proportional?

Boyle's Law states that the volume of a gas is inversely proportional to its pressure, when the temperature is kept constant. This means that as the pressure on a gas increases, the volume decreases, and vice versa.


The inverse relationship between pressure and volume is known as?

The inverse relationship between pressure and volume is known as Boyle's Law. According to Boyle's Law, as the pressure of a gas increases, the volume decreases, and vice versa, when the pressure decreases, the volume increases.

Related questions

What is formula of Charles's law?

An experimental gas law is the Charles Law. The formula used is original volume/original temperature= new volume/new temperature. The law describes expansion of gases with heat.


What is the formula of Charles law?

An experimental gas law is the Charles Law. The formula used is original volume/original temperature= new volume/new temperature. The law describes expansion of gases with heat.


What is the expression for Charles's law?

The formula is: V = k.T where:- k is a constant- V is the volume- T is the temperatureThe Charles law is valid at constant temperature.


What is the expression for Charle's law?

The formula is: V = k.T where:- k is a constant- V is the volume- T is the temperatureThe Charles law is valid at constant temperature.


When was Charles B. Law born?

Charles B. Law was born in 1872.


When did Charles B. Law die?

Charles B. Law died in 1929.


When might you use Boyle's Law and Charles' Law?

You might use the Boyle's Law and Charles' Law when you are dealing with a kinetic theory question.


What is a expression of Boyle's law?

This law formula is: k = P.v


Should it be called Charles's law or Charles's theory?

It is commonly referred to as Charles's law, which states that the volume of a gas is directly proportional to its temperature at constant pressure.


What phase of matter does boyles and Charles law pertain to?

Boyle's law and Charles's law pertain to gases. Boyle's law relates the pressure and volume of a gas, while Charles's law relates the volume and temperature of a gas. Both laws are fundamental in understanding the behavior of gases.


What is law formulated by Jacques Charles?

Charles's Law states that the volume of a gas is directly proportional to its absolute temperature, assuming constant pressure. This means that as the temperature of a gas increases, its volume will also increase proportionally, and vice versa. The law is expressed mathematically as V1/T1 = V2/T2, where V is volume and T is temperature.


Who invented charle's law?

Charles's law was formulated by French scientist Jacques Charles in the 18th century. It states that the volume of a gas is directly proportional to its temperature, assuming the pressure and amount of gas are held constant.