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At high pressure the liquefaction is more easy, the distances between molecules are lowered.

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What do you mean by liquefaction. Discuss different ways by which liquefaction of gases can be achieved?

Liquefaction is the process of liquefying or making liquid.(as told by dictionary.) Liquefaction is the process where soil loses strength and acts like a liquid instead of a solid.The modern methods of cooling the gas to or below their Tc and hence of liquefaction of gases are done by Linde's method and Claude's method.


What are the physical quantities and the manner in which these need to be altered for liquifying gases?

To liquefy gases, key physical quantities such as pressure and temperature must be altered. Increasing the pressure of a gas can lead to liquefaction, as it forces gas molecules closer together. Simultaneously, lowering the temperature reduces the kinetic energy of the molecules, which helps them condense into a liquid state. The combination of high pressure and low temperature is essential for effective gas liquefaction.


How does pressure help in liquefaction of a gas?

Pressure helps in liquefaction of a gas by reducing the volume occupied by the gas molecules, which in turn forces them closer together. When the gas molecules are compressed under high pressure, they lose their kinetic energy and slow down, allowing intermolecular forces to overcome the kinetic energy and pull the molecules closer together, leading to liquefaction.


How does the presure help in the liguefication of gas?

Pressure plays a crucial role in the liquefaction of gases by forcing gas molecules closer together, increasing their interactions. When pressure is applied to a gas, it reduces the volume, allowing the molecules to collide more frequently and lose energy in the process. As the temperature decreases or pressure increases beyond a certain point (the critical point), the gas can transition into a liquid state. This process is essential in various industrial applications, such as natural gas liquefaction for transport and storage.


What is the favorable condition for liquefaction of gases?

The temperature must be below the critical point and the phase can change to liquid by cooling the gas. If the gas is at conditions of temp and pressure below the triple point, the gas will instead be converted to a solid.

Related Questions

What are the applications based on change of physical state of matter by pressure?

The most important is the liquefaction of gases.


What do you mean by liquefaction. Discuss different ways by which liquefaction of gases can be achieved?

Liquefaction is the process of liquefying or making liquid.(as told by dictionary.) Liquefaction is the process where soil loses strength and acts like a liquid instead of a solid.The modern methods of cooling the gas to or below their Tc and hence of liquefaction of gases are done by Linde's method and Claude's method.


How does liquefaction of gases takes place?

Liquefaction of gases is the process by which substances in their gaseous state are converted to the liquid state. When pressure on a gas is increased, its molecules closer together, and its temperature is reduced, which removes enough energy to make it change from the gaseous to the liquid state.


What is the process called when gases turn into liquids?

Liquefaction


What is the meaning of liquifaction of gases?

Liquifaction (or liquefaction) is the process by which a substance is converted from a gaseous to a liquid state. This is accomplished by increasing the pressure, lowering the temperature or both.


What causes liquefaction?

in the bedrock (soil/ground) with loose sediments.


What are the physical quantities and the manner in which these need to be altered for liquifying gases?

To liquefy gases, key physical quantities such as pressure and temperature must be altered. Increasing the pressure of a gas can lead to liquefaction, as it forces gas molecules closer together. Simultaneously, lowering the temperature reduces the kinetic energy of the molecules, which helps them condense into a liquid state. The combination of high pressure and low temperature is essential for effective gas liquefaction.


How does pressure help in liquefaction of a gas?

Pressure helps in liquefaction of a gas by reducing the volume occupied by the gas molecules, which in turn forces them closer together. When the gas molecules are compressed under high pressure, they lose their kinetic energy and slow down, allowing intermolecular forces to overcome the kinetic energy and pull the molecules closer together, leading to liquefaction.


How does the presure help in the liguefication of gas?

Pressure plays a crucial role in the liquefaction of gases by forcing gas molecules closer together, increasing their interactions. When pressure is applied to a gas, it reduces the volume, allowing the molecules to collide more frequently and lose energy in the process. As the temperature decreases or pressure increases beyond a certain point (the critical point), the gas can transition into a liquid state. This process is essential in various industrial applications, such as natural gas liquefaction for transport and storage.


What is the favorable condition for liquefaction of gases?

The temperature must be below the critical point and the phase can change to liquid by cooling the gas. If the gas is at conditions of temp and pressure below the triple point, the gas will instead be converted to a solid.


How does applying pressure (or compression)help in the liquefaction of a gas?

Applying pressure to a gas reduces the volume it occupies, which increases the density of the gas. This compression forces gas molecules closer together, overcoming intermolecular forces and allowing them to transition into a liquid state when the pressure exceeds the gas's critical pressure. Essentially, higher pressure facilitates the liquefaction process by enabling the gas to condense into a liquid more efficiently.


How can a homogeneous mixture be separated?

A homogeneous mixture of gases (air) can be separated by fractional liquefaction. The mixture is gradually cooled, with the gases being separated by differences in boiling point.