Войдите в систему

The work done by a thermodynamic system depends not only on the initial and final states but also on the intermediate states—that is, on the path. Like work, when heat is added to a thermodynamic system, it undergoes a change of state, and the state attained depends on the path from the initial state to the final state. Consider an ideal gas cylinder fitted with a piston. When the cylinder is heated at a constant temperature, the gas molecules absorb energy and expand slowly in a controlled isothermal manner. This pushes the piston upwards, and gas eventually attains the final volume. Here, the work is done by the gas due to heat expansion on the piston.

The gas can also attain the same final volume through a different process. Consider a cylinder surrounded by insulating walls and divided by a thin, removable partition. The lower compartment is filled with the same amount of gas at the same temperature so that the initial state is the same as mentioned above. When the partition is removed, the gas undergoes a rapid, uncontrolled expansion, with no heat passing through the insulating walls, and reaches the same final volume as in the above case. Here, no work is done by the gas during this expansion as it does not push against anything that moves. This uncontrolled expansion of a gas into the vacuum is called a free expansion.

Experimentally, there is no temperature change under a free expansion of ideal gas. This means that the final state of the gas remains the same. The intermediate states (pressures and volumes) during the transition from the initial to the final state are entirely different in the two cases. As a result, it represents two different paths connecting the same initial and final states.

Теги
Thermodynamic SystemHeat AdditionWork DoneIdeal GasIsothermal ExpansionGas MoleculesPiston MovementControlled ExpansionUncontrolled ExpansionFree ExpansionInsulating WallsTemperature ChangeIntermediate StatesPressure And Volume

Из главы 20:

article

Now Playing

20.4 : Heat and Free Expansion

The First Law of Thermodynamics

1.4K Просмотры

article

20.1 : Термодинамические системы

The First Law of Thermodynamics

4.6K Просмотры

article

20.2 : Работа, выполненная при изменении объема

The First Law of Thermodynamics

3.5K Просмотры

article

20.3 : Путь между состояниями термодинамики

The First Law of Thermodynamics

2.8K Просмотры

article

20.5 : Внутренняя энергия

The First Law of Thermodynamics

4.0K Просмотры

article

20.6 : Первый закон термодинамики

The First Law of Thermodynamics

3.7K Просмотры

article

20.7 : Первый закон термодинамики: решение проблем

The First Law of Thermodynamics

2.2K Просмотры

article

20.8 : Циклические процессы и изолированные системы

The First Law of Thermodynamics

2.6K Просмотры

article

20.9 : Изотермические процессы

The First Law of Thermodynamics

3.3K Просмотры

article

20.10 : Изохорные и изобарические процессы

The First Law of Thermodynamics

3.0K Просмотры

article

20.11 : Теплоемкость идеального газа I

The First Law of Thermodynamics

2.4K Просмотры

article

20.12 : Теплоемкость идеального газа II

The First Law of Thermodynamics

2.3K Просмотры

article

20.13 : Теплоемкость идеального газа III

The First Law of Thermodynamics

2.1K Просмотры

article

20.14 : Адиабатические процессы для идеального газа

The First Law of Thermodynamics

2.9K Просмотры

article

20.15 : Давление и объем в адиабатическом процессе

The First Law of Thermodynamics

2.6K Просмотры

See More

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены