
Adiabatic process - Wikipedia
An adiabatic process (adiabatic from Ancient Greek ἀδιάβατος (adiábatos) 'impassable') is a type of thermodynamic process whereby a transfer of energy between the thermodynamic system and its …
Adiabatic process | Isothermal, Entropy & Temperature | Britannica
Feb 6, 2026 · Adiabatic process, in thermodynamics, change occurring within a system as a result of transfer of energy to or from the system in the form of work only; i.e., no heat is transferred.
1.5: An Adiabatic Process is a Process in which No Energy as Heat is ...
Jan 23, 2026 · This page explains the isothermal and adiabatic expansion of an ideal gas. Isothermal expansion maintains constant internal energy and relates reversible work to heat transfer.
What Is Adiabatic Process In Thermodynamics - Physics Mastered
May 26, 2025 · In adiabatic processes, no heat is transferred, and the system takes care of itself. This lack of energy exchange explains why adiabatic curves on pressure-volume graphs appear steeper …
Adiabatic Process - GeeksforGeeks
Jul 23, 2025 · Adiabatic Process is a thermodynamic process in which there is no heat exchange between the system and the environment. It means the energy of the system remains unchanged …
Adiabatic Process: Definition, Examples, and Equations
An adiabatic process is a thermodynamic process in which there is no heat exchange between a system and its surroundings. The system is thermally isolated. The process is carried out so rapidly that heat …
What Is an Adiabatic Process in Thermodynamics?
The adiabatic process is defined as a thermodynamic change occurring within a system without any transfer of heat energy across its boundaries. This means the system is completely thermally …
Adiabatic Processes - HyperPhysics
Adiabatic Processes
ADIABATIC Definition & Meaning - Merriam-Webster
The meaning of ADIABATIC is occurring without loss or gain of heat. How to use adiabatic in a sentence.
Adiabatic - Energy Education
Adiabatic refers to a process in which no heat is transferred into or out of a system, and the change in internal energy is only done by work. Most processes in thermodynamics are diabatic which means …