Thermodynamic equilibrium
State of thermodynamic system(s) where no net macroscopic flow of matter or energy occurs
Thermodynamic equilibrium is a notion of thermodynamics with axiomatic status referring to an internal state of a single thermodynamic system, or a relation between several thermodynamic systems connected by more or less permeable or impermeable walls. In thermodynamic equilibrium, there are no net macroscopic flows of mass nor of energy within a system or between systems.
Nº Q51363 ★★
Uncommon · Knowledge
Thermodynamic equilibrium
State of thermodynamic system(s) where no net macroscopic flow of matter or energy occurs
Thermodynamic equilibrium is a notion of thermodynamics with axiomatic status referring to an internal state of a single thermodynamic system, or a relation between several thermodynamic systems connected by more or less permeable or impermeable walls. In thermodynamic equilibrium, there are no net macroscopic flows of mass nor of energy within a system or between systems.
Last price
—
Floor price
—
7-day median
—
30-day sales
0
30-day range
—
In circulation
0
Price history
median
low – high
sales
No sales in this period
Show table
| Date | median | Low | High | sales |
|---|
Sales history
- Last sale
- —
- 30-day average
- —
- 30-day low
- —
- 30-day high
- —
- Sales 7d
- 0
- Sales 30d
- 0
No sales yet.
Anonymous sales: no buyer or seller shown. Figures count player-to-player sales only.
From Wikipedia
Thermodynamic equilibrium is a notion of thermodynamics with axiomatic status referring to an internal state of a single thermodynamic system, or a relation between several thermodynamic systems connected by more or less permeable or impermeable walls. In thermodynamic equilibrium, there are no net macroscopic flows of mass nor of energy within a system or between systems. In a system that is in its own state of internal thermodynamic equilibrium, not only is there an absence of macroscopic change, but there is an "absence of any tendency toward change on a macroscopic scale." Systems in mutual thermodynamic equilibrium are simultaneously in mutual thermal, mechanical, chemical, and radiative equilibria. Systems can be in one kind of mutual equilibrium, while not in others. In thermodynamic equilibrium, all kinds of equilibrium hold at once and indefinitely, unless disturbed by a thermodynamic operation. In a macroscopic equilibrium, perfectly or almost perfectly balanced microscopic exchanges occur; this is the physical explanation of the notion of macroscopic equilibrium. A thermodynamic system in a state of internal thermodynamic equilibrium has a spatially uniform temperature. Its intensive properties, other than temperature, may be driven to spatial inhomogeneity by an unchanging long-range force field imposed on it by its surroundings. In systems that are at a state of non-equilibrium there are, by contrast, net flows of matter or energy. If such changes can be triggered to occur in a system in which they are not already occurring, the system is said to be in a "meta-stable equilibrium". Though not a widely named "law," it is an axiom of thermodynamics that there exist states of thermodynamic equilibrium. The second law of thermodynamics states that, in an isolated system, when partitions are removed between equilibrated subsystems in different states, the system spontaneously equilibrates (achieves thermodynamic equilibrium), accompanied by an increase in the...
Text: Wikipédia, CC BY-SA 4.0. · Image: W. Oelen (CC BY-SA 3.0) ·
Related cards
-
Equipartition theorem
Theorem
Nº Q255996 ★★
Not listed
-
Dynamic equilibrium
Statein which a reversible reaction ceases to change its ratio of reactants/products and substances move between the chemicals at an equal rate
Nº Q908074 ★★
Not listed
-
Chemical equilibrium
State in which both reactants and products are present in concentrations which have no further tendency to change with time.There are no net changes in the concentrations of the reactant(s) and product(s). Such a state is known as dynamic equilibrium
Nº Q189520 ★★★
Not listed
-
Temperature
Physical property of matter that quantitatively expresses the common notions of hot and cold
Nº Q11466 ★★★★
Not listed
-
Thermochemistry
Study of the heat energy associated with chemical reactions and/or physical transformations
Nº Q183410 ★★★
Not listed
-
T
Thermal mass
Use of thermal energy storage in building design
Nº Q3150682 ★★
Not listed