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The total energy of an isolated system remains the same.
An isolated system has a fixed total energy and mass.
But what if a human being turns himself, inadvertently or by choice, into an isolated system?
The second law is actually a statement about the probable behavior of an isolated system.
There is thus no energy transfer between an isolated system and its surroundings.
However, space is an isolated system, and such heat sinks are not practical.
An isolated system exchanges neither matter nor energy with its environment.
It states that the total amount of energy in an isolated system remains constant over time.
The first implies an isolated system, and the second doesn't.
An isolated system, it has no direct connection to any other railroad.
This means that an isolated system will eventually come to have a uniform temperature.
That is, we are dealing with an isolated system.
That's an isolated system, doesn't tie in here at all by design.
An isolated system is in thermodynamic equilibrium when its state does not change with time.
Stated differently, an isolated system will always tend to disorder.
However, since life is not an isolated system, there is no paradox.
Isolated System was played at the end of the show, before Uprising.
We have to use an isolated system, one with no connection to the planetary data network."
After all, our universe isn't a closed, isolated system anymore.
However, real systems may behave nearly as an isolated system for finite (possibly very long) times.
Therefore the Gibbs free energy of an isolated system is:
For isolated systems, an adiabatic change allows no heat to flow in or out.
The Second law demands that the entropy of an isolated system cannot decrease.
For an isolated system, N is conserved in time.
According to the second law, the entropy of any isolated system, such as the entire universe, never decreases.