The fundamental laws of the universe which correspond to the two fundamental theorems of the mechanical theory of heat. 1. The energy of the universe is constant. 2. The entropy of the universe tends to a maximum.
Heat can never pass from a colder to a warmer body without some other change, connected therewith, occurring at the same time. - Rudolf Clausius
Heat can never pass from a colder to a warmer body without some other change, connected therewith, occurring at the same time.
- Rudolf Clausius
The total energy of the universe is constant; the total entropy is continually increasing. - Rudolf Clausius
The total energy of the universe is constant; the total entropy is continually increasing.
The energy of the universe is constant. - Rudolf Clausius
The energy of the universe is constant.
In all cases where work is produced by heat, a quantity of heat proportional to the work done is expended; and inversely, by the expenditure of a lik… - Rudolf Clausius
In all cases where work is produced by heat, a quantity of heat proportional to the work done is expended; and inversely, by the expenditure of a lik…
The algebraic sum of all the transformations occurring in a cyclical process can only be positive, or, as an extreme case, equal to nothing. Statemen… - Rudolf Clausius
The algebraic sum of all the transformations occurring in a cyclical process can only be positive, or, as an extreme case, equal to nothing. Statemen…
The entropy of the universe tends to a maximum. - Rudolf Clausius
The entropy of the universe tends to a maximum.
The fundamental laws of the universe which correspond to the two fundamental theorems of the mechanical theory of heat. 1. The energy of the univers… - Rudolf Clausius
The fundamental laws of the universe which correspond to the two fundamental theorems of the mechanical theory of heat. 1. The energy of the univers…
The entropy of an isolated system not in equilibrium will tend to increase over time, approaching a maximum value at equilibrium. - Rudolf Clausius
The entropy of an isolated system not in equilibrium will tend to increase over time, approaching a maximum value at equilibrium.
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