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Thermodynamics laid the foreground for plenty of physical experiments that later turned into era-defining inventions like internal combustion engine.Important terminologies used: In context of thermodynamics and particle physics, heat can be described as transfer of energy between two systems by the virtue of temperature difference.This law is all about decay, degeneration and inefficiency.
A system will grow more disordered, as time increases.
The 2nd law is an empirical finding which has been accepted as an axiom of thermodynamic theory. The second law of thermodynamics is an overall principle which put restraints upon the attainable efficiencies of heat engines as well as the direction of heat transfer. Its consequences may be visualized with regard to the waterfall analogy.
Entropy is a gauge of psychosis or randomness within a closed system.
As useable energy is lost, chaos, randomness and disorganization increase. It does not come from equations and complex theory.
Thermodynamics is a branch of Physics that studies about two parameters heat & temperature, and their relationship with work and energy.
In simple words, it is an observational study based upon transfer of energy from one form to the other and from one place to the other.
While amount remains the same (First Law), the quality of matter/energy deteriorates slowly over the time.
Useable energy is necessarily used for repair and increase in productivity.
The procedure required as a whole results in a net increase in illness.
The First Law of Thermodynamics often called the Law of Conservation of Matter which states that matter/energy cannot be created nor it can be ruined. The Second Law of Thermodynamics is often called the Law of Increased Entropy.