first law of thermodynamics wikipedia - EAS
- The first law of thermodynamics states that energy can neither be created nor destroyed; it can change only from one form to another. The law forms the basis of the principle of conservation of energy. This means that anything that uses energy is changing the energy from one kind of energy to another.simple.wikipedia.org/wiki/First_law_of_thermodynamics
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The first law of thermodynamics is a version of the law of conservation of energy, adapted for thermodynamic processes, distinguishing three kinds of transfer of energy, as heat, as thermodynamic work, and as energy associated with matter transfer, and relating them to a function of a
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See moreIn the first half of the eighteenth century, French philosopher and mathematician Émilie du Châtelet made notable contributions to the emerging theoretical framework of energy by proposing a form of the law of
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See moreThe revised statement of the first law postulates that a change in the internal energy of a system due to any arbitrary process, that takes the system from a given initial
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See moreThe law is of great importance and generality and is consequently thought of from several points of view. Most careful textbook statements of the law express it for closed systems. It is stated in several ways, sometimes even by the same author.
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See moreWhen the heat and work transfers in the equations above are infinitesimal in magnitude, they are often denoted by δ, rather than exact differentials denoted by d, as a reminder that heat and work do not describe the state of any system. The integral of an
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See moreCyclic processes
The first law of thermodynamics for a closed system was expressed in two ways by Clausius. One way referred to cyclic processes and the inputs and outputs of the system, but did not refer to increments in the internal state of the...
See moreThe first law of thermodynamics for closed systems was originally induced from empirically observed evidence, including calorimetric evidence. It is nowadays, however, taken
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See moreWikipedia text under CC-BY-SA license - https://en.wikipedia.org/wiki/Laws_of_thermodynamics
The zeroth law of thermodynamics provides for the foundation of temperature as an empirical parameter in thermodynamic systems and establishes the transitive relation between the temperatures of multiple bodies in thermal equilibrium. The law may be stated in the following form:
If two systems are both in thermal equilibrium with a third system, then they are in thermal equili…Wikipedia · Text under CC-BY-SA license - https://simple.wikipedia.org/wiki/First_law_of_thermodynamics
The first law of thermodynamics states that energy can neither be created nor destroyed; it can change only from one form to another. The law forms the basis of the principle of conservation …
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- https://en.wikipedia.org/wiki/First_law_of_thermodynamics_(fluid_mechanics)
- In physics, the first law of thermodynamics is an expression of the conservation of total energy of a system. The increase of the energy of a system is equal to the sum of work done on the system and the heat added to that system: d E t = d Q + d W {\displaystyle dE_{t}=dQ+dW} where E t {\displaystyle E_{t}} is the total energy of a system. W {\dis...
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- https://en.wikipedia.org/wiki/Thermodynamics
- Thermodynamics is a branch of physics that deals with heat, work, and temperature, and their relation to energy, entropy, and the physical properties of matter and radiation. The behavior of these quantities is governed by the four laws of thermodynamics which convey a quantitative description using measurable macroscopic physical quantities, but m...
- https://simple.wikipedia.org/wiki/Laws_of_thermodynamics
The first law of thermodynamics is a version of the law of conservation of energy, adapted for thermodynamic systems. The law of conservation of energy states that the total energy of an …
- https://en.wikipedia.org/wiki/History_of_thermodynamics
The history of thermodynamics is a fundamental strand in the history of physics, the history of chemistry, and the history of science in general. Owing to the relevance of thermodynamics in …
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