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The law was named after scientist Jacques Charles, who formulated the original law in his unpublished work from the 1780s.. In two of a series of four essays presented between 2 and 30 October 1801, [2] John Dalton demonstrated by experiment that all the gases and vapours that he studied expanded by the same amount between two fixed points of temperature.
Jacques Alexandre César Charles (12 November 1746 – 7 April 1823) was a French inventor, scientist, mathematician, and balloonist.Charles wrote almost nothing about mathematics, and most of what has been credited to him was due to mistaking him with another Jacques Charles (sometimes called Charles the Geometer [1]), also a member of the Paris Academy of Sciences, entering on 12 May 1785.
Charles' law, or the law of volumes, was founded in 1787 by Jacques Charles. It states that, for a given mass of an ideal gas at constant pressure, the volume is directly proportional to its absolute temperature, assuming in a closed system. The statement of Charles' law is as follows: the volume (V) of a given mass of a gas, at constant ...
Charles's law: Thermodynamics: Jacques Charles: Chandrasekhar limit: Astrophysics: Subrahmanyan Chandrasekhar: Church–Turing thesis: Computer science: Alonzo Church and Alan Turing: Coulomb's law: Physics: Charles Augustin de Coulomb: Law of Charles and Gay-Lussac (frequently called Charles's law) Thermodynamics: Jacques Charles and Joseph ...
Charles Law may refer to: Charles's law, also known as the law of volumes, experimental gas law which describes how gases tend to expand when heated; Charles Law (British politician) (1792–1850), British judge and Conservative Party MP; Charles B. Law (1872–1929), United States Representative from New York
Shear resistance law: Coulomb formulated the shear resistance of soils as = + , where represents cohesion, is normal stress, and is the angle of internal friction. Active and passive earth pressure : He introduced the concepts of active and passive earth pressure limits, which describe the conditions under which soil exerts pressure on a ...
Isotherms of an ideal gas for different temperatures. The curved lines are rectangular hyperbolae of the form y = a/x. They represent the relationship between pressure (on the vertical axis) and volume (on the horizontal axis) for an ideal gas at different temperatures: lines that are farther away from the origin (that is, lines that are nearer to the top right-hand corner of the diagram ...
Regarding the volume-temperature relationship, Gay-Lussac attributed his findings to Jacques Charles because he used much of Charles's unpublished data from 1787 – hence, the law became known as Charles's law or the Law of Charles and Gay-Lussac. [11] Amontons's, Charles', and Boyle's law form the combined gas law.