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  1. Há 3 dias · James Prescott Joule was a brilliant scientist who discovered the conservation of energy and the Joules law, which are fundamental principles in understanding electricity and heat transfer. His work on thermodynamics, electromagnetism, and hydraulics continues to inspire scientists today, shaping our understanding of energy and ...

  2. 19 de mai. de 2024 · This phenomenon is named after James Prescott Joule and William Thomson, who first discovered it in 1852. It’s a key principle in refrigeration and various industrial processes involving gas expansion and cooling. How the Joule-Thomson Effect Works.

  3. 20 de mai. de 2024 · James Prescott Joule and William Thomson (Lord Kelvin) discovered the Joule-Thomson effect in the 1850s. How does the Joule-Thomson effect occur? The effect occurs during gas expansion or compression through a porous plug or valve without heat exchange.

  4. Há 4 dias · James Prescott Joule contribuiu significativamente para o entendimento do calor e do trabalho, incluindo a vaporização. Suas descobertas sobre a equivalência entre calor e trabalho ajudaram a formular a primeira lei da termodinâmica.

  5. 23 de mai. de 2024 · The Joule-Thomson Effect is named after James Prescott Joule and William Thomson. The effect is named after the two scientists who independently discovered and studied it in the mid-19th century. It is a phenomenon that describes the temperature change of a gas during an adiabatic throttling process.

  6. en.wikipedia.org › wiki › Lord_KelvinLord Kelvin - Wikipedia

    Há 3 dias · At that meeting, he heard James Prescott Joule making yet another of his, so far, ineffective attempts to discredit the caloric theory of heat and the theory of the heat engine built upon it by Sadi Carnot and Émile Clapeyron. Joule argued for the mutual convertibility of heat and mechanical work and for their mechanical equivalence.

  7. Há 4 dias · El efecto Joule-Thomson se nombra en honor a los físicos James Prescott Joule y William Thomson (Lord Kelvin), quienes describieron este fenómeno en el siglo XIX. Básicamente, este efecto se refiere a cómo cambia la temperatura de un gas cuando cambia su presión a través de una válvula o un poro estrecho, sin realizar trabajo ni ...