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  1. Learn about Boyle's law, a gas law that states that the pressure and volume of a gas are inversely proportional at constant temperature and quantity. Find the formula, derivation, and solved exercises on Boyle's law with FAQs.

    • 5 min
  2. en.wikipedia.org › wiki › Boyle's_lawBoyle's law - Wikipedia

    Boyle's law is a gas law, stating that the pressure and volume of a gas have an inverse relationship. If volume increases, then pressure decreases and vice versa, when the temperature is held constant. Therefore, when the volume is halved, the pressure is doubled; and if the volume is doubled, the pressure is halved.

  3. Mar 31, 2021 · Learn about Boyle's law, which states that the pressure of a gas is inversely proportional to its volume at constant temperature and mass. See the formula, graph, history, examples, and a problem with solution.

  4. Boyle’s law, a relation concerning the compression and expansion of a gas at constant temperature. This empirical relation, formulated by the physicist Robert Boyle in 1662, states that the pressure of a given quantity of gas varies inversely with its volume at constant temperature.

    • The Editors of Encyclopaedia Britannica
  5. Jul 22, 2022 · A gas law is a simple mathematical formula that allows you to model, or predict, the behavior of a gas. This particular gas law is called Boyle's Law, after the English scientist Robert Boyle, who first announced it in 1662. Figure \(\PageIndex{1}\) shows two representations of how Boyle’s Law works. Figure \(\PageIndex{1}\): Boyle’s Law.

  6. Explore Robert Boyle's 17th-century experiments with gases that led to Boyle's Law. Discover how Boyle's Law, demonstrating the inverse relationship between gas pressure and volume, laid the groundwork for the ideal gas equation.

    • 11 min
    • Ryan Scott Patton
  7. Jun 25, 2023 · The results of Boyle’s experiments with gases are summarized in Boyle’s law—for a given amount of gas at constant temperature, the volume is proportional to the pressure. In mathematical terms: \[V\propto \frac{\text{1}}{P}\label{1} \] The reciprocal of P indicates the inverse nature of the proportionality.

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