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  1. www.omnicalculator.com › physics › boyles-lawBoyle's Law Calculator

    Write Boyle's law for the final pressure: P f = (V i · P i)/V f. In this formula, identify the ratio of the volumes. Since we know that the volume reduces by half, we can write V i = 2 · V f, hence V i /V f = 2. The final pressure is, then: P f = 2 · P i = 2 atm.

  2. www.omnicalculator.com › physics › ideal-gas-lawIdeal Gas Law Calculator

    29 Ιουλ 2024 · This ideal gas law calculator will help you establish the properties of an ideal gas subject to pressure, temperature, or volume changes. Read on to learn about the characteristics of an ideal gas, how to use the ideal gas law equation, and the definition of the ideal gas constant.

  3. 10 Οκτ 2023 · Calculate any variable in the equation for the Ideal Gas Law PV = nRT, where pressure times volume equals moles times the ideal gas constant times temperature.

  4. www.omnicalculator.com › physics › ideal-gas-pressureIdeal Gas Pressure Calculator

    7 Μαΐ 2024 · Our ideal gas pressure calculator is versatile and easy to use: You can enter the volume V, the number of moles n, and temperature T, and this tool will automatically calculate pressure using the ideal gas law.

  5. The Boyle's Law for Final Pressure calculator computes the final pressure (P 2) of a fixed amount of gas at a fixed temperature after it undergoes a change in state from an initial volume (V 1) and pressure (P 1) to a final volume (V 2).

  6. 10 Νοε 2014 · This equation computes the final (resultant) pressure of an ideal gas after a temperature change occurs; in other words, if you know the initial state of an ideal gas, you can determine the final state using the pressure-temperature law known as Gay-Lussac's Law. INPUTS. To compute the final pressure, you input the following variable values:

  7. A common use of Equation \(\ref{10.4.12}\) is to determine the molar mass of an unknown gas by measuring its density at a known temperature and pressure. This method is particularly useful in identifying a gas that has been produced in a reaction, and it is not difficult to carry out.

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