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  1. 15 kwi 2015 · Operating pressure of gas from cylinder = 4.5 bar or 0.45 MPa and flow rate = 60 cL/min. I have been applying the ideal gas law to PV=nRT to figure out how many total litres of N are in the can at 4.5 bar pressure to then get a rough estimate of how many hours of flowing gas I get.

  2. Convert all known quantities to the appropriate units for the gas constant being used. Substitute the known values into your equation and solve for the molar mass. Propose a reasonable empirical formula using the atomic masses of nitrogen and oxygen and the calculated molar mass of the gas.

  3. Easily calculate the pressure, volume, temperature or quantity in moles of a gas using this combined gas law calculator (Boyle's law calculator, Charles's law calculator, Avogadro's law calculator and Gay Lussac's law calculator in one).

  4. 10 paź 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.

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

    29 lip 2024 · The formula of the ideal gas law is: PV = nRT. where: P — Pressure, in pascal; V — Volume in cubic meters; n — Number of moles; T — Temperature in kelvin; and; R — Ideal gas constant. Remember to use consistent units! The value commonly used for R, 8.314... J/mol·K refers to the pressure measured exclusively in pascals.

  6. www.omnicalculator.com › physics › ideal-gas-volumeIdeal Gas Volume Calculator

    17 cze 2024 · Ideal Gas Volume Calculator. Created by Steven Wooding. Reviewed by Adena Benn. 18 people find this calculator helpful. Table of contents. What is an ideal gas? How to calculate volume using the ideal gas law How to calculate the molar volume of an ideal gas at STP Other ideal gas calculators FAQs.

  7. The hydrogen in a particular hydrogen gas thermometer has a volume of 150.0 cm 3 when immersed in a mixture of ice and water (0.00 °C). When immersed in boiling liquid ammonia, the volume of the hydrogen, at the same pressure, is 131.7 cm 3 .