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3.1.2: Maxwell-Boltzmann Distributions » The Maxwell-Boltzmann equation, which forms the basis of the kinetic theory of gases, defines the distribution of speeds for a gas at a certain temperature. From this distribution function, the most … Chem.libretexts.org

Isothermal Expansion - Work and Heat » Homework Statement I have most of these figured out (it is 4 and 5 that are causing me problems) but I figured that I may as well post the answers that I have already gotten because they may be relevant. The answers that I got are in bold. 1. Which of the curves in the figure represents an… Physicsforums.com

Calculating Volume Change using the Ideal Gas Law | Chemistry | Study.com » Learn how to how to calculate the volume change using the Ideal Gas Law and see examples that walk through sample problems step-by-step for you to improve your chemistry knowledge and skills. Study.com

Closed transfer stuck with a gallon left in FV » Fermzilla All Rounder. A gallon remains in it and foam has filled the transfer hose. Up until that point, a combination of spunding valve and pulling keg PRV were used to keep the transfer moving. • I tried combinations of depressurizing FV and keg. Nothing got it moving. • Using the… Homebrewtalk.com

What Is the Ideal Gas Law? » Without it, it would be impossible to inflate a balloon or a tire. But understanding how it works requires a little bit of physics and chemistry. Wired.com

PRODUCTION AND ADSORPTION OF VOLATILE TELLURIUM HEXAFLUORIDE » Research and development supporting the management of off-gases from nuclear fuel reprocessing has historically been focused on the off-gas streams that arise from aqueous reprocessing technology. With the advent of advanced reactor designs off-gas streams arising from advanced reprocessing methodology, such as that of FV [fluoride volatility] processing, also merit consideration. This work focuses on TeF6 [tellurium hexafluoride], one of the most volatile radioactive compounds produced during FV, and investigates TeF6 production, measurement, and abatement technologies. To assist in on-line monitoring of TeF6 by Fourier-transformed infrared spectroscopy, this work systematically used the ideal gas law and Beer’s Law to report a new molar absorptivity coefficient for TeF6 at 752 cm-1 of 28.51 ± 1.35 cm2 Torr-1. TeF6 was produced by the fluorination of Te metal across a temperature range of 100-250°C (degrees Celsius) with a fluorine pressure of 20 Torr. Reaction progress was very fast above 250°C. Two pa Trace.tennessee.edu

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