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Corsair XENEON 32QHD165 Gaming Monitor - 32-Inch, IPS QHD (2560 x 1440), AMD FreeSync Premium Adaptive Sync, 165Hz Refresh Rate, 1ms, DisplayHDR400, HDMI, USB 3.1 Type-C, DisplayPort - Black

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Natural xenon is a mixture of nine stable isotopes in the following percentages: xenon-124 (0.096), xenon-126 (0.090), xenon-128 (1.92), xenon-129 (26.44), xenon-130 (4.08), xenon-131 (21.18), xenon-132 (26.89), xenon-134 (10.44), and xenon-136 (8.87). The mass numbers of the known isotopes of xenon range from 118 to 144. The xenon found in some stony meteorites shows a large proportion of xenon-129, believed to be a product of radioactive decay of iodine-129, whose half-life is 17,000,000 years. Measuring the xenon-129 content of meteorites casts light on the history of the solar system. More than a dozen radioactive xenon isotopes produced by fission of uranium and other nuclear reactions are known. For example, xenon-135 (9.2-hour half-life) is produced by uranium fission in nuclear reactors, where it is troublesome because it absorbs fission-producing neutrons. Xenon-129 is of particular importance because this isotope can be observed by nuclear magnetic resonance spectroscopy, which makes it useful for the structural characterization of xenon compounds. The xenon isotopes produced in the greatest amount by nuclear fission are xenon-131, -132, -134, and -136, which are stable, and xenon-133, which is radioactive, with a half-life of 5.27 days. Compounds Xenon gas can be safely kept in normal sealed glass or metal containers at standard temperature and pressure. However, it readily dissolves in most plastics and rubber, and will gradually escape from a container sealed with such materials. [190] Xenon is non- toxic, although it does dissolve in blood and belongs to a select group of substances that penetrate the blood–brain barrier, causing mild to full surgical anesthesia when inhaled in high concentrations with oxygen. [191] All of which means the Corsair Xeneon 32QHD165 is a very nicely executed gaming panel with no major flaws, super image quality, plenty of speed and a great feature set. Pfeffer, Jeremy I.; Nir, Shlomo (2000). Modern Physics: An Introductory Text. Imperial College Press. pp.421 ff. ISBN 1-86094-250-4.

Liquid xenon is used in calorimeters [182] to measure gamma rays, and as a detector of hypothetical weakly interacting massive particles, or WIMPs. When a WIMP collides with a xenon nucleus, theory predicts it will impart enough energy to cause ionization and scintillation. Liquid xenon is useful for these experiments because its density makes dark matter interaction more likely and it permits a quiet detector through self-shielding. Like nitrous oxide and cyclopropane, xenon activates the two-pore domain potassium channel TREK-1. A related channel TASK-3 also implicated in the actions of inhalation anesthetics is insensitive to xenon. [150] Xenon inhibits nicotinic acetylcholine α4β2 receptors which contribute to spinally mediated analgesia. [151] [152] Xenon is an effective inhibitor of plasma membrane Ca 2+ ATPase. Xenon inhibits Ca 2+ ATPase by binding to a hydrophobic pore within the enzyme and preventing the enzyme from assuming active conformations. [153] Arnett, David (1996). Supernovae and Nucleosynthesis. Princeton, NJ: Princeton University Press. ISBN 0-691-01147-8. The element xenon is used in lamps that produce extremely short and intense flashes of light, such as stroboscopes and lights for high-speed photography. When a charge of electricity is passed through the gas at low pressure, it emits a flash of bluish-white light; at higher pressures, white light resembling daylight is emitted. Xenon flashlamps are used to activate ruby lasers.

Testing the Corsair Xeneon 27QHD240 OLED: Seeing Is Believing

a b Henderson, W. (2000). Main group chemistry. Great Britain: Royal Society of Chemistry. pp.152–53. ISBN 0-85404-617-8. Clayton, Donald D. (1983). Principles of Stellar Evolution and Nucleosynthesis. University of Chicago Press. p. 604. ISBN 0-226-10953-4. Boulos, M. S.; Manuel, O.K. (1971). "The xenon record of extinct radioactivities in the Earth". Science. 174 (4016): 1334–6. Bibcode: 1971Sci...174.1334B. doi: 10.1126/science.174.4016.1334. PMID 17801897. S2CID 28159702. Ergolines (e.g., 1P-LSD, ALD-52, bromocriptine, cabergoline, ergine (LSA), ergometrine (ergonovine), ergotamine, lisuride, LA-SS-Az, LSB, LSD, LSD-Pip, LSH, LSP, methylergometrine (methylergonovine), pergolide) Ramsay, Sir William (July 12, 1898). "Nobel Lecture – The Rare Gases of the Atmosphere". Nobel prize. Nobel Media AB . Retrieved 15 November 2015.

Nagata, A.; Nakao Si, S.; Nishizawa, N.; Masuzawa, M.; Inada, T.; Murao, K.; Miyamoto, E.; Shingu, K. (2001). "Xenon inhibits but N 2O enhances ketamine-induced c-Fos expression in the rat posterior cingulate and retrosplenial cortices". Anesthesia & Analgesia. 92 (2): 362–368. doi: 10.1213/00000539-200102000-00016. PMID 11159233. S2CID 15167421. Talbot, John. "Spectra of Gas Discharges". Rheinisch-Westfälische Technische Hochschule Aachen. Archived from the original on July 18, 2007 . Retrieved 2006-08-10. Rubin, Seth M.; Spence, Megan M.; Goodson, Boyd M.; Wemmer, David E.; Pines, Alexander (August 15, 2000). "Evidence of nonspecific surface interactions between laser-polarized xenon and myoglobin in solution". Proceedings of the National Academy of Sciences USA. 97 (17): 9472–5. Bibcode: 2000PNAS...97.9472R. doi: 10.1073/pnas.170278897. PMC 16888. PMID 10931956.Baltás, E.; Csoma, Z.; Bodai, L.; Ignácz, F.; Dobozy, A.; Kemény, L. (2003). "A xenon-iodine electric discharge bactericidal lamp". Technical Physics Letters. 29 (10): 871–72. Bibcode: 2003TePhL..29..871S. doi: 10.1134/1.1623874. S2CID 122651818. Naturally occurring xenon is composed of seven stable isotopes: 126Xe, 128–132Xe, and 134Xe. The isotopes 126Xe and 134Xe are predicted by theory to undergo double beta decay, but this has never been observed so they are considered stable. [76] In addition, more than 40 unstable isotopes have been studied. The longest-lived of these isotopes are the primordial 124Xe, which undergoes double electron capture with a half-life of 1.8 ×10 22yr, [77] and 136Xe, which undergoes double beta decay with a half-life of 2.11 × 10 21 yr. [78] 129Xe is produced by beta decay of 129 I, which has a half-life of 16million years. 131mXe, 133Xe, 133mXe, and 135Xe are some of the fission products of 235 U and 239 Pu, [70] and are used to detect and monitor nuclear explosions. Although xenon is rare and relatively expensive to extract from the Earth's atmosphere, it has a number of applications. Garwin, Richard L.; von Hippel Frank N. (November 2006). "A Technical Analysis: Deconstructing North Korea's October 9 Nuclear Test". Arms Control Today. Arms Control Association. 38 (9) . Retrieved 2009-03-26. von Schulthess, Gustav Konrad; Smith, Hans-Jørgen; Pettersson, Holger; Allison, David John (1998). The Encyclopaedia of Medical Imaging. Taylor & Francis. p.194. ISBN 1-901865-13-4.

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