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Showing results 81 - 90 of 2081640 documents for online pujcka bez doloen prjmu Frytk Navtivte web na WWWLOAN24HXYZ nebankovn pujky pro nezamstnanb bez 1 k pujcka na smenku 400 000 ihned 2014 pjka ped vplatou kadmu ihned pujcka online ihned Lzn Blohrad pjky pro lidi v registrech studentsk pjky s online nov pujcky pred vplatou Hemanv Mstec mal pjka do vplaty era pjka podmnky komercni banka pujcka pro studenty hyper pjka zamstnaneck pjky pujcka 1000 ihned
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  1. Methyl jasmonate

    https://webbook.nist.gov/cgi/cbook.cgi?ID=C1211296&Mask=2000&Units=CAL
    Methyl jasmonate Formula: C13H20O3 Molecular weight: 224.2961 IUPAC Standard InChI: InChI=1S/C13H20O3/c1-3-4-5-6-11-10(7-8-12(11)14)9-13(15)16-2/h4-5,10-11H,3,6-9H2,1-2H3/b5-4+/t10-,11-/m0/s1 Download the identifier in a file. IUPAC Standard InChIKey: GEWDNTWNSAZUDX-NNOMMRTBSA-N CAS Registry Number: 1211-29-6 Chemical structure: This structure is also available as a 2d Mol file or as a computed 3d SD file The 3d structure may be viewed using Java or Javascript. Stereoisomers: methyl epijasmonate Cyclopentaneacetic acid, 3-oxo-2-(2-pentenyl)-, methyl ester, [1α,2α(Z)]- (+)-Jasmonic acid, methyl ester (cis) (-)-Jasmonic acid, methyl ester (trans) (+)-(Z)-Methyl epijasmonate Methyl (Z)-epi-jasmonate cis-Methyl jasmonate (E)-methyl jasmonate Methyl epi-jasmonate (Z)-Methyl epi-jasmonate Other names: Cyclopentaneacetic acid, 3-oxo-2-(2-pentenyl)-, methyl ester, [1R-[1α,2β(Z)]]-; Cyclopentaneacetic acid, 3-oxo-2-(2Z)-2-penten-1-yl...
  2. Methyl jasmonate

    https://webbook.nist.gov/cgi/cbook.cgi?ID=C1211296&Mask=2000&Units=SI
    Methyl jasmonate Formula: C13H20O3 Molecular weight: 224.2961 IUPAC Standard InChI: InChI=1S/C13H20O3/c1-3-4-5-6-11-10(7-8-12(11)14)9-13(15)16-2/h4-5,10-11H,3,6-9H2,1-2H3/b5-4+/t10-,11-/m0/s1 Download the identifier in a file. IUPAC Standard InChIKey: GEWDNTWNSAZUDX-NNOMMRTBSA-N CAS Registry Number: 1211-29-6 Chemical structure: This structure is also available as a 2d Mol file or as a computed 3d SD file The 3d structure may be viewed using Java or Javascript. Stereoisomers: methyl epijasmonate Cyclopentaneacetic acid, 3-oxo-2-(2-pentenyl)-, methyl ester, [1α,2α(Z)]- (+)-Jasmonic acid, methyl ester (cis) (-)-Jasmonic acid, methyl ester (trans) (+)-(Z)-Methyl epijasmonate Methyl (Z)-epi-jasmonate cis-Methyl jasmonate (E)-methyl jasmonate Methyl epi-jasmonate (Z)-Methyl epi-jasmonate Other names: Cyclopentaneacetic acid, 3-oxo-2-(2-pentenyl)-, methyl ester, [1R-[1α,2β(Z)]]-; Cyclopentaneacetic acid, 3-oxo-2-(2Z)-2-penten-1-yl...
  3. Journals

    https://www.nist.gov/publication-type/journals?page=893
  4. Annotated bibliography Application of surge-protective devices and coordination of cascades

    https://www.nist.gov/system/files/documents/pml/div684/Bibliography_1992.pdf
    ANNOTATED BIBLIOGRAPHY APPLICATION OF SURGE-PROTECTIVE DEVICES AND COORDINATION OF CASCADES Compiled by Fr-ois D. Martzloff September 1992 FOREWORD In view of the emerging concerns on the likelihood of achieving a successful coordination of cascaded surge-protective devices, this bibliography has been compiled to provide as complete information as possible to the joint efforts underway within the US National Committee for the IEC, as well as within the transnational community, at the level of the Working Groups of cognizant Technical Committees. This document is organized in two parts: 1. List of identified documents with retrieval information. Depending on the outcome of requests made to the various pubiishers, hii copies of the documents might be made available to members of interested Working Groups. 2. For each document, a single-page digest showing the author's abstract, the author's c...
  5. Search Results

    https://webbook.nist.gov/cgi/cbook.cgi?Author=Meyer&Mask=1000&Units=SI
    Search Results Search criteria: Author: Meyer 314 matching references were found. Zeile; Meyer, Chem. Ber., 1949, 82, 267. [all data] Gunther; Meyer; Muller-Skjold, Z. Phys. Chem., Abt. A, 1935, 175, 154. [all data] Gunther; Meyer, Ber. Bunsen-Ges. Phys. Chem., 1935, 41, 541. [all data] Meyer; Schramm, Z. Anorg. Allg. Chem., 1932, 206, 24. [all data] Bergmann, E.D.; Engel, L.; Meyer, Ber. Dtsch. Chem. Ges. B, 1932, 65, 446. [all data] Barker; Meyer, Trans. Faraday Soc., 1929, 25, 912. [all data] Meyer; Aulich, Chem. Ber., 1928, 61, 1839. [all data] Bennett; Meyer, Phys. Rev., 1928, 32, 888. [all data] Meyer; Gulbins, Chem. Ber., 1926, 59, 456. [all data] Meyer; Stateczny, Z. Anorg. Allg. Chem., 1922, 122, 1. [all data] Ruzicka, L.; Meyer, Helv. Chim. Acta, 1922, 5, 581. [all data] Meyer; Hopff, H., Chem. Ber., 1921, 54, 1709. [all data] Meyer; Taeger, Chem. Ber., 1920, 53, 1261. [all data] Fischer; Schrader; Meyer, Gesammelte Ab...
  6. https://www.nist.gov/system/files/documents/el/fire_research/r0000281.pdf

    https://www.nist.gov/system/files/documents/el/fire_research/R0000281.pdf
    DIODE LASER-BASED MEASUREMENTS OF FUELS, OXIDIZERS, AND COMBUSTION PRODUCTS DURING FIRE SUPPRESSANT TESTING Kevin L. McNesby, R. Reed Skaggs, and Andrzej W. Miziolek Army Research Laboratory, Aberdeen Proving Ground, MD and Michael Clay, Steven H. Hoke, and Craig S. Miser Aberdeen Test Center, Aberdeen Proving Ground, MD ABSTRACT Near infrared tunable diode laser (NE-TDL) spectroscopy is used to quantify HF gas produced during fire suppressant testing of halon alternatives. Results of comparisons with other techniques for measuring HF gas concentrations are discussed. Measurements of HF gas produced in laboratory and real-scale fire suppression testing are presented. The necessity for time-resolved measurements during testing of suppression systems designed to scavenge HF gas is demonstrated. INTRODUCTION Fire and explosion suppression is of critical importance on board land combat vehicles. Currently, Ha...
  7. https://www.nist.gov/system/files/documents/el/fire_research/mcnesby-diode-laser-based-measurements-of-hydrogen-fluoride-gas-during-chemical-suppression-of-fires.pdf

    https://www.nist.gov/system/files/documents/el/fire_research/McNesby-Diode-Laser-Based-Measurements-of-Hydrogen-Fluoride-Gas-During-Chemical-Suppression-of-Fires.pdf
    DIODE LASER-BASED MEASUREMENTS OF FUELS, OXIDIZERS, AND COMBUSTION PRODUCTS DURING FIRE SUPPRESSANT TESTING Kevin L. McNesby, R. Reed Skaggs, and Andrzej W. Miziolek Army Research Laboratory, Aberdeen Proving Ground, MD and Michael Clay, Steven H. Hoke, and Craig S. Miser Aberdeen Test Center, Aberdeen Proving Ground, MD ABSTRACT Near infrared tunable diode laser (NE-TDL) spectroscopy is used to quantify HF gas produced during fire suppressant testing of halon alternatives. Results of comparisons with other techniques for measuring HF gas concentrations are discussed. Measurements of HF gas produced in laboratory and real-scale fire suppression testing are presented. The necessity for time-resolved measurements during testing of suppression systems designed to scavenge HF gas is demonstrated. INTRODUCTION Fire and explosion suppression is of critical importance on board land combat vehicles. Currently, Ha...
Showing results 81 - 90 of 2081640 documents for online pujcka bez doloen prjmu Frytk Navtivte web na WWWLOAN24HXYZ nebankovn pujky pro nezamstnanb bez 1 k pujcka na smenku 400 000 ihned 2014 pjka ped vplatou kadmu ihned pujcka online ihned Lzn Blohrad pjky pro lidi v registrech studentsk pjky s online nov pujcky pred vplatou Hemanv Mstec mal pjka do vplaty era pjka podmnky komercni banka pujcka pro studenty hyper pjka zamstnaneck pjky pujcka 1000 ihned