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Methane-d2 (CH2D2)

Compound Descriptions:

Structure Drawing
Formula:CH2D2
Molecular Weight:18.055 g/mol
Name(s):Methane-d2
Dideuteriomethane
Methane-d2
Methan-d2
CAS-RN:676-55-1
Classification:no charge; isotope; 1fragment

European Regulations

3 matching entries in european regulations: Hazard, GHS, REACH

Derivatives / Analogues

Derivativebasic material: methane 
Derivativestructure similar: methylene 

Landolt-Börnstein Citations:

Spectroscopic Methods

 Nuclear quadrupole resonance data tables: Deuterium: (Amide-d)lysozyme - C5D5N.Cd2P2S6: Vol. III/31a 3.2:1-28III/31a

Thermodynamic Properties

 Virial Coefficients of Pure Gases and Mixtures: Vol. IV/21a 3.1:63, p.106IV/21A
 Virial Coefficients of Pure Gases and Mixtures: Vol. IV/21b 3:571 (mix)IV/21B

References

III/31a
Short: III/31a
Title: Nuclear Quadrupole Resonance Spectroscopy Data: Nuclei D ... Cu
Author: Chihara, H.; Nakamura, N.
Editor: Hellwege, K.-H.; Hellwege, A.M.
Source: Landolt-Börnstein, New Series
Volume: III/31a
Year: 1993
Keyword: NQR
ISBN: 3-540-55146-8
ISBN: 978-3-540-55146-1
Internet Resource: DOI:10.1007/b43999
RefComment: VIII, 437 pages. Hardcover
Abstract: Volume III/31 continues the compilation of nuclear quadrupole resonance spectroscopy data of solid substances which started in with volume III/20 in 1987 covering the literature from the beginning of nuclear quadrupole resonance spectroscopy in 1951 to 1982 and containing the data for 8000 substances in the solid state, distributed among three subvolumes III/20 a, b, and c. Volume III/31 covers the literature published in the period from the end of 1982 through the end of 1989. Included are the data for substances studied for the first time, as well as data for substances already present in the previous volume III/20 if the data published there could be completed or improved by new studies. In total there are 2500 substances in volume III/31, showing the scope and significance of nuclear quadrupole resonance spectroscopy up to recent times.
IV/21A
Short: IV/21A
Title: Virial Coefficients of Pure Gases, Part A
Author: Dymond, J.H.; Marsh, J.H.; Wilhoit, R.C.; Wong, K.C.
Editor: Frenkel, M.; Marsh, K.N.
Source: Landolt-Börnstein, New Series
Volume: IV/21A
Year: 2002
Keyword: Coefficients; Pure Gases; Virial Coefficients
ISBN: 3-540-43345-7
ISBN: 978-3-540-43345-3
Internet Resource: DOI:10.1007/b71692
RefComment: VIII, 327 pages, with CD-ROM, Hardcover
RefComment: Written for scientists and researchers in the fields of chemistry, physics and engineering
Abstract: This critical compilation of virial coefficients of pure gases was prepared from the virial coefficient database at the Thermodynamics Research Center, formerly at Texas A&M University, College Station, Texas and now located at the National Institute of Standards and Technology, Boulder, Colorado. The virial coefficient data in this compilation will be of interest to the theoretical chemist as it includes the many sets of accurate gas imperfection data which have been determined over the past twenty years by improved methods of gas density determination, by isochoric Burnett coupling methods and from speed of sound measurements, as well as by the more traditional techniques.
IV/21B
Short: IV/21B
Title: Virial Coefficients of Pure Gases and Mixtures. Part B
Author: Dymond, J.D.; Marsh, K.N.; Wilhoit, R.C.
Editor: Frenkel, M.; Marsh, K.N.
Source: Landolt-Börnstein, New Series
Volume: IV/21B
Year: 2003
Keyword: Coefficients; Pure Gases; Virial Coefficients
ISBN: 3-540-44340-1
ISBN: 978-3-540-44340-7
Internet Resource: DOI:10.1007/b89815
RefComment: 122 illustrations, VIII, 380 pages, with CD-ROM, Hardcover
RefComment: Written for scientists and researchers in the fields of chemistry, physics and engineering
Abstract: This critical compilation of virial coefficients of pure gases was prepared from the virial coefficient database at the Thermodynamics Research Center, formerly at Texas A&M University, College Station, Texas and now located at the National Institute of Standards and Technology, Boulder, Colorado. The virial coefficient data in this compilation will be of interest to the theoretical chemist as it includes the many sets of accurate gas imperfection data which have been determined over the past twenty years by improved methods of gas density determination, by isochoric Burnett coupling methods and from speed of sound measurements, as well as by the more traditional techniques.

  File created on 2009/18/08 by LCI Publisher GmbH (Gaja Peters, Inga Thede, Volkmar Vill, Ron Zenczykowski)
  © 2009   Landolt Börnstein,   Springer-Verlag Berlin Heidelberg


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