Kohlenstoff (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Kohlenstoff" in German language version.

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cern.ch

lbruno.home.cern.ch

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derstandard.de

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doi.org

  • Angegeben ist der von der IUPAC empfohlene Standardwert, da die Isotopenzusammensetzung dieses Elements örtlich schwanken kann, ergibt sich für das mittlere Atomgewicht der in Klammern angegebene Massenbereich. Siehe: Michael E. Wieser, Tyler B. Coplen: Atomic weights of the elements 2009 (IUPAC Technical Report). In: Pure and Applied Chemistry, 2010, S. 1 (doi:10.1351/PAC-REP-10-09-14).
  • Eintrag zu carbon in Kramida, A., Ralchenko, Yu., Reader, J. und NIST ASD Team (2019): NIST Atomic Spectra Database (ver. 5.7.1). Hrsg.: NIST, Gaithersburg, MD. doi:10.18434/T4W30F (physics.nist.gov/asd). Abgerufen am 11. Juni 2020.
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  • Übersetzung aus E. Fitzer, K.-H. Kochling, H. P. Boehm, H. Marsh: Recommended Terminology for the Description of Carbon as a Solid (IUPAC Recommendations 1995). In: Pure and Applied Chemistry, 1995, 67, S. 473–506 (doi:10.1351/pac199567030473): "Non-graphitic carbons consists of layers of hexagonally arranged sp2-carbon atoms that are stacked nearly parallel without any three-dimensional long-range order.”
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  • Jasmin Borsovszky, Klaas Nauta, Jun Jiang, Christopher S. Hansen, Laura K. McKemmish, Robert W. Field, John F. Stanton, Scott H. Kable, Timothy W. Schmidt: Photodissociation of dicarbon: How nature breaks an unusual multiple bond. In: Proceedings of the National Academy of Sciences. Band 118, Nr. 52, 2021, doi:10.1073/pnas.2113315118, PMID 34930845.
  • James F. Babb, R. T. Smyth, B. M. McLaughlin: Dicarbon Formation in Collisions of Two Carbon Atoms. In: The Astrophysical Journal. Band 876, Nr. 1, 2019, S. 38, doi:10.3847/1538-4357/ab1088.
  • Samir F. Matar, Jean Etourneau, Vladimir L. Solozhenko: First-principles investigations of tricarbon: From the isolated C3 molecule to a novel ultra-hard anisotropic solid. In: Carbon Trends. Band 6, 2022, S. 100132, doi:10.1016/j.cartre.2021.100132.
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  • G. Audi, F. G. Kondev, Meng Wang, W.J. Huang, S. Naimi: The NUBASE2016 evaluation of nuclear properties. In: Chinese Physics C. 41, 2017, S. 030001, doi:10.1088/1674-1137/41/3/030001 (Volltext).
  • A Hope Jahren, Christopher Saudek, Edwina H Yeung, WH Linda Kao, Rebecca A Kraft, Benjamin Caballero: An isotopic method for quantifying sweeteners derived from corn and sugar cane1–32. In: The American Journal of Clinical Nutrition. Band 84, Nr. 6, 2006, S. 1380–1384, doi:10.1093/ajcn/84.6.1380.
  • Fusa Miyake, Kentaro Nagaya, Kimiaki Masuda, Toshio Nakamura: A signature of cosmic-ray increase in ad 774–775 from tree rings in Japan. In: Nature. Band 486, Nr. 7402, 2012, S. 240–242, doi:10.1038/nature11123.
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harvard.edu

ui.adsabs.harvard.edu

  • A. E. Douglas: Laboratory Studies of the λ 4050 Group of Cometary Spectra. In: The Astrophysical Journal. Band 114, 1951, S. 466, doi:10.1086/145486 (harvard.edu).

iaea.org

www-nds.iaea.org

nih.gov

ncbi.nlm.nih.gov

  • Jasmin Borsovszky, Klaas Nauta, Jun Jiang, Christopher S. Hansen, Laura K. McKemmish, Robert W. Field, John F. Stanton, Scott H. Kable, Timothy W. Schmidt: Photodissociation of dicarbon: How nature breaks an unusual multiple bond. In: Proceedings of the National Academy of Sciences. Band 118, Nr. 52, 2021, doi:10.1073/pnas.2113315118, PMID 34930845.

nist.gov

physics.nist.gov

orf.at

science.orf.at

psi.ch

stanford.edu

slac.stanford.edu

web.archive.org

webelements.com