Wolfram (German Wikipedia)

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

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  • Henri Moissan: Preparation au four électrique de quelques mètaux réfractaires: tungstène, molybdène, vanadium. In: Comptes Rendus. Band 116, 1893, S. 1225–1227 (Digitalisat auf Gallica).

cdc.gov (Global: 251st place; German: 1,026th place)

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doi.org (Global: 2nd place; German: 3rd place)

  • Eintrag zu tungsten in Kramida, A., Ralchenko, Yu., Reader, J. und NIST ASD Team (2019): NIST Atomic Spectra Database (ver. 5.7.1). Hrsg.: National Institute of Standards and Technology, Gaithersburg, MD. doi:10.18434/T4W30F (physics.nist.gov/asd). Abgerufen am 13. Juni 2020.
  • Yiming Zhang, Julian R. G. Evans, Shoufeng Yang: Corrected Values for Boiling Points and Enthalpies of Vaporization of Elements in Handbooks. In: Journal of Chemical & Engineering Data. 56, 2011, S. 328–337, doi:10.1021/je1011086.
  • E. Lassner, W.-D. Schubert, E. Lüderitz, H. U. Wolf: Tungsten, Tungsten Alloys, and Tungsten Compounds. In: Ullmann's Encyclopedia of Industrial Chemistry. Wiley-VCH Verlag, Weinheim 2005, doi:10.1002/14356007.a27_229.
  • Pilar Goya, Pascual Román: Wolfram vs. Tungsten. In: Chemistry International. Band 27, Nr. 4, 2005, S. 26–27, doi:10.1515/ci.2005.27.4.26.
  • Paweł Miśkowiec: Name game: the naming history of the chemical elements—part 1—from antiquity till the end of 18th century. In: Foundations of Chemistry. 2022, Band 25, Nummer 1, S. 29–51, doi:10.1007/s10698-022-09448-5.
  • Tungsten Favored Over Wolfram By English-Speaking Scientists. In: Chem. Eng. News. Band 28, Nr. 46, 1950, S. 4002, doi:10.1021/cen-v028n046.p4002.
  • Donald G. Stevens: World War II Economic Warfare: The United States, Britain, and Portuguese Wolfram. In: The Historian. Band 61, Nr. 3, 1999, S. 539–556, doi:10.1111/j.1540-6563.1999.tb01036.x.
  • Florian Kurzweil, Carsten Münker, Michaela Grupp, Ninja Braukmüller, Lena Fechtner, Mike Christian, Simon V. Hohl, Ronny Schoenberg: A reconnaissance view of tungsten reservoirs in some crustal and mantle rocks: Implications for interpreting W isotopic compositions and crust-mantle W cycling. In: Geochimica et Cosmochimica Acta. Band 251, 2019, S. 176–191, doi:10.1016/j.gca.2019.02.025.
  • Jingao Liu, D. Graham Pearson, Thomas Chacko, Yan Luo: A reconnaissance view of tungsten reservoirs in some crustal and mantle rocks: Implications for interpreting W isotopic compositions and crust-mantle W cycling. In: Geochimica et Cosmochimica Acta. Band 233, 2018, S. 300–318, doi:10.1016/j.gca.2017.12.015.
  • Florian Kurzweil, Corey Archer, Martin Wille, Olaf Dellwig: Redox control on the tungsten isotope composition of seawater. In: PNAS. Band 118, Nr. 18, 2021, Artikel e2023544118, doi:10.1073/pnas.202354411.
  • T. Jade Mohajerin, George R. Helz, Karen H. Johannesson: Tungsten–molybdenum fractionation in estuarine environments. In: Geochimica et Cosmochimica Acta. Band 223, 2016, S. 105–119, doi:10.1016/j.gca.2015.12.030.
  • Stuart J. Mills, Pavel M. Kartashov, Anthony R. Kampf, Mike S. Rumsey, Chi Ma, Chris J. Stanley, John Spratt, George R. Rossman, Margarita I. Novgorodova: Native tungsten from the Bol’shaya Pol’ya river valley and Mt Neroyka, Russia. In: Mineralogical Magazine. Band 85, Nr. 1, 2021, S. 76–81, doi:10.1180/mgm.2021.7.
  • Zhengdong Han, Artem Golev, Mansour Edraki: A Review of Tungsten Resources and Potential Extraction from Mine Waste. In: Minerals. Band 11, Artikel 701, 2021, doi:10.3390/min11070701.
  • Cristina Cozzini u. a.: Detection of the natural α decay of tungsten. In: Physical Review C. 70, 064606, 2004, doi:10.1103/PhysRevC.70.064606.
  • Ahmed, B. et al.: Gamma-ray shielding characteristics of flexible silicone–tungsten composites, Applied Radiation and Isotopes 156 (2020), Art. 108901, doi:10.1016/j.apradiso.2019.108901. PMID 31655354.
  • Velásquez, J.; Fuentealba, M.; Santibáñez, M.: Characterization of Radiation Shielding Capabilities of High Concentration PLA–W Composite for 3D Printing of Radiation Therapy Collimators, Polymers 16(6) (2024), 769, doi:10.3390/polym16060769.
  • Chen, Z. et al.: Non-Toxic and Flexible Radiation-Shielding Composites Based on Natural Rubber with W, WO3 and WC Fillers, Processes 11(3) (2023), 674, doi:10.3390/pr11030674.
  • A Kletzin: Tungsten in biological systems. In: FEMS Microbiology Reviews. Band 18, Nr. 1, März 1996, S. 5–63, doi:10.1016/0168-6445(95)00025-9.
  • M. Chan, S. Mukund, A. Kletzin, M. Adams, D. Rees: Structure of a hyperthermophilic tungstopterin enzyme, aldehyde ferredoxin oxidoreductase. In: Science. Band 267, Nr. 5203, 10. März 1995, S. 1463–1469, doi:10.1126/science.7878465.
  • L. E. Bevers, P. L. Hagedoorn, W. R. Hagen: The bioinorganic chemistry of tungsten. In: Coord Chem Rev. Band 253, 2009, S. 269–290, doi:10.1016/j.ccr.2008.01.017.
  • Fabian Arndt, Georg Schmitt, Agnieszka Winiarska, Martin Saft, Andreas Seubert: Characterization of an Aldehyde Oxidoreductase From the Mesophilic Bacterium Aromatoleum aromaticum EbN1, a Member of a New Subfamily of Tungsten-Containing Enzymes. In: Frontiers in Microbiology. Band 10, 31. Januar 2019, doi:10.3389/fmicb.2019.00071, PMID 30766522, PMC 6365974 (freier Volltext).

dwds.de (Global: 4,690th place; German: 287th place)

  • Wolfram. In: Wolfgang Pfeifer et al.: Etymologisches Wörterbuch des Deutschen, 1993, abgerufen am 28. Oktober 2025.

europa.eu (Global: 62nd place; German: 21st place)

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  • Christian Siedenbiedel: In Niedersachsen: Spektakulärer Fall von gefälschten Goldbarren. In: Frankfurter Allgemeine Zeitung. 17. August 2018 (faz.net [abgerufen am 9. Dezember 2020]).

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  • Tim Young, Sean Taylor: ‘Wolf rahm’: archaeological evidence for the veracity of an old term. In: Historical Metallurgy. Band 49, Nr. 2, 2021, S. 96–109 (online).

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  • Ahmed, B. et al.: Gamma-ray shielding characteristics of flexible silicone–tungsten composites, Applied Radiation and Isotopes 156 (2020), Art. 108901, doi:10.1016/j.apradiso.2019.108901. PMID 31655354.
  • Roopali Roy, Swarnalatha Mukund, Gerrit J. Schut, Dianne M. Dunn, Robert Weiss: Purification and Molecular Characterization of the Tungsten-Containing Formaldehyde Ferredoxin Oxidoreductase from the Hyperthermophilic Archaeon Pyrococcus furiosus: the Third of a Putative Five-Member Tungstoenzyme Family. In: Journal of Bacteriology. Band 181, Nr. 4, Februar 1999, S. 1171–1180, PMID 9973343, PMC 93494 (freier Volltext).
  • D. Rauh u. a.: Tungsten-containing aldehyde oxidoreductase of Eubacterium acidaminophilum. In: Eur J Biochem., 271/2004, S. 212–219; PMID 14686934.
  • Fabian Arndt, Georg Schmitt, Agnieszka Winiarska, Martin Saft, Andreas Seubert: Characterization of an Aldehyde Oxidoreductase From the Mesophilic Bacterium Aromatoleum aromaticum EbN1, a Member of a New Subfamily of Tungsten-Containing Enzymes. In: Frontiers in Microbiology. Band 10, 31. Januar 2019, doi:10.3389/fmicb.2019.00071, PMID 30766522, PMC 6365974 (freier Volltext).

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