Magnetit (German Wikipedia)

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

Last modified:

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aerzteblatt.de (Global: 3,794th place; German: 234th place)

badw.de (Global: 4,041st place; German: 846th place)

wmi.badw.de

books.google.de (Global: 88th place; German: 4th place)

  • Marianne Hanzlik: Elektronenmikroskopische und magnetomineralogische Untersuchungen an magnetotaktischen Bakterien des Chiemsees und an bakteriellem Magnetit eisenreduzierender Bakterien. Herbert Utz Verlag, München 1999, ISBN 978-3-89675-632-9 (eingeschränkte Vorschau in der Google-Buchsuche Dissertation. Ludwig-Maximilians-Universität).

cambridge.org (Global: 209th place; German: 455th place)

copernicus.org (Global: 5,068th place; German: 3,638th place)

ejm.copernicus.org

  • S.-L. Hwang, P. Shen, T.-F. Yui, H.-T. Chu, Y. Iizuka, H.-P. Schertl, D. Spengler: IMA Commission on New Minerals, Nomenclature and Classification (CNMNC) – Newsletter 67. In: European Journal of Mineralogy. Band 34, 2022, S. 359–364 (ejm.copernicus.org [PDF; 113 kB; abgerufen am 28. April 2024] Chihmingite, IMA 2022-010).

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

  • Laurence N. Warr: IMA–CNMNC approved mineral symbols. In: Mineralogical Magazine. Band 85, 2021, S. 291–320, doi:10.1180/mgm.2021.43 (englisch, cambridge.org [PDF; 351 kB; abgerufen am 28. April 2024]).
  • Michael E. Fleet: The structure of magnetite: Symmetry of cubic spinels. In: Journal of Solid State Chemistry. Band 62, Nr. 1, 15. März 1986, S. 75–82, doi:10.1016/0022-4596(86)90218-5.
  • Ferdinando Bosi, Cristian Biagioni, Marco Pasero: Nomenclature and classification of the spinel supergroup. In: European Journal of Mineralogy. Band 31, Nr. 1, 12. September 2018, S. 183–192, doi:10.1127/ejm/2019/0031-2788 (englisch).
  • Can Rao, Xiangping Gu, Rucheng Wang, Qunke Xia, Yuanfeng Cai, Chuanwan Dong, Frédéric Hatert, Yantao Hao: Chukochenite, (Li0.5Al0.5)Al2O4, a new lithium oxyspinel mineral from the Xianghualing skarn, Hunan Province, China. In: American Mineralogist. Band 107, Nr. 5, 2022, S. 842–847, doi:10.2138/am-2021-7932 (englisch).
  • Cristian Biagioni, Marco Pasero: The systematics of the spinel-type minerals: An overview. In: American Mineralogist. Band 99, Nr. 7, 2014, S. 1254–1264, doi:10.2138/am.2014.4816 (englisch, Vorabversion online [PDF; 4,6 MB; abgerufen am 28. April 2024]).
  • W. H. Bragg, F. R. S. Cavendish: The Structure of the Spinel Group of Crystals. In: The philosophical magazine. Band 30, Nr. 176, 1915, ISSN 1478-6435, S. 305–315, doi:10.1080/14786440808635400.
  • G. A. Samara, A. A. Giardini: Effect of Pressure on the Neel Temperature of Magnetite. In: The physical review. Band 186, Nr. 2, 1969, ISSN 0031-899X, S. 577–580, doi:10.1103/PhysRev.186.577 (englisch, htracyhall.org (Memento vom 15. August 2018 im Internet Archive) [PDF; 2,1 MB]).
  • E. J. W. Verwey: Electronic Conduction of Magnetite (Fe3O4) and its Transition Point at Low Temperatures. In: Nature. Band 144, August 1939, ISSN 0028-0836, S. 327–328, doi:10.1038/144327b0.
  • Russell W. Millar: The heat capacities at low temperatures of „Ferrous Oxide“ magnetite and cuprous and cupric oxides. In: Journal of the American Chemical Society. Band 51, Nr. 1, 1929, ISSN 0002-7863, S. 215–224, doi:10.1021/ja01376a026.
  • D. Schrupp, M. Sing, M. Tsunekawa, H. Fujiwara, S. Kasai, A. Sekiyama, S. Suga, T. Muro, V. A. M. Brabers, R. Claessen: High-energy photoemission on Fe3O4: Small polaron physics and the Verwey transition. In: epl, a letters journal exploring the frontiers of physics. Band 70, Nr. 6, 2005, ISSN 0302-072X, S. 789–795, doi:10.1209/epl/i2005-10045-y (englisch).
  • V. A. M. Brabers: The preparation of tetragonal single crystals in the MnxFe3-xO4 system. In: Journal of crystal growth. Band 8, Nr. 1, Januar 1971, ISSN 0022-0248, S. 26–28, doi:10.1016/0022-0248(71)90017-0.
  • Akira Yanase, Kiiti Siratori: Band Structure in the High Temperature Phase of Fe3O4. In: Journal of the Physical Society of Japan. Band 53, Nr. 1, 1984, ISSN 0031-9015, S. 312–317, doi:10.1143/JPSJ.53.312.
  • W. Eerenstein, T. T. M. Palstra, S. S. Saxena, T. Hibma: Spin-Polarized Transport across Sharp Antiferromagnetic Boundaries. In: Physical Review Letters (PRL). Band 88, Nr. 24, 2002, ISSN 0031-9007, doi:10.1103/PhysRevLett.88.247204.
  • A. M. Haghiri-Gosnet, T. Arnal, R. Soulimane, M. Koubaa, J. P. Renard: Spintronics, perspectives for the half-metallic oxides. In: Physica status solidi. A: Applications and materials science. Band 201, Nr. 7, 2004, ISSN 0031-8965, S. 1392–1397, doi:10.1002/pssa.200304403.
  • Michael Winklhofer: Vom magnetischen Bakterium zur Brieftaube. In: Physik Unserer Zeit. Band 35, Nr. 3, 2004, ISSN 0031-9252, S. 120–127, doi:10.1002/piuz.200401039 (Vom magnetischen Bakterium zur Brieftaube (Memento vom 31. Dezember 2017 im Internet Archive) [PDF; 633 kB; abgerufen am 20. September 2019]).
  • Michaela Falkenroth, Miklos Kázmér, Silja Adolphs, Mirjam Cahnbley, Hassan Bagci, Gösta Hoffmann: Biological Indicators Reveal Small-Scale Sea-Level Variability During MIS 5e (Sur, Sultanate of Oman). In: Open Quaternary. Band 6, Nr. 1, 2020, S. 1–20, doi:10.5334/oq.72 (pdfs.semanticscholar.org [abgerufen am 26. November 2020]).
  • André Scheffel, Manuela Gruska, Damien Faivre, Alexandros Linaroudis, Jürgen M. Plitzko, Dirk Schüler: An acidic protein aligns magnetosomes along a filamentous structure in magnetotactic bacteria. In: Nature. Band 440, 2005, S. 110–114, doi:10.1038/nature04382.
  • David S. McKay, Everet K. Gibson Jr., Kathi L. Thomas-Keprta, Hojatolla Vali, Christopher S. Romanek, Simon J. Clemett, Xavier D. F. Chillier, Claude R. Maechling, Richar N. Zare: Search for past life on Mars. Possible relic biogenic activity in martian meteorite ALH 84001. In: Science. Band 273, 1996, ISSN 0036-8075, S. 924–930, doi:10.1126/science.273.5277.924 (englisch, websites.pmc.ucsc.edu [PDF; 2,9 MB; abgerufen am 20. September 2019]).

handbookofmineralogy.org (Global: 5,269th place; German: 616th place)

  • Magnetite. In: John W. Anthony, Richard A. Bideaux, Kenneth W. Bladh, Monte C. Nichols (Hrsg.): Handbook of Mineralogy, Mineralogical Society of America. 2001 (handbookofmineralogy.org [PDF; 147 kB; abgerufen am 20. September 2019]).

kas.de (Global: 4,448th place; German: 462nd place)

lmu.de (Global: low place; German: 1,759th place)

med.lmu.de

  • Magnetische Muster im Gehirn. Medizinische Fakultät der Ludwig-Maximilians-Universität München, 27. Juli 2018, abgerufen am 20. Juli 2024 (Originalarbeit: Stuart A. Gilder, Michael Wack, Leon Kaub, Sophie C. Roud, Nikolai Petersen, Helmut Heinsen, Peter Hillenbrand, Stefan Milz, Christoph Schmitz: Distribution of magnetic remanence carriers in the human brain. In: Scientific Reports. Band 8, Nr. 11363, 2018).

mindat.org (Global: 712th place; German: 405th place)

mineralienatlas.de (Global: 6,172nd place; German: 666th place)

minsocam.org (Global: 9,634th place; German: 2,891st place)

  • Cristian Biagioni, Marco Pasero: The systematics of the spinel-type minerals: An overview. In: American Mineralogist. Band 99, Nr. 7, 2014, S. 1254–1264, doi:10.2138/am.2014.4816 (englisch, Vorabversion online [PDF; 4,6 MB; abgerufen am 28. April 2024]).

redirecter.toolforge.org (Global: 29th place; German: 2nd place)

semanticscholar.org (Global: 15th place; German: 1,491st place)

pdfs.semanticscholar.org

  • Michaela Falkenroth, Miklos Kázmér, Silja Adolphs, Mirjam Cahnbley, Hassan Bagci, Gösta Hoffmann: Biological Indicators Reveal Small-Scale Sea-Level Variability During MIS 5e (Sur, Sultanate of Oman). In: Open Quaternary. Band 6, Nr. 1, 2020, S. 1–20, doi:10.5334/oq.72 (pdfs.semanticscholar.org [abgerufen am 26. November 2020]).

symbio-harmonizer.com (Global: low place; German: low place)

thieme.de (Global: 2,800th place; German: 167th place)

roempp.thieme.de

tum.de (Global: 6,595th place; German: 685th place)

mediatum.ub.tum.de

  • Daniel Reisinger: Magnetit in ultradünnen, epitaktischen Schichtsystemen für die Spinelektronik. Technische Universität München, 2004, S. 21– (mediatum.ub.tum.de [PDF; 17,9 MB; abgerufen am 15. Juli 2024] Dissertation).

ucsc.edu (Global: 4,139th place; German: 4,846th place)

websites.pmc.ucsc.edu

  • David S. McKay, Everet K. Gibson Jr., Kathi L. Thomas-Keprta, Hojatolla Vali, Christopher S. Romanek, Simon J. Clemett, Xavier D. F. Chillier, Claude R. Maechling, Richar N. Zare: Search for past life on Mars. Possible relic biogenic activity in martian meteorite ALH 84001. In: Science. Band 273, 1996, ISSN 0036-8075, S. 924–930, doi:10.1126/science.273.5277.924 (englisch, websites.pmc.ucsc.edu [PDF; 2,9 MB; abgerufen am 20. September 2019]).

units.it (Global: 7,324th place; German: 1,158th place)

cnmnc.units.it

weather.com (Global: 2,948th place; German: 5,770th place)

web.archive.org (Global: 1st place; German: 1st place)

webmineral.com (Global: 3,342nd place; German: 2,001st place)

wissenschaft-online.de (Global: low place; German: 3,449th place)

wixstatic.com (Global: low place; German: 3,952nd place)

docs.wixstatic.com

zdb-katalog.de (Global: 107th place; German: 5th place)

  • W. H. Bragg, F. R. S. Cavendish: The Structure of the Spinel Group of Crystals. In: The philosophical magazine. Band 30, Nr. 176, 1915, ISSN 1478-6435, S. 305–315, doi:10.1080/14786440808635400.
  • G. A. Samara, A. A. Giardini: Effect of Pressure on the Neel Temperature of Magnetite. In: The physical review. Band 186, Nr. 2, 1969, ISSN 0031-899X, S. 577–580, doi:10.1103/PhysRev.186.577 (englisch, htracyhall.org (Memento vom 15. August 2018 im Internet Archive) [PDF; 2,1 MB]).
  • E. J. W. Verwey: Electronic Conduction of Magnetite (Fe3O4) and its Transition Point at Low Temperatures. In: Nature. Band 144, August 1939, ISSN 0028-0836, S. 327–328, doi:10.1038/144327b0.
  • Russell W. Millar: The heat capacities at low temperatures of „Ferrous Oxide“ magnetite and cuprous and cupric oxides. In: Journal of the American Chemical Society. Band 51, Nr. 1, 1929, ISSN 0002-7863, S. 215–224, doi:10.1021/ja01376a026.
  • D. Schrupp, M. Sing, M. Tsunekawa, H. Fujiwara, S. Kasai, A. Sekiyama, S. Suga, T. Muro, V. A. M. Brabers, R. Claessen: High-energy photoemission on Fe3O4: Small polaron physics and the Verwey transition. In: epl, a letters journal exploring the frontiers of physics. Band 70, Nr. 6, 2005, ISSN 0302-072X, S. 789–795, doi:10.1209/epl/i2005-10045-y (englisch).
  • V. A. M. Brabers: The preparation of tetragonal single crystals in the MnxFe3-xO4 system. In: Journal of crystal growth. Band 8, Nr. 1, Januar 1971, ISSN 0022-0248, S. 26–28, doi:10.1016/0022-0248(71)90017-0.
  • Akira Yanase, Kiiti Siratori: Band Structure in the High Temperature Phase of Fe3O4. In: Journal of the Physical Society of Japan. Band 53, Nr. 1, 1984, ISSN 0031-9015, S. 312–317, doi:10.1143/JPSJ.53.312.
  • W. Eerenstein, T. T. M. Palstra, S. S. Saxena, T. Hibma: Spin-Polarized Transport across Sharp Antiferromagnetic Boundaries. In: Physical Review Letters (PRL). Band 88, Nr. 24, 2002, ISSN 0031-9007, doi:10.1103/PhysRevLett.88.247204.
  • A. M. Haghiri-Gosnet, T. Arnal, R. Soulimane, M. Koubaa, J. P. Renard: Spintronics, perspectives for the half-metallic oxides. In: Physica status solidi. A: Applications and materials science. Band 201, Nr. 7, 2004, ISSN 0031-8965, S. 1392–1397, doi:10.1002/pssa.200304403.
  • Michael Winklhofer: Vom magnetischen Bakterium zur Brieftaube. In: Physik Unserer Zeit. Band 35, Nr. 3, 2004, ISSN 0031-9252, S. 120–127, doi:10.1002/piuz.200401039 (Vom magnetischen Bakterium zur Brieftaube (Memento vom 31. Dezember 2017 im Internet Archive) [PDF; 633 kB; abgerufen am 20. September 2019]).
  • David S. McKay, Everet K. Gibson Jr., Kathi L. Thomas-Keprta, Hojatolla Vali, Christopher S. Romanek, Simon J. Clemett, Xavier D. F. Chillier, Claude R. Maechling, Richar N. Zare: Search for past life on Mars. Possible relic biogenic activity in martian meteorite ALH 84001. In: Science. Band 273, 1996, ISSN 0036-8075, S. 924–930, doi:10.1126/science.273.5277.924 (englisch, websites.pmc.ucsc.edu [PDF; 2,9 MB; abgerufen am 20. September 2019]).