Bragg's law (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Bragg's law" in English language version.

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doi.org

  • Bragg, W. H.; Bragg, W. L. (1913). "The Reflexion of X-rays by Crystals". Proc. R. Soc. Lond. A. 88 (605): 428–38. Bibcode:1913RSPSA..88..428B. doi:10.1098/rspa.1913.0040. S2CID 13112732.
  • Shull, Clifford G. (1995). "Early development of neutron scattering". Reviews of Modern Physics. 67 (4): 753–757. Bibcode:1995RvMP...67..753S. doi:10.1103/revmodphys.67.753. ISSN 0034-6861.
  • Estermann, I.; Stern, O. (1930). "Beugung von Molekularstrahlen". Zeitschrift für Physik (in German). 61 (1–2): 95–125. Bibcode:1930ZPhy...61...95E. doi:10.1007/BF01340293. ISSN 1434-6001. S2CID 121757478.
  • Arndt, Markus; Nairz, Olaf; Vos-Andreae, Julian; Keller, Claudia; van der Zouw, Gerbrand; Zeilinger, Anton (1999). "Wave–particle duality of C60 molecules". Nature. 401 (6754): 680–682. doi:10.1038/44348. ISSN 0028-0836. PMID 18494170. S2CID 4424892.
  • Pieranski, P (1983). "Colloidal Crystals". Contemporary Physics. 24: 25–73. Bibcode:1983ConPh..24...25P. doi:10.1080/00107518308227471.
  • Moseley, Henry H. G. J.; Darwin, Charles G. (July 1913). "on the Reflexion of the X-rays" (PDF). The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science. 26 (151): 210–232. doi:10.1080/14786441308634968. Retrieved 2021-04-27.
  • Moseley, Henry G. J. (1913). "The High-Frequency Spectra of the Elements". The London, Edinburgh and Dublin Philosophical Magazine and Journal of Science. 6. 26. Smithsonian Libraries. London-Edinburgh: London : Taylor & Francis: 1024–1034. doi:10.1080/14786441308635052.
  • Egerton, R. F. (2009). "Electron energy-loss spectroscopy in the TEM". Reports on Progress in Physics. 72 (1): 016502. Bibcode:2009RPPh...72a6502E. doi:10.1088/0034-4885/72/1/016502. S2CID 120421818.
  • Patterson, A. L. (1939). "The Scherrer Formula for X-Ray Particle Size Determination". Physical Review. 56 (10): 978–982. Bibcode:1939PhRv...56..978P. doi:10.1103/PhysRev.56.978.
  • Hiltner, PA; IM Krieger (1969). "Diffraction of Light by Ordered Suspensions". Journal of Physical Chemistry. 73 (7): 2386–2389. doi:10.1021/j100727a049.
  • Luck, Werner; Klier, Manfred; Wesslau, Hermann (1963). "Über Bragg-Reflexe mit sichtbarem Licht an monodispersen Kunststofflatices. II". Berichte der Bunsengesellschaft für physikalische Chemie. 67 (1): 84–85. doi:10.1002/bbpc.19630670114. ISSN 0005-9021.

dx.doi.org

e-bookshelf.de

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eudml.org

harvard.edu

ui.adsabs.harvard.edu

  • Bragg, W. H.; Bragg, W. L. (1913). "The Reflexion of X-rays by Crystals". Proc. R. Soc. Lond. A. 88 (605): 428–38. Bibcode:1913RSPSA..88..428B. doi:10.1098/rspa.1913.0040. S2CID 13112732.
  • Shull, Clifford G. (1995). "Early development of neutron scattering". Reviews of Modern Physics. 67 (4): 753–757. Bibcode:1995RvMP...67..753S. doi:10.1103/revmodphys.67.753. ISSN 0034-6861.
  • Estermann, I.; Stern, O. (1930). "Beugung von Molekularstrahlen". Zeitschrift für Physik (in German). 61 (1–2): 95–125. Bibcode:1930ZPhy...61...95E. doi:10.1007/BF01340293. ISSN 1434-6001. S2CID 121757478.
  • Pieranski, P (1983). "Colloidal Crystals". Contemporary Physics. 24: 25–73. Bibcode:1983ConPh..24...25P. doi:10.1080/00107518308227471.
  • Egerton, R. F. (2009). "Electron energy-loss spectroscopy in the TEM". Reports on Progress in Physics. 72 (1): 016502. Bibcode:2009RPPh...72a6502E. doi:10.1088/0034-4885/72/1/016502. S2CID 120421818.
  • Patterson, A. L. (1939). "The Scherrer Formula for X-Ray Particle Size Determination". Physical Review. 56 (10): 978–982. Bibcode:1939PhRv...56..978P. doi:10.1103/PhysRev.56.978.
  • Barden, S.C.; Williams, J.B.; Arns, J.A.; Colburn, W.S. (2000). "Tunable Gratings: Imaging the Universe in 3-D with Volume-Phase Holographic Gratings (Review)". ASP Conf. Ser. 195: 552. Bibcode:2000ASPC..195..552B.

nature.com

nih.gov

pubmed.ncbi.nlm.nih.gov

nobelprize.org

  • There are some sources, like the Academic American Encyclopedia, that attribute the discovery of the law to both W.L Bragg and his father W.H. Bragg, but the official Nobel Prize site and the biographies written about him ("Light Is a Messenger: The Life and Science of William Lawrence Bragg", Graeme K. Hunter, 2004 and "Great Solid State Physicists of the 20th Century", Julio Antonio Gonzalo, Carmen Aragó López) make a clear statement that Lawrence Bragg alone derived the law.
  • "The Nobel Prize in Physics 1915".

semanticscholar.org

api.semanticscholar.org

  • Bragg, W. H.; Bragg, W. L. (1913). "The Reflexion of X-rays by Crystals". Proc. R. Soc. Lond. A. 88 (605): 428–38. Bibcode:1913RSPSA..88..428B. doi:10.1098/rspa.1913.0040. S2CID 13112732.
  • Estermann, I.; Stern, O. (1930). "Beugung von Molekularstrahlen". Zeitschrift für Physik (in German). 61 (1–2): 95–125. Bibcode:1930ZPhy...61...95E. doi:10.1007/BF01340293. ISSN 1434-6001. S2CID 121757478.
  • Arndt, Markus; Nairz, Olaf; Vos-Andreae, Julian; Keller, Claudia; van der Zouw, Gerbrand; Zeilinger, Anton (1999). "Wave–particle duality of C60 molecules". Nature. 401 (6754): 680–682. doi:10.1038/44348. ISSN 0028-0836. PMID 18494170. S2CID 4424892.
  • Egerton, R. F. (2009). "Electron energy-loss spectroscopy in the TEM". Reports on Progress in Physics. 72 (1): 016502. Bibcode:2009RPPh...72a6502E. doi:10.1088/0034-4885/72/1/016502. S2CID 120421818.

springer.com

link.springer.com

worldcat.org