Scallop theorem (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Scallop theorem" in English language version.

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aps.org

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arxiv.org

doi.org

  • Purcell, E. M. (1977), "Life at low reynolds number", American Journal of Physics, 45 (1): 3–11, Bibcode:1977AmJPh..45....3P, doi:10.1119/1.10903, hdl:2433/226838
  • Najafi, Ali; Golestanian, Ramin (2004-06-16). "Simple swimmer at low Reynolds number: Three linked spheres". Physical Review E. 69 (6): 062901. arXiv:cond-mat/0402070. Bibcode:2004PhRvE..69f2901N. doi:10.1103/PhysRevE.69.062901. PMID 15244646.
  • Lauga, Eric; Powers, Thomas R. (2009), "The hydrodynamics of swimming microorganisms", Reports on Progress in Physics, 72 (9): 096601, arXiv:0812.2887, Bibcode:2009RPPh...72i6601L, doi:10.1088/0034-4885/72/9/096601, S2CID 3932471
  • Lauga, Eric (2011), "Life around the scallop theorem", Soft Matter, 7 (7): 3060–3065, arXiv:1011.3051, Bibcode:2011SMat....7.3060L, doi:10.1039/C0SM00953A, S2CID 96762619
  • Berg HC & Anderson RA (1973). "Bacteria swim by rotating their flagellar filaments". Nature. 245 (5425): 380–382. Bibcode:1973Natur.245..380B. doi:10.1038/245380a0. PMID 4593496. S2CID 4173914.
  • Silverman M & Simon M (1974). "Flagellar rotation and the mechanism of bacterial motility". Nature. 249 (100): 73–74. Bibcode:1974Natur.249...73S. doi:10.1038/249073a0. PMID 4598030. S2CID 10370084.
  • Brokaw CJ (1991). "Microtubule Sliding in Swimming Sperm Flagella: Direct and Indirect Measurements on Sea Urchin and Tunicate Spermatozoa". J Cell Biol. 114 (6): 1201–1215. doi:10.1083/jcb.114.6.1201. PMC 2289132. PMID 1894694.
  • Qiu, Tian; Lee, Tung-Chun; Mark, Andrew G.; Morozov, Konstantin I.; Münster, Raphael; Mierka, Otto; Turek, Stefan; Leshansky, Alexander M.; Fischer, Peer (2014), "Swimming by reciprocal motion at low Reynolds number", Nature Communications, 5: 5119, Bibcode:2014NatCo...5.5119Q, doi:10.1038/ncomms6119, PMC 4241991, PMID 25369018

handle.net

hdl.handle.net

  • Purcell, E. M. (1977), "Life at low reynolds number", American Journal of Physics, 45 (1): 3–11, Bibcode:1977AmJPh..45....3P, doi:10.1119/1.10903, hdl:2433/226838

harvard.edu

ui.adsabs.harvard.edu

  • Purcell, E. M. (1977), "Life at low reynolds number", American Journal of Physics, 45 (1): 3–11, Bibcode:1977AmJPh..45....3P, doi:10.1119/1.10903, hdl:2433/226838
  • Najafi, Ali; Golestanian, Ramin (2004-06-16). "Simple swimmer at low Reynolds number: Three linked spheres". Physical Review E. 69 (6): 062901. arXiv:cond-mat/0402070. Bibcode:2004PhRvE..69f2901N. doi:10.1103/PhysRevE.69.062901. PMID 15244646.
  • Lauga, Eric; Powers, Thomas R. (2009), "The hydrodynamics of swimming microorganisms", Reports on Progress in Physics, 72 (9): 096601, arXiv:0812.2887, Bibcode:2009RPPh...72i6601L, doi:10.1088/0034-4885/72/9/096601, S2CID 3932471
  • Lauga, Eric (2011), "Life around the scallop theorem", Soft Matter, 7 (7): 3060–3065, arXiv:1011.3051, Bibcode:2011SMat....7.3060L, doi:10.1039/C0SM00953A, S2CID 96762619
  • Berg HC & Anderson RA (1973). "Bacteria swim by rotating their flagellar filaments". Nature. 245 (5425): 380–382. Bibcode:1973Natur.245..380B. doi:10.1038/245380a0. PMID 4593496. S2CID 4173914.
  • Silverman M & Simon M (1974). "Flagellar rotation and the mechanism of bacterial motility". Nature. 249 (100): 73–74. Bibcode:1974Natur.249...73S. doi:10.1038/249073a0. PMID 4598030. S2CID 10370084.
  • Qiu, Tian; Lee, Tung-Chun; Mark, Andrew G.; Morozov, Konstantin I.; Münster, Raphael; Mierka, Otto; Turek, Stefan; Leshansky, Alexander M.; Fischer, Peer (2014), "Swimming by reciprocal motion at low Reynolds number", Nature Communications, 5: 5119, Bibcode:2014NatCo...5.5119Q, doi:10.1038/ncomms6119, PMC 4241991, PMID 25369018

nih.gov

pubmed.ncbi.nlm.nih.gov

ncbi.nlm.nih.gov

semanticscholar.org

api.semanticscholar.org