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11 - 16 of 16 search results for `Watson and J B` |u:www.damtp.cam.ac.uk
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  2. Rough surface backscatter and statistics via extended parabolic…

    www.damtp.cam.ac.uk/user/ms100/PAPERS/arXiv1408.1879.pdf
    13 Dec 2018: Radar Signal Processing (1990)F 137 102-112. [9] J.G. Watson and J.B. ... Acoust. Soc. Am. 97 (1995) 745-753. [19] B.J. Uscinski & C.J.
  3. Hydrodynamic model for Spiroplasma motility

    www.damtp.cam.ac.uk/user/lauga/papers/181.pdf
    8 Sep 2020: 6(b) and 6(c)]. Therefore by reversibility of the Stokes equations, the total angulardisplacement at the end of the swimming stroke vanishes. ... 33)(or its helical modification) and obtain {u( j )τ , u( j )ν , ω( j )} as rational functions in 2 and 3
  4. Computing spectral properties of topological insulators without…

    www.damtp.cam.ac.uk/user/mjc249/pdfs/computing_top_ins.pdf
    7 Mar 2023: Matthew J. Colbrook, Andrew Horning, Kyle Thicke, Alexander B. Watson. Abstract. ... 3 (left)).The method is summarised in Algorithm 3. Consider the semi-circle contour connecting the points a and b and oriented in the clockwise direc-tion, parametrised
  5. 26 Jul 2013: The swimming velocity of an oblate ellipsoid translatingalong the symmetric axis can be obtained by applying to theabove the transformation c , 0 ic , i0 and reversingthe definitions of a and b ... Since J e 1 2 for e = b / a 1, the optimal profile shown
  6. Mathematics, Innate Knowledge and Neuroscience, COMPLETE

    www.damtp.cam.ac.uk/user/tf227/Mathematics-%20Innate%20Knowledge%20and%20Neuroscience-%20COMPLETE.pdf
    19 Dec 2012: between his two basic realities, (a) the intelligible (νοητός κόσµος) and (b) the sensible. ( ... Indeed, it was clearly argued by J.B. Watson and B.F. Skinner that behaviour could be.
  7. An exact theory of nonlinear waves on a Lagrangian-mean flow

    www.damtp.cam.ac.uk/user/mem/andrews-mcintyre-glm-jfm78.pdf
    22 Jul 2010: R j j and the radiation-stress concept 634 8.5. Relation to earlier theories 636. ... Further properties of J and K j j. Appendix B. Derivation of theorem I.

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