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  2. VOLUME 93, NUMBER 9 P H Y S I ...

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/Dombrowskietal04.pdf
    2 Sep 2012: Figure 5(a) shows the. 0 50 100 150 200 2500. 50. ... 100. 150. 200. X (µm). Y (µm. ). FIG. 4. Flows at the bottom of a pendant drop.
  3. VOLUME 84, NUMBER 13 P H Y S I ...

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/WuLibchaber00.pdf
    2 Sep 2012: 2tdt, where the finitetime difference dt is taken to be the longest time of themeasurements, 200 , t , 300 s.
  4. There is more than one way to turn a spherical cellular monolayer…

    www.damtp.cam.ac.uk/user/sh753/pdfs/2011_Hoehn_Hallmann_Inversion_V.globator.pdf
    27 May 2012: recently because phylogenetic analyses indicate that mul-ticellularity evolved in volvocine green algae ‘only’approximately 200 million years ago [59], which is muchmore recently than in any other group, and inversionmust
  5. The hydrodynamics of swimming microorganisms

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/LaugaPowers09.pdf
    27 Aug 2012: Eukaryotic flagella and cilia are much larger than bacterialflagella, with a typical diameter of 200 nm, and withan intricate internal structure [21]. ... A human spermatozoon with U 200 µm s1and L 50 µm moves with Re 102.
  6. Stratosphere‐Troposphere Exchange

    www.damtp.cam.ac.uk/user/mem/papers/STE/holton-etal-strat-trop-revsgeoph95.pdf
    22 Aug 2012: STRATOSPHERE-TROPOSPHERE EXCHANGE. James R. Holton • Peter H. Haynes 2 and Michael E. Mcintyre 2 Anne R. Douglass 3 and Richard B. Rood 3 Leonhard Pfister 4. Abstract. In the past, studies of stratosphere-tropo- sphere exchange of mass and
  7. Real-time particle tracking at 10,000 fpsusing optical fiber…

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/ufk_papers/optical_tweezers/Otto2010.pdf
    3 Oct 2012: R. Querry, “Optical Constants of Water in the 200-nm to 200-micrometer Wavelength Re-gion,” Appl. ... Calibration was carried out at five different laser powers: 200 mW, 150 mW, 100 mW, 50 mWand 25 mW (top to bottom in Fig.
  8. pq229912233p

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/Hochachka99.pdf
    2 Sep 2012: W. & McClelland, G. B. (1997) J. Exp. Biol. 200, 381–386.15. ... Exp. Biol. 200, 203–216.21. Norris, A. J., Martin, S. S., Harita, T., Nelson, J.
  9. PCE845.fm

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/Pickard03.pdf
    2 Sep 2012: a. eff. 04 nm (. M. 200) (Robinson & Stokes 1959; Fig.
  10. Pattern formation in a suspension of swimming microorganisms:…

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/ChildressLevandowskySpiegel75.pdf
    2 Sep 2012: 128.2. ( b ) w-7. 0.5 1 2. 2465 197.0 19.9 2467 197.3 20.1 2470 198.5 20.5 2476 200.5 21.3 2485
  11. Oscillatory Flows Induced by Microorganisms Swimming in Two…

    www.damtp.cam.ac.uk/user/gold/pdfs/teaching/FDSE/GuastoJohnsonGollub10.pdf
    2 Sep 2012: It typifies many biflagellatedmicroorganisms with two anterior 10–12 m long flagellathat beat at 50–60 Hz propelling the cell in an oscillatorymanner at a mean speed of 100–200

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