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  2. Part IB Quantum Mechanics, Michaelmas 2019 Tuesday and Thursday, ...

    www.qi.damtp.cam.ac.uk/files/Adrian/notes160520.pdf
    16 May 2020: Part IB Quantum Mechanics, Michaelmas 2019. Tuesday and Thursday, 11.05 a.m. to 11.55 a.m., Mill Lane lecture room 3. Prof. Adrian Kent (apak@damtp.cam.ac.uk). I am very grateful to previous lecturers of this course, and in particular toJonathan
  3. Statistical Laboratory, 1978

    www.statslab.cam.ac.uk/files/Statistical%20Laboratory%20Photos/1970-1979/pic78.html
    21 Oct 2020: KA.Kuulasmaa J.L.Gilbert C.T.Sparrow A.S.H.Basinski R.A.Sutherland C.G.Small J.E.Forster. A.WoodR.E.Lee D.J.Steinitz A.C.Kowalski
  4. Prof. Gareth Jones | Faraday

    https://www.faraday.cam.ac.uk/about/people/prof-gareth-jones/
    Thumbnail for Prof. Gareth Jones | Faraday 20 Feb 2020: Biologist, 48: 129-132 (2001). JONES DG and GALVIN KA: Retention of body parts: Reflections from anatomy, New Zealand Medical Journal, 115: 267-269 (2002). ... Clinical Anatomy, 15: 436-440 (2002). JONES DG, GEAR R and GALVIN KA: Stored human tissue: An
  5. 16001658465475 1..36

    https://www2.mrc-lmb.cam.ac.uk/groups/JYL/PDF/Collier_2020_elife-59560-v1.pdf
    15 Sep 2020: For correspondence:. jyl@mrc-lmb.cam.ac.uk (JL);. ashley.nasmyth@bioch.ox.ac.uk. (KAN). †These authors contributed. equally to this work. Competing interests: The. authors declare that no. competing interests exist. Funding: See page 33. Received:
  6. Studying the spike protein of SARS-CoV-2 - MRC Laboratory of…

    https://www2.mrc-lmb.cam.ac.uk/studying-the-spike-protein-of-sars-cov-2/
    Thumbnail for Studying the spike protein of SARS-CoV-2 - MRC Laboratory of Molecular Biology 18 Aug 2020: Xiong, X., Qu, K., Ciazynska, KA., Hosmillo, M., Carter, AP., Ebrahimi, S., Ke, Z., Scheres, SHW., Bergamaschi, L., Grice, GL., Zhang, Y., The CITIID-NIHR COVID-19 BioResource Collaboration, Nathan, JA.,
  7. Black Holes

    www.damtp.cam.ac.uk/user/hsr1000/black_holes_lectures_2020.pdf
    3 Mar 2020: 1.3 Time-independence. Definition. A spacetime is stationary if it admits a Killing vector field ka whichis everywhere timelike: gabk. ... akb < 0. We can choose coordinates as follows. Pick a hypersurface Σ nowhere tangentto ka and introduce
  8. POSTERSTRAT_v2019-ZAGWIJN-NJG

    https://www.quaternary.group.cam.ac.uk/images/hoog2019zagwijninmemoriamnjg.pdf
    13 Jan 2020: Termination I - 14 ka. Termination IV - 337 ka. Termination V - 424 ka 11. ... 9e. 7e7a. 19. 15a. 103. 63. 9a. 5. 15e. 4. Termination VI - 533 ka.
  9. Quaternary Stratigraphy – palaeoenvironment, sediments, palaeofauna…

    https://www.inqua-seqs.org/files/SEQS2020_Abstracts_Wroclaw_Poland.pdf
    26 Sep 2020: Quaternary Stratigraphy – palaeoenvironment, sediments, palaeofauna and human migrations across Central Europe. Edited by. Artur SobczykUrszula Ratajczak-SkrzatekMarek KasprzakAdam KotowskiAdrian MarciszakKrzysztof Stefaniak. INQUA SEQS
  10. PHYSICAL REVIEW A 93, 042702 (2016) Pseudopotential for the ...

    www.tcm.phy.cam.ac.uk/~gjc29/papers/Whitehead16.pdf
    24 Aug 2020: 2), which gives. ψ cont0 (r) J0(kr) π. 2[γ ln(ka/2)] Y0(kr), (7). ... 9) of (kR)2/2π , and so describe the scattering correctto O((ka)4).
  11. Nanocrystalline Powder Cores for High-Power High-Frequency…

    https://tenglong.eng.cam.ac.uk/files/nanocrystalline_powder_cores.pdf
    11 Oct 2020: XFlux @100 kHz. 3.0 kA/m. 248. mT. High Flux @100 kHz. ... Kool Mµ @100 kHz. 3.0 kA/m. 248. mT. Nanocrystalline @100 kHz.

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