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  2. New technique to synthesise nanostructured nanowires | University of…

    https://www.cam.ac.uk/research/news/new-technique-to-synthesise-nanostructured-nanowires
    Thumbnail for New technique to synthesise nanostructured nanowires | University of Cambridge 16 Jul 2015: To unravel the complexities of this process, the research team used two customised electron microscopes, one at IBM’s TJ Watson Research Center and a second at Brookhaven National Laboratory.
  3. Dr Zuehlsdorff

    www.tcm.phy.cam.ac.uk/profiles/tjz21/
    7 Oct 2015: TJ Zuehlsdorff, ND Hine, JS Spencer, NM Harrison, DJ Riley and PD Haynes,TCM Group, 19 JJ Thomson Ave, Cambridge, CB3 0HE, UK  Privacy policy  Design by Drs .
  4. MAXIMUM ENTROPY PROPERTY OF DISCRETE-TIME STABLE SPLINE KERNEL Tohid…

    www-sigproc.eng.cam.ac.uk/foswiki/pub/Main/TA417Publications/ArdeshiriC2015.pdf
    9 Apr 2015: Furthermore, let 0 tj < ti,. Var[g(ti) g(tj)] = E.  ir=j1. ... h(tr)tr tr1. 2. =. ir=j1. λ(tr tr1) = λ(ti tj). (15).
  5. Mathematics of Operational Research Example Sheet 2 R. Weber ...

    www.statslab.cam.ac.uk/~rrw1/mor/examples2.pdf
    2 Dec 2015: maximizesi,tj. { i. si j. tj : αiβj si tj 0, i, j}.
  6. Introduction to Cost-Effectiveness Analysis

    https://cscs3.medschl.cam.ac.uk/wp-content/uploads/GAM_slides1.pdf
    2 Mar 2015: Solution• For fixed αj. , the solution to minimizing the penalized least squares in the AM is whereˆ Hyβ = 1 ( )T Tj. ... AM). (GAM). 1 ( )T Tj jj. F X X S X X HXα = = 1 ( )T Tj j.
  7. https://www.hep.phy.cam.ac.uk/~lester/dtm662/mt2/Releases/oxbridgekine…

    https://www.hep.phy.cam.ac.uk/~lester/dtm662/mt2/Releases/oxbridgekinetics-0.8/README
    2 Mar 2015: Mt2_332_Calculator that expose the splitting at the MT2 minimum (used by MAOS methods and some top-quark mass reconstruction methods) 0.8 2nd March 2015 - At request of TJ
  8. ANALYSIS II—EXAMPLES 4 Mich. 2014 The questions marked with ...

    https://www.dpmms.cam.ac.uk/study/IB/AnalysisII/2014-2015/14sheet4revised.pdf
    27 Feb 2015: Nj=1 ‖γ(tj) γ(tj1)‖ where the sup is taken over all. finite partitions 0 = t0 < t1 <. < tN = 1. (i) Give an example for which (γ) =. If γ is continuously
  9. Green Algae as Model Organisms for Biological Fluid Dynamics

    www.damtp.cam.ac.uk/user/gold/pdfs/green_algae.pdf
    25 Sep 2015: FL47CH15-Goldstein ARI 1 December 2014 20:34. Green Algae as ModelOrganisms for BiologicalFluid DynamicsRaymond E. GoldsteinDepartment of Applied Mathematics and Theoretical Physics, Centre for MathematicalSciences, University of Cambridge,
  10. LINEAR ALGEBRA SIMON WADSLEY Contents 1. Vector spaces 21.1. ...

    https://www.dpmms.cam.ac.uk/~sjw47/LinearAlgebra.pdf
    20 May 2015: with λi F and ti Tr. Since {e1,. ,er1} is linearly independent there must besome 1 6 j 6 k such that λj 6= 0 and tj 6 {e1,. ... er}. Let T ′r1 = T ′r {tj} and. Tr1 = (TT ′r1) {e1,.
  11. Maximum entropy properties of discrete-time first-order stable spline …

    www-sigproc.eng.cam.ac.uk/foswiki/pub/Main/TA417Publications/ChenACCLP2014.pdf
    13 Apr 2015: Pi,j = K(ti, tj; α), i,j = 1, ,n, ti, tj T (7). ... eβ(tn1tn). eβtn1 eβtn , i = j = n,. 0, |i j| > 1 1eβ min{ti,tj}eβ max{ti,tj}. ,

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