Exponent

Results: 439



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61

The best exponent in Markov inequality Miroslaw Baran Jagiellonian University, Poland

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Source URL: www.6ecm.pl

Language: English - Date: 2012-05-15 10:32:06
    62

    PHYSICAL REVIEW E 87, Optimal transport exponent in spatially embedded networks G. Li,1 S. D. S. Reis,2 A. A. Moreira,2 S. Havlin,1,3 H. E. Stanley,1 and J. S. Andrade, Jr.2 2

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    Source URL: havlin.biu.ac.il

    Language: English - Date: 2013-07-09 07:58:14
      63Dynamical systems / Chaos theory / Lagrangian coherent structure / Turbulence / Lyapunov exponent / Thorn / Physics / Mechanics / Latin script

      Do Finite-Size Lyapunov Exponents detect coherent structures? Daniel Karrasch and George Haller Citation: Chaos: An Interdisciplinary Journal of Nonlinear Science 23, ); doi: View online: ht

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      Source URL: georgehaller.com

      Language: English - Date: 2015-06-08 09:03:44
      64Statistics / Knowledge / Epistemology / Control theory / Regression analysis / Statistical forecasting / Error / Measurement / Data assimilation / Chaos theory / Kalman filter / Lyapunov exponent

      CHAOS 22, Effect of discrete time observations on synchronization in Chua model and applications to data assimilation Md. Nurujjaman,1,a) Sumanth Shivamurthy,2 Amit Apte,2,b) Tanu Singla,3 and P. Parmanand

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      Source URL: home.icts.res.in

      Language: English - Date: 2014-05-26 00:10:45
      65

      Preprint, Version 2.2 ON WEIGHTED ZERO-SUM SEQUENCES SUKUMAR DAS ADHIKARI, DAVID J. GRYNKIEWICZ AND ZHI-WEI SUN1 Abstract. Let G be a finite additive abelian group with exponent exp(G) = n > 1 and let A be a nonempty sub

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      Source URL: www.diambri.org

      Language: English - Date: 2010-12-14 07:57:22
        66

        Log Reduction Fact Sheet “Log” stands for logarithm, which is the exponent of 10. For example, Log-2 represents 102 or 10 x 10 or 100. Log Reduction stands for a 10-fold (one decimal) or 90% reduction in numbers of l

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        Source URL: www.healthyfacilitiesinstitute.com

        Language: English - Date: 2014-02-28 16:40:01
          67

          INTRODUCTION TO KPZ JEREMY QUASTEL Contents 1. A physical introduction 1.1. KPZ/Stochastic Burgers/Scaling exponent

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          Source URL: www.math.toronto.edu

          Language: English - Date: 2012-10-16 18:26:17
            68

            HW #8 (221B) 1) Path integrals with quadratic and lower polynomials in the exponent can be computed exactly, and this is the standard example. A book by Feynman and Hibbs is a good reference. This path integral can be co

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            Source URL: hitoshi.berkeley.edu

            Language: English - Date: 2014-01-31 18:27:00
              69

              INVERSE ZERO-SUM PROBLEMS WEIDONG GAO, ALFRED GEROLDINGER AND WOLFGANG A. SCHMID 1. Introduction Let G be an additive finite abelian group with exponent exp(G) = n. We define some central invariants in zero-sum theory: L

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              Source URL: www.uni-graz.at

              Language: English - Date: 2007-03-01 05:56:28
                70

                Further Results on the SNR Exponent of Hybrid Digital Analog Space Time Codes Krishna Narayanan Giuseppe Caire

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                Source URL: ita.ucsd.edu

                Language: English - Date: 2006-01-23 22:18:50
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