Differential equation

Results: 4783



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11Reinforcement Learning with Function-Valued Action Spaces for Partial Differential Equation Control Yangchen Pan 1 2 Amir-massoud Farahmand 3 2 Martha White 1 Saleh Nabi 2 Piyush Grover 2 Daniel Nikovski 2

Reinforcement Learning with Function-Valued Action Spaces for Partial Differential Equation Control Yangchen Pan 1 2 Amir-massoud Farahmand 3 2 Martha White 1 Saleh Nabi 2 Piyush Grover 2 Daniel Nikovski 2

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Source URL: sologen.net

Language: English - Date: 2018-06-07 18:37:02
    12New York Journal of Mathematics New York J. Math. 17a–244. The Riccati differential equation and a diffusion-type equation Erwin Suazo, Sergei K. Suslov

    New York Journal of Mathematics New York J. Math. 17a–244. The Riccati differential equation and a diffusion-type equation Erwin Suazo, Sergei K. Suslov

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    Source URL: nyjm.albany.edu

    Language: English - Date: 2011-01-27 18:27:14
      13At). Then, integration of the differential equation from the initial condition Y„-x 923 can be performed to determine the value at Yn. The solution can be determined tmuumMsMMimmm using the integrating factor or Lapl

      At). Then, integration of the differential equation from the initial condition Y„-x 923 can be performed to determine the value at Yn. The solution can be determined tmuumMsMMimmm using the integrating factor or Lapl

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      Source URL: www.pc-education.mcmaster.ca

      Language: English - Date: 2017-10-16 14:31:39
        14ON A FUNCTIONAL-DIFFERENTIAL EQUATION ARISING FROM A TRAFFIC FLOW MODEL∗ REINHARD ILLNER AND GEOFFREY MCGREGOR† Abstract. We provide a derivation in the context of a traffic flow model, and both analytical and numeri

        ON A FUNCTIONAL-DIFFERENTIAL EQUATION ARISING FROM A TRAFFIC FLOW MODEL∗ REINHARD ILLNER AND GEOFFREY MCGREGOR† Abstract. We provide a derivation in the context of a traffic flow model, and both analytical and numeri

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        Source URL: www.math.uvic.ca

        Language: English - Date: 2012-01-26 14:00:15
          15Variation of Parameters The general solution to a second order non- homogeneous differential equation can be reduced to solving 2 first order differential equations. This differs from reduction of order in that we have 2

          Variation of Parameters The general solution to a second order non- homogeneous differential equation can be reduced to solving 2 first order differential equations. This differs from reduction of order in that we have 2

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          Source URL: calculus7.com

          Language: English - Date: 2009-08-11 13:21:53
            16The Evans function: An example Consider the scalar partial differential equation (PDE) ut = uxx − u + u3 , which has the stationary solution u(x, t) = q(x) :=  u ∈ R,

            The Evans function: An example Consider the scalar partial differential equation (PDE) ut = uxx − u + u3 , which has the stationary solution u(x, t) = q(x) := u ∈ R,

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            Source URL: www.dam.brown.edu

            Language: English - Date: 2010-12-20 12:48:30
              17In order to solve this differential equation you look at it till a solution occurs to you. George Pólya

              In order to solve this differential equation you look at it till a solution occurs to you. George Pólya

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              Source URL: members.loria.fr

              - Date: 2018-03-14 07:02:09
                18Efficient Bayesian estimation and uncertainty quantification in ordinary differential equation models

                Efficient Bayesian estimation and uncertainty quantification in ordinary differential equation models

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                Source URL: arxiv.org

                - Date: 2016-02-22 20:42:34
                  19Bayesian inference for higher order ordinary differential  arXiv:1505.04242v1 [math.ST] 16 May 2015 equation models Prithwish Bhaumik and Subhashis Ghosal

                  Bayesian inference for higher order ordinary differential arXiv:1505.04242v1 [math.ST] 16 May 2015 equation models Prithwish Bhaumik and Subhashis Ghosal

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                  Source URL: arxiv.org

                  - Date: 2015-05-18 20:46:46
                    20DiffLQN: Differential Equation Analysis of Layered Queuing Networks Tabea Waizmann Mirco Tribastone

                    DiffLQN: Differential Equation Analysis of Layered Queuing Networks Tabea Waizmann Mirco Tribastone

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                    Source URL: dl.dropboxusercontent.com