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Titlebook: Mathesis universalis – Die aktuelle Relevanz der „Strukturen der Lebenswelt“; Jochen Dreher Book 2021 Springer Fachmedien Wiesbaden GmbH,

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Thomas Dörfler,Eberhard Rothfußled or uncontrolled stochastic systems are either diffusions or jump diffusions. Stochastic control is a very active area of research and new problem formulations and sometimes surprising applications appear regularly. We have chosen forms of the models which cover the great bulk of the formulations
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nor the jump coefficient .(⋅) depended on the control. However, the control dependent forms are treated by methods which are very similar to those used in Chapters 10–12, and identical convergence results are obtainable under the natural extensions of the conditions used in those chapters. Local con
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Andreas Göttlich the current time. The cost functions were all over an unbounded interval, whether of the discounted form, of the form where control stops when a set is first exited, or of the average cost per unit time type. Time did not enter explicitly into the stopping criterion. All of the results and problem
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Daniela Griselda Lópeze book begins with some motivational and background material in the introductory chapters and is divided into three parts. Part I covers numerical stochastic ordinary differential equations. Here the authors start with numerical methods for SDEs with delay using the Wong-Zakai approximation and fini
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Martin Endreß, since the problem is nonlinear we apply the stochastic collocation method (SCM) using Smolyak’s sparse grid for a one-dimensional piston problem and test its computational performance. This is a classical problem in every aerodynamics textbook with an analytical solution if the piston velocity is
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Dominik Schreiber, since the problem is nonlinear we apply the stochastic collocation method (SCM) using Smolyak’s sparse grid for a one-dimensional piston problem and test its computational performance. This is a classical problem in every aerodynamics textbook with an analytical solution if the piston velocity is
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e book begins with some motivational and background material in the introductory chapters and is divided into three parts. Part I covers numerical stochastic ordinary differential equations. Here the authors start with numerical methods for SDEs with delay using the Wong-Zakai approximation and fini
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Benjamin Wannenmacher, since the problem is nonlinear we apply the stochastic collocation method (SCM) using Smolyak’s sparse grid for a one-dimensional piston problem and test its computational performance. This is a classical problem in every aerodynamics textbook with an analytical solution if the piston velocity is
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