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Involution - The Formal Theory of Differential Equations and its Applications in Computer Algebra
Werner M. Seiler
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2009)
Kovakantinen kirja
129,90
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Involution - The Formal Theory of Differential Equations and its Applications in Computer Algebra
Werner M. Seiler
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2012)
Pehmeäkantinen kirja
129,90
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Computer Algebra in Scientific Computing - 16th International Workshop, CASC 2014, Warsaw, Poland, September 8-12, 2014. Proceed
Vladimir P. Gerdt; Wolfram Koepf; Werner M. Seiler; Evgenii V. Vorozhtsov
Springer International Publishing AG (2014)
Pehmeäkantinen kirja
49,60
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Computer Algebra in Scientific Computing - 17th International Workshop, CASC 2015, Aachen, Germany, September 14-18, 2015, Proce
Vladimir P. Gerdt; Wolfram Koepf; Werner M. Seiler; Evgenii V. Vorozhtsov
Springer International Publishing AG (2015)
Pehmeäkantinen kirja
49,60
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Computer Algebra in Scientific Computing - 18th International Workshop, CASC 2016, Bucharest, Romania, September 19-23, 2016, Pr
Vladimir P. Gerdt; Wolfram Koepf; Werner M. Seiler; Evgenii V. Vorozhtsov
Springer International Publishing AG (2016)
Pehmeäkantinen kirja
49,60
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Computer Algebra in Scientific Computing - 19th International Workshop, CASC 2017, Beijing, China, September 18-22, 2017, Procee
Vladimir P. Gerdt; Wolfram Koepf; Werner M. Seiler; Evgenii V. Vorozhtsov
Springer International Publishing AG (2017)
Pehmeäkantinen kirja
68,90
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Computer Algebra in Scientific Computing - 20th International Workshop, CASC 2018, Lille, France, September 17–21, 2018, Proceed
Vladimir P. Gerdt; Wolfram Koepf; Werner M. Seiler; Evgenii V. Vorozhtsov
Springer International Publishing AG (2018)
Pehmeäkantinen kirja
64,10
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Computer Algebra in Scientific Computing - 21st International Workshop, CASC 2019, Moscow, Russia, August 26–30, 2019, Proceedin
Matthew England; Wolfram Koepf; Timur M. Sadykov; Werner M. Seiler; Evgenii V. Vorozhtsov
Springer Nature Switzerland AG (2019)
Pehmeäkantinen kirja
49,60
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Involution - The Formal Theory of Differential Equations and its Applications in Computer Algebra
129,90 €
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Sivumäärä: 650 sivua
Asu: Kovakantinen kirja
Painos: 2010 ed.
Julkaisuvuosi: 2009, 15.11.2009 (lisätietoa)
Kieli: Englanti
Tuotesarja: Algorithms and Computation in Mathematics 24
As long as algebra and geometry proceeded along separate paths, their advance was slow and their applications limited. But when these sciences joined company they drew from each other fresh vitality and thenceforward marched on at rapid pace towards perfection Joseph L. Lagrange The theory of differential equations is one of the largest elds within mathematics and probably most graduates in mathematics have attended at least one course on differentialequations. But differentialequationsare also offundamentalimportance in most applied sciences; whenever a continuous process is modelled mathem- ically, chances are high that differential equations appear. So it does not surprise that many textbooks exist on both ordinary and partial differential equations. But the huge majority of these books makes an implicit assumption on the structure of the equations: either one deals with scalar equations or with normal systems, i. e. with systems in Cauchy-Kovalevskaya form. The main topic of this book is what happens, if this popular assumption is dropped. This is not just an academic exercise; non-normal systems are ubiquitous in - plications.
Classical examples include the incompressible Navier-Stokes equations of uid dynamics, Maxwell's equations of electrodynamics, the Yang-Mills eq- tions of the fundamental gauge theories in modern particle physics or Einstein's equations of general relativity. But also the simulation and control of multibody systems, electrical circuits or chemical reactions lead to non-normal systems of - dinary differential equations, often called differential algebraic equations. In fact, most of the differentialequationsnowadaysencounteredby engineersand scientists are probably not normal.

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