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Roland Glowinski (ed.) | Akateeminen Kirjakauppa

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Partial Differential Equations : Modelling and Numerical Simulation
Tekijä: Roland Glowinski (ed.); Pekka Neittaanmäki (ed.)
Kustantaja: Springer (2008)
Saatavuus: Noin 16-19 arkipäivää
EUR   138,50
Partial Differential Equations : Modelling and Numerical Simulation
Tekijä: Roland Glowinski (ed.); Pekka Neittaanmäki (ed.)
Kustantaja: Springer (2010)
Saatavuus: Noin 16-19 arkipäivää
EUR   138,50
Splitting Methods in Communication, Imaging, Science, and Engineering
Tekijä: Roland Glowinski (ed.); Stanley J. Osher (ed.); Wotao Yin (ed.)
Kustantaja: Springer (2018)
Saatavuus: Noin 16-19 arkipäivää
EUR   155,60
Hypersonic Flows for Reentry Problems : Volume I: Survey Lectures and Test Cases Analysis Proceedings of Workshop Held in Antibe
Tekijä: Jean-Antoine Desideri (ed.); Roland Glowinski (ed.); Jacques Periaux (ed.)
Kustantaja: Springer (2011)
Saatavuus: Noin 16-19 arkipäivää
EUR   97,90
Conjugate Gradient Algorithms and Finite Element Methods
Tekijä: Michal Krizek (ed.); Pekka Neittaanmäki (ed.); Roland Glowinski (ed.); Sergey Korotov (ed.)
Kustantaja: Springer (2012)
Saatavuus: Noin 16-19 arkipäivää
EUR   97,90
    
Partial Differential Equations : Modelling and Numerical Simulation
138,50 €
Springer
Sivumäärä: 292 sivua
Asu: Kovakantinen kirja
Painos: 2008
Julkaisuvuosi: 2008, 07.07.2008 (lisätietoa)
Kieli: Englanti
For more than 250 years partial di?erential equations have been clearly the most important tool available to mankind in order to understand a large variety of phenomena, natural at ?rst and then those originating from - man activity and technological development. Mechanics, physics and their engineering applications were the ?rst to bene?t from the impact of partial di?erential equations on modeling and design, but a little less than a century ago the Schr¨ odinger equation was the key opening the door to the application of partial di?erential equations to quantum chemistry, for small atomic and molecular systems at ?rst, but then for systems of fast growing complexity. The place of partial di?erential equations in mathematics is a very particular one: initially, the partial di?erential equations modeling natural phenomena were derived by combining calculus with physical reasoning in order to - press conservation laws and principles in partial di?erential equation form, leading to the wave equation, the heat equation, the equations of elasticity, the Euler and Navier–Stokes equations for ?uids, the Maxwell equations of electro-magnetics, etc. It is in order to solve ‘constructively’ the heat equation that Fourier developed the series bearing his name in the early 19th century; Fourier series (and later integrals) have played (and still play) a fundamental roleinbothpureandappliedmathematics,includingmanyareasquiteremote from partial di?erential equations. On the other hand, several areas of mathematics such as di?erential ge- etry have bene?ted from their interactions with partial di?erential equations.

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