Differential Models: An Introduction with Mathcad / Edition 1

Differential Models: An Introduction with Mathcad / Edition 1

by Alexander Solodov, Valery Ochkov
ISBN-10:
3642058787
ISBN-13:
9783642058783
Pub. Date:
11/05/2010
Publisher:
Springer Berlin Heidelberg
ISBN-10:
3642058787
ISBN-13:
9783642058783
Pub. Date:
11/05/2010
Publisher:
Springer Berlin Heidelberg
Differential Models: An Introduction with Mathcad / Edition 1

Differential Models: An Introduction with Mathcad / Edition 1

by Alexander Solodov, Valery Ochkov
$109.99 Current price is , Original price is $109.99. You
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Overview

Differential equations are often used in mathematical models for technological processes or devices. However, the design of a differential mathematical model is crucial and difficult in engineering.

As a hands-on approach to learn how to pose a differential mathematical model the authors have selected 9 examples with important practical application and treat them as following:

- Problem-setting and physical model formulation

- Designing the differential mathematical model

- Integration of the differential equations

- Visualization of results

Each step of the development of a differential model is enriched by respective Mathcad 11 commands, todays necessary linkage of engineering significance and high computing complexity.

To support readers of the book with respect to changes that might occur in future versions of Mathcad (Mathcad 12 for example), updates of examples, codes etc. can be downloaded from the following web page www.thermal.ru. Readers can work with Mathcad-sheets of the book without any Mathcad by help Mathcad Application Server Technology.


Product Details

ISBN-13: 9783642058783
Publisher: Springer Berlin Heidelberg
Publication date: 11/05/2010
Edition description: Softcover reprint of hardcover 1st ed. 2005
Pages: 232
Product dimensions: 6.10(w) x 9.25(h) x 0.36(d)

Table of Contents

Differential Mathematical Models.- Integrable Differential Equations.- Dynamic Model of the System with Heat Engineering.- Stiff Differential Equations.- Heat Transfer near the Critical Point.- The Faulkner-Skan Equation of Boundary Layer.- The Rayleigh Equation: Hydronamic Instability.- Kinematic Waves of Concentration in Ion-Exchange Filters.- Kinematic Shock Waves.- Numerical Modeling of the CPU-board Temperature Field.- Temperature Waves.
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