Join BookitisSave favorites, build lists, and follow creators.

Progress in Differential-Algebraic Equations

Work detail

Bookitis Pick
Progress in Differential-Algebraic Equations
PI
Michael GüntherAndreas BartelE. Jan W. ter MatenSebastian SchöpsPeter C. Müller2 editions

This book contains the proceedings of the 8th Workshop on Coupled Descriptor Systems held March 2013 in the Castle of Eringerfeld, Geseke in the neighborhood of Paderborn, Germany. It examines the wide range of current research topics in descriptor systems, including mathematical modeling, index analysis, wellposedness of problems, stiffness and different time-scales, cosimulation and splitting methods and convergence analysis. In addition, the book also presents applications from the automotive and circuit industries that show that descriptor systems provide challenging problems from the point of view of both theory and practice.   The book contains nine papers and is organized into three parts: control, simulation, and model order reduction. It will serve as an ideal resource for applied mathematicians and engineers, in particular those from mechanics and electromagnetics, who work with coupled differential equations.

Overview

Shared work-level identity and catalog context.

5 credited authorsSearch language english

Bookitis keeps work pages focused on the shared book identity and the editions that actually belong to it. Unrelated books should not appear here as primary content.

Contributors

People credited with this work in the active catalog.

  • Michael Günther

    Author profile in the active Bookitis catalog

    Open Author
  • Andreas Bartel

    Author profile in the active Bookitis catalog

    Open Author
  • E. Jan W. ter Maten

    Author profile in the active Bookitis catalog

    Open Author
  • Sebastian Schöps

    Author profile in the active Bookitis catalog

    Open Author
  • Peter C. Müller

    Author profile in the active Bookitis catalog

    Open Author

Editions

Publication-specific versions linked to this work only.