Modeling, simulation and optimization of complex processes : proceedings of the third International Conference on High Performance Scientific Computing, March 6-10, 2006, Hanoi, Vietnam /

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Bibliographic Details
Meeting name:International Conference on High Performance Scientific Computing (3rd : 2006 : Hanoi Institute of Mathematics)
Imprint:Berlin : Springer, c2008.
Description:1 online resource (xi, 666 p.) : ill. (some col.)
Language:English
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/8886194
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Other authors / contributors:Bock, Hans Georg.
ISBN:9783540794097
3540794093
9783540794080 (pbk.)
3540794085 (pbk.)
Notes:Includes bibliographical references.
Description based on print version record.
Summary:This proceedings volume contains a selection of papers presented at the Third International Conference on High Performance Scientific Computing held at the Hanoi Institute of Mathematics, Vietnamese Academy of Science and Technology (VAST), March 6-10, 2006. The conference has been organized by the Hanoi Institute of Mathematics, Interdisciplinary Center for Scientific Computing (IWR), Heidelberg, and its International PhD Program "Complex Processes: Modeling, Simulation and Optimization'', and Ho Chi Minh City University of Technology. The contributions cover the broad interdisciplinary.
Other form:Print version: International Conference on High Performance Scientific Computing (3rd : 2006 : Hanoi Institute of Mathematics). Modeling, simulation and optimization of complex processes. Berlin : Springer, c2008 9783540794080 3540794085
Table of Contents:
  • Development of a Fault Detection Model-Based Controller; Sensitivity Generation in an Adaptive BDF-Method; The gVERSE RF Pulse: An Optimal Approach to MRI Pulse Design; Modelling the Performance of the Gaussian Chemistry Code on x86 Architectures; Numerical Simulation of the December 26, 2004: Indian Ocean Tsunami; Approximate Dynamic Programming for Generation of Robustly Stable Feedback Controllers; Integer Programming Approaches to Access and Backbone IP Network Planning; An Adaptive Fictitious-Domain Method for Quantitative Studies of Particulate Flows.