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Parallel Computing Technologies

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Parallel Computing Technologies: 5th International Conference, PaCT-99 St. Petersburg, Russia, September 6–10, 1999 Proceedings<br />Author: Victor Malyshkin<br /> Published by Springer Berlin Heidelberg<br /> ISBN: 978-3-540-66363-8<br /> DOI: 10.1007/3-540-48387-X<br /><br />Table of Contents:<p></p><ul><li>Analytical Modeling of Parallel Applications in Heterogeneous Computing Environments: A Study of Cholesky Factorization </li><li>Skeletons and Transformations in an Integrated Parallel Programming Environment* </li><li>Sequential Unification and Aggressive Lookahead Mechanisms for Data Memory Accesses </li><li>A Coordination Model and Facilities for Efficient Parallel Computation </li><li>Parallelizing of Sequential Programs on the Basis of Pipeline and Speculative Features of the Operators* </li><li>Kinetic Model of Parallel Data Processing </li><li>PSA Approach to Population Models for Parallel Genetic Algorithms </li><li>Highly Accurate Numerical Methods for Incompressible 3D Fluid Flows on Parallel Architectures </li><li>Dynamic Task Scheduling with Precedence Constraints and Communication Delays </li><li>Two-Dimensional Scheduling of Algorithms with Uniform Dependencies </li><li>Consistent Lamport Clocks for Asynchronous Groups with Process Crashes </li><li>Comparative Analysis of Learning Methods of Cellular-Neural Associative Memory </li><li>Emergence and Propagation of Round Autowave in Cellular Neural Network </li><li>Parametric Behaviour Analysis for Time Petri Nets* </li><li>A Blackboard Approach for the Automatic Optimization of Parallel I/O Operations </li><li>Routing and Embeddings in Super Cayley Graphs </li><li>Implementing Cellular Automata Based Models on Parallel Architectures: The CAPP Project </li><li>Methods for Achieving Peak Computational Rates for Linear Algebra Operations on Superscalar RISC Processors </li><li>The Parallel Mathematical Libraries Project (PMLP): Overview, Design Innovations, and Preliminary Results </li><li>Implementing Model Checking and Equivalence Checking for Time Petri Nets by the RT-MEC Tool</li></ul>

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