By Berestovskii V. N.
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He was happily married and has two sons, one daughter and four grandchildren. He will be sadly missed by those who knew him and his friendly nature. Photography: Frantiˇsek Peterka attending the 4th International Symposium on Investigations of Non-Linear Dynamic Effects in Production Systems in Chemnitz, April 2003. Part IV Non-conventional Manufacturing Processes Nonlinear Dynamics of Production Systems. Edited by G. Radons and R. Neugebauer Copyright c 2004 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim ISBN 3-527-40430-9 With classical manufacturing techniques, such as turning or milling, the material is usually cut with a solid tool typically made from specially treated steel or certain ceramics, etc.
Helbing, Modeling and optimization of supply networks: Lessons from trafﬁc dynamics, Chapter 6, this book.  C. J. Ramadge, A topological analysis of a family of dynamical systems with non-standard chaotic and periodic behavior, International Journal of Control 67(6) 1997, 979–996. M. R. Towill, Continued learning and the work study observer, Work Study and Management Services 18 (1974), 420–427.  K. Kempf, Intel, personal communications (2001).  I. Katzorke and A. Pikovsky, Chaos and complexity in simple models of production dynamics, Discrete Dynamics in Nature and Society 5 (2000), 179–187.
The strongly nonlinear nature of friction becomes apparent in the observed slip-stick motion and in a complicated hysteretic behavior. Despite this an accurate modeling is possible as is shown in this paper. The last contribution to this part by H. Nijmeijer and A. Rodriguez-Angeles deals with a dynamical mechanical problem of a quite different nature, which is of incrasing importance in modern industrial applications: the coordination of processes in general and especially the coordination of motions of mechnical robotic systems.
A. D. Alexandrovs length manifolds with one-sided bounded curvature by Berestovskii V. N.