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For more than a decade, coaches have relied on one classic resource for their every coaching need. Featuring the advice, wisdom, and insights from the sport’s legendary coaches, The Softball Coaching Bible, Volume I, has become the essential guide for coaches at every level worldwide. The Softball Coaching Bible, Volume II, picks up where the first volume left off, providing more instruction, guidance, recommendations, and expertise for every aspect of the sport. The NFCA has put together another stellar lineup of coaches who share the guidance that helped them establish such well-respected softball programs: Patty Gasso Jeanne Tostenson-Scarpello Chris Bellotto George Wares Kris Herman Bob Ligouri Karen Weekly Elaine Sortino Frank Griffin Bonnie Tholl Michelle Venturella Beth Torina Jenny Allard Ehren Earleywine Erica Beach Stacey Nuveman John Tschida Teena Murray Donna Papa Carol Bruggeman Kyla Holas Kelly Inouye-Perez Sandy Montgomery Rachel Lawson Kristi Bredbenner Deanna Gumpf It’s all here—developing players, building a winning program, assessing and refining essential skills and techniques, and incorporating the most effective strategies for any opponent or in-game situation. If you coach the sport and want a competitive edge in today’s game, The Softball Coaches Bible, Volume II, is the must-have resource for every season.
Masters Theses in the Pure and Applied Sciences was first conceived, published, and dis· seminated by the Center for Information and Numerical Data Analysis and Synthesis (CINDAS) *at Purdue University in 1957, starting its coverage of theses with the academic year 1955. Beginning with Volume 13, the printing and dissemination phases of the ac· tivity were transferred to University Microfilms/Xerox of Ann Arbor, Michigan, with the thought that such an arrangement would be more beneficial to the academic and general scientific and technical community. After five years of this joint undertaking we had concluded that it was in the interest of all concerned if the printing and distribution of the volume were handled by an international publishing house to assure improved service and broader dissemination. Hence, starting with Volume 18, Masters Theses in the Pure and Applied Sciences has been disseminated on a worldwide basis by Plenum Publishing Corporation of New York, and in the same year the coverage was broadened to include Canadian universities. All back issues can also be ordered from Plenum. We have reported in Volume 20 (thesis year 1975) a total of 10,374 theses titles from 28 Canadian and 239 United States universities. We are sure that this broader base for theses titles reported will greatly enhance the value of this important annual reference work. The organization of Volume 20 is identical to that of past years. It consists of theses titles arranged by discipline and by university within each discipline.
Modeling complex biological, chemical, and physical systems, in the context of spatially heterogeneous mediums, is a challenging task for scientists and engineers using traditional methods of analysis. Modeling in Applied Sciences is a comprehensive survey of modeling large systems using kinetic equations, and in particular the Boltzmann equation and its generalizations. An interdisciplinary group of leading authorities carefully develop the foundations of kinetic models and discuss the connections and interactions between model theories, qualitative and computational analysis and real-world applications. This book provides a thoroughly accessible and lucid overview of the different aspects, models, computations, and methodology for the kinetic-theory modeling process. Topics and Features: * Integrated modeling perspective utilized in all chapters * Fluid dynamics of reacting gases * Self-contained introduction to kinetic models * Becker–Doring equations * Nonlinear kinetic models with chemical reactions * Kinetic traffic-flow models * Models of granular media * Large communication networks * Thorough discussion of numerical simulations of Boltzmann equation This new book is an essential resource for all scientists and engineers who use large-scale computations for studying the dynamics of complex systems of fluids and particles. Professionals, researchers, and postgraduates will find the book a modern and authoritative guide to the topic.