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The Description for this book, Stability and Complexity in Model Ecosystems. (MPB-6), will be forthcoming.
This book deals with infectious diseases -- viral, bacterial, protozoan and helminth -- in terms of the dynamics of their interaction with host populations. The book combines mathematical models with extensive use of epidemiological and other data. This analytic framework is highly useful for the evaluation of public health strategies aimed at controlling or eradicating particular infections. Such a framework is increasingly important in light of the widespread concern for primary health care programs aimed at such diseases as measles, malaria, river blindness, sleeping sickness, and schistosomiasis, and the advent of AIDS/HIV and other emerging viruses. Throughout the book, the mathematics ...
In this totally revised and expanded edition of 'Physicians of the Soul', Robert May examines how the greatest spiritual teachers of the world's religions serve as guides to the greatest human adventure: the quest for wisdom and the inner search for Self.
Fans of the greatest reindeer of all will have a double helping of Christmas fun with this collection, which includes the title story plus "Rudolph Shines Again." Near and dear to so many hearts, this is the story, the original story, of Rudolph the Red-Nosed Reindeer, written by Robert L. May in 1939. Rudolph, loveable and generous, humble and good, embodies the spirit of Christmas, and reminds us of the magical possibilities that exist within us all. In the companion story, "Rudolph Shines Again," Rudolph loses his light and is certain he is of no use to Santa now; he decides to go far away, where no one knows how bright his nose used to be. But on his journey, something magical happens. As enchanting as the original story, Robert L. May's uplifting sequel to his classic tale Rudolph the Red-Nosed Reindeer is a joyous celebration of the spirit of Christmas. Also included in the audio is a selection of holiday songs for kids to help you ring in the season: "Jingle Bells," "Up on the Housetop," "Deck the Halls," "Over the River and through the Woods," "We Wish You a Merry Christmas," and "O, Christmas Tree."
This volume presents an overview of current accomplishments and future directions in ecological theory. The twenty-three chapters cover a broad range of important topics, from the physiology and behavior of individuals or groups of organisms, through population dynamics and community structure, to the ecology of ecosystems and the geochemical cycles of the entire biosphere. The authors focus on ways in which theory, whether expressed mathematically or verbally, can contribute to defining and solving fundamental problems in ecology. A second aim is to highlight areas where dialogue between theorists and empiricists is likely to be especially rewarding. The authors are R. M. Anderson, C. W. Cl...
The editors felt that the time was right for a book on an important topic, the history and development of the notions of chaotic attractors and their "natu ral" invariant measures. We wanted to bring together a coherent collection of readable, interesting, outstanding papers for detailed study and comparison. We hope that this book will allow serious graduate students to hold seminars to study how the research in this field developed. Limitation of space forced us painfully to exclude many excellent, relevant papers, and the resulting choice reflects the interests of the editors. Since James Alan Yorke was born August 3, 1941, we chose to have this book commemorate his sixtieth birthday, honoring his research in this field. The editors are four of his collaborators. We would particularly like to thank Achi Dosanjh (senior editor math ematics), Elizabeth Young (assistant editor mathematics), Joel Ariaratnam (mathematics editorial), and Yong-Soon Hwang (book production editor) from Springer Verlag in New York for their efforts in publishing this book.
Robert May (1588-c1664) was an English cook and author. His father was one of the ablest cooks in his time, and his first tutor in the knowledge and practice of cookery; under whom having attained to some perfection in this art, the old Lady Dormer sent him over into France, where he continued five years, being in the Family of a noble Peer, and first President of Paris; where he gained not only the French tongue but also bettered his knowledge in his cookery, and returning again into England, was bound an Apprentice in London to Mr. Arthur Hollinsworth in Newgate Market, one of the ablest work-men in London, cook to the Grocers Hall and Star Chamber. His famous book, The Accomplisht Cook; or, The Art and Mystery of Cookery was published 1660.
Theoretical Ecology: concepts and applications continues the authoritative and established sequence of theoretical ecology books initiated by Robert M. May which helped pave the way for ecology to become a more robust theoretical science, encouraging the modern biologist to better understand the mathematics behind their theories. This latest instalment builds on the legacy of its predecessors with a completely new set of contributions. Rather than placing emphasis on the historical ideas in theoretical ecology, the Editors have encouraged each contribution to: synthesize historical theoretical ideas within modern frameworks that have emerged in the last 10-20 years (e.g. bridging population ...
"Wald's book is clearly the first textbook on general relativity with a totally modern point of view; and it succeeds very well where others are only partially successful. The book includes full discussions of many problems of current interest which are not treated in any extant book, and all these matters are considered with perception and understanding."—S. Chandrasekhar "A tour de force: lucid, straightforward, mathematically rigorous, exacting in the analysis of the theory in its physical aspect."—L. P. Hughston, Times Higher Education Supplement "Truly excellent. . . . A sophisticated text of manageable size that will probably be read by every student of relativity, astrophysics, and field theory for years to come."—James W. York, Physics Today