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The refined theory of beams, which takes into account both rotary inertia and shear deformation, was developed jointly by Timoshenko and Ehrenfest in the years 1911-1912. In over a century since the theory was first articulated, tens of thousands of studies have been performed utilizing this theory in various contexts. Likewise, the generalization of the Timoshenko-Ehrenfest beam theory to plates was given by Uflyand and Mindlin in the years 1948-1951.The importance of these theories stems from the fact that beams and plates are indispensable, and are often occurring elements of every civil, mechanical, ocean, and aerospace structure.Despite a long history and many papers, there is not a single book that summarizes these two celebrated theories. This book is dedicated to closing the existing gap within the literature. It also deals extensively with several controversial topics, namely those of priority, the so-called 'second spectrum' shear coefficient, and other issues, and shows vividly that the above beam and plate theories are unnecessarily overcomplicated.In the spirit of Einstein's dictum, 'Everything should be made as simple as possible but not simpler,' this book works to clarify both the Timoshenko-Ehrenfest beam and Uflyand-Mindlin plate theories, and seeks to articulate everything in the simplest possible language, including their numerous applications.This book is addressed to graduate students, practicing engineers, researchers in their early career, and active scientists who may want to have a different look at the above theories, as well as readers at all levels of their academic or scientific career who want to know the history of the subject. The Timoshenko-Ehrenfest Beam and Uflyand-Mindlin Plate Theories are the key reference works in the study of stocky beams and thick plates that should be given their due and remain important for generations to come, since classical Bernoulli-Euler beam and Kirchhoff-Love theories are applicable for slender beams and thin plates, respectively.Related Link(s)
The untold story of the world's premier bourbon and the family that made it #1 American Still Life tells the intertwined true stories of America's favorite whiskey and the family dynasty that produces it to this very day. Jim Beam is the world's top-selling bourbon whiskey, with sales of over five million cases per year. Not a day has passed in the 207 years of Jim Beam's existence when a Beam family member has not been master distiller. Dedicated to quality, and dedicated to the family legacy, the Beams have shepherded their particularly American spirit to the top of their industry. And they've done it in an industry beset by challenges, from government regulation and prohibition, to changing consumer tastes, to fierce new global competition. By creating a brand of unparalleled quality and consistency, and by tying the success of their product with the good name of the family, the Beams have established a lasting legacy as perhaps one of the greatest family business dynasties in American history. Not just a simple history of "America's native spirit" (so named by an act of Congress in 1964) or a simple family history, American Still Life is a story of business success based on quality and attention to detail, constant innovation, revolutionary branding and advertising, and adaptation to the business environment. F. Paul Pacult (Walkill, NY) is recognized the world over as his generation's most accomplished and respected authority on beverage alcohol. He has written for many magazines, including Playboy, Wine and Spirits, Connoisseur, Whisky, Drink, Men's Journal, Cheers, Country Inns, Travel and Leisure, Bon Appetit, Decanter, and Food and Wine. Among his many accomplishments, he has hosted and coproduced two syndicated talk-radio programs and served as the primary expert on whiskey, beer, and wine for the History Channel documentary America Drinks: History in a Glass.
This new edition provides an up-to-date coverage of important theoretical models in the scheduling literature as well as significant scheduling problems that occur in the real world. It again includes supplementary material in the form of slide-shows from industry and movies that show implementations of scheduling systems. The main structure of the book as per previous edition consists of three parts. The first part focuses on deterministic scheduling and the related combinatorial problems. The second part covers probabilistic scheduling models; in this part it is assumed that processing times and other problem data are random and not known in advance. The third part deals with scheduling in practice; it covers heuristics that are popular with practitioners and discusses system design and implementation issues. All three parts of this new edition have been revamped and streamlined. The references have been made completely up-to-date. Theoreticians and practitioners alike will find this book of interest. Graduate students in operations management, operations research, industrial engineering, and computer science will find the book an accessible and invaluable resource. Scheduling - Theory, Algorithms, and Systems will serve as an essential reference for professionals working on scheduling problems in manufacturing, services, and other environments.
Full of information about living without a permanent residence, this complete collection contains helpful and informative tips for living far outside of cities and bereft of technology. All of the tips and advice have been edited down to what remains relevant in a technologically changing world, and it is crammed full of informative tips for biking, tents, showering, cooking, and living. Whether camping on the edges, living simply, or getting by on the road and loving it, this book is for modern nomads choosing alternative lifestyles to working 9–5 in the same place.