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Volume 60 of Reviews in Mineralogy and Geochemistry assesses the current state of knowledge of lunar geoscience, given the data sets provided by missions of the 1990's, and lists remaining key questions as well as new ones for future exploration to address. It documents how a planet or moon other than the world on which we live can be studied and understood in light of integrated suites of specific kinds of information. The Moon is the only body other than Earth for which we have material samples of known geologic context for study. This volume seeks to show how the different kinds of information gained about the Moon relate to each other and also to learn from this experience, thus allowing more efficient planning for the exploration of other worlds.
During the twenty years the authors have been associated with the field of radiation ecology, there has been a diversified and increasing use of radionuclides in applied and basic biological research. Prior to the advent of the atomic age in the 1940s the use of radionuclides as tracers was initiated, and following that period one observed a dramatically increased use in many disciplines. Concurrent with this increase there appeared many books and articles on radionuclide tech niques useful to biologists in general. Although only a few ecological applications were evident in these early years, ecologists were quick to see the opportunities available in their field. In the United States, major centers for such activities included Oak Ridge National Laboratory and the U. S. Atomic Energy Com mission's Savannah River Plant. At Oak Ridge National Laboratory Dr. Stanley I. Auerbach, director of ecological activities, encouraged with remarkable suc cess the use of tracers by his associates. Dr. Eugene P. Odum had the foresight to see that radionuclide tracers provided the means to solve many problems of interest to ecologists. Consequently, his research included some unique radio tracer applications at the Savannah River Plant. In addition he encouraged others involved in ecological activities at the Savannah River Plant to do likewise. Ecologists such as Dr. Robert C. Pendleton at the U. S. Atomic Energy Com mission's Hanford Works applied radionuclides in their research. To these early investigators and to those who followed we owe the oppportunity to write this book.
The studies collected in this volume deal with the interpretation of opera. In most cases the results are based on structural analysis, a concept which may require some clarification in this context. During the past de cade 'structure' and 'structural' have become particularly fashionable terms lacking exact denotation and used for the most divergent purposes. As employed here, structural analysis is concerned with such concepts as 'relationship', 'coherence' and 'continuity', more or less in contrast to formal analysis which deals with measurable material. In other words, I have analysed the structure of an opera by seeking and examining factors in the musico-dramatic process, whereas analysts of form are generally preoccupied with the study of elements contained in the musical object. Though admittedly artificial, the dichotomy of form and structure may elucidate the present situation with regard to the study of opera. Today, nearly one hundred years after the death of Wagner, the proclaimed anti thesis of Oper und Drama is generally taken for what it really was: a means to propagate the philosophy of its inventor. The conception of opera (whether 'continuous' or composed of 'numbers') as a special form of drama is no longer contested. Nevertheless musical scholarship has failed to draw the consequences from this view and few scholars realize the need to study general theory of drama and more specifically the dramatic experience.
The second edition of a comprehensive introduction to machine learning approaches used in predictive data analytics, covering both theory and practice. Machine learning is often used to build predictive models by extracting patterns from large datasets. These models are used in predictive data analytics applications including price prediction, risk assessment, predicting customer behavior, and document classification. This introductory textbook offers a detailed and focused treatment of the most important machine learning approaches used in predictive data analytics, covering both theoretical concepts and practical applications. Technical and mathematical material is augmented with explanatory worked examples, and case studies illustrate the application of these models in the broader business context. This second edition covers recent developments in machine learning, especially in a new chapter on deep learning, and two new chapters that go beyond predictive analytics to cover unsupervised learning and reinforcement learning.
Medical and Paramedical graduates aspiring for higher education planning to take PG ought to appear in entrance examinations. These entrance examinations are usually patterned in objective type. Biochemistry forms an integral part of curriculum of medical and paramedical courses. It is an important subject and deals with various Chemical, Biochemical, and Physiological reactions and processes that take place inside a living system. Quite a large number of MCQs appear in PG medical and paramedica.
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The influence of explorers, missionaries, beachcombers, labour traders and colonial administrators upon the culture of the Pacific Islands' peoples.
“The pigments he concocts from these humble beginnings are as fun to make as they are eye-opening to work with . . . the world never quite looks the same.” —MarthaStewart.com A 2018 Best Book of the Year—The Guardian The Toronto Ink Company was founded in 2014 by designer and artist Jason Logan as a citizen science experiment to make eco-friendly, urban ink from street-harvested pigments. In Make Ink, Logan delves into the history of inkmaking and the science of distilling pigment from the natural world. Readers will learn how to forage for materials such as soot, rust, cigarette butts, peach pits, and black walnut, then how to mix, test, and transform these ingredients into rich, vibrant inks that are sensitive to both place and environment. Organized by color, and featuring lovely minimalist photography throughout, Make Ink combines science, art, and craft to instill the basics of ink making and demonstrate the beauty and necessity of engaging with one of mankind’s oldest tools of communication. “Logan demystifies the process, encouraging experimentation and taking a fresh look at urban environments.” —NPR “The book is full of inspiration and takes a lot of the mystery out of ink making, at least at its simplest level. And it also reminds me why I love ink—any ink or liquid color as much as I do.” —The Well-Appointed Desk “Quite a few recipes . . . that use color from the kitchen: carrots, black beans, blueberries, turmeric, and onion skins all make beautiful ink colors.” —Design Observer “Make Ink opens up about methods, providing an open source guide to DIY ink.” —CityLab