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Provides descriptions and prices for collectible knives, along with information about collecting the item, different types and brands, main components, and factors that can affect its value.
A student-friendly textbook that describes ancient soils, how they may be identified, and their use in paleoenvironmental reconstruction Ancient soils contain vital mineralogical, geochemical, textural, and paleontological information about the continental environments in which they formed. Advances in isotope geochemistry and sequence-stratigraphic models allow evermore detailed reconstructions of environmental change from paleosols, and new insights into such diverse topics as atmospheric chemistry, global change, paleoecology, geobiology and mass extinction. This book educates readers about the field of paleopedology and how it remains a key area of investigation for geologists and environmental scientists seeking to learn about, and reconstruct, the condition and evolution of paleoenvironments. Presented in three sections—Soils and Palesols; Factors in Soil Formation; and Fossil Record of Soils—Soils of the Past: An Introduction to Paleopedology describes the main types of ancient soil, procedures for identifying and studying them, their classification and, most significantly, a wide array of examples of how paleosols have been used for paleoenvironmental reconstruction. The book is an excellent reflection of the current state of knowledge and can be widely adopted over many disciplines. All chapters have been revised and updated to reflect advances in soil science in the last two decades New tables display a wealth of new data added since the 2nd edition published in 2001 New figures have been added and line art has been redrawn to improve clarity and promote understanding References have been updated throughout Soils of the Past, 3rd Edition is written for advanced undergraduates studying paleopedology as part of a degree in geology, environmental science, or physical geography, and for interested professional earth scientists.
Adsorption of Metals by Geomedia II serves as a needed resource for this topic which has received much attention during the past 25 years. The book provides an in-depth review of the field, followed by numerous chapters that document the current status of adsorption research for a variety of metals by geomedia ranging from individual minerals to sediments and soils. Adsorption mechanisms are detailed and precipitation is presented as a distinct sorption process. Virtually all factors affecting the extent of metal adsorption are examined, including the effects of selected anions, competition among metals, pH, metal concentration, loading, variable metal adsorption capacity, ionic strength, hydrogen exchange and stoichiometry, and solids concentration. A variety of adsorption models are briefly presented and some are used to extend laboratory studies to field sites. This is a compilation of 25 peer reviewed papers from among the 60+ platform and poster presentations of the symposium "Adsorption of Metals to Geomedia II" at the American Chemical Society (ACS) Meeting, March 27-29, 2006 in Atlanta, Georgia, USA. This symposium is a follow-up to the original held in 1996.* Learn the tools and techniques from leading academics and industry experts * One stop practical resource and guide for those in the field* Keep informed and up to date on all the latest advancements in technology
Presentations and discussions at a workshop held May 17-18, 1988 in Tempe, Arizona on problems encountered in, and recommendations for improving, current and potential industrial rock and mineral resource availability in Arizona.
Established in 1911, The Rotarian is the official magazine of Rotary International and is circulated worldwide. Each issue contains feature articles, columns, and departments about, or of interest to, Rotarians. Seventeen Nobel Prize winners and 19 Pulitzer Prize winners – from Mahatma Ghandi to Kurt Vonnegut Jr. – have written for the magazine.
Across the country, white ethnics have fled cities for suburbs. But many have stayed in their old neighborhoods. When the busing crisis erupted in Boston in the 1970s, Catholics were in the forefront of resistance. Jews, 70,000 of whom had lived in Roxbury and Dorchester in the early 1950s, were invisible during the crisis. They were silent because they departed the city more quickly and more thoroughly than Boston's Catholics. Only scattered Jews remained in Dorchester and Roxbury by the mid-1970s. In telling the story of why the Jews left and the Catholics stayed, Gerald Gamm places neighborhood institutions--churches, synagogues, community centers, schools--at its center. He challenges the long-held assumption that bankers and real estate agents were responsible for the rapid Jewish exodus. Rather, according to Gamm, basic institutional rules explain the strength of Catholic attachments to neighborhood and the weakness of Jewish attachments. Because they are rooted, territorially defined, and hierarchical, parishes have frustrated the urban exodus of Catholic families. And because their survival was predicated on their portability and autonomy, Jewish institutions exacerbated the Jewish exodus. Gamm shows that the dramatic transformation of urban neighborhoods began not in the 1950s or 1960s, but in the 1920s. Not since Anthony Lukas's Common Ground has there been a book that so brilliantly explores not just Boston's dilemma but the roots of the American urban crisis.
Volume 58 of Reviews in Mineralogy and Geochemistry presents 22 chapters covering many of the important modern aspects of thermochronology. The coverage of the chapters ranges widely, including historical perspective, analytical techniques, kinetics and calibrations, modeling approaches, and interpretational methods. In general, the chapters focus on intermediate- to low-temperature thermochronometry, though some chapters cover higher temperature methods such as monazite U/Pb closure profiles, and the same theory and approaches used in low-temperature thermochronometry are generally applicable to higher temperature systems. The widely used low- to medium-temperature thermochronometric systems are reviewed in detail in these chapters, but while there are numerous chapters reviewing various aspects of the apatite (U-Th)/He system, there is no chapter singularly devoted to it, partly because of several previous reviews recently published on this topic.