The Paradox Basin is a geologic area in southeastern Utah defined by the location of Pennsylvanian salt deposits. The Basin is bounded by the Uncompahgre Uplift to the east and north, the San Rafael Swell, the Circle Cliffs Uplift and the Monument Upwarp to the west, and the Defiance-Zuni Uplift and the Four Corners Platform to the south. The basin is divided into two principal tectonic subprovinces - the Paradox Fold and Fault belt to the north and the Blanding Basin to the south. The Fold and Fault Belt is an area of dominantly northwest-trending salt-cored anticlinal structures. These structures are rooted in the Precambrian basement and have influenced the stratigraphy (deposition) and structure (tectonics) of the Mississippian, Pennsylvanian, and younger formations deposited across them. The Blanding Basin was also a structural low during Pennsylvanian time. It is primarily an area of carbonate-organic mound (bioherm and bioclastic mound) deposition, which forms the most common type of reservoir for petroleum found in the region. This study includes an individual oil and gas field report and a presentation of the regional structure. Sixty-three individual petroleum fields were identified in the Utah portion of the Paradox Basin, and each are represented by data outlining the nature of the petroleum reservoir, along with its geology, structure, and location. The majority of the fields are located in the Blanding Basin subprovince. The regional structure is represented by a structure map of the Ismay zone of the Paradox Formation (Plate 1), elevation at which first salt is encountered in the Paradox Formation (Plate 2), and an isopach map of the salt bed interval in the Paradox Formation (Plate 3). The Ismay Member was chosen to be a representative oil horizon of the Paradox Basin and illustrates the predominant tectonic structures as well as the subtle petroleum related structures. The isopach map of the salt bed interval determines the evaporite boundary in the Basin and illustrates the fold and fault subprovince and corresponding structures. 162 pages + 4 plates
3 books illuminate the cutting edge medical research that could save your life Right now, science is transforming what we know about preserving and improving human health. These three extraordinary books take you to the cutting edge of emerging science, presenting new findings that might someday save your life. In Antibiotic Resistance: Understanding and Responding to an Emerging Crisis, Karl S. Drlica and David S. Perlin presents a thorough and authoritative overview of the growing resistance of pathogenic bacteria to antibiotics, and what this means to our ability to control and treat infectious diseases. The authors answer crucial questions such as: What is resistance? How does it emerge? How do common human activities promote resistance? What can we do about it? How can we strengthen our defenses against resistance, minimize our risks, extend the effectiveness of current antibiotics, and find new ones faster? Next, in Chips, Clones, and Living Beyond 100: How Far Will the Biosciences Take Us?, Paul and Joyce A. Schoemaker tour the remarkable field of biosciences as it stands today, and preview the directions and innovations that are most likely to emerge in the coming years. They offer a clear, non-technical overview of crucial current developments that are likely to have enormous impact, addressing issues ranging from increased human longevity to global warming, bio-warfare to personalized medicine. Along the way, they illuminate each of the exciting technologies and hot-button issues associated with contemporary biotechnology - including stem cells, cloning, probiotics, DNA microarrays, proteomics, gene therapy, and more. Finally, in It Takes a Genome, Greg Gibson posits a revolutionary new hypothesis: our genome is out of equilibrium, both with itself and its environment. Our bodies weren’t designed to subsist on fat and sugary foods; our immune systems aren’t designed for today’s clean, bland environments; our minds aren’t designed to process hard-edged, artificial electronic inputs from dawn ‘til midnight. That, says Gibson, is why so many of us suffer from chronic diseases that barely touched our ancestors. Gibson reveals the stunningly complex ways genes cooperate and interact; illuminates the genetic “mismatches” that lead to cancer, diabetes, inflammatory and infectious diseases, AIDS, depression, and senility; and considers surprising new evidence for genetic variations in human psychology. From world-renowned leaders and experts, including Karl S. Drlica, David S. Perlin, Paul J. H. Schoemaker, Joyce A. Schoemaker, and Greg Gibson
Authored by two leading investigators, this book presents a thorough and authoritative overview of this multifaceted field of science. Pathogenic bacteria have been evolving and spreading resistance to diverse classes of antibiotics. As a result, we risk losing our ability to control and treat infectious diseases. Understanding antibiotic resistance, therefore, is becoming increasingly essential for a broad audience of healthcare professionals, biomedical and public health researchers, students, and policymakers. The authors answer questions such as: What is resistance? How does it emerge? How do common human activities contribute to resistance? What can we do about it? How can we strengthen our “first lines of defense” against resistance? Are there better ways to discover new antibiotics? What unique issues are associated with MRSA and viral influenza? In addition to defining and evaluating one of the most important emerging threats to public health, the authors explain what can be done to minimize risks to public health, and to preserve and extend the effectiveness of existing and new antibiotics.
This book provides a comprehensive overview on the theories, processes, and solutions relevant to effectively creating, using, and managing digital media in a variety of instructional settings. In the first section of the book, the authors provide an overview of the theories, development models, and principles of learning with digital media. In the second section, the authors detail various digital media solutions, including: Instructional Videos, Instructional Simulations and Games, Online Learning, Mobile Learning, and Emerging Learning Technologies. Overall, this book emphasizes the theoretical principles for learning with digital media and processes to design digital media solutions in various instructional settings. The readers are also provided with multiple case studies from real world projects in various instructional settings.
This text explores the power of mathematics and shows how mathematics has revolutionized the world. The main theme throughout this book is problem solving. In the first part of the book, The Power of Mathematics, Smith begins by discussing math anxiety and how to formulate the problem. Students develop confidence and then learn problem solving techniques from arithmetic, algebra, and geometry. In the second part of the book, The Utility of Mathematics, students apply these techniques to topics that were selected because of their usefulness to students. The topics include managing money using the ideas of interest, installment buying, credit card buying, inflation, buying a car or home, sets, probability, contests, statistics, surveys, and the influence of these topics on students' lives. While building critical-thinking and communication skills, students develop an appreciation of mathematics as they each learn something that will make life easier, less costly, or more efficient.
This product is not available separately, it is only sold as part of a set. There are 750 products in the set and these are all sold as one entity. Specialist Periodical Reports provide systematic and detailed review coverage of progress in the major areas of chemical research. Written by experts in their specialist fields the series creates a unique service for the active research chemist, supplying regular critical in-depth accounts of progress in particular areas of chemistry. For over 90 years The Royal Society of Chemistry and its predecessor, the Chemical Society, have been publishing reports charting developments in chemistry, which originally took the form of Annual Reports. However, by 1967 the whole spectrum of chemistry could no longer be contained within one volume and the series Specialist Periodical Reports was born. The Annual Reports themselves still existed but were divided into two, and subsequently three, volumes covering Inorganic, Organic and Physical Chemistry. For more general coverage of the highlights in chemistry they remain a 'must'. Since that time the SPR series has altered according to the fluctuating degree of activity in various fields of chemistry. Some titles have remained unchanged, while others have altered their emphasis along with their titles; some have been combined under a new name whereas others have had to be discontinued. The current list of Specialist Periodical Reports can be seen on the inside flap of this volume.
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