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Cameron Strang takes American scientific thought and discoveries away from the learned societies, museums, and teaching halls of the Northeast and puts the production of knowledge about the natural world in the context of competing empires and an expanding republic in the Gulf South. People often dismissed by starched northeasterners as nonintellectuals--Indian sages, African slaves, Spanish officials, Irishmen on the make, clearers of land and drivers of men--were also scientific observers, gatherers, organizers, and reporters. Skulls and stems, birds and bugs, rocks and maps, tall tales and fertile hypotheses came from them. They collected, described, and sent the objects that scientists gazed on and interpreted in polite Philadelphia. They made knowledge. Frontiers of Science offers a new framework for approaching American intellectual history, one that transcends political and cultural boundaries and reveals persistence across the colonial and national eras. The pursuit of knowledge in the United States did not cohere around democratic politics or the influence of liberty. It was, as in other empires, divided by multiple loyalties and identities, organized through contested hierarchies of ethnicity and place, and reliant on violence. By discovering the lost intellectual history of one region, Strang shows us how to recover a continent for science.
The "scientific frontier" is a term used by Prime Minister Benjamin Disraeli (Lord Beaconsfield) of Great Britain in 1878 to denote a border between British India (in present-day Pakistan) and Afghanistan, which could be occupied and defended according to the requirements of the science of military strategy, as opposed to the existing frontier, which had been formed by a haphazard pattern of British expansion through agreements and annexations. The term subsequently figured prominently in British discussions about the defense of British India from a possible Russian invasion through Afghanistan. Our Scientific Frontier, published toward the end of the Second Anglo-Afghan War (1878-80), is an analysis of this subject, written to influence the British debate on the terms of peace. The author, William Patrick Andrew, was chairman of the Scinde, Punjab, and Delhi Railway Company, and thus an expert on logistics and transport in India and along its frontiers. The book contains chapters on the Northwest Frontier, the history, geography, and economy of Afghanistan, the independent border tribes, mountain passes, probable routes of invasion from Afghanistan into India, and the "Powindahs, or Soldier-Merchants of Afghanistan." Three appendices cover the Sherpur entrenchments that were part of the defense of Kabul, the Bolan and Khyber railways (neither of which was constructed until after the period discussed), and transport by rail of troops, horses, guns, and war matériel in India.
Science at the Frontiers: Perspectives on the History and Philosophy of Science brings new voices to the study of the history and philosophy of science. It supplements current literature on these fields, highlighting sciences that are overlooked, by the current literature and viewing classic problems in the field from new perspectives. Archaeologist and philosopher of science William H. Krieger asked a group of working scientists, philosophers of science, and historians of science to present a series of case studies in a range of disciplines including archaeology, medicine, forestry, biology and genetics to predict the future for their fields. Their chapters give new perspectives on many of the questions that have resisted solution in the classical canon while raising new questions born out of new perspectives and new historical, scientific, and philosophical approaches. Those studying the philosophy and history of science and those who are already practicing?-scientists, philosophers of science, and historians of science will gain a great deal from this book Book jacket.
This is an examination of the history and the state of the art of the quest for visualizing scientific knowledge and the dynamics of its development. Through an interdisciplinary perspective this book presents profound visions, pivotal advances, and insightful contributions made by generations of researchers and professionals, which portrays a holistic view of the underlying principles and mechanisms of the development of science. This updated and extended second edition: highlights the latest advances in mapping scientific frontiers examines the foundations of strategies, principles, and design patterns provides an integrated and holistic account of major developments across disciplinary boundaries “Anyone who tries to follow the exponential growth of the literature on citation analysis and scientometrics knows how difficult it is to keep pace. Chaomei Chen has identified the significant methods and applications in visual graphics and made them clear to the uninitiated. Derek Price would have loved this book which not only pays homage to him but also to the key players in information science and a wide variety of others in the sociology and history of science.” – Eugene Garfield “This is a wide ranging book on information visualization, with a specific focus on science mapping. Science mapping is still in its infancy and many intellectual challenges remain to be investigated and many of which are outlined in the final chapter. In this new edition Chaomei Chen has provided an essential text, useful both as a primer for new entrants and as a comprehensive overview of recent developments for the seasoned practitioner.” – Henry Small Chaomei Chen is a Professor in the College of Information Science and Technology at Drexel University, Philadelphia, USA, and a ChangJiang Scholar at Dalian University of Technology, Dalian, China. He is the Editor-in-Chief of Information Visualization and the author of Turning Points: The Nature of Creativity (Springer, 2012) and Information Visualization: Beyond the Horizon (Springer, 2004, 2006).
Investigates the research and discoveries of computer scientists whose efforts have expanded knowledge of the rapidly changing field of computer science.
Astronomy is by nature an interdisciplinary activity: it involves mathematics, physics, chemistry and biology. Astronomers use (and often develop) the latest technology, the fastest computers and the most refined software. In this book twenty-two leading scientists from nine countries talk about how astronomy interacts with these other sciences. They describe modern instruments used in astronomy and the relations between astronomy and technology, industry, politics and philosophy. They also discuss what it means to be an astronomer, the history of astronomy, and the place of astronomy in society today.
Frontiers of Propulsion Science is the first-ever compilation of emerging science relevant to such notions as space drives, warp drives, gravity control, and faster-than-light travel - the kind of breakthroughs that would revolutionize spaceflight and enable human voyages to other star systems. Although these concepts might sound like science fiction, they are appearing in growing numbers in reputable scientific journals. This is a nascent field where a variety of concepts and issues are being explored in the scientific literature, beginning in about the early 1990s. The collective status is still in step 1 and 2 of the scientific method, with initial observations being made and initial hypotheses being formulated, but a small number of approaches are already at step 4, with experiments underway. This emerging science, combined with the realization that rockets are fundamentally inadequate for interstellar exploration, led NASA to support the Breakthrough Propulsion Physics Project from 1996 through 2002.""Frontiers of Propulsion Science"" covers that project as well as other related work, so as to provide managers, scientists, engineers, and graduate students with enough starting material that they can comprehend the status of this research and decide if and how to pursue it in more depth themselves. Five major sections are included in the book: Understanding the Problem lays the groundwork for the technical details to follow; Propulsion Without Rockets discusses space drives and gravity control, both in general terms and with specific examples; Faster-Than-Light Travel starts with a review of the known relativistic limits, followed by the faster-than-light implications from both general relativity and quantum physics; Energy Considerations deals with spacecraft power systems and summarizes the limits of technology based on accrued science; and, From This Point Forward offers suggestions for how to manage and conduct research on such visionary topics.
Our understanding of science, mathematics, and medicine today can be deeply enriched by studying the historical roots of these areas of inquiry in the ancient Near East and Mediterranean. The fields of ancient science and mathematics have in recent years witnessed remarkable growth. The present volume brings together contributions from more than thirty of the most important scholars working in these fields in the United States and Europe in honor of the eminent historian of ancient science and medicine Heinrich von Staden, Professor Emeritus of Classics and History of Science at the Institute of Advanced Study and William Lampson Professor Emeritus of Classics and Comparative Literature at Yale University. The papers range widely from Mesopotamia to Ancient Greece and Rome, from the first millennium B.C. to the early medieval period, and from mathematics to philosophy, mechanics to medicine, representing both a wide diversity of national traditions and the cutting edge of the international scholarly community.
Steve Fuller has a reputation for setting the terms of debate within science and technology studies. In his latest book, New Frontiers in Science and Technology Studies he charts the debates likely to be of relevance in the coming years. Should science and technology be treated as separate entities? What impact has globalization had on science and technology? Can science be clearly distinguished from other forms of knowledge? Does the politicization of science really matter? Is there a role for the social regulation of scientific inquiry? Should we be worried about research fraud? These questions are explored by examining an array of historical, philosophical and contemporary sources. Attention is paid, for example, to the Bruno Latour's The Politics of Nature as a model for science policy, as well as the global controversy surrounding Bjorn Lomborg's The Sceptical Environmentalist, which led to the dismantling and re-establishment of the Danish national research ethics board. New Frontiers in Science and Technology Studies will appeal strongly to scholars and advanced undergraduate and graduate students in courses concerned with the social dimensions of science and technology, and anyone who cares about the future of science.