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An essential introduction to the responsible conduct of science in today's interconnected world This concise introductory guide explains the values that should inform the responsible conduct of scientific research in today's global setting. Featuring accessible discussions and ample real-world scenarios, Doing Global Science covers proper conduct, fraud and bias, the researcher's responsibilities to society, communication with the public, and much more. The book places special emphasis on the international and highly networked environment in which modern research is done, presenting science as an enterprise that is being transformed by globalization, interdisciplinary research projects, team science, and information technologies. Accessibly written by an InterAcademy Partnership committee comprised of leading scientists from around the world, Doing Global Science is required reading for students, practitioners, and anyone concerned about the responsible conduct of science today. Provides practical guidance and instructions for doing scientific research in today's global setting Covers everything from responsible conduct to communication with the public Features numerous real-world scenarios drawn from an array of disciplines and national contexts Focuses on issues commonly encountered in international collaborations Written by a panel of leading experts from around the world An essential guide for practicing scientists and anyone concerned about fostering research integrity
In early 2012, the global scientific community erupted with news that the elusive Higgs boson had likely been found, providing potent validation for the Standard Model of how the universe works. Scientists from more than one hundred countries contributed to this discovery—proving, beyond any doubt, that a new era in science had arrived, an era of multinationalism and cooperative reach. Globalization, the Internet, and digital technology all play a role in making this new era possible, but something more fundamental is also at work. In all scientific endeavors lies the ancient drive for sharing ideas and knowledge, and now this can be accomplished in a single tongue— English. But is this a good thing? In Does Science Need a Global Language?, Scott L. Montgomery seeks to answer this question by investigating the phenomenon of global English in science, how and why it came about, the forms in which it appears, what advantages and disadvantages it brings, and what its future might be. He also examines the consequences of a global tongue, considering especially emerging and developing nations, where research is still at a relatively early stage and English is not yet firmly established. Throughout the book, he includes important insights from a broad range of perspectives in linguistics, history, education, geopolitics, and more. Each chapter includes striking and revealing anecdotes from the front-line experiences of today’s scientists, some of whom have struggled with the reality of global scientific English. He explores topics such as student mobility, publication trends, world Englishes, language endangerment, and second language learning, among many others. What he uncovers will challenge readers to rethink their assumptions about the direction of contemporary science, as well as its future.
Using a model of the civilizational construction of science, the author views science without Eurocentric blinders. She shows how science was built by transfers from non-European groups and why the historiography of science has to be rethought.
Case Studies for Integrating Science and the Global Environment is designed to help students of the environment and natural resources make the connections between their training in science and math and today's complex environmental issues. The book provides an opportunity for students to apply important skills, knowledge, and analytical tools to understand, evaluate, and propose solutions to today's critical environmental issues. The heart of the book includes four major content areas: water resources; the atmosphere and air quality; ecosystem alteration; and global resources and human needs. Each of these sections features in-depth case studies covering a range of issues for each resource, offering rich opportunities to teach how various scientific disciplines help inform the issue at hand. Case studies provide readers with experience in interpreting real data sets and considering alternate explanations for trends shown by the data. This book helps prepare students for careers that require collaboration with stakeholders and co-workers from various disciplines. - Includes global case studies using real data sets that allow readers to practice interpreting data and evaluating alternative explanations - Focuses on critical skills and knowledge, encouraging readers to apply science and math to real world problems - Employs a system-based approach, linking air, water, and land resources to help readers understand that cause-effect may be complex and solutions to environmental problems require multiple perspectives - Includes special features such as links to video clips of scientists at work, boxed information, a solutions section at the end of each case study, and practice exercises
Global Mobility of Research Scientists: The Economics of Who Goes Where and Why brings together information on how the localization and mobility of academic researchers contributes to the production of knowledge. The text answers several questions, including "what characterizes nationally and internationally mobile researchers?" and "what are the individual and social implications of increased mobility of research scientists?" Eight independent, but coordinated chapters address these and other questions, drawing on a set of newly developed databases covering 30 countries, including the US, the UK, France, Germany, Italy, Japan, Russia, and China, among others. - Combines theoretically sound and empirically fascinating results in one volume that has international and interdisciplinary appeal. - Covers topics at the forefront of academic, business, and policy discussions - Data used in the chapters available at a freely-accessible website
Global Science and National Sovereignty: Studies in Historical Sociology of Science provides detailed case studies on how sovereignty has been constructed, reaffirmed, and transformed in the twentieth century by the construction of scientific disciplines, knowledge practices, and research objects. Interrogating the relationship of the sovereign power of the nation state to the scientist's expert knowledge as a legitimating – and sometimes challenging – force in contemporary society, this book provides a staggering range of case studies in its exploration of how different types of science have transformed our understanding of national sovereignty in the last century. From biochemical sciences in Russia, to nuclear science in the US and Europe, from economics in South Asia, to climatology in South America, each chapter demonstrates the role that scientists play in the creation of nation-states and international organizations. With an array of experts and scholars, the essays in Global Science and National Sovereignty: Studies in Historical Sociology of Science offer a complete redefinition of the modern concept of sovereignty and an illuminating reassessment of the role of science in political life.
China is in the midst of transitioning from a manufacturing-based economy to one driven by innovation and knowledge. This up-to-date analysis evaluates China's state-led approach to science and technology, and its successes and failures. In recent decades, China has seen huge investments in high-tech science parks, a surge in home-grown top-ranked global companies, and a significant increase in scientific publications and patents. Helped by state policies and a flexible business culture, the country has been able to leapfrog its way to a more globally competitive position. However, the authors argue that this approach might not yield the same level of progress going forward if China does not address serious institutional, organizational, and cultural obstacles. While not impossible, this task may well prove to be more difficult for the Chinese Communist Party than the challenges that China has faced in the past.
In bringing together a global community of philosophers, Global Epistemologies and Philosophies of Science develops novel perspectives on epistemology and philosophy of science by demonstrating how frameworks from academic philosophy (e.g. standpoint theory, social epistemology, feminist philosophy of science) and related fields (e.g. decolonial studies, transdisciplinarity, global history of science) can contribute to critical engagement with global dimensions of knowledge and science. Global challenges such as climate change, food production, and infectious diseases raise complex questions about scientific knowledge production and its interactions with local knowledge systems and social realities. As academic philosophy provides relatively little reflection on global negotiations of knowledge, many pressing scientific and societal issues remain disconnected from core debates in epistemology and philosophy of science. This book is an invitation to broaden agendas of academic philosophy by presenting epistemology and philosophy of science as globally engaged fields that address heterogeneous forms of knowledge production and their interactions with local livelihoods, practices, and worldviews. This integrative ambition makes the book equally relevant for philosophers and interdisciplinary scholars who are concerned with methodological and political challenges at the intersection of science and society.
While science has achieved a remarkable understanding of nature, affording humans an astonishing technological capability, it has led, through Euro-American global domination, to the muting of other cultural views and values, even threatening their continued existence. There is a growing realization that the diversity of knowledge systems demand respect, some refer to them in a conservation idiom as alternative information banks. The scientific perspective is only one. We now have many examples of the soundness of local science and practices, some previously considered “primitive” and in need of change, but this book goes beyond demonstrating the soundness of local science and arguing for the incorporation of others’ knowledge in development, to argue that we need to look quizzically at the foundations of science itself and further challenge its hegemony, not only over local communities in Africa, Asia, the Pacific or wherever, but also the global community. The issues are large and the challenges are exciting, as addressed in this book, in a range of ethnographic and institutional contexts.
"Technological capability has led, through Euro-American global domination, to the muting of other cultural views and values, even threatening their continued existence. There is a growing realization that the diversity of knowledge systems demand respect; some refer to them in a conservation idiom as alternative knowledge banks. The scientific perspective is only one. We now have many examples of the soundness of local science and practices, some previously considered 'primitive' and in need of change. However, this book goes beyond demonstrating the soundness of local science and arguing for the incorporation of others' knowledge in development, to maintain that we need to look quizzically at the foundations of science itself and further challenge its hegemony, not only over local communities in Africa, Asia, the Pacific and elsewhere but also the global community.--Publisher