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This volume reflects the ‘philosophy of science in practice’ approach and takes a fresh look at traditional philosophical problems in the context of natural, social, and health research. Inspired by the work of Nancy Cartwright that shows how the practices and apparatuses of science help us to understand science and to build theories in the philosophy of science, this volume critically examines the philosophical concepts of evidence, laws, causation, and models and their roles in the process of scientific reasoning. Each chapter is an important one in the philosophy of science, while the volume as a whole deals with these philosophical concepts in a unified way in the context of actual scientific practice. This volume thus aims to contribute to this new direction in the philosophy of science.​
In the 1980s, philosophical, historical and social studies of science underwent a change which later evolved into a turn to practice. Analysts of science were asked to pay attention to scientific practices in meticulous detail and along multiple dimensions, including the material, social and psychological. Following this turn, the interest in scientific practices continued to increase and had an indelible influence in the various fields of science studies. No doubt, the practice turn changed our conceptions and approaches of science, but what did it really teach us? What does it mean to study scientific practices? What are the general lessons, implications, and new challenges? This volume explores questions about the practice turn using both case studies and theoretical analysis. The case studies examine empirical and mathematical sciences, including the engineering sciences. The volume promotes interactions between acknowledged experts from different, often thought of as conflicting, orientations. It presents contributions in conjunction with critical commentaries that put the theses and assumptions of the former in perspective. Overall, the book offers a unique and diverse range of perspectives on the meanings, methods, lessons, and challenges associated with the practice turn.
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This edited volume extends existing discussions among philosophers of science, cognitive psychologists, and educational researchers on the the restructuring of scientific knowledge and the domain of science education. This exchange of ideas across disciplinary fields raises fundamental issues and provides frameworks that help to focus educational research programs, curriculum development efforts, and teacher training programs.
A short and accessible introduction to philosophy of science for students and researchers across the life sciences.
The role of science in policymaking has gained unprecedented stature in the United States, raising questions about the place of science and scientific expertise in the democratic process. Some scientists have been given considerable epistemic authority in shaping policy on issues of great moral and cultural significance, and the politicizing of these issues has become highly contentious. Since World War II, most philosophers of science have purported the concept that science should be "value-free." In Science, Policy and the Value-Free Ideal, Heather E. Douglas argues that such an ideal is neither adequate nor desirable for science. She contends that the moral responsibilities of scientists require the consideration of values even at the heart of science. She lobbies for a new ideal in which values serve an essential function throughout scientific inquiry, but where the role values play is constrained at key points, thus protecting the integrity and objectivity of science. In this vein, Douglas outlines a system for the application of values to guide scientists through points of uncertainty fraught with moral valence.Following a philosophical analysis of the historical background of science advising and the value-free ideal, Douglas defines how values should-and should not-function in science. She discusses the distinctive direct and indirect roles for values in reasoning, and outlines seven senses of objectivity, showing how each can be employed to determine the reliability of scientific claims. Douglas then uses these philosophical insights to clarify the distinction between junk science and sound science to be used in policymaking. In conclusion, she calls for greater openness on the values utilized in policymaking, and more public participation in the policymaking process, by suggesting various models for effective use of both the public and experts in key risk assessments.
This book explores central philosophical concepts, issues, and debates in the philosophy of science, both historical and contemporary.
Nurses who conduct research have a longstanding interest in questions of nursing knowledge. Nursing Knowledge is a clear and well-informed exposition of the philosophical background to nursing theory and research. Nursing Knowledge answers such fundamental questions as: How is nursing theory related to nursing practice? What are the core elements of nursing knowledge? What makes nursing research distinctive as nursing research? It examines the history of the philosophical debates within nursing, critiques the arguments, explains the implications and sets out to rethink the philosophical foundation of nursing science. Nursing Knowledge begins with philosophical problems that arise within nursing science. It then considers various solutions with the help of philosophical ideas arguingargues that nurses ought to adopt certain philosophical positions because they are the best solutions to the problems that nurses encounter. The book argues claims that the nursing standpoint has the potential to disclose a more complete understanding of human health than the common disease-and-dysfunction views. Because of the relationship to practice, nursing science may freely draw theory from other disciplines and nursing practice unifies nursing research. By redefining theory and philosophy,With a new philosophical perspective on nursing science, the so-called relevance gap between nursing theory and practice can be closed. The final chapter of the book ‘redraws the map’, to create a new picture of nursing science based on the following principles: Problems of practice should guide nursing research Practice and theory are dynamically related Theory research must provide the knowledge base necessary for nurse interventions, training, patient education, etc. Nursing research should develop midrange theories and its results are nursing theory is strengthened when it uses theories confirmed by is integrated with other disciplines Key features Clear and accessibly written Accurate and philosophically well-informed, Discusses philosophical problems in contexts familiar to nurses Systematically examines the philosophical issues involved in nursing research Examines epistemology (how we know what we know), theory development, and the philosophical foundations of scientific methodology. Develops a new model of nursing knowledge Dr. Mark Risjord is Associate Professor in Philosophy at Emory University, and has a faculty appointment in the Nell Hodgson Woodruff School of Nursing. His main research areas have been in the philosophy of social science and the philosophy of medicine. He was invited to has been teaching philosophy of science and theory development in the new PhD program in the Nell Hodgson School of Nursing at Emory University insince 1999. He has been awarded two competitive teaching prizes: Emory Williams Distinguished Teaching Award (2004) and the Excellence in Teaching Award (1997). He is presently serving as the Masse-Martin/NEH Distinguished Teaching Chair (2006-2010).
Science as Practice and Culture explores one of the newest and most controversial developments within the rapidly changing field of science studies: the move toward studying scientific practice—the work of doing science—and the associated move toward studying scientific culture, understood as the field of resources that practice operates in and on. Andrew Pickering has invited leading historians, philosophers, sociologists, and anthropologists of science to prepare original essays for this volume. The essays range over the physical and biological sciences and mathematics, and are divided into two parts. In part I, the contributors map out a coherent set of perspectives on scientific practice and culture, and relate their analyses to central topics in the philosophy of science such as realism, relativism, and incommensurability. The essays in part II seek to delineate the study of science as practice in arguments across its borders with the sociology of scientific knowledge, social epistemology, and reflexive ethnography.
The book examines the emerging approach of using qualitative methods, such as interviews and field observations, in the philosophy of science. Qualitative methods are gaining popularity among philosophers of science as more and more scholars are resorting to empirical work in their study of scientific practices. At the same time, the results produced through empirical work are quite different from those gained through the kind of introspective conceptual analysis more typical of philosophy. This volume explores the benefits and challenges of an empirical philosophy of science and addresses questions such as: What do philosophers gain from empirical work? How can empirical research help to develop philosophical concepts? How do we integrate philosophical frameworks and empirical research? What constraints do we accept when choosing an empirical approach? What constraints does a pronounced theoretical focus impose on empirical work? Nine experts discuss their thoughts and empirical results in the chapters of this book with the aim of providing readers with an answer to these questions.