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This book addresses the urgent need for a large and systematic analysis of current interdisciplinary (ID) research and practice. It demonstrates how ID is essentially a cognitive phenomenon, something different from the frivolous and inconsequential attempt of trying to overcome the disciplinary competencies and exigencies. By ID, the authors show that it is a manifestation of the transversal rationality that underlies current scientific activity. It is the very progress of specialized disciplines that requires interdisciplinary new research practices and new forms of articulation between domains, something that has a strong impact on the traditional disciplinary structure of scientific and educational institutions. Divided into two parts, the book presents a conceptual framework as well as several case studies on ID practices. The book aims at covering three main themes. It contributes to the stabilization of ID meaning and characterizes the main ID theorizations which have been proposed until now. It builds an innovative and broad understanding of the several ID determinations as an essentially cognitive phenomenon and of its institutional implications at the level of disciplinary structures and curricular organization. Finally, it distinguishes and maps the diversity of ID procedures and practices which are being used and tested by contemporary scientific and educational institutions. This book is addressed to philosophers, scientists and every one interested in science production and reproduction, including science teaching.
Championing an emerging global community of scholars, this Handbook provides a detailed examination on how to successfully integrate interdisciplinarity into education programs. A comprehensive look into the current landscape of the field, it emphasises the importance of interdisciplinary teaching and administration in the development of creativity, citizenship and information literacy. This title contains one or more Open Access chapters.
Introduction chapter is available Open Access under CC-BY-NC-ND licence.This groundbreaking reader is designed to lower the barriers to interdisciplinarity and transdisciplinarity in research. Edited by experienced researchers from a range of different fields, it paves the way for future scholarship and effective research collaborations across disciplines. Chapters offer extracts from key academic texts on topics such as the design, funding, evaluation and communication of research, providing those new to the field with a thorough grounding. They highlight examples of interdisciplinary and transdisciplinary triumphs - and challenges. Concluding each chapter is a commentary provided by practitioners from diverse backgrounds, many of whom are themselves developing new approaches to inter- and transdisciplinarity. The book is:* the first ever comprehensive reader for interdisciplinarity and transdisciplinarity;* essential reading for those seeking to become effective collaborative researchers;* complete with concise introductions, extracts, commentary and further reading in each chapter.This is a much-needed primer that improves our understanding of the characteristics of interdisciplinarity and transdisciplinarity, unlocking their exciting potential in research and teaching within and beyond academia.
One of the pathways by which the scientific community confirms the validity of a new scientific discovery is by repeating the research that produced it. When a scientific effort fails to independently confirm the computations or results of a previous study, some fear that it may be a symptom of a lack of rigor in science, while others argue that such an observed inconsistency can be an important precursor to new discovery. Concerns about reproducibility and replicability have been expressed in both scientific and popular media. As these concerns came to light, Congress requested that the National Academies of Sciences, Engineering, and Medicine conduct a study to assess the extent of issues related to reproducibility and replicability and to offer recommendations for improving rigor and transparency in scientific research. Reproducibility and Replicability in Science defines reproducibility and replicability and examines the factors that may lead to non-reproducibility and non-replicability in research. Unlike the typical expectation of reproducibility between two computations, expectations about replicability are more nuanced, and in some cases a lack of replicability can aid the process of scientific discovery. This report provides recommendations to researchers, academic institutions, journals, and funders on steps they can take to improve reproducibility and replicability in science.
This peer-reviewed collection represents some of the finest research presented at the 2004 Association of Internet Researchers Conference held in Sussex in 2004. Responding to the theme of ubiquity, papers collected here represent a diverse range of inquiries into the development, as well as perceived development, of the Internet. Offering new and important work about blogs, online games, users, norms and access, to name just a few topics, this collection is a must-read for Internet scholars intent on keeping pace with a rapidly expanding field.
This Open Access book builds upon Science and Technology Studies (STS) and provides a detailed examination of how large-scale energy research projects have been conceived, and with what consequences for those involved in interdisciplinary research, which has been advocated as the zenith of research practice for many years, quite often in direct response to questions that cannot be answered (or even preliminarily investigated) by disciplines working separately. It produces fresh insights into the lived experiences and actual contents of interdisciplinarity, rather than simply commentating on how it is being explicitly advocated. We present empirical studies on large-scale energy research projects from the United Kingdom, Norway, and Finland. The book presents a new framework, the Sociology of Interdisciplinarity, which unpacks interdisciplinary research in practice. This book will be of interest to all those interested in well-functioning interdisciplinary research systems and the dynamics of doing interdisciplinarity, including real ground-level experiences and institutional interdependencies.
An overview of experimental research and methods in public management, and their impact on theory, research practices and substantive knowledge.
The integrity of knowledge that emerges from research is based on individual and collective adherence to core values of objectivity, honesty, openness, fairness, accountability, and stewardship. Integrity in science means that the organizations in which research is conducted encourage those involved to exemplify these values in every step of the research process. Understanding the dynamics that support â€" or distort â€" practices that uphold the integrity of research by all participants ensures that the research enterprise advances knowledge. The 1992 report Responsible Science: Ensuring the Integrity of the Research Process evaluated issues related to scientific responsibility and the conduct of research. It provided a valuable service in describing and analyzing a very complicated set of issues, and has served as a crucial basis for thinking about research integrity for more than two decades. However, as experience has accumulated with various forms of research misconduct, detrimental research practices, and other forms of misconduct, as subsequent empirical research has revealed more about the nature of scientific misconduct, and because technological and social changes have altered the environment in which science is conducted, it is clear that the framework established more than two decades ago needs to be updated. Responsible Science served as a valuable benchmark to set the context for this most recent analysis and to help guide the committee's thought process. Fostering Integrity in Research identifies best practices in research and recommends practical options for discouraging and addressing research misconduct and detrimental research practices.
This book advances a social-ecological theory to reconnect nature and society through sustainable transformation of interacting social and ecological systems. Social ecology develops as an interdisciplinary science by using knowledge from the social sciences, especially sociology and economics, and from natural-scientific ecology. Knowledge integration across the boundaries of social and natural sciences is not widespread, blocked by the specialisation of theories and their competing forms of explanation and interpretation. Chapters in this book describe a new social-ecological theory that connects concepts and theories from both sides to create a new interdisciplinary theory. Inter- and transdisciplinary knowledge synthesis creates possibilities to analyse global environmental problems more systematically by integrating specialized research on environmental problems. The author uses social-ecological theory to analyse and explain problems and processes of global change in modern society such as climate change and adaptation to it, ecosystem change, and transformation of the industrial energy regime , finally offering pathways of transformation to a future sustainable society.