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The Manual on the Measurement of Human Resources devoted to S&T (the "Canberra Manual") was issued in 1995. It was prepared in close co-operation between the OECD and the DGXII/Eurostat of the European Commission, other OECD Directorates, UNESCO and ...
This handbook offers a state-of-the-art overview of quantitative science and technology research. It focuses on the development and application of indicators derived from data on scientific or scholarly publications and patents. It comprises 34 chapters written by leading specialists in the various sub-domains. These chapters deal with theoretical and methodological issues, illustrate applications, and highlight their policy context and relevance. Authors present a survey of the research topics they address, and show their most recent achievements. The 34 chapters are arranged into 5 parts: Disciplinary Approaches; General Methodology; The Science System; The Technology System; and The Science–Technology Interface. The Editor’s Introduction provides a further specification of the handbook’s scope and of the main topics addressed in its chapters. This handbook aims at four distinct groups of readers: – practitioners in the field of science and technology studies; – research students in this field; – scientists, scholars and technicians who are interested in a systematic, thorough analysis of their activities; – policy makers and administrators who wish to be informed about the potentialities and limitations of the various approaches and about their results.
Technology has long been seen as a path to economic growth. However there is considerable debate about the exact nature of this relationship. Economics of Structural and Technological Change employs a wide range of theoretical and applied approaches to explore the concept of technological change. The book begins with a series of in-depth discussions of the economic analysis of technological change. The second section contains a discussion of theoretical models of technological change, focusing on issues such as time and innovation. The third section brings together a number of applied analyses of technological change and examines the effect of factors such as human resource constraints, patenting and science and technology indicators.
Many countries have implemented policies to increase the number and quality of scientific researchers as a means to foster innovation and spur economic development and progress. To that end, grounded in a view of women as a rich, yet underutilized knowledge and labor resource, a great deal of recent attention has focused on encouraging women to pursue education and careers in science — even in countries with longstanding dominant patriarchal regimes. Yet, overall, science remains an area in which girls and women are persistently disadvantaged. This book addresses that situation. It bridges the gap between individual- and societal-level perspectives on women in science in a search for systematic solutions to the challenge of building an inclusive and productive scientific workforce capable of creating the innovation needed for economic growth and societal wellbeing. This book examines both the role of gender as an organizing principle of social life and the relative position of women scientists within national and international labor markets. Weaving together and engaging research on globalization, the social organization of science, and gendered societal relations as key social forces, this book addresses critical issues affecting women’s contributions and participation in science. Also, while considering women’s representation in science as a whole, examinations of women in the chemical sciences, computing, mathematics and statistics are offered as examples to provide insights into how differing disciplinary cultures, functional tasks and socio-historical conditions can affect the advancement of women in science relative to important variations in educational and occupational realities. Edited by three social scientists recognized for their expertise in science and technology policy, education, workforce participation, and stratification, this book includes contributions from an intellectually diverse group of international scholars and analysts and features compelling cases and initiatives from around the world, with implications for research, industry practice, education and policy development.
This Dictionary analyses the ways in which the statuses of European citizens are profoundly affected by EU law. The study of one’s particular status (as a worker, consumer, family member, citizen, etc.) helps to reconsider the legal notions concerning an individual’s status at the EU level. The Dictionary includes a foreword by Evgeni Tanchev, Advocate General at the Court of Justice of the European Union, which illustrates some interesting features of the Court’s case law on statuses.The Dictionary’s core is composed of 79 chapters, published in alphabetical order. Each brief chapter analyses how the individual status was conditioned or created by contemporary EU law, or how the process of European integration modified the traditional juridical definition of the respective status. The Dictionary provides answers to the following questions: Has the process of European integration modified the traditional juridical definition of individual status? Has the concept of legal status now acquired a new function? What role has EU law played in developing a new modern function for the concept of individual status? Are the selection of a specific individual status by EU law and the proliferation of such statuses, which is synonymous with the creation of new privileges, collectively undermining the goal of achieving substantive equality between EU citizens? Does this constitute a return to the past? Under EU law, is it possible to create a uniform definition of the legal status of the person, over and above the definition that is provided by a given Member State’s legal system?
This publication provides a summary of the key methodological issues surrounding indicators and statistics on the space sector and the larger space economy.