31,168 research outputs found

    Publication and patent analysis of European researchers in the field of production technology and manufacturing systems

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    This paper develops a structured comparison among a sample of European researchers in the field of Production Technology and Manufacturing Systems, on the basis of scientific publications and patents. Researchers are evaluated and compared by a variegated set of indicators concerning (1) the output of individual researchers and (2) that of groups of researchers from the same country. While not claiming to be exhaustive, the results of this preliminary study provide a rough indication of the publishing and patenting activity of researchers in the field of interest, identifying (dis)similarities between different countries. Of particular interest is a proposal for aggregating analysis results by means of maps based on publication and patent indicators. A large amount of empirical data are presented and discusse

    National models of ISR: Belgium

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    China's absorptive State: research, innovation and the prospects for China-UK collaboration

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    China's innovation system is advancing so rapidly in multiple directions that the UK needs to develop a more ambitious and tailored strategy, able to maximise opportunities and minimise risks across the diversity of its innovation links to China. For the UK, the choice is not whether to engage more deeply with the Chinese system, but how. This report analyses the policies, prospects and dilemmas for Chinese research and innovation over the next decade. It is designed to inform a more strategic approach to supporting China-UK collaboration

    Developing technology in the vicinity of science: Do firms really benefit? An empirical assessment on the level of Italian provinces.

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    The article examines whether firms benefit from the presence of universities when developing technology. By estimating regional knowledge production functions for 101 Italian regions, we observe a strong positive relation between industrial technological performance – measured by patents – and the local presence of universities. In addition, 'academic' regions witness higher levels of industrial technological output, the more pronounced the scientific eminence of the regional universities. Finally, our analysis indicates that the observed spillover effects are field-specific, with domains situated in the vicinity of science benefiting most. Together, these findings suggest complementary roles for scientific and industrial actors within regional innovation systems.Regional Innovation Systems; Technology transfer; University-Firm Knowledge Spillovers; Technology; Science; Firms; Research;

    Strategic Knowledge Measurement and Management

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    Knowledge and intellectual capital are now recognized as vital resources for organizational survival and competitive advantage. A vast array of knowledge measures has evolved, spanning many disciplines. This chapter reviews knowledge measures focusing on groups of individuals (such as teams, business and organizations), as they reflect the stock or flow of knowledge, as well as enabling processes that enhance knowledge stocks and flows. The chapter emphasizes the importance of organizational value chains, pivotal talent pools and the link between knowledge and competitive success, in understanding the significance of today’s knowledge measures, and opportunities for future research and practice to enhance them

    Nanotechnology Publications and Patents: A Review of Social Science Studies and Search Strategies

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    This paper provides a comprehensive review of more than 120 social science studies in nanoscience and technology, all of which analyze publication and patent data. We conduct a comparative analysis of bibliometric search strategies that these studies use to harvest publication and patent data related to nanoscience and technology. We implement these strategies on 2006 publication data and find that Mogoutov and Kahane (2007), with their evolutionary lexical query search strategy, extract the highest number of records from the Web of Science. The strategies of Glanzel et al. (2003), Noyons et al. (2003), Porter et al. (2008) and Mogoutov and Kahane (2007) produce very similar ranking tables of the top ten nanotechnology subject areas and the top ten most prolific countries and institutions.nanotechnology, research and development, productivity, publications, patents, bibliometric analysis, search strategy

    Does Excellence in Academic Research Attract Foreign R&D?

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    We examine the role of host countries’ academic research strengths in global R&D location decisions by multinational firms. While we expect that a firm’s propensity to perform R&D in a host country increases with the strength of local academic research, firms are expected to be heterogeneously positioned to benefit from academic research strengths due to differences in the capacity to absorb and utilize scientific knowledge. We find support for these conjectures in an analysis of foreign R&D activities in 40 host countries and 30 technology fields by 176 leading European, US and Japanese firms during the periods 1995-1998 and 1999-2002. Controlling for a wide range of host country factors, the number of relevant ISI publications by scientists based in the host country has a substantial positive impact on the propensity to conduct foreign R&D. The effect of academic research is significantly larger for firms with a stronger science orientation in R&D - as indicated by citations to scientific literature in prior patents. For host countries with a strong relevant science base, this greater responsiveness of science oriented firms more than offsets a generally greater inclination to concentrate R&D at home. The findings appear robust across a variety of specifications.R&D Internationalization, Knowledge sourcing, Absorptive capacity, Industry-science links

    Measuring Eco-Innovation

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    In this paper we offer a discussion of eco-innovation and methods for measuring it. Eco-innovation is a new concept of great importance to business and policy makers, covering many innovations of environmental benefit. Past research and measurement activity primarily focused on pollution control and abatement activities or on the environmental goods and services sector. We argue that eco-innovation research and data collection should not be limited to such environmentally motivated innovations, but should encompass all products, processes, or organizational innovations with environmental benefits. Attention should be broadened to include innovation in or oriented towards resource use, energy efficiency, greenhouse gas reduction, waste minimization, reuse and recycling, new materials (for example nanotechnology-based) and eco-design. Research should cover the drivers, patterns, and benefits of eco-innovation for each of these applications, since these factors are likely to differ. For measuring eco-innovation, no single method or indicator is likely to be sufficient. In general, one should therefore apply different methods for analyzing eco-innovation, to see the "whole elephant" instead of just a part. More effort should be devoted towards direct measurement of eco-innovation outputs using documentary and digital sources to complement the current emphasis on innovation inputs such as R&D or patents. Innovation can also be measured indirectly from changes in resource efficiency and productivity. These two avenues are underexplored and should be given more attention in order to augment our rather narrow knowledge basis.eco-innovation, environment, innovation, measurement, indicators, data needs
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