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  • × author_ss:"Grupp, H."
  1. Grupp, H.; Schmoch, U.; Koschatzky, K.: Science and technology infrastructure in Baden-Wuertemberg and its orientation towards future regional development (1998) 0.00
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    Abstract
    This article deals with technological and innovation processes, and the economic benefits in a region with open borderlines as part of a national innovation and economic system. Innovations and technologies compete for resources in an environment characterized by economic scarcity. Ultimately, the technology most suited to the times and the regional conditions triumphs. The article focuses the (present) innovative structures in industry in a selected region of Germany (i.e., the federal state of Baden-Wuerttemberg) and provides new scientometric data on the (present) contribution of public institutions to technological development in the region under scutiny. This article concludes with a synopsis of present structures and a new information database on future technologies, thereby pointing out the regional challenges originating from structural change
    Type
    a
  2. Grupp, H.: Was wir über das Wissen wissen : Indikatoren der Wissenswirtschaft (2000) 0.00
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    Type
    a
  3. Gamber, T.; Friedrich-Nishio, M.; Grupp, H.: Science and technology in standardization : a statistical analysis of merging knowledge structures (2008) 0.00
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    Abstract
    The objective of this paper is to depict the knowledge array of standards. This is done by identifying and analyzing external effects, specifically spillover effects. The database used is Perinorm. We use a cluster analysis in order to create groups of technology fields for German standards according to the fields of the International Classification of Standards. Methodologically, the distances between these objects or clusters are defined by the chosen distance measure, which in turn is determined by the sum of their cross references. The applied joining clustering method uses these distances between the objects and allows the data to be mapped within a two dimensional space. The results of this mapping show the existence of structures within the standards data fitting to the well-known structure of patent spillovers.
    Type
    a
  4. Braun, T.; Glanzel, W.; Grupp, H.: ¬The scientometric weight of 50 nations in 27 scientific areas, 1989-1993 : Pt.1: All fields combined, mathematics, engineering, chemistry and physics (1995) 0.00
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    Abstract
    Attempts some new approaches to the presentation of bibliometric macro level indicators. Mathematics, engineering, physics and chemistry subfields are assigned to 13 science areas. Each science area then appears on 1 table (left page) and 2 graphs (right page). The 1st graph shows the main citation rates with respect to the world average on a relational chart. The countries are represented by letter codes that can be found in the corresponding table on the facing page. The 2nd graph visualizes the countries' relative research activity in the given science areas as compared to the world standard
    Type
    a