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  • × classification_ss:"02.13 Wissenschaftspraxis"
  1. Kling, R.; Rosenbaum, H.; Sawyer, S.: Understanding and communicating social informatics : a framework for studying and teaching the human contexts of information and communication technologies (2005) 0.04
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    Classification
    303.48/33 22
    DDC
    303.48/33 22
    Footnote
    The opening chapter provides a 10-page introduction to social informatics and identifies three high-level subdomains of the field: the normative, analytical, and critical orientations. Chapter 2 then narrows the focus to the social, technical, and institutional nature and consequences of ICTs, and provides a well-chosen review and analysis of social informatics research, mostly case studies of system implementations gone wrong. The recurring finding in these cases is that the social and institutional context of the system implementation was not sufficiently accounted for. In light of these concrete examples, the value and applicability of a social informatics perspective becomes clear. The chapters are organized exceptionally well, with bullet points and tables summarizing core ideas. One particularly good example of the organization of ideas is a table comparing designer-centric and social design views on the task of designing ICTs for workplaces (p. 42). Included are the different views of work, intended goals, design assumptions, and technological choices inherent in each design philosophy. Readers can immediately grasp how a social informatics perspective, as opposed to the more traditional designer-centric perspective, would result in significant differences in the design of workplace ICTs. The chapter titled, "Social Informatics for Designers, Developers, and Implementers of ICT Based Systems," provides an extremely focused introduction to the importance of social informatics for system builders, with more examples of large-scale system breakdowns resulting from failure to account for context, such as the 1988 destruction of a civilian passenger jet in the Persian Gulf by the USS Vincennes. However, many of the chapter subheadings have promising titles such as "ICTs Rarely Cause Social Transformations" (p. 28), and though the findings of several studies that reach this conclusion are reviewed, this section is but a page in length and no dissenting findings are mentioned; this seems insufficient support for such a substantial claim. Throughout the book, conclusions from different studies are effectively juxtaposed and summarized to create a sense of a cohesive body of social informatics research findings, which are expressed in a very accessible manner. At the same time, the findings are discussed in relation to their applicability to diverse audiences outside the social informatics field: system designers and developers, ICT policy analysts, teachers of technical curricula, and ICT professionals. Anticipating and addressing the concerns of such a diverse group of audiences outside the field of social informatics is an admirable but overly ambitious goal to achieve in a 153-page book (not counting the excellent glossary, references, and appendices). For example, the chapter on social informatics for ICT policy analysts includes approximately twenty pages of ICT policy history in the U.S. and Europe, which seems a luxury in such a small volume. Though it is unquestionably relevant material, it does not fit well with the rest of the book and might be more effective as a stand-alone chapter for an information policy course, perhaps used in tandem with the introduction.
  2. Borgman, C.L.: Big data, little data, no data : scholarship in the networked world (2015) 0.02
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    Abstract
    "Big Data" is on the covers of Science, Nature, the Economist, and Wired magazines, on the front pages of the Wall Street Journal and the New York Times. But despite the media hyperbole, as Christine Borgman points out in this examination of data and scholarly research, having the right data is usually better than having more data; little data can be just as valuable as big data. In many cases, there are no data -- because relevant data don't exist, cannot be found, or are not available. Moreover, data sharing is difficult, incentives to do so are minimal, and data practices vary widely across disciplines. Borgman, an often-cited authority on scholarly communication, argues that data have no value or meaning in isolation; they exist within a knowledge infrastructure -- an ecology of people, practices, technologies, institutions, material objects, and relationships. After laying out the premises of her investigation -- six "provocations" meant to inspire discussion about the uses of data in scholarship -- Borgman offers case studies of data practices in the sciences, the social sciences, and the humanities, and then considers the implications of her findings for scholarly practice and research policy. To manage and exploit data over the long term, Borgman argues, requires massive investment in knowledge infrastructures; at stake is the future of scholarship.
  3. Beyond bibliometrics : harnessing multidimensional indicators of scholarly intent (2014) 0.02
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    Content
    Inhalt: Scholars and scripts, spoors and scores / Blaise CroninHistory and evolution of (biblio)metrics / Nicola De Bellis -- The citation : from culture to infrastructure / Paul Wouters -- The data it is me! / Ronald E. Day -- The ethics of evaluative bibliometrics / Jonathan Furner -- Criteria for evaluating indicators / Yves Gingras -- Obliteration by incorporation / Katherine W. McCain -- A network approach to scholarly evaluation / Jevin D. West and Daril A. Vilhena -- Science visualization and discursive knowledge / Loet Leydesdorff -- Measuring interdisciplinarity / Vincent Larivière and Yves Gingras -- Bibliometric standards for evaluating research institutes in the natural sciences / Lutz Bornmann, Benjamin E. Bowman, Jonathan Bauer, Werner Marx, Hermann Schier and Margit Palzenberger -- Identifying and quantifying research strengths using market segmentation / Kevin W. Boyack and Richard Klavans -- Finding and recommending scholarly articles / Michael J. Kurtz and Edwin A. Henneken -- Altmetrics / Jason Priem -- Web impact measures for research assessment / Kayvan Kousha and Mike Thelwall -- Bibliographic references in Web 2.0 / Judit Bar-Illan, Hadas Shema and Mike Thelwall -- Readership metrics / Stefanie Haustein -- Evaluating the work of judges / Peter Hook -- Academic genealogy / Cassidy R. Sugimoto -- A publishing perspective on bibliometrics / Judith Kamalski, Andrew Plume and Mayur Amin -- Science metrics and science policy / Julia Lane, Mark Largent and Rebecca Rosen.
  4. Scholarly metrics under the microscope : from citation analysis to academic auditing (2015) 0.01
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    Date
    22. 1.2017 17:12:50
  5. Brown, D.J.: Access to scientific research : challenges facing communications in STM (2016) 0.01
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    Content
    Inhalt: Chapter 1. Background -- Chapter 2. Definitions -- Chapter 3. Aims, Objectives, and Methodology -- Chapter 4. Setting the Scene -- Chapter 5. Information Society -- Chapter 6. Drivers for Change -- Chapter 7 A Dysfunctional STM Scene? -- Chapter 8. Comments on the Dysfunctionality of STM Publishing -- Chapter 9. The Main Stakeholders -- Chapter 10. Search and Discovery -- Chapter 11. Impact of Google -- Chapter 12. Psychological Issues -- Chapter 13. Users of Research Output -- Chapter 14. Underlying Sociological Developments -- Chapter 15. Social Media and Social Networking -- Chapter 16. Forms of Article Delivery -- Chapter 17. Future Communication Trends -- Chapter 18. Academic Knowledge Workers -- Chapter 19. Unaffiliated Knowledge Workers -- Chapter 20. The Professions -- Chapter 21. Small and Medium Enterprises -- Chapter 22. Citizen Scientists -- Chapter 23. Learned Societies -- Chapter 24. Business Models -- Chapter 25. Open Access -- Chapter 26. Political Initiatives -- Chapter 27. Summary and Conclusions -- Chapter 28. Research Questions Addressed

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