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Gudrun Wolfschmidt

    September 24, 1951
    Cultural heritage of astronomical observatories
    Enhancing University Heritage-Based Research. Proceedings of the XV Universeum Network Meeting, Hamburg, 12-14 June 2014.
    Colours in Culture and Science.
    Weber’s Planetary Model of the Atom
    Harmony and Symmetry. Celestial regularities shaping human culture.
    Heinrich Hertz (1857-1894)
    • 2020

      Harmony and Symmetry. Celestial regularities shaping human culture.

      Proceedings of the SEAC 2018 Conference in Graz. Edited by Sonja Draxler, Max E. Lippitsch & Gudrun Wolfschmidt. SEAC Publications; Vol. 01

      • 440 pages
      • 16 hours of reading

      Exploring the deep-rooted connection between astronomy and human culture, this collection highlights the significant contributions of Johannes Kepler, particularly his search for harmony in celestial movements. The proceedings from the 2018 SEAC conference in Graz emphasize Kepler's early work, including his first book, Mysterium cosmographicum, which proposed a twelve-fold division of the zodiac. The collection features five contributions that delve into Kepler's theories, including the intersection of harmony in musical theory, showcasing the enduring influence of celestial regularities on human thought.

      Harmony and Symmetry. Celestial regularities shaping human culture.
    • 2016

      The 15th annual meeting of the European Academic Heritage Network UNIVERSEUM focused on academic heritage, encompassing both tangible and intangible aspects. Discussions centered on the preservation, study, access, and promotion of university collections, museums, archives, libraries, botanical gardens, astronomical observatories, and historically significant buildings. The conference theme, "Enhancing University Heritage-Based Research," highlighted the extensive study of cultural heritage, including collection studies, historical and social studies of science, natural sciences research, didactic research, museum studies, and conservation analysis. Research is a core mission of universities, prompting questions about the role of university heritage in this context. What research is being conducted, and how is it shared with the public? How can university heritage be made more relevant in research development and outreach? Additionally, the meeting explored how research can transform university spaces into heritage sites and how it can elevate artefacts, specimens, books, manuscripts, and documents into recognized heritage. The discussions aimed to assess the potential of university heritage as a multidisciplinary tool for research activities, drawing on experiences, case studies, and in-depth papers to address these critical issues.

      Enhancing University Heritage-Based Research. Proceedings of the XV Universeum Network Meeting, Hamburg, 12-14 June 2014.
    • 2011

      Wilhelm Weber, alongside Karl Friedrich Gauß, contributed to absolute measurement systems foundational to SI units. This presentation by Andre Koch Torres Assis and others discusses Weber's lesser-known 1860 atomic model, where charged particles orbit a ponderable atom, resembling Bohr's model, and influenced the development of classical electron theory and solid-state physics.

      Weber’s Planetary Model of the Atom
    • 2011

      Colours in Culture and Science.

      200 Years Goethe’s Colour Theory. Proceedings of the Interdisciplinary Symposium in Hamburg, Oct. 12–15, 2010. Nuncius Hamburgensis – Beiträge zur Geschichte der Naturwissenschaften; Band 22.

      This book explores the significance of colors in various fields, stemming from the interdisciplinary symposium "Colours in culture and science" held for the 200th anniversary of Goethe's color theory. Topics include philosophy, cultural history, art, color perception, and the contrasting theories of Newton and Goethe, highlighting the need for an interdisciplinary approach to color studies.

      Colours in Culture and Science.
    • 2008

      Heinrich Hertz (1857-1894)

      and the Development of Communication

      • 672 pages
      • 24 hours of reading

      The book explores the life and legacy of Heinrich Hertz, a pivotal figure in physics known for his groundbreaking work in electromagnetism. It delves into his contributions to the field, highlighting his experiments and discoveries that laid the groundwork for modern physics. Additionally, the narrative examines Hertz's philosophy of science, offering insights into his thoughts on scientific inquiry and its implications. Through this exploration, readers gain a deeper understanding of Hertz's impact on both science and philosophy during the late 19th century.

      Heinrich Hertz (1857-1894)