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The history of molecular biology in Germany is closely linked to the Institute of Genetics in Cologne, the first molecular biological Institute at a German university. Founded in 1959 by the émigré physicist and future Nobel laureate Max Delbrück, the Institute was the first in Germany to implement less hierarchical American organizational structures and research habits. The Institute had already gained an excellent international scientific reputation by the beginning of the 1960s.This volume comprises the recollections of scientists pertaining to the Institute's research, organization and other specificities. Articles by historians of science analyze the historical background and international framework of the Institute's foundations and genetic research. In addition, the scientists discuss contemporary questions of science policy with regard to teaching and the impact of the internal structures of scientific institutions on the quality of research.
The authors examine the relationship between the cultural, religious and social situation of German Jews on the one hand and their scientific activities on the other. They discuss the sensitive question of the specificity of the approaches of Jewish scientists and draw attention to the debate concerning the relationship between Judaism and academic research, ranging from the early 19th century theorizing on science and Judaism to 20th century issues, e.g. the controversies on 'Jewish' physics, mathematics etc. in the 1920s and 30s. Contributors: Ute Deichmann, Anthony S. Travis, Moritz Epple, Raphael Falk, Ulrich Charpa, Nurit Kirsch, Yael Hashiloni-Dolev, Aharon Loewenstein, Ruth Sime, Simone Wenkel
A thoughtful new look at the entwined histories of genetic medicine and eugenics, with probing discussion of the moral risks of seeking human perfection
In 1935 geneticist Nikolai Timoféeff-Ressovsky, radiation physicist Karl G. Zimmer, and quantum physicist Max Delbrück published “On the Nature of Gene Mutation and Gene Structure,” known subsequently as the “Three-Man Paper.” This seminal paper advanced work on the physical exploration of the structure of the gene through radiation physics and suggested ways in which physics could reveal definite information about gene structure, mutation, and action. Representing a new level of collaboration between physics and biology, it played an important role in the birth of the new field of molecular biology. The paper’s results were popularized for a wide audience in the What is Life? le...
Ioan James celebrates the extraordinary contribution made by Jewish people in mathematics and physics, from the mathematician Norbert Wiener, the founder of cybernetics, to distinguished nuclear physicist and Nobel Prize-winner Niels Bohr. He tells the life-stories of thirty-five men and women, born in the nineteenth century, who were at the forefront of research in the closely related fields of mathematics and physics, often in the face of various kinds of anti-Semitism. Some were caught up in the trauma of the Nazi accession to power in Germany and the Second World War. Wolfgang Pauli, described as 'greater than Einstein' by his contemporary Max Born, became a German national following the...
Die International Bibliographiy of Historical Sciences verzeichnet jährlich die bedeutendsten Neuerscheinungen geschichtswissenschaftlicher Monographien und Zeitschriftenartikel weltweit, die inhaltlich von der Vor- und Frühgeschichte bis zur jüngsten Vergangenheit reichen. Sie ist damit die derzeit einzige laufende Bibliographie dieser Art, die thematisch, zeitlich und geographisch ein derart breites Spektrum abdeckt. Innerhalb der systematischen Gliederung nach Zeitalter, Region oder historischer Disziplin sind die Werke nach Autorennamen oder charakteristischem Titelhauptwort aufgelistet.
In this provocative and persuasive new book, Nicholas Ostler challenges our assumption that English will continue to dominate as the global lingua franca. Drawing on his encyclopaedic knowledge of world languages and their history, Ostler reveals that just as past great languages like Latin and Sanskrit have died out, so English will follow. The influence of English now is hard to exaggerate - it is the world's preferred medium for business, science and entertainment, and is claimed to be a basic educational tool like mathematics or computing. So is it here to stay? For the last four centuries, the dominant world power has been English-speaking, but the global balance of power is shifting. A...
Hermann von Helmholtz was a towering figure of nineteenth-century scientific and intellectual life. Best known for his achievements in physiology and physics, he also contributed to other disciplines such as ophthalmology, psychology, mathematics, chemical thermodynamics, and meteorology. With Helmholtz: A Life in Science, David Cahan has written a definitive biography, one that brings to light the dynamic relationship between Helmholtz’s private life, his professional pursuits, and the larger world in which he lived. ? Utilizing all of Helmholtz’s scientific and philosophical writings, as well as previously unknown letters, this book reveals the forces that drove his life—a passion to...
Also available online as part of the Gale Virtual Reference Library under the title Complete dictionary of scientific biography.