Kurt Mendelssohn | |
---|---|
Born | Berlin-Schoeneberg, German Empire | 7 January 1906
Died | 18 September 1980 Oxford, UK | (aged 74)
Citizenship | British |
Alma mater | University of Berlin |
Scientific career | |
Fields | Physicist |
Institutions | University of Oxford |
Doctoral advisor | Franz Eugen Simon |
Other academic advisors | Max Planck Walther Nernst Erwin Schrödinger Albert Einstein |
Doctoral students | Harold Max Rosenberg |
Influenced | David Stanley Evans |
Signature | |
Kurt Alfred Georg Mendelssohn FRS[1] (7 January 1906, Berlin-Schoeneberg – 18 September 1980) was a German-born British medical physicist, elected a Fellow of the Royal Society 1951.[2][3]
He was the only child of Ernst Moritz Mendelssohn and Elizabeth Ruprecht. Through his grandfather he was a great-great-grandson of Saul Mendelssohn, the younger brother of philosopher Moses Mendelssohn.[4] This places him amongst the Mendelssohn family. Francis Simon and Heinrich Mendelssohn were his cousins.[5] He married Jutte Zarniko, the sister of Barbara Zarniko, one of Franz Simon's students in 1932. When James Crowther married Franziska Zarniko in 1934, he became a brother-in-law of Mendelssohn.[6]
He received a doctorate in physics from the University of Berlin, having studied under Max Planck, Walther Nernst, Erwin Schrödinger, and Albert Einstein. Frederick Lindemann visited Berlin in 1930 to buy an improved hydrogen liquefier designed by Francis Simon. Mendelssohn was given the role of demonstrating the equipment. During these trials Lindemann tried to recruit Mendelssohn to join him in Oxford University. However as Mendelssohn had just accepted a job in Breslau, he felt obliged to refuse. He was joining his cousin, Franci Simon, who had appointed Professor of Physical Chemistry at the University of Breslau. Nevertheless Lindemann contacted him again in 1932 inviting him to the Clarendon Laboratory in Oxford to install a helium liquifier.[7] This he did, and by the time he returned to Breslau in January 1933, he had a grant application to the Rockefeller Foundation to allow him to join the Clarendon Laboratory. In the end both he and Simon ended up receiving funding from Imperial Chemical Industries for research work at Oxford. Whilst the rising tide of German anti-semitism provided the context for his reasons for moving, he was to discover that Lindemann's rivalry with Lord Rutherford and the Cavendish Laboratory, based at the University of Cambridge was influential in England.[7]
Leaving Germany at the advent of the Nazi regime in 1933, he went to England. He worked at the University of Oxford from 1933. He was Reader in Physics there, 1955–1973, Emeritus Reader, 1973; Emeritus Professorial Fellow of Wolfson College, Oxford, 1973 (Professorial Fellow, 1971–1973).
His scientific work included low temperature physics, transuranic elements, and medical physics.
He was awarded the Royal Society's Hughes Medal in 1967 and the Simon Memorial Prize in 1968.
In 1974, he published The Riddle of the Pyramids, in which he sought to explain the whys and wherefores of the earliest Egyptian pyramids. Though Mendelssohn himself was not an Egyptologist, the book builds on advice from experts like Sir Robert Mond and Walter Emery, as well as his own visits to Egypt and Mexico. His principal thesis was that the pyramid at Meidum had collapsed during construction, a conclusion he arrived at using his knowledge of physics and which was sparked in 1966 by images of the Aberfan disaster, where Mendelssohn saw similarities to the rubble mound surrounding the Meidum pyramid, a primary destination for his travel to Egypt the year before. Working from that conclusion, he further elaborated a theory that pyramid construction in Egypt took on a life of its own during the Third and Fourth Dynasties, more or less independently of the reigns of pharaohs. His theory has not been taken up by the Egyptological community, but the book remains a stimulating and detailed study of the Egyptian pyramids.
Mendelssohn's pyramid theory suggests explanations to a couple of mysteries in pyramid construction:
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