Brian Josephson's lecture collection: Recent Episodes

Cambridge University

Lectures by Brian Josephson and others. Further videos are available at https://www.youtube.com/playlist?list=PLD63C1B2B2AA6F47B; see also 2019 Lindau lecture at https://www.mediatheque.lindau-nobel.org/videos/38223/2019-meeting-brian-josephson/meeting-2019.

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Fundamental physics is at present in a confused state. Going beyond it will demand a new approach, taking into account complex structures of the kind associated with biological systems. This talk discusses what the new paradigm will look like.

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Biological methodologies 'look below the surface' to understand visible phenomena, thereby disclosing hidden organisation. A similar approach to the quantum realm is likely to lead to a deeper understanding of reality than we have at present.

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This lecture looks for a basis for physics able to avoid difficulties associated with present approaches. Consideration of the workings of language leads to a picture of reality involving an evolving collection of active 'expert systems', strongly constrained by the requirement of minimal disruption.

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Present-day physics is running into obstacles of various kinds. It is argued that the cause of the problems is the fact that physics lacks tools appropriate to gaining a clear understanding of complexity. Alternatives such as that of coordination dynamics are likely to lead to a new level of understanding of nature, including the role played by mind.

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This lecture argues that present-day physics is limited through its faiiure to take account of the role played by the complicated organisation characteristic of life (transcript available).

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Talk given at the Quantum Science Symposium Europe-2018 at Peterhouse College, Cambridge, on Nov. 5th. 2018.

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Lecture at the conference on homeopathy and memory of water (http://thesciencetheevidence.co.uk/) at the Royal Society of Medicine, July 14th. 2018.

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It is argued that 'structures of power' corresponding to the semiotic scaffolding of biosemiotic theory play an important role in the workings of nature at a fundamental level. Detailed investigation into the associated complexity may form the basis of a new understanding of nature, thereby bringing to fruition ideas advanced by C. S. Peirce in the nineteenth century. The lecture was given on May 6th. 2018, in Hangzhou, China, and the slides can be viewed independently at https://philpapers.org/archive/JOSCOA-2.pdf. The accompanying abstract expounds these ideas in more detail.

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Lecture given at the Frontiers of Fundamental Physics 15 Conference held at Miguel Hernández University, Elche, Spain on 29 Nov. 2017, arguing that at the most fundamental level nature, characterised in biosemiotic terms, is essentially biological.

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Lecture given at the 66th Lindau Nobel Laureate Meeting

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Lecture at conference "The many facets of Time", discussing how Peirce's 'thirdness' may relate to an important type of order not generally recognised at this time in physics.

Imperial College's video of this lecture is available at http://panopto.imperial.ac.uk/Panopto/Pages/Viewer.aspx?id=98d2f0c3-af0c-4c7f-8e84-8a67f3680943 (short cut: bit.ly/the-end-of-an-error)

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Lecture at the Stiftung der Deutschen Wirtschaft symposium on Science and Society, Cambridge, February 2013, in which the difficulties faced by advances running counter to the views prevailing in the scientific community were discussed.

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Lecture given at the St. Petersburg Scientific Forum, October 12th. 2012.

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Lecture given by Brian Josephson on the day preceding the bdj50 conference.

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Lecture given by Brian Josephson at the 2012 meeting of Nobel Laureates' at Lindau. Higher definition versions are available at http://youtu.be/iMIlcqE4p74.

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The Perrott-Warrick Lecture by Dr. Rupert Sheldrake (February 9th. 2011), in which were described phenomena indicative of the existence of telepathy in both animals and human beings.

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In January 2011 Andrea Rossi demonstrated a device that purported to develop 10 kW of power from a nuclear reaction. This video discusses its credibility, the investigations that have been done on the device, and its future prospects (a multiple-unit system was measured by its potential buyer as generating 500 kW on Oct. 28, 2011).

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John Benneth reviews the attempts that have been made to model ‘memory of water’, which has been proposed as an explanation for the claimed benefits of homeopathic remedies.

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Lecture given by Professor Josephson at an event in celebration of his 70th. birthday (lecture date, May 5th, 2010). Introduction by Prof. Judith Driscoll.

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On March 10, 1999, the late Jacques Benveniste gave the Cavendish's Departmental Colloquium on "Electromagnetically Activated Water and the Puzzle of the Biological Signal". The lecture was recorded on VHS videotape, and is now available on line through the University's Media Service.

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Audio recording of a lecture by Brian Josephson (slides also available), presented to Cambridge University Physics Society in March 2008, proposing that life and mentality may be more basic than matter.

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A demonstration of the Levitron, a device that uses a combination of magnetic forces and gyroscopic stability to suspend a spinning magnet in the air above a static magnet.

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Hermann Staudinger Lecture given by Professor Josephson at the Freiburg Institute for Advanced Studies, October 28, 2009.

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Selected discussions from the 'Hokkaido-8' symposium of July 2008 on Evolving Science. The theme of the discussions was the evolution of science from its current form, with its materialistic emphasis, to a more inclusive global form, integrating all aspects of knowledge. Discussion participants: Osman Bakar, Brian Josephson, Yasuhiko Genku Kimura, Manjir Samanta-Laughton, Elisabet Sahtouris (convener), Akio Shoji, Enoé Texier, William Tiller and Caroline Ward (facilitator). A transcript of the main discussion is available via the Transcript tab above.

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Lecture given by Brian Josephson at the 58th. meeting of Nobel Laureates at Lindau