Einstein and the universe (eBook)

Artikelnummer: 978-3-7568-2220-1
Einband: Adobe Digital Editions
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A distinguished German authority on mathematical physics, writing recently on the theory of Relativity, declared that if his publishers had been willing to allow him sufficient paper and print he could have explained what he wished to convey without using a single mathematical formula. Such success is conceivable. Mathematical methods present, however, two advantages. Their terminology is precise and concentrated, in a fashion which ordinary language cannot afford to adopt. Further, the symbols which result from their employment have implications which, when brought to light, yield new knowledge. This is deductively reached, but it is none the less new knowledge. With greater precision than is usual, ordinary language may be made to do some, if not a great deal, of this work for which mathematical methods are alone quite appropriate. If ordinary language can do part of it an advantage may be gained. The difficulty that attends mathematical symbolism is the accompanying tendency to take the symbol as exhaustively descriptive of reality. Now it is not so descriptive. It always embodies an abstraction. It accordingly leads to the use of metaphors which are inadequate and generally untrue. It is only qualification by descriptive language of a wider range that can keep this tendency in
check. A new school of mathematical physicists, still, however, small in number, is beginning to appreciate this.

A distinguished German authority on mathematical physics, writing recently on the theory of Relativity, declared that if his publishers had been willing to allow him sufficient paper and print he could have explained what he wished to convey without using a single mathematical formula. Such success is conceivable. Mathematical methods present, however, two advantages. Their terminology is precise and concentrated, in a fashion which ordinary language cannot afford to adopt. Further, the symbols which result from their employment have implications which, when brought to light, yield new knowledge. This is deductively reached, but it is none the less new knowledge. With greater precision than is usual, ordinary language may be made to do some, if not a great deal, of this work for which mathematical methods are alone quite appropriate. If ordinary language can do part of it an advantage may be gained. The difficulty that attends mathematical symbolism is the accompanying tendency to take the symbol as exhaustively descriptive of reality. Now it is not so descriptive. It always embodies an abstraction. It accordingly leads to the use of metaphors which are inadequate and generally untrue. It is only qualification by descriptive language of a wider range that can keep this tendency in
check. A new school of mathematical physicists, still, however, small in number, is beginning to appreciate this.

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VerlagBooks on Demand
EinbandAdobe Digital Editions
Erscheinungsjahr2022
Seitenangabe195 S.
AusgabekennzeichenEnglisch
Auflage1. Auflage
PlattformEPUB
AutorNordmann, Charles

Über den Autor Charles Nordmann

Charles Nordmann (1881-1940) fut un astronome et vulgarisateur scientifique français de renom, dont l'oeuvre a contribué à populariser les avancées révolutionnaires de la physique du début du XXe siècle. Né à Saint-Imier en Suisse, il développa très tôt une passion pour l'astronomie et la physique.Diplômé de l'École normale supérieure, Nordmann se distingua par ses travaux en astrophysique à l'Observatoire de Paris. Sa compréhension profonde de la relativité einsteinienne et son talent pour l'expliquer au grand public firent de lui l'un des principaux vulgarisateurs de cette théorie en France.« L'espace et le temps selon Einstein » témoigne de sa capacité exceptionnelle à rendre accessibles des concepts physiques modernes complexes. Nordmann y démontre sa maîtrise de l'unification espace-temps proposée par Einstein, tout en offrant une perspective historique sur cette révolution scientifique.Au-delà de ses travaux de vulgarisation, Nordmann contribua significativement à la transformation de la cosmologie par ses propres recherches. Il fut notamment pionnier dans l'utilisation de cellules photoélectriques pour mesurer la luminosité des étoiles.L'héritage de Charles Nordmann réside dans sa capacité à jeter des ponts entre la science de pointe et le grand public, faisant de lui une figure clé dans la diffusion des idées scientifiques au début du XXe siècle.

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