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- W2566974310 abstract "In the search for a physical theory of time,I proposed that chronons areelementary particles of time(Hsu,1992);natural phenomena which seem tobe spontaneous changes are interpreted in terms of chronon-captures.Naturalradioactivity is considered the result of chronon-bombardment:the chrononcapture by uranium-238,for example,causes its decay into thorium-234 andalpha particle.Catalysis in chemistry is explained by assuming a larger crosssection for chronon-capture by a catalyst.Life is defined as the acquisitionby a cell the ability to capture chronons,and death is the loss of that ability.Since then,I have developed the idea that chronon can be a quantum actionor quanton Levy-Leblond and Balibar,1990),an energy/time product.Sucha chronon/quanton could be the elementary particle in space and time.Chronons have variable energy,mass,and lifetime.Photons are chrononstravelling at the speed of light in wave motion.Neutrinos are chronons travelling at the speed of light,but not in wave motion.A third kind of elementary particles has been called WIMPs.Those are particles which neithertravel at the speed of light,nor in wave-motion.Photons and neutrinos havevanishingly small mass,but aggregates of chronons can have a finite mass.Chronons,as energy carriers,could serve the function of being carriers ofinformation.Energy transfer in biologic growth could be effected throughsuch information carriers.An input of orderly sequenced chronons couldexplain the phenomena of biologic clocks.The chronon theory explains natural phenomena in terms of particle-interactions.The postulate of light transmission by particle collisions couldbe tested by mathematical modelling.The postulate that radioactive decaysare activated by neutrino captures could be tested by experiments.The theory has an relevance to earth sciernce,as it points to a new approach tostudy problems of earthquakes,energy production,and disposal of radioactive wastes.Identification of chronons as information-carriers could haveimplications to problems in life sciences." @default.
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- W2566974310 date "1996-01-01" @default.
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- W2566974310 title "A High-Resolution Hydrographic Contrast Between the East China Sea and the Japan Sea Based on Foraminiferal Isotopic Records for the Late Holocene" @default.
- W2566974310 doi "https://doi.org/10.3319/tao.1996.7.2.225(o)" @default.
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