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挑战“相对论”的民间科学家——记《广义宇宙相对论》理论创立者冯劲松
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《高科技与产业化》 2006年第9期118-119,共2页
初见冯劲松.看到他衣着朴素.留着平头.相貌憨厚,笑容略带腼腆.怎么也想不到:这位看上去很年轻的“帅小伙儿”是重庆新大水泥集团有限公司的董事长,而更想不到的是:他从13岁开始自学.研究物理学,至今已有30多年,并敢于挑战爱... 初见冯劲松.看到他衣着朴素.留着平头.相貌憨厚,笑容略带腼腆.怎么也想不到:这位看上去很年轻的“帅小伙儿”是重庆新大水泥集团有限公司的董事长,而更想不到的是:他从13岁开始自学.研究物理学,至今已有30多年,并敢于挑战爱因斯坦的相对论.创立了《广义宇宙相对论》和《宇宙相对论量子力学》理论.在国内外物理学界都颇有影响。惊讶之余,心中的敬意油然而生。 展开更多
关键词 相对论量子力学 创立者 科学家 民间 爱因斯坦 《广义宇宙相对论》 冯劲松
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From the elasticity theory to cosmology and vice versa 被引量:1
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作者 LEVRINO Luca TARTAGLIA Angelo 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第4期597-603,共7页
The paper shows how a generalization of the elasticity theory to four dimensions and to space-time allows for a consistent description of the homogeneous and isotropic universe,including the accelerated expansion.The ... The paper shows how a generalization of the elasticity theory to four dimensions and to space-time allows for a consistent description of the homogeneous and isotropic universe,including the accelerated expansion.The analogy is manifested by the inclusion in the traditional Lagrangian of general relativity of an additional term accounting for the strain induced in the manifold(i.e.in space-time)by the curvature,be it induced by the presence of a texture defect or by a matter/energy distribution.The additional term is su?cient to account for various observed features of the universe and to give a simple interpretation for the so called dark energy.Then,we show how the same approach can be adopted back in three dimensions to obtain the equilibrium configuration of a given solid subject to strain induced by defects or applied forces.Finally,it is shown how concepts coming from the familiar elasticity theory can inspire new approaches to cosmology and in return how methods appropriated to General Relativity can be applied back to classical problems of elastic deformations in three dimensions. 展开更多
关键词 deformable solids COSMOLOGY elastic strain Lagrangian density and tensors
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Editorial
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作者 XU HaiJiao HUANG ChangQin +5 位作者 PAN Peng ZHAO GanSen XU ChunYan LU YanSheng CHEN Deng WU JiYi 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第12期1-2,共2页
This issue of Science China Physics, Mechanics & Astronomy celebrates the Centenary of Einstein's General Theory of Rela- tivity, which changed the way humanity understood the concepts of space, time and matter. Pri... This issue of Science China Physics, Mechanics & Astronomy celebrates the Centenary of Einstein's General Theory of Rela- tivity, which changed the way humanity understood the concepts of space, time and matter. Prior to 1915 Einstein had intro- duced his theory of Special Relativity, and Minkowski had introduced the spacetime metric. General Relativity overthrew the Newtonian idea that space, time and matter were independent, replacing it with the idea that space, time and matter are inex- tricably linked. Within a year of the publication of General Relativity came Schwartzchild's exact solution of Einstein's field equations which describes the spacetime structure of black holes. In 1916 and 1918 Einstein showed that his theory predicted the existence of gravitational waves. Within 7 years, in 1922, Friedmann published a solution for Einstein's field equations applied to a homogeneous universe, uncovering the basic physics of Big Bang cosmology. 展开更多
关键词 multi-concept image retrieval semantic correlation probability estimation concept learning visual evidence
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