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Titlebook: World Conference of AI-Powered Innovation and Inventive Design; 24th IFIP WG 5.4 Int Denis Cavallucci,Stelian Brad,Pavel Livotov Conference

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发表于 2025-3-28 16:52:11 | 显示全部楼层
Mas’udah,Pavel Livotov,Björn Kokoschkovelocity than that of light, and consequently, supposing light to be attracted by the same force in proportion to its ., with other bodies, all light emitted from such body would be made to return towards it, by its own proper gravity” [MI84.1] . He even proposed how one might discover such “black”
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Stelian Brad,Emilia Brad,Alexandru Cîrlejanximate the matter distribution in our universe, clumps at all redshifts will influence light propagation. We describe numerical studies of this process in a later chapter. As it turns out, the multiple lens-plane theory ([BL86.1], [KO87.5]) is very convenient for the study of light rays (and bundles
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Zhongyou Wang,Jianhui Zhang,Rongjian Li,Xiangdong Guo be triple images of comparable fluxes. Thus, a theory involving marginal lenses must account for the absence of marginal triplets discovered yet..We must also mind the clumpiness when we try to determine the Hubble constant. Cosmological populations of compact objects can be strongly constrained fr
发表于 2025-3-29 06:51:26 | 显示全部楼层
Jianguang Sun,Runze Miao,YuJuan Du,Delong Zhangtivity to dust emission over the redshift range . ≈ 1 – 10 means that the likelihood for strong lensing of dust continuum sources is much higher than for optically selected sources. A large number of newstrong lenses are therefore likely to be discovered with ALMA, allowing a direct assessment of co
发表于 2025-3-29 10:08:11 | 显示全部楼层
Ranye Du,Jianguang Sun,Runze Miao,Delong Zhangect. 2 with an introduction to the observational data. In Sect. 3 we outline the basic principles of strong lenses, building on the general theory of lensing from Part 1. In Sect. 4 we discuss modeling gravitational lenses and the determination of the mass distribution of lens galaxies. In Sect. 5 w
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the main existing equations, describing a wide range of physical models of the systems. In particular, Jacobi’s virial equation is derived from equations of motion of Newton, Euler, Hamilton, Einstein and quantum mechanics. The obtained equation appears to be a scalar-quantum mathematical model of
发表于 2025-3-30 07:59:30 | 显示全部楼层
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