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Titlebook: 1st Karl Schwarzschild Meeting on Gravitational Physics; Piero Nicolini,Matthias Kaminski,Marcus Bleicher Book 2016 Springer International

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发表于 2025-3-21 18:33:08 | 显示全部楼层 |阅读模式
期刊全称1st Karl Schwarzschild Meeting on Gravitational Physics
影响因子2023Piero Nicolini,Matthias Kaminski,Marcus Bleicher
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发行地址A broad overview of contemporary black hole physics and gravitation.With contributions of leading experts in the field.Conference dedicated to the figure of Karl Schwarzschild for his pioneering black
图书封面Titlebook: 1st Karl Schwarzschild Meeting on Gravitational Physics;  Piero Nicolini,Matthias Kaminski,Marcus Bleicher Book 2016 Springer International
影响因子.These proceedings collect the selected contributions of participants of the First Karl Schwarzschild Meeting on Gravitational Physics, held in Frankfurt, Germany to celebrate the 140th anniversary of Schwarzschild‘s birth. They are grouped into 4 main themes: I. The Life and Work of Karl Schwarzschild; II. Black Holes in Classical General Relativity, Numerical Relativity, Astrophysics, Cosmology, and Alternative Theories of Gravity; III. Black Holes in Quantum Gravity and String Theory; IV. Other Topics in Contemporary Gravitation..Inspired by the foundational principle ``By acknowledging the past, we open a route to the future",  the week-long meeting, envisioned as a forum for exchange between scientists from all locations and levels of education, drew participants from 15 countries across 4 continents. In addition to plenary talks from leading researchers, a special focus on young talent was provided, a feature underlined by the Springer Prize for the best student and junior presentations..
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Extremely Brown and Incredibly Ignoredack hole solution in general relativity. The procedure described here shows how this solution can indeed be constructed as the unique solution to the corresponding boundary value problem of the axially symmetric Einstein–Maxwell equations in a straightforward manner.
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https://doi.org/10.1057/978-1-137-60198-8 provide a unique probe of the early universe, high-energy physics and quantum gravity. We highlight some recent developments in the subject, including improved limits on the fraction of the Universe going into evaporating PBHs in the mass range .–. and the possibility of using PBHs to probe a cosmo
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Extremely Brown and Incredibly Ignoredack hole solution in general relativity. The procedure described here shows how this solution can indeed be constructed as the unique solution to the corresponding boundary value problem of the axially symmetric Einstein–Maxwell equations in a straightforward manner.
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Portraits of Former Forced Laborers,al field. This requirement, however, is in astrophysical realistic scenarios often violated, e.g., if the black hole is part of a binary system or if they are surrounded by an accretion disk. In these cases, the black hole is distorted due to tidal forces. We show that the subsequent formulation of
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