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Gravitation And Cosmology

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The gravitation and cosmology is universally compatible with any devices to read and is available in the book collection an online access to it is set as public so you can get it instantly.
Abstract
Thank you for downloading gravitation and cosmology. As you may know, people have search hundreds times for their chosen novels like this gravitation and cosmology, but end up in malicious downloads. Rather than reading a good book with a cup of coffee in the afternoon, instead they juggled with some malicious bugs inside their laptop. gravitation and cosmology is available in our book collection an online access to it is set as public so you can get it instantly. Our digital library spans in multiple locations, allowing you to get the most less latency time to download any of our books like this one. Merely said, the gravitation and cosmology is universally compatible with any devices to read.

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Citations
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Journal ArticleDOI

The Confrontation Between General Relativity and Experiment

TL;DR: Tests of general relativity at the post-Newtonian level have reached high precision, including the light deflection, the Shapiro time delay, the perihelion advance of Mercury, the Nordtvedt effect in lunar motion, and frame-dragging.
Journal ArticleDOI

Dynamical systems applied to cosmology: dark energy and modified gravity

TL;DR: In this paper, a comprehensive and detailed study of dynamical systems applications to cosmological models focusing on the late-time behaviour of our Universe, and in particular on its accelerated expansion is presented.
Journal ArticleDOI

Generalized Uncertainty Principle: Approaches and Applications

TL;DR: The generalized uncertainty principle (GUP) as mentioned in this paper has been used for a wide range of applications in estimating the inflationary parameters, Lorentz invariance violation, black hole thermodynamics, Saleker-Wigner inequalities, entropic nature of gravitational laws, Friedmann equations, minimal time measurement and thermodynamics of the high-energy collisions.
Journal ArticleDOI

Black hole superradiance signatures of ultralight vectors

TL;DR: In this paper, the authors analytically calculate superradiant growth rates for vectors around rotating BHs in the regime where the vector Compton wavelength is much larger than the BH size.
Journal ArticleDOI

Gravitational tests of the generalized uncertainty principle

TL;DR: In this article, the corrections to the Schwarzschild metric necessary to reproduce the Hawking temperature derived from a generalized uncertainty principle (GUP), so that the GUP deformation parameter is directly linked to the deformation of the metric, are presented.
References
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Journal ArticleDOI

The Confrontation Between General Relativity and Experiment

TL;DR: Tests of general relativity at the post-Newtonian level have reached high precision, including the light deflection, the Shapiro time delay, the perihelion advance of Mercury, the Nordtvedt effect in lunar motion, and frame-dragging.
Journal ArticleDOI

Dynamical systems applied to cosmology: dark energy and modified gravity

TL;DR: In this paper, a comprehensive and detailed study of dynamical systems applications to cosmological models focusing on the late-time behaviour of our Universe, and in particular on its accelerated expansion is presented.
Journal ArticleDOI

Generalized Uncertainty Principle: Approaches and Applications

TL;DR: The generalized uncertainty principle (GUP) as mentioned in this paper has been used for a wide range of applications in estimating the inflationary parameters, Lorentz invariance violation, black hole thermodynamics, Saleker-Wigner inequalities, entropic nature of gravitational laws, Friedmann equations, minimal time measurement and thermodynamics of the high-energy collisions.
Journal ArticleDOI

Black hole superradiance signatures of ultralight vectors

TL;DR: In this paper, the authors analytically calculate superradiant growth rates for vectors around rotating BHs in the regime where the vector Compton wavelength is much larger than the BH size.