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The Large-Scale Structure of the Universe

P. J. E. Peebles

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Princeton University Press img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Thermodynamik

Beschreibung

The classic account of the structure and evolution of the early universe from Nobel Prize–winning physicist P. J. E. Peebles

An instant landmark on its publication, The Large-Scale Structure of the Universe remains the essential introduction to this vital area of research. Written by one of the world's most esteemed theoretical cosmologists, it provides an invaluable historical introduction to the subject, and an enduring overview of key methods, statistical measures, and techniques for dealing with cosmic evolution. With characteristic clarity and insight, P. J. E. Peebles focuses on the largest known structures—galaxy clusters—weighing the empirical evidence of the nature of clustering and the theories of how it evolves in an expanding universe. A must-have reference for students and researchers alike, this edition of The Large-Scale Structure of the Universe introduces a new generation of readers to a classic text in modern cosmology.

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Schlagwörter

Order of magnitude, Distance measures (cosmology), Equation, Approximation, Adiabatic theorem, Chronology of the universe, Big Bang, Gravitational wave, Photon, Star system, Metric expansion of space, Large numbers, Quantum process, Cosmic microwave background, Density, Subatomic particle, Volume element, Acceleration, Mass concentration (astronomy), Antimatter, Radiation pressure, Luminosity function (astronomy), Supercluster, Speed of light, Correlation function (quantum field theory), Galaxy cluster, Minkowski space, Scale invariance, Quantity, Neutrino, Continuous spectrum, Mach's principle, Autocorrelation, Protogalaxy, Renormalization, Gravity, Exponential growth, Correlation function, Cosmic dust, Amplitude, Cosmological constant, Cosmological principle, Solar mass, Spherical model, Spheroid, Absolute magnitude, Effective mass (solid-state physics), Infinitesimal transformation, Mass distribution, Power law, Apparent magnitude, Mass excess, Hubble's law, Physical cosmology, Spectral density, Gravitational potential, Gravitational redshift, Redshift, Gravitational field, Perturbation theory (quantum mechanics), Supernova, Number density, Gravitational acceleration, Spiral galaxy, Quantum mechanics, Star count, Hypersurface, Shape of the universe, Elliptical galaxy, Wavelength