Buch, Englisch, Band 219, 421 Seiten, Format (B × H): 155 mm x 235 mm, Gewicht: 657 g
Reihe: Nato Science Series C:
Buch, Englisch, Band 219, 421 Seiten, Format (B × H): 155 mm x 235 mm, Gewicht: 657 g
Reihe: Nato Science Series C:
ISBN: 978-94-010-8281-5
Verlag: Springer Netherlands
List of Participants ••. ••. •. •. ••. ••. ••. •. •. ••. •. •. ••. • xi I. MOSS / The Quantum Origin of the Universe ••••. •. •. •••. •••. ••• M. S. TUru~ER / Cosmology and Particle Physics •. •••. ••. •. •••. •• 19 G. GELMINI / Supersynunetry and the Early Universe •••. •. ••. •. •. 115 J. D. BARROW / Relativistic Cosmology. 125 P. J. E. PEEBLES / Yet Another Scenario for Galaxy Formation. ••. 203 ?:1. B. '-lISE / Non-Gaussian Fluctuations. 215 S. D. H. mUTE / N-body Hethods and the Formation of Large-Scale Structure •. •. •. • •. • • •. •. • •. •. •. 239 •. • •. • T. PI~~ / Numerical Relativity and Cosmology. 261 J. R. BOND / Distortions and Anisotropies of the Cosmic Background Radiation •. •. ••. ••. •••. ••••. ••. •••••. •• 283 J. V. HALL / The Early Universe - An Observer's View. 335 G. GELHINI / Can the Solar Neutrino Problem be the First Detected Signature of Dark Hatter from the Halo of Our Galaxy? 351 A. K. DRUKIER / Detecting Cold Dark !1atter Candidates •. •. •. •. 361 S. TOULMIN / The Early Universe: Historical and Philosophical Perspectives. •. •. •. •••. •. •. •. •. ••••. •. •. • 393 INDEX. •. •. ••. ••••. •••••. •. •. •. •. •. •. •. ••. •••.
Zielgruppe
Research
Autoren/Hrsg.
Weitere Infos & Material
The Quantum Origin of the Universe.- Cosmology and Particle Physics.- Supersymmetry and the Early Universe.- Relativistic Cosmology.- Yet Another Scenario for Galaxy Formation.- Non-Gaussian Fluctuations.- N-body Methods and the Formation of Large-Scale Structure.- Numerical Relativity and Cosmology.- Distortions and Anisotropies of the Cosmic Background Radiation.- The Early Universe — An Observer’s View.- Can the Solar Neutrino Problem be the First Detected Signature of Dark Matter from the Halo of Our Galaxy?.- Detecting Cold Dark Matter Candidates.- The Early Universe: Historical and Philosophical Perspectives.