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Phase Transitions in the Early Universe: Theory and Observations (2001)

Phase Transitions in the Early Universe: Theory and Observations

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"Phase Transitions in the Early Universe: Theory and Observations" by Héctor J. De Vega, Isaak M. Khalatnikov, Norma G. Sànchez is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

A fundamental, profound review of the key issues relating to the early universe and the physical processes that occurred in it. The interplay between cosmic microwave background radiation, large scale structure, and the dark matter problem are stressed, with a central focus on the crucial issue of the phase transitions in the early universe and their observable consequences: baryon symmetry, baryogenesis and cosmological fluctuations. There is an interplay between cosmology, statistical physics and particle physics in studying these problems, both at the theoretical and the experimental / observational levels. Special contributions are devoted to primordial and astrophysical black holes and to high energy cosmic rays and neutrino astrophysics. There is also a special section devoted to the International Space Station and its scientific utilization.

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Best For: Researchers and students in cosmology and astrophysics interested in early universe phenomena.
Focus: Theoretical and observational aspects of phase transitions in the early universe, including baryon symmetry, baryogenesis, and cosmological fluctuations.
Covers: Interplay between cosmic microwave background radiation, large scale structure, and dark matter in relation to early universe phase transitions.
Why It Matters: Understanding phase transitions in the early universe is essential for explaining the origin of baryon asymmetry and the formation of cosmological structures observed today.

"Phase Transitions in the Early Universe: Theory and Observations" by Héctor J. De Vega, Isaak M. Khalatnikov, Norma G. Sànchez is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Deep Sky & Solar System

Author: Héctor J. De Vega, Isaak M. Khalatnikov, Norma G. Sànchez

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

A fundamental, profound review of the key issues relating to the early universe and the physical processes that occurred in it. The interplay between cosmic microwave background radiation, large scale structure, and the dark matter problem are stressed, with a central focus on the crucial issue of the phase transitions in the early universe and their observable consequences: baryon symmetry, baryogenesis and cosmological fluctuations. There is an interplay between cosmology, statistical physics and particle physics in studying these problems, both at the theoretical and the experimental / observational levels. Special contributions are devoted to primordial and astrophysical black holes and to high energy cosmic rays and neutrino astrophysics. There is also a special section devoted to the International Space Station and its scientific utilization.

AuthorHéctor J. De Vega, Isaak M. Khalatnikov, Norma G. Sànchez
PublisherSpringer Science & Business Media
Published2001-11-30
ISBN-139781402000560
BindingHardcover
Pages1032
LanguageEnglish
SubjectsScience
TopicDeep Sky & Solar System
SeriesNATO Science Series II: Mathematics, Physics and Chemistry

Format: Hardcover

Length: 1032 pages

Language: English

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