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University of Cambridge

Cosmology

University of Cambridge via Coursera

Overview

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Cosmology explores the origin, structure, evolution, and ultimate fate of the universe. In this course, learners investigate the evidence for the Big Bang, the expansion of space, and the relic radiation of the Cosmic Microwave Background, while examining how modern observations have transformed our understanding of the cosmos. Across five modules, the course introduces the composition of the universe, including ordinary matter, dark matter, dark energy, and radiation, before exploring how cosmologists model the universe using General Relativity and the Friedmann equations. Learners examine the geometry and evolution of spacetime, the earliest moments of the universe, cosmic inflation, nucleosynthesis, and the formation of the first stars and galaxies. The course also explores the large-scale structure of the cosmos and considers the long-term future of the universe through concepts such as heat death, black hole evaporation, the Big Rip, and the multiverse. Designed for learners with an interest in astronomy, physics, and the nature of the universe, this course combines observational evidence, modern cosmological theory, and current scientific discoveries to provide a coherent picture of how the universe began, evolved, and may ultimately end.

Syllabus

  • Evidence for the Big Bang
    • Explore the observational foundations of modern cosmology, including the expansion of the universe, cosmological redshift, and the Cosmic Microwave Background. The module also compares the Big Bang model with competing theories such as the Steady State universe.
  • The Contents of the Universe
    • Investigate the composition of the cosmos, from ordinary matter and radiation to dark matter and dark energy. Learners also explore how matter is distributed on the largest scales and how dark energy drives accelerated expansion.
  • Modelling the Universe
    • Examine how General Relativity is applied to cosmology through spacetime, the FLRW metric, and the Friedmann equations. This module introduces the mathematical models used to describe the evolution and geometry of the universe.
  • The Ages of the Universe
    • Discover the physics of the early universe, including inflation, primordial nucleosynthesis, and recombination. The module also traces the major eras of cosmic history and examines the origins of the lightest elements and the Cosmic Microwave Background.
  • The Present and Late Future of the Universe
    • Explore the formation of the first stars and galaxies and follow the evolution of the universe into its distant future. Topics include stellar evolution, black holes, the ultimate fate of the cosmos, and modern ideas such as the multiverse.

Taught by

University of Cambridge - Professional and Continuing Education

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