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Working physicists, and especially astrophysicists, value a good `back-of-the-envelope' calculation, meaning a short, elegant computation or argument that starts from general principles and leads to an interesting result. This book guides students on how to understand astrophysics using general principles and concise calculations -- endeavouring to be elegant where possible and using short computer programs where necessary. The material proceeds in approximate historical order. The book begins with the Enlightenment-era insight that the orbits of the planets is easy, but the orbit of the Moon is a real headache, and continues to deterministic chaos. This is followed by a chapter on spacetime and black holes. Four chapters reveal how microphysics, especially quantum mechanics, allow us to understand how stars work. The last two chapters are about cosmology, bringing us to 21st-century developments on the microwave background and gravitational waves.
This book investigates how fundamental physical principles and back-of-the-envelope calculations can be utilized to derive significant astrophysical insights. Authors Paul A. Taylor and Prasenjit Saha, both experienced in the field of physics, provide a pedagogical framework that prioritizes elegant, concise mathematical arguments over exhaustive numerical modeling. By emphasizing general principles, the text enables students to bridge the gap between theoretical physics and observable astronomical phenomena.
What You Will Find
Scope Limits
Experts highlight this text as a valuable resource for students seeking to develop the intuitive, analytical skills necessary for professional research. Readers frequently note that the prose is dense and requires a solid grasp of undergraduate physics to fully appreciate the elegance of the presented arguments.
Page Count:
144
Publication Date:
2018-01-01
Publisher:
OUP Oxford
ISBN-10:
019254845X
ISBN-13:
9780192548450
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