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How Molecular Forces and Rotating Planets Create Life: The Emergence and Evolution of Prokaryotic Cells (Vienna Series in Theoretical Biology)

How Molecular Forces and Rotating Planets Create Life: The Emergence and Evolution of Prokaryotic Cells (Vienna Series in Theoretical Biology)

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About this book

Overview

A reconceptualization of origins research that exploits a modern understanding of non-covalent molecular forces that stabilize living prokaryotic cells.

Scientific research into the origins of life remains exploratory and speculative. Science has no definitive answer to the biggest questions--"What is life?" and "How did life begin on earth?" In this book, Jan Spitzer reconceptualizes origins research by exploiting a modern understanding of non-covalent molecular forces and covalent bond formation--a physicochemical approach propounded originally by Linus Pauling and Max Delbrück. Spitzer develops the Pauling-Delbrück premise as a physicochemical jigsaw puzzle that identifies key stages in life's emergence, from the formation of first oceans, tidal sediments, and proto-biofilms to progenotes, proto-cells and the first cellular organisms.

Book details

Book Information

Title
How Molecular Forces and Rotating Planets Create Life: The Emergence and Evolution of Prokaryotic Cells (Vienna Series in Theoretical Biology)
Condition
Like New
A very clean copy that looks nearly new. Pages are clean, the binding is secure, and only very minor shelf wear or small cosmetic marks may be present.
Publisher
The MIT Press
Published
2021
Cover
Hardcover
Dimensions
H 9.31 in / W 6.25 in / T 0.79 in / Weight 1.23 lb
Pages
248
Language
English
Identifiers
ISBN: 0262045575
EAN: 9780262045575

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