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The Earth as a Self-Regulating System

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The Earth as a Self-Regulating System

The Gaia hypothesis, proposed by the chemist James Lovelock and developed with the microbiologist Lynn Margulis from the late 1960s and set out fully in Lovelock's 1979 book Gaia: A New Look at Life on Earth, is a scientific proposal that the Earth's biosphere, atmosphere, oceans and soil interact as a single, complex, self-regulating system that has actively maintained conditions favorable for life, including a stable global temperature and atmospheric chemistry, across immense spans of geological time.

Lovelock developed the hypothesis while working on methods for detecting life on other planets, reasoning that a planet's atmosphere in chemical disequilibrium, far from what non-living chemistry alone would produce, could itself be a signature of life actively maintaining that disequilibrium, an observation he then extended into the broader claim that Earth's whole biosphere functions as a coupled, self-regulating system. Lovelock and Margulis presented Gaia as a scientific hypothesis about feedback mechanisms in earth system science, subject to ordinary empirical testing and revision, and named it, at the suggestion of the novelist William Golding, a neighbor of Lovelock's, after the Greek earth goddess, a naming choice that would shape the hypothesis's reception considerably beyond what its authors intended scientifically.

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