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What is life? : how chemistry becomes biology / Addy Pross.

By: Material type: TextTextSeries: Oxford landmark sciencePublication details: Oxford : Oxford University Press, ©2012.Edition: 1st edDescription: 1 online resource (xiv, 200 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780191650888
  • 0191650889
  • 9781283597470
  • 1283597470
Subject(s): Genre/Form: Additional physical formats: Print version:: What Is Life?DDC classification:
  • 570 23
LOC classification:
  • QH501
  • QH331 .P96 2012e
Online resources:
Contents:
Livings things are so very strange -- The quest for a theory of life -- Understanding 'understanding' -- Stability and instability -- The knotty origin of life problem -- Biology's crisis of identity -- Biology is chemistry -- What is life?
Summary: In his famous 1944 text What is Life? Erwin Schrodinger pointed out how strange living systems appeared to be when viewed from a strictly physical standpoint. All living systems are highly organized and the emergence of these organized systems would seem to contradict the most basic tenets of physics and chemistry, which say that systems tend toward chaos and disorder. What is even more remarkable is that despite dramatic developments in molecular biology in the half century since Schroedinger's remarks, we still don't understand what life is or how it relates to the inanimate world. In addressing Schrodinger's classic question, the author offers a radically new approach to these fundamental questions of biology, what is life and how did it emerge. He examines these issues from a chemical perspective, providing a new understanding of how the sciences of chemistry and biology relate to one another. He shows that recent developments in a new area of chemistry called "systems chemistry" now allow researchers to outline the chemistry-biology connection, shedding light on how and why some prebiotic chemical systems are able to make the magical transformation from inanimate to animate. Through the application of these simple chemical concepts, this book reveals the essence of the animate-inanimate connection, explains the strange properties of living systems in chemical terms, and offers profound new insights into classical biological issues, such the mechanism and driving force for evolution and the origin of altruism. Here the author reveals that the emergence of life on Earth and classical Darwinian theory are intimately related; that Darwinian theory is just the biological expression of a more general chemical principle, one that Darwin himself predicted would likely be uncovered in time. -- From publisher's description.
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Includes bibliographical references (pages 193-197) and index.

Print version record.

Livings things are so very strange -- The quest for a theory of life -- Understanding 'understanding' -- Stability and instability -- The knotty origin of life problem -- Biology's crisis of identity -- Biology is chemistry -- What is life?

In his famous 1944 text What is Life? Erwin Schrodinger pointed out how strange living systems appeared to be when viewed from a strictly physical standpoint. All living systems are highly organized and the emergence of these organized systems would seem to contradict the most basic tenets of physics and chemistry, which say that systems tend toward chaos and disorder. What is even more remarkable is that despite dramatic developments in molecular biology in the half century since Schroedinger's remarks, we still don't understand what life is or how it relates to the inanimate world. In addressing Schrodinger's classic question, the author offers a radically new approach to these fundamental questions of biology, what is life and how did it emerge. He examines these issues from a chemical perspective, providing a new understanding of how the sciences of chemistry and biology relate to one another. He shows that recent developments in a new area of chemistry called "systems chemistry" now allow researchers to outline the chemistry-biology connection, shedding light on how and why some prebiotic chemical systems are able to make the magical transformation from inanimate to animate. Through the application of these simple chemical concepts, this book reveals the essence of the animate-inanimate connection, explains the strange properties of living systems in chemical terms, and offers profound new insights into classical biological issues, such the mechanism and driving force for evolution and the origin of altruism. Here the author reveals that the emergence of life on Earth and classical Darwinian theory are intimately related; that Darwinian theory is just the biological expression of a more general chemical principle, one that Darwin himself predicted would likely be uncovered in time. -- From publisher's description.

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