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Evolution Selbstorganisierender Chemischer Systeme. Zur Leistungsfahigkeit Homogener UEbergangsmetall-Katalysatoren - Hans (Max Planck Institute for Biophysical Chemistry Gottingen Germany) Kuhn - Bog

- 218. Sitzung Am 3. Oktober 1973 in Dusseldorf

Bag om Evolution Selbstorganisierender Chemischer Systeme. Zur Leistungsfahigkeit Homogener UEbergangsmetall-Katalysatoren

In an attempt to understand the origin of living systems we encounter the following problems: a) How can we conceive the origin of the first self-reproducing forms, and by means of what stimuli could commence a constant increase in the complexity of such forms? b) How can a translation apparatus for genetic information develop? One cannot imagine that such an apparatus for the synthesis of en­ zymes can function alone without the interference of enzymes them­ selves, which, however, could only become available after the construc­ tion of the apparatus itself. c) What stimulus mechanism is conceivable, that leads to the division of the genetic apparatus into a duplication system and an enzyme synthesis system? The main problem therefore is not the search for basic theoretical concepts. It is not a question which can be answered by means of a specific experiment. One should rather explore the principal possibilities of how molecules combine to produce more and more complicated func­ tional units. In trying to solve the puzzle of how the genetic apparatus is gradually built up as a complex aggregate of molecules one can draw up specific Denkmodels.

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  • Sprog:
  • Tysk
  • ISBN:
  • 9783531082547
  • Indbinding:
  • Paperback
  • Sideantal:
  • 70
  • Udgivet:
  • 1. januar 1975
  • Udgave:
  • 1975
  • Størrelse:
  • 244x170x4 mm.
  • Vægt:
  • 132 g.
  • 8-11 hverdage.
  • 7. december 2024

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Beskrivelse af Evolution Selbstorganisierender Chemischer Systeme. Zur Leistungsfahigkeit Homogener UEbergangsmetall-Katalysatoren

In an attempt to understand the origin of living systems we encounter the following problems: a) How can we conceive the origin of the first self-reproducing forms, and by means of what stimuli could commence a constant increase in the complexity of such forms? b) How can a translation apparatus for genetic information develop? One cannot imagine that such an apparatus for the synthesis of en­ zymes can function alone without the interference of enzymes them­ selves, which, however, could only become available after the construc­ tion of the apparatus itself. c) What stimulus mechanism is conceivable, that leads to the division of the genetic apparatus into a duplication system and an enzyme synthesis system? The main problem therefore is not the search for basic theoretical concepts. It is not a question which can be answered by means of a specific experiment. One should rather explore the principal possibilities of how molecules combine to produce more and more complicated func­ tional units. In trying to solve the puzzle of how the genetic apparatus is gradually built up as a complex aggregate of molecules one can draw up specific Denkmodels.

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