Biological significance of molecular chirality in energy balance and metabolism

Acta Biotheoretica 22 (1):34-43 (1973)
  Copy   BIBTEX

Abstract

In biological electron transport the spin, and thus the magnetic property of electrons, is neglected. Furthermore, no attention is paid to the fact that the great majority of biologically important molecules are chiral, and during excitation a magnetic moment is induced in them. It is shown, both theoretically and experimentally, that the magnetic moment of the electron and the magnetic transition moment of the optically active molecules may interact. The main consequences of such an interaction are a higher probability of the occurrence of optically active molecules in triplet states, and the polarization of transported electrons

Links

PhilArchive



    Upload a copy of this work     Papers currently archived: 91,202

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

Similar books and articles

On the uniqueness of biological research.Adolph Portmann - 1990 - Journal of Medicine and Philosophy 15 (5):457-472.
Is metabolism necessary?M. A. Boden - 1999 - British Journal for the Philosophy of Science 50 (2):231-248.
Interactions among Theory, Experiment, and Technology in Molecular Biology.Kenneth F. Schaffner - 1994 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994:192 - 205.
Some Broader Evolutionary Issues Which Emerge from Contemporary Molecular Biological Data.W. Ford Doolittle - 1984 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1984:129 - 144.

Analytics

Added to PP
2009-01-28

Downloads
26 (#574,431)

6 months
4 (#678,769)

Historical graph of downloads
How can I increase my downloads?

Citations of this work

No citations found.

Add more citations

References found in this work

No references found.

Add more references