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CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA

The P.D. of 0.01 M vs. 0.001 M KCl (concentration effect) in Nitella is 54.7 mv. and that of NaCl is 20.9 mv. The P.D. of 0.01 M NaCl vs. 0.01 M KCl is 82.9 mv. If we assume that diffusion potentials predominate we may calculate the relative mobilities of the ions in the outer layer of the protoplas...

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Autor principal: Osterhout, W. J. V.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1930
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2141077/
https://www.ncbi.nlm.nih.gov/pubmed/19872559
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author Osterhout, W. J. V.
author_facet Osterhout, W. J. V.
author_sort Osterhout, W. J. V.
collection PubMed
description The P.D. of 0.01 M vs. 0.001 M KCl (concentration effect) in Nitella is 54.7 mv. and that of NaCl is 20.9 mv. The P.D. of 0.01 M NaCl vs. 0.01 M KCl is 82.9 mv. If we assume that diffusion potentials predominate we may calculate the relative mobilities of the ions in the outer layer of the protoplasm. If we put v (Cl) = 1 we obtain u (K) = 85.45 and u (Na) = 2.18. (These values depend upon the fact that the mean ionic activities in this layer must be equal at equilibrium to the mean ionic activities in the external solution.) Using these values the calculated P.D. of 0.01 M NaCl vs. 0.005 M NaCl + 0.005 M KCl is 66 mv. (the observed value is 68.8 mv.) and the conductance of KCl in the outer layer of the protoplasm is 27 times as great as that of NaCl (the observed conductance for the whole protoplasm is 25 to 50 times greater for KCl than for NaCl). Calculations on the basis of phase boundary potentials are less satisfactory.
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spelling pubmed-21410772008-04-23 CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA Osterhout, W. J. V. J Gen Physiol Article The P.D. of 0.01 M vs. 0.001 M KCl (concentration effect) in Nitella is 54.7 mv. and that of NaCl is 20.9 mv. The P.D. of 0.01 M NaCl vs. 0.01 M KCl is 82.9 mv. If we assume that diffusion potentials predominate we may calculate the relative mobilities of the ions in the outer layer of the protoplasm. If we put v (Cl) = 1 we obtain u (K) = 85.45 and u (Na) = 2.18. (These values depend upon the fact that the mean ionic activities in this layer must be equal at equilibrium to the mean ionic activities in the external solution.) Using these values the calculated P.D. of 0.01 M NaCl vs. 0.005 M NaCl + 0.005 M KCl is 66 mv. (the observed value is 68.8 mv.) and the conductance of KCl in the outer layer of the protoplasm is 27 times as great as that of NaCl (the observed conductance for the whole protoplasm is 25 to 50 times greater for KCl than for NaCl). Calculations on the basis of phase boundary potentials are less satisfactory. The Rockefeller University Press 1930-07-20 /pmc/articles/PMC2141077/ /pubmed/19872559 Text en Copyright © Copyright, 1930, by The Rockefeller Institute for Medical Research This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Osterhout, W. J. V.
CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA
title CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA
title_full CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA
title_fullStr CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA
title_full_unstemmed CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA
title_short CALCULATIONS OF BIOELECTRIC POTENTIALS : I. EFFECTS OF KCl AND NaCl ON NITELLA
title_sort calculations of bioelectric potentials : i. effects of kcl and nacl on nitella
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2141077/
https://www.ncbi.nlm.nih.gov/pubmed/19872559
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