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Electron-Gated Ion Channels With Amplification by NH3 Inversion Resonance

Author: Wilson P Ralston
Publisher: Raleigh, NC SciTech Publ. 2005
Series: Circuits, Devices and Systems
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
The following topics are dealt with: electron-gating model; sodium channel current; single electron two-site model; NH<sub>3</sub> inversion resonance; two-site electron tunneling; displacement capacitance; amplified electron tunneling; Marcus inverted region; tunneling resistance; ion channel gating; electron gating model equations; potassium channel flux gating; charge immobilization; calcium channel  Read more...
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Details

Material Type: Document, Internet resource
Document Type: Book, Computer File, Internet Resource
All Authors / Contributors: Wilson P Ralston
ISBN: 9781613531822 1613531826 1891121413 9781891121418
OCLC Number: 931623144
Notes: IMD-Felder maschinell generiert
Description: Online-Ressource (XIV, 190 Seiten)
Series Title: Circuits, Devices and Systems
Other Titles: Electron-Gated Ion Channel
Responsibility: Wilson P. Ralston

Abstract:

The following topics are dealt with: electron-gating model; sodium channel current; single electron two-site model; NH<sub>3</sub> inversion resonance; two-site electron tunneling; displacement capacitance; amplified electron tunneling; Marcus inverted region; tunneling resistance; ion channel gating; electron gating model equations; potassium channel flux gating; charge immobilization; calcium channel oscillator model; electron-gated K<sup>3</sup> channels; microwave thermal fluorescence spectroscopy; blue fluorescent protein; and first excited vibrational state

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