Viruses in the Resonant Picture of Space. Practical Protocols for Resonant Inactivation.

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Main Author: Markov, Mark
Format: Recurso digital
Language:English
Published: Zenodo 2026
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_version_ 1866902106399571968
author Markov, Mark
author_facet Markov, Mark
contents <p>This work (Publication №14 of Resonance Group) applies the resonant picture of space to virology, demonstrating that viral capsids are crystallizations of the standing layer pulsating at 57 Hz. The T-numbers (1, 3, 4, 7, 9, 12, 13, 16, 19…) split into two families: Series A (resonant, spherical viruses) and Series B (dissonant, filamentous viruses such as Ebola and Marburg). The transition coefficient between series is √7 ≈ 2.64575, identified as the topological inversion threshold (256 ≡ 0) projected onto the viral scale. The base frequency of the standing layer (57.142857 Hz) and its harmonics determine the natural resonant frequencies of viral capsids. This framework explains why viruses are built according to icosahedral symmetry (Caspar-Klug, 1962) and predicts frequency-based identification methods. No viral destruction protocols are described. The paper provides a theoretical foundation for resonant virology.</p> <p><strong><span class="">We have a body of work</span></strong></p>
format Recurso digital
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institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Viruses in the Resonant Picture of Space. Practical Protocols for Resonant Inactivation.
Markov, Mark
virology virus capsid icosahedral symmetry T-number Caspar-Klug theory standing layer 57 Hz resonant picture of space Series A Series B √7 Ebola Marburg filovirus topological inversion 256 resonant frequency golden ratio phi
<p>This work (Publication №14 of Resonance Group) applies the resonant picture of space to virology, demonstrating that viral capsids are crystallizations of the standing layer pulsating at 57 Hz. The T-numbers (1, 3, 4, 7, 9, 12, 13, 16, 19…) split into two families: Series A (resonant, spherical viruses) and Series B (dissonant, filamentous viruses such as Ebola and Marburg). The transition coefficient between series is √7 ≈ 2.64575, identified as the topological inversion threshold (256 ≡ 0) projected onto the viral scale. The base frequency of the standing layer (57.142857 Hz) and its harmonics determine the natural resonant frequencies of viral capsids. This framework explains why viruses are built according to icosahedral symmetry (Caspar-Klug, 1962) and predicts frequency-based identification methods. No viral destruction protocols are described. The paper provides a theoretical foundation for resonant virology.</p> <p><strong><span class="">We have a body of work</span></strong></p>
title Viruses in the Resonant Picture of Space. Practical Protocols for Resonant Inactivation.
topic virology virus capsid icosahedral symmetry T-number Caspar-Klug theory standing layer 57 Hz resonant picture of space Series A Series B √7 Ebola Marburg filovirus topological inversion 256 resonant frequency golden ratio phi
url https://doi.org/10.5281/zenodo.20357888