Devices for Energy Extraction and Room-Temperature Superconductivity
Приборы извлечения энергии и комнатная сверхпроводимость
Приборы извлечения энергии и комнатная сверхпроводимость
Four device designs. Chemical compositions for room-temperature superconductor candidates. Three ODTOE criteria: ternary architecture, spiral phase correction, resonance frequency.
Четыре конструкции приборов. Химические составы кандидатов в комнатные сверхпроводники. Три критерия ODTOE: тройственная архитектура, спиральная фазовая поправка, резонансная частота.
Devices and superconductor designs
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Pankratov A. "Devices for Energy Extraction and Room-Temperature Superconductivity." Observer-Dependent Theory of Everything, odtoe.org, 2026. https://odtoe.org/en/articles/devices-superconductors@article{pankratov2026devicesSuperconductors,
author = {Pankratov, Anton},
title = {Devices for Energy Extraction and Room-Temperature Superconductivity},
journal = {Observer-Dependent Theory of Everything},
year = {2026},
month = {Feb},
url = {https://odtoe.org/en/articles/devices-superconductors},
publisher = {odtoe.org}
}TY - JOUR
AU - Pankratov, Anton
TI - Devices for Energy Extraction and Room-Temperature Superconductivity
JO - Observer-Dependent Theory of Everything
PY - 2026
DA - 2026-02-13
UR - https://odtoe.org/en/articles/devices-superconductors
PB - odtoe.org
ER - Proton = observed R, neutron = observer O, electron = observation operator. Wheeler-Feynman single electron hypothesis. Neutrino as spiral gap.
Five mechanisms: coherence channel S to 1, resonance with H modes, Casimir effect, recursive amplification, collective observation.
Charge = orientation in self-observation cycle. Maxwell equations as self-consistency conditions. Coherent conductivity resonator (KRP).