ZPER C and ZPER D — Resonant L–C Architectures with Fe(H) Electrodes and Composite Magnetic Cores
11/15/2025
2511153702683

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A technical-theoretical document that presents the design, materials, manufacturing procedures, and metrological verification protocols for two L-C resonant tank architectures intended for laboratory evaluation: ZPER-C and ZPER-D.

ZPER-C: Consists of a coiled capacitor that uses Fe(H) electrodes (iron with interstitial hydrogen) and a functional sheet with embedded magnetic particles (magnetosomes or FePt3@ZnO nanoparticles).

ZPER-D: Replaces the "normal" coil of ZPER-C with a coil featuring a composite magnetic core called ZPER-B.

The work establishes the minimum physical principles, linear design equations, and provides falsifiability criteria and a roadmap for independent verification. It is clarified that the document is theoretical in nature and the proposed energy balance in strict equilibrium is compatible with classical thermodynamics, without claiming net power output.

Technical
nanomaterials
l-c architecture
electronic engineering
verification protocols
applied physics
resonant tanks
experimental design
advanced materials
electromagnetic research
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javier jerez fernández
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Title ZPER C and ZPER D — Resonant L–C Architectures with Fe(H) Electrodes and Composite Magnetic Cores
A technical-theoretical document that presents the design, materials, manufacturing procedures, and metrological verification protocols for two L-C resonant tank architectures intended for laboratory evaluation: ZPER-C and ZPER-D.

ZPER-C: Consists of a coiled capacitor that uses Fe(H) electrodes (iron with interstitial hydrogen) and a functional sheet with embedded magnetic particles (magnetosomes or FePt3@ZnO nanoparticles).

ZPER-D: Replaces the "normal" coil of ZPER-C with a coil featuring a composite magnetic core called ZPER-B.

The work establishes the minimum physical principles, linear design equations, and provides falsifiability criteria and a roadmap for independent verification. It is clarified that the document is theoretical in nature and the proposed energy balance in strict equilibrium is compatible with classical thermodynamics, without claiming net power output.
Work type Technical
Tags nanomaterials, l-c architecture, electronic engineering, verification protocols, applied physics, resonant tanks, experimental design, advanced materials, electromagnetic research

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Identifier 2511153702683
Entry date Nov 15, 2025, 6:32 PM UTC
License All rights reserved

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Author 100.00 %. Holder javier jerez fernández. Date Nov 15, 2025.


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