Abstract
This paper examines Ohm's Law through the Quantum Measurement Units (QMU) framework and the Aether Physics Model (APM). Ohm's Law is commonly written as a relationship between voltage, current, and resistance. In QMU, these quantities are analyzed through charge, frequency, conductance, impedance, and Aether-unit dimensional structure.
The QMU/APM approach treats electric current as organized charge motion and conductance as a physically meaningful dimensional pathway for charge throughput. Resistance and impedance are interpreted as reciprocal or related constraints on the flow of electromagnetic structure through matter.
The paper contributes to QADI's electrical and electromagnetic research program by placing Ohm's Law into the same dimensional ledger used for Maxwell's equations, charge conversion, impedance, magnetic charge, and Aether-unit closure.
Purpose of the Paper
The purpose of this work is to translate Ohm's Law into QMU dimensional form and clarify the roles of conductance, resistance, current, voltage, and charge flow within the APM framework.
The paper is relevant to:
- Ohm's Law and electrical conduction
- Voltage, current, and resistance
- QMU conductance, Cd
- Impedance and reciprocal electrical structure
- Electrostatic and magnetic charge domains
- Charge throughput in matter
- Dimensional closure in circuit theory
Download the Paper
Read the complete technical paper in PDF format:
Download PDFQMU Electrical Context
Ohm's Law is one of the simplest and most useful equations in electrical physics, but QMU gives it a deeper dimensional role. Current is not merely a circuit variable; it is charge transport over time. Voltage is not merely an engineering potential; it expresses a charge-energy relationship. Resistance and conductance describe how matter constrains or permits charge motion.
In QMU, conductance is especially important and should be represented as Cd in QADI papers. This makes Ohm's Law a useful bridge between ordinary circuit measurements and the larger APM framework of charge geometry, impedance, and field propagation.
This page connects directly to QADI papers on impedance, circuit theory, Maxwell's equations, charge conversion, Josephson effects, and Quantum Hall ledger current.
Recommended Reader Path
Readers should review Charge Conversion Factor, Maxwell's Equations in QMU, and Impedance in QMU before or alongside this paper. Those pages provide the charge-domain and field-propagation context needed for a full QMU interpretation of Ohm's Law.
Suggested Citation
Thomson III, David W. Ohm's Law. Quantum AetherDynamics Institute (QADI).
Keywords
Ohm's Law, QMU, Quantum Measurement Units, Aether Physics Model, APM, voltage, current, resistance, conductance, Cd, impedance, charge flow, circuit theory, electrostatic charge, magnetic charge, dimensional closure, David W. Thomson III