
% Auto-generated working paper draft for research.jmp0x1b.com
% Build: pdflatex -interaction=nonstopmode paper-017-conservation-first-stress-energy-audits-for-closed-electromagnetic-devices.tex

\documentclass[11pt]{article}
\usepackage[margin=1in]{geometry}
\usepackage[T1]{fontenc}
\usepackage[utf8]{inputenc}
\usepackage{lmodern}
\usepackage{amsmath,amssymb,amsthm}
\usepackage{array}
\usepackage{hyperref}
\usepackage{enumitem}
\usepackage{verbatim}
\usepackage{fancyhdr}
\usepackage{lastpage}
\hypersetup{colorlinks=true, linkcolor=black, urlcolor=black, citecolor=black}
\setlist[itemize]{leftmargin=1.2em}
\setlist[enumerate]{leftmargin=1.4em}
\newtheorem{proposition}{Proposition}
\newtheorem{definition}{Definition}
\newtheorem{protocol}{Protocol}
\pagestyle{fancy}
\fancyhf{}
\lhead{JMP0X1B Research}
\rhead{Working paper draft}
\cfoot{\thepage\ of \pageref{LastPage}}
\sloppy

\title{\Large Paper 017\\[0.6em]\textbf{Conservation-First Stress-Energy Audits for Closed Electromagnetic Devices}\\[0.3em]\large A reusable accounting framework for cavities, capacitors, coils, and claimed inertia anomalies}
\author{JMP0X1B Research Group}
\date{Working paper draft / June 13, 2026}
\begin{document}
\maketitle
\begin{abstract}
Closed-device propulsion and inertia claims fail when momentum and energy channels are not fully accounted. This paper generalizes the cavity/HFGW closure paper into a conservation-first audit framework applicable to capacitors, microwave cavities, superconducting coils, pulsed plasma-adjacent devices, and field-energy conversion claims. Every measurement is interpreted through a stress-energy ledger before any anomalous channel is considered.
\end{abstract}

\noindent\textbf{Status.} Draft manuscript for review and revision. This paper is not an empirical claim of new physics or field-ready technology. It is a structured proposal, theory note, protocol, or application architecture intended to be auditable, falsifiable, and publishable with source.

\tableofcontents
\newpage

\section{Problem}
A balance displacement can arise from thermal expansion, RF leakage, cable forces, acoustic coupling, magnetic interaction, outgassing, support creep, photon emission, or data analysis bias. The problem is to prevent a residual label from being attached until the ledger of ordinary momentum and energy channels is closed with declared uncertainty.

\section{Model}
We define an audit volume, boundary fluxes, field energy, matter momentum, thermal reservoirs, emitted radiation, and support reactions. The residual is a bounded remainder after calibration against known references. Acceptance requires the residual to transform differently from every included ordinary channel.


\[
  \frac{d}{dt}\left(P_{\mathrm{matter}}+P_{\mathrm{field}}\right)
  = -\int_{\partial V} T^{ij}n_j\,dA + F_{\mathrm{support}}+F_{\mathrm{external}}.
\]
\[
  R_{\mathrm{anom}}=F_{\mathrm{meas}}-\sum_k F_k^{\mathrm{ordinary}},\qquad
  |R_{\mathrm{anom}}|<z_{0.95}\sqrt{\sigma_{\mathrm{meas}}^2+\sum_k\sigma_k^2}.
\]


\section{Claims}
\begin{enumerate}
\item \textbf{Claim 1.} No closed electromagnetic device should be interpreted as propulsion before a signed stress-energy ledger exists.
\item \textbf{Claim 2.} Photon-thrust calibration is a minimum acceptance test for micro- and nano-newton balances used in cavity studies.
\item \textbf{Claim 3.} Conservation audits should be reusable across speculative mechanisms because ordinary channels recur across devices.
\item \textbf{Claim 4.} A null closure paper can be publishable even when no new force is present.
\end{enumerate}

\section{Evidence Plan}
Evidence consists of a template audit applied to three device classes: microwave cavity, asymmetric capacitor, and superconducting coil. Each case includes a known injected force or heat source, a closure budget, and an independent reviewer checklist. The paper aims to demonstrate that claimed residuals shrink or become bounded when the ledger is complete.

\section{JMP0X1B Implementation Surface}
JMP0X1B can encode an auditable ledger with units, calibration provenance, and effect labels for measurement, simulation, and human sign-off. The code path should block publication of a residual claim until required ledger rows are present.

\subsection*{Illustrative JMP0X1B-style contract}
\begin{verbatim}
record Channel { name: Text, model: ModelRef, estimate: Quantity, uncertainty: Quantity, evidence: Digest }
record StressEnergyLedger { audit_volume: Geometry, channels: List<Channel>, residual: Quantity }
fn certify_closure(ledger: StressEnergyLedger) -> Gate effects{Units, Provenance, Audit}
\end{verbatim}


\section{Release And Review Plan}
Release ledger schemas, worked examples, calibration templates, and checklists for reviewers. Each future device paper should cite a ledger version rather than reinventing accounting language.

\section{Open Questions}
\begin{itemize}
\item What ordinary channels are often missed in pulsed high-voltage devices?
\item How can confidential apparatus geometry be redacted without making the ledger useless?
\item What threshold should promote a result from residual to anomaly candidate?
\item Can balance calibration be standardized across independent labs?
\end{itemize}

\section{Conclusion}
Conservation-first audits are intentionally hostile to extraordinary interpretations. That hostility is productive: it makes any surviving result more credible and every null more reusable.

\section*{References}
\begin{thebibliography}{99}
\bibitem{jmp010} JMP0X1B Research Group. \emph{Energy-Momentum Closure for Microwave Cavity Inertia Claims and Electromagnetic-to-Gravitational Conversion Architectures}. Working paper, 2026. \url{https://research.jmp0x1b.com/papers/energy-momentum-cavity-hfgw.html}
\bibitem{jmp002} JMP0X1B Research Group. \emph{Electrostatic Projection Couplings in Five-Dimensional Maxwell-Compatible Theory}. Working paper, 2026. \url{https://research.jmp0x1b.com/papers/electrostatic-projection-couplings-5d-electrogravity.html}
\bibitem{jmp007} JMP0X1B Research Group. \emph{Ultra-High-Vacuum Null Tests of Electrostatic Projection Couplings with Symmetry-Matched Capacitors}. Working paper, 2026. \url{https://research.jmp0x1b.com/papers/uhv-electrostatic-null-tests.html}
\bibitem{maxwell} J. C. Maxwell. A dynamical theory of the electromagnetic field. \emph{Philosophical Transactions of the Royal Society of London}, 155:459--512, 1865.
\bibitem{wilkinson} M. D. Wilkinson et al. The FAIR Guiding Principles for scientific data management and stewardship. \emph{Scientific Data}, 3:160018, 2016.
\bibitem{prov} World Wide Web Consortium. \emph{PROV-DM: The PROV Data Model}. W3C Recommendation, 2013. \url{https://www.w3.org/TR/prov-dm/}
\end{thebibliography}

\end{document}
