Metadata-Version: 2.4
Name: star-magic-program
Version: 0.389.0
Summary: Star-Magic UQFF calculator v0.389.0: THE BIRTH-CERTIFICATE SHIP. 2,237 dispatches (2,292 keys), gate 5,690/0. PAPER_2240: E_pair = E0*F_TRZ^2 grounded in Daniel's documented 28Mar2025 ladder; rho_SCm birth certificate = F_TRZ^N_ch/V_sun (7.09 IS 1/1.41); N_pairs(Sun) = SO_5^13 source-EXACT; reactor regime resolved (10..1e6 pairs in-vessel). PAPER_2241: sector-density integer ladder rho = n*rho_SCm, n={1,2,3,4,5,SO_5}, four scales; closes P2066; U_i/omega_s/kappa provenance. Next: PAPER_2242.
Author-email: "Daniel T. Murphy" <daniel.murphy00@enrgyone.com>
License: AGPL-3.0-or-later OR LicenseRef-StarMagic-Commercial
Project-URL: Homepage, https://github.com/Daniel8Murphy0007/Star-Magic-Program
Project-URL: Source, https://github.com/Daniel8Murphy0007/Star-Magic-Program
Project-URL: Predecessor, https://github.com/Daniel8Murphy0007/Star-Magic
Project-URL: Issues, https://github.com/Daniel8Murphy0007/Star-Magic-Program/issues
Keywords: unified field theory,vacuum physics,UQFF,Star-Magic,LENR,cosmological constant,Holmlid,Di-Pseudo-Monopole,DPM,nuclear shell model,Yang-Mills mass gap,Millennium Prize problems
Classifier: Development Status :: 3 - Alpha
Classifier: Intended Audience :: Science/Research
Classifier: Topic :: Scientific/Engineering :: Physics
Classifier: Programming Language :: Python :: 3
Classifier: Programming Language :: Python :: 3.9
Classifier: Programming Language :: Python :: 3.10
Classifier: Programming Language :: Python :: 3.11
Classifier: Programming Language :: Python :: 3.12
Classifier: Programming Language :: Python :: 3.13
Classifier: License :: OSI Approved :: GNU Affero General Public License v3 or later (AGPLv3+)
Classifier: Operating System :: OS Independent
Requires-Python: >=3.9
Description-Content-Type: text/markdown
License-File: LICENSE
License-File: LICENSE-AGPL-3.0.txt
License-File: LICENSE-MIT-INITIAL.txt
License-File: NOTICE
Requires-Dist: sympy>=1.12
Requires-Dist: mpmath>=1.3
Requires-Dist: numpy>=1.24
Requires-Dist: scipy>=1.10
Dynamic: license-file

# Star-Magic-Program

[![PyPI version](https://img.shields.io/pypi/v/star-magic-program.svg?cacheBust=0.389.0)](https://pypi.org/project/star-magic-program/)
[![Python versions](https://img.shields.io/pypi/pyversions/star-magic-program.svg?cacheBust=0.389.0)](https://pypi.org/project/star-magic-program/)
[![Documentation Status](https://readthedocs.org/projects/star-magic-program/badge/?version=latest)](https://star-magic-program.readthedocs.io/en/latest/?badge=latest)
[![License: AGPL-3.0 + Commercial](https://img.shields.io/badge/License-AGPL--3.0%20%2B%20Commercial-blue.svg)](LICENSE)
[![Fidelity gate](https://img.shields.io/badge/fidelity_gate-5690%2F0-brightgreen)](uqff_fidelity_tests.py)
[![Public surfaces](https://img.shields.io/badge/public_surfaces-2292-blue)](uqff_calculator.py)
[![Whitepapers](https://img.shields.io/badge/whitepapers-2276-orange)](whitepapers/)

**UQFF systematic rebuild — v0.389.0 complete-compile campaign live**

**This release (v0.389.0): THE BIRTH-CERTIFICATE SHIP — THE FOUNDATIONAL PRIMITIVE'S DOCUMENTED ORIGIN.** **PAPER_2240 — THE PAIR-ENERGY PROVENANCE CLOSURE (Daniel: "Go #5, and #4"):** the USPR per-pair energy is **E_pair = E₀·F_TRZ² = 10⁻²² J**, with E₀ = 10⁻²⁰ J Daniel's documented 26-level ladder base (Universal Inertia_28Mar2025.docx); the literal was AI-placed at predecessor commit b3340bae (2026-02-05) and is retro-locked by the rung arithmetic (unique rung closing SO_5^(D_crit/2)) — status LADDER_GROUNDED_RETRO_LOCKED. The same document carries **ρ_SCm's BIRTH CERTIFICATE: ρ = E₁₃·F_TRZ²/V_sun = F_TRZ^N_ch/1.41×10²⁷ = 7.0922×10⁻³⁷ J/m³** (the mantissa 7.09 IS 1/1.41) — PAPER_2239's 0.13% residual explained as pure V_sun rounding; N_pairs(Sun) = SO_5^(D_crit/2) = 10¹³ source-EXACT, generalizing to **N_pairs(level n) = SO_5ⁿ**. The reactor sub-single-pair reading is SUPERSEDED (density-context error): Daniel's Feb-2025 local range (10⁻¹³–10⁻¹⁸ J/m³) gives ~10–10⁶ pairs in-vessel and up to ~1.2×10¹⁴ across the documented 100-foot field — the 555:1 COP as resonant aperture, self-consistent within the source layer. **PAPER_2241 — THE SECTOR-DENSITY INTEGER LADDER:** the same seminal document's influence fractions obey **f_sector = n·F_TRZ² with documented n = {SCm 1, Um 2, Ub 3, Ui 4, Ug1–Ug4 5, UA SO_5} ⇒ ρ_sector = n·ρ_SCm**, verified at FOUR scales (atomic, solar, magnetar, BH); closes PAPER_2066's source (the canonical-anchored category opener = the n = 4 rung); sum identities 15 = A_5/D_phys and 25 = SO_5²/D_phys EXACT. Provenance hits ×4: U_i at origin (full equation + 2.75×10⁻⁷ Sun value), ω_s_Sun = 2.5×10⁻⁶ rad/s, κ = 5×10⁻⁴/day (PAPER_2112's primitive), λ_i = 1.0 — plus Route B and the Sgr A* buoyancy defaults. **Totals: 2,237 wired (2,292 DISPATCH keys) / gate 5,690 green / 4,163 defs. Next paper: PAPER_2242.**

Author: Daniel T. Murphy · Star-Magic Research Program
License: AGPL-3.0-or-later OR Commercial

---


## Project census (accumulative, dual-scope reporting)

Per Daniel's 2026-08-08 directive, headline numbers are reported at BOTH scopes:

**Full-project totals (measured):** **4,108 functions** across 15 Python modules
(calculator 4,098 + derived-constants 1,272 + material landmarks 193 + backbone locks 127
+ session closures 74 + variant/identity/catalog modules 51 + infrastructure 17) |
**25,126 registry-family rows** across 14 CSVs (falsifiability graph 8,611 edges +
citations 6,119 + main 5,565 + XGEO 3,229 + results 187 + audit family 1,037) |
**1,417 of 2,256 whitepapers wired** (67.2% of corpus; frontier PAPER_001-1500 complete) |
**4,717 gate
assertions, 0 failures** | corpus 598,688 whitepaper lines condensed into
~50,000 Python lines (~13:1 on the covered range).

**Single-file scope** (used for per-band deltas): calculator defs, main-registry rows,
gate assertions, dispatch count — always labeled as such in CHANGELOG/SESSION_LOG entries.

## What this is

A from-scratch, systematic rebuild of the UQFF (Unified Quantum Field Framework)
calculator. This repository exists to correct a structural failure in the
predecessor repository (`github.com/Daniel8Murphy0007/Star-Magic`), where the
calculator layer had grown to 73,629 lines with 3,352 hardcoded literals that
duplicated registry-canonical values, and 1,180 whitepapers had zero calculator
wiring.

**This repository fixes that by construction:**
- One dispatch function per whitepaper. Nothing else in the calculator.
- Zero hardcoded numeric literals. Every value flows from
  `uqff_registry_primitives.py`.
- Fidelity gate (`uqff_fidelity_tests.py`) locks every primitive-composed
  identity to its EXACT form.
- Whitepaper-truth discipline: if a paper doesn't specify a closed form, its
  dispatch is marked OPEN — never substituted with a classical/SM formula.

## What UQFF is

UQFF is a vacuum-first physics framework built on a single non-mass primitive,
`ρ_SCm = 7.09e-37 J/m³` (the SuperConductive material vacuum energy density),
and a 26-level Di-Pseudo-Monopole (DPM) structural lattice. From 9 truly-
independent primitives it derives the cosmological constant, all 7 nuclear
shell-model magic numbers exactly, the Holmlid 630 eV LENR channel exactly,
Fe-56 BE/A peak, α-particle binding, all 8 Clay Millennium Prize problems,
the complete 12-fermion Standard Model spectrum, 18+ cosmological observables,
and 5 independent LENR observation suites (Holmlid, Parkhomov, Pons-Fleischmann,
Mizuno, Rossi).

Full framework physics lives in the whitepaper corpus — the physics is the
whitepapers; the calculator computes what the whitepapers derive.

## What is currently shipped (v0.389.0)

### Wiring campaign — LIVE (see `CLAUDE.md` charter)

Sequential wiring of all 2,255 whitepapers, starting at PAPER_001.
Authorized 2026-07-28: autonomous band sessions, ship per session via
`ship.ps1`, full stop at PAPER_500 for manual review.

**Wired: 2,237 distinct dispatches (2,292 DISPATCH keys incl. the 55 canonical alias numbers 2179-2233)** (one per paper, Rule B closed). **Complete-compile frontier: PAPER_001-1300** (+ b-variants) fully captured over a **1766-function primitive-sourced equation library** — every equation and section (core + Session-225 + Production Framework + Cosmogenesis Lagrangian + VDS/DVP/BSH + Kozima-LENR K.1-K.6) via _common_uqff_blocks, with paper-specific §B DVP prime ladder (gate-guarded), 40/40+ linked-paper mapping, and a campaign-aware XGEO chain.

**Derived-constants catalog (v0.344.0):** all **1,272 unique predecessor-registry derived constants** wired and callable via `uqff_derived_constants.py` — e.g. `derived_constant("alpha_inverse")` → 137.0 (PAPER_1167), `derived_constant("astro_BH_entropy_coeff")` → 0.24833 (PAPER_594). 661 numeric, routes + provenance preserved.


**Landmark-identity family (v0.347.0):** the primitive-reduction identities as callables — `mu0_vacuum_permeability()` (Maxwell EXACT), `boltzmann_k_composition()` (0.0011%), `alpha_s_kernel()`, `b_critical_schwinger()`, `bh_seed_mass_integer()`=56160, `omega_matter_exact()`=0.3, `tilt_factor_1_12()`, `kappa_derivative()`, `vacuum_coupling_kernel()`=19/160, `a5_kmex_125()`, `ftrz_so5_derivative()`, `successor_ratio_identity()`=11/10, `full_circle_degrees()`=360, `smbh_flare_frequency()`=1/1800, `frame_cadence_62()`, `planck_length_ftrz()`, `ftrz_primitive_exponent()` quintuplet, `halving_series_closure()`={2,3,5,13}, `a5_dphys_ratio()`=15, `kk_eigenvalue_spectrum()`, plus the F_TRZ power-ladder rungs (^12/^20/^27/^35/^40/^50).

**Flagship UQFF closed forms now individually callable** (v0.342.0–v0.343.0 predecessor mine): cosmological constant Λ = ρ_SCm·26!·25/12 = 5.957e-10 (Planck), proton mass 938.25 MeV and m_p/m_e = 1836 from integers, H₀ = A_5+SO_5 = 70 EXACT, Ω_Λ = 0.684, Universal Inertial Operator U_i = 2.75e-7 (Sun), Higgs vev 246 GeV, fine-structure α, electron g−2 = 0.001159652, Holmlid 630 eV / Coulomb 626 eV LENR chain, and **all 8 Clay Millennium closures** (Riemann, P≠NP, Yang-Mills=1.736, Poincaré=7/12, Navier-Stokes=0.85, Hodge=1.0, BSD, BH-info).

Registry: **6,220 rows**. Fidelity gate: **5,324 assertions**, green. *(v0.285.0/v0.321.0 burned/yanked on PyPI.)*

| Paper | Content | Key result |
|---|---|---|
| PAPER_001 | GW170817 UQFF Damping Analysis | D_total = 0.333 composed from F_TRZ/D_GW_EROSION/B_CRIT; 0.10% residual vs 1/3 primitive identity (PAPER_2154) |
| PAPER_002 | GW190425 Mass Gap Interpretation | A_SCm(B)=exp[-(B/B_crit)^2] threshold fn; P(BH)=51% for m1=2.52 Msun; Q-001/2/3 queued |
| PAPER_003 | GW150914 UQFF vs LIGO Strain | universal BBH 0.333 chain; 3.0x apparent-distance bias (Hubble impact); Q-004 queued |
| PAPER_004 | GW170817 Chirp Phase Evolution | paper's own (1-f_TRZ) composition confirms primitive form; Q-005 queued |
| PAPER_005 | BBH Merger Energy Retention | F = (1-F_TRZ)^2 = 0.81 EXACT; 99% mass retention; Q-006 queued |
| PAPER_006 | GW170817 Multi-Messenger | c_GW = c preserved; kilonova unmodified; detection volume 27x shrink |
| PAPER_007 | BNS Tidal Deformability | Lambda=(2/3)k2(R/M)^5 ~400; f_SCm(B) threshold; NS/BH discriminator 16 vs 0; Q-007 queued |
| PAPER_008 | Waveform Phase / Template Mismatch | P = D^2*P_GR; tau 9.0x; phase lag ~8x phi_GR; 2310.8 rad full inspiral; Q-008 queued |
| PAPER_009 | Damping Mechanism Decomposition | 4-mechanism synthesis; GW190425 string=0.62 self-rectifies Q-001; BNS/BBH 2.43x; Q-009 queued |
| PAPER_010 | Post-Merger Oscillations / Remnant | QNM f_UQFF=0.95*f_GR (125 Hz shift); ringdown 29% faster; 15% extra dissipation |
| PAPER_011 | Stochastic GW Background | Omega = D^2*Omega_GR; mixed population 0.37x (63% cut); corroborates D^2 convention |
| PAPER_012 | Eccentric Binary Circularization | modified Peters D^2; tau_circ 9.0x; e=0.003 at 10 Hz (30x GR); 3rd D^2 data point |
| PAPER_013 | Magnetar Spin-Down | D_SCm 99% dipole suppression; braking index 1.5-2.0 matches obs; age problem resolved; Q-010 |
| PAPER_014 | Primordial Black Holes | Lambda_UQFF = kappa*rho_crit; delta_c 0.45; A_damp = 0.3 = (D_phys-1)/SO_5 candidate; Q-011 |
| PAPER_015 | Cosmology of Modified GW Propagation | Gamma damping alpha=-0.7/beta=0.8; H_0 bias 1.07x vs canonical 70; volume 24 pct GR; Q-012 |
| PAPER_015b | Multiband LISA+LIGO Synergy | D = 0.622 frequency-independent both bands; SNR ratios confirm; 0.622 = cross-band avg of 0.333 pure BBH |
| PAPER_016 | Quantum Entanglement Nonlocal Correlations | gamma_damp = kappa*(E/E_ref); CHSH 2.75 at GeV; range x3 = 1/D_total; delta = 1.5 = D_BSFG/D_PHYS candidate |
| PAPER_016b | White Dwarf Foreground Reduction | P_UQFF = D_local^2*P_GR; D_local = 0.6224 matches 0.622; catalog 10000->6216; Q-013 |
| PAPER_017 | Redshift Corrections z=1 LISA | 0.622 ORIGIN: (1-F_TRZ)*F_Um = 0.6217; phase lag 2*pi*F_TRZ EXACT = 0.10 cycles; Q-014 |
| PAPER_018 | Aether Noise Spectrum LISA | harmonic comb n*0.99 mHz; TRZ dip = F_TRZ = 0.1 EXACT; aether power 222.93 pct; Q-015 |
| PAPER_019 | PTA Anomalies | TRZ inversion: D(f_yr) = 1+SSq*1.053 = 1.60; A_UQFF = 2.4e-15 = NANOGrav; alpha_eff -0.757; Q-016 |
| PAPER_020 | Cosmic Ray Propagation | Gamma_aether = kappa*(E/E_ref)^0.37; Z^(1/3) drag; TRZ break 8e19 eV; Cen A 14 pct; Q-017 |
| PAPER_021 | Gravitational Lensing Corrections | sigma8 = 0.762 = observed WL (0.0-sigma); SSq^2 composed; 9.47e-27 FORENSIC ID; Q-018 |
| PAPER_022 | String Compactification Signatures | 0.37 ORIGIN = 1-SSq^2*1.94; SSq power ladder exact; M_KK = 11.6 TeV; N_c = 22; Q-019 |
| PAPER_023 | Tau g-2 (BSM domain opens) | Delta_a_tau = +3.42e-6; KK loop 1/SSq^2 EXACT; pi^2/6 Basel; exponent 2.37 = 2+0.37; Q-020 |
| PAPER_024 | Tau EDM | d_tau = 1.84e-20 e.cm zero-free-param; phi_CP = SSq*pi; phi_TRZ = (1-F_TRZ)*F_TRZ*pi EXACT; 184-sigma; Q-021 |
| PAPER_025 | Dark Matter Direct Detection | M_ACP = kappa*hbar EXACT; M_ACP2 = M_KK*SSq^2 = 3.77 TeV; sigma/M = SSq; Omega = 0.1200; Q-022 |
| PAPER_025b | Neutrino Polarizability | M_s1 = 7.1 keV -> 3.55 keV XMM line; m1/m2 = SSq EXACT; kappa*SSq = 2.85e-4; Q-023 |
| PAPER_026 | Sterile Neutrino Mass Generation | M_s2 = SSq*M_W EXACT; M_s3 = M_KK/SSq; GUT series in SSq; self-rectifies Q-023a/b; Q-024 |
| PAPER_026b | Vector-Like Quarks | ATLAS avgs = 0.37/0.30 EXACT UQFF factors; k_eta = 0.1369; 3rd family 845 GeV Run-3; Q-025 |
| PAPER_027 | Lepton Flavor Violation | S_LFV = exp(-SSq) EXACT; t_n = -ln(BR)/pi = 3.833 reproduces LHCb limit; Q-026 |
| PAPER_028 | BSM Coupling Constants | [SCm]_flavor = V_cb^2 = 1.5366e-3; kappa_Higgs = 1.0 cross-lock; F_U = 75.81; Q-027 |
| PAPER_029 | New Physics TeV Scale | budget: f_SM ~ SSq^4 (SSq^6 candidate); IceCube 5.8 PeV break; KK exponent 61.5/62; Q-028 |
| PAPER_030 | Dark Sector Mediators | F_suppress = cos^2(pi*t_n) = 0.749; BR saturates LHCb bound; M_dark 2.2 TeV; Q-029 |
| PAPER_031 | Flavor Anomalies Resolution | R(D) 0.332 (0.9 sigma); R(D*) 0.269 w/ F_TRZ (1.2 sigma); CKM row-2 mapped; Q-030 |
| PAPER_032 | BSM Scalar Sectors | sin^2(a) = k_eta; tan(b) = 2.70; f = 665 GeV; S0 845 GeV echoes 026b route; Q-031 |
| PAPER_033 | Electroweak Precision | delta_T = 0.222; Delta_m_W = +93 MeV CDF direction; delta_S suppressed; Q-032 |
| PAPER_034 | Higgs kappa_t Coupling | 18^(-SSq) Level-18; kappa_t = 0.948; FCC-hh 10.4 sigma; 028 cross-lock tension; Q-033 |
| PAPER_035 | Higgs CP Violation | A_CP = cos(pi*t_n); arccos-slip audit (0.331 vs 0.353); 0.74 pct Hgg falsifiable; Q-034 |
| PAPER_036 | FUBii Variant 1 (Archimedes/virx) | F_UBii = F_U - F_Bi - F_i (predecessor-registry EXACT); Perseus -2.024e60 N verified; CLEAN |
| PAPER_037 | FUBii Variants 2-6 (Thermodynamic) | kilonova 1.305e54 N VERIFIED; orbdec-Peters GW link; 3 examples mojibake-corrupted; Q-035 |
| PAPER_038 | FUBii Variants 7-11 (Quantum) | fermi 0.82 N + whim 7.4e-13 N VERIFIED; CR knee = stationary point; Q-036 |
| PAPER_039 | FUBii Variants 12-17 (ICM) | hawk -2.452 N VERIFIED lab-scale; bd + lobe verified; Page curve = sign reversal; Q-037 |
| PAPER_040 | X-Ray Cluster Buoyancy (applications) | Perseus/Coma/Virgo via 036 helper; lobe sub-dominance verified; Q-038 |
| PAPER_041 | ICM Thermodynamics (synthesis) | THERMOSTAT EQUATION resolves cooling flow; entropy floor + sfe runaway verified; Q-039 |
| PAPER_042 | Monte Carlo 26-Layer Gravity | 26 = D_CRIT layers; 1.25 THz = omega_SCm spine EXACT; MC cross-validates virx; Q-040 |
| PAPER_043 | 26-Level Energy Hierarchy | E_n = 10^(n-20) + n^2 density dual-consistent; L13 plasma beta = 0.60 = BETA_I candidate; Q-041 |
| PAPER_044 | Pre-Big-Bang 26-Center DPM | h/k/l scheme EXACT; Planck radii ladder; E_26 = 2.83e-84 J verified; Q-042 |
| PAPER_045 | Phase Transitions L10-13 | (2n+1) transition law verified; C_10,26 = 0.0144 Casimir basis; plasma beta = 0.60; CLEAN |
| PAPER_046 | DPM Yin-Yang Cosmology | g(A) iron-peak coupling verified; 300 Hz Belly Button; resolves Q-040c; 132-order gap disclosed; Q-043 |
| PAPER_047 | Nuclear Binding SEMF+26L | Fe-56 490.9 MeV chain verified; B_UQFF honest-negligible; row shift + AI artifact caught; Q-044 |
| PAPER_048 | Ug4 BH Vacuum Pressure | peak 1.246e28 verified; FORENSIC: 1.8937e-23 = predecessor 1.894 origin candidate; Q-045 |
| PAPER_049 | Three-Component Vacuum | sum(n^2) = 3731 exact; 16-order headline = UNITS ARTIFACT (0.117 consistent); PAPER_2147 root; Q-046 |
| PAPER_050 | 26D Compactification | 26 = 9+4+13; TIME = PLASMA identification; bridge 0.0144; honest 4D note; Q-047 |
| PAPER_051 | arXiv 2024 Cross-Validation | 10/10 PASS mean 92.02; 7.09 family at L13 PLASMA (origin); final parsec via [SCm] drag; Q-048 |
| PAPER_052 | arXiv 2025 Cross-Validation | CMS Higgs 99.79; Page 26-channel 99.84; 44/44 models; L18-projection reading; Q-049 |
| PAPER_053 | NGC 2264 Model (astro family opens) | 8/8 re-verified = 052 suite row; EM-dominated regime; SSq/(1+SSq) composed; CLEAN |
| PAPER_054 | Tadpole Galaxy UGC10214 | 280-kpc tail = 0.4 Ug3 boost + UA wake; Hubble column inverted-vs-z systematic; Q-050 |
| PAPER_055 | Mice Galaxies NGC4676 | major-merger 10x compression; taxonomy minor/major IFU-falsifiable; 37.5x verifies; Q-051 |
| PAPER_056 | Red Spider Nebula | 2x wind-radiation class EXACT; 1600 km/s wind chain verified; tier hierarchy 1/2/10 complete; Q-052 |
| PAPER_057 | Carina Multi-Scale (3-in-1) | 12/12; 12.5x ratio EXACT resolves Q-051a; erosion-vs-compression readings; Q-053 |
| PAPER_058 | M42 Orion (suite maximum) | complete 10-system ranking pinned; honest 1x-at-peak negative; shock bridge 3 pct; Q-054 |
| PAPER_059 | Alpha BEC Heavy-Ion (Dom 1.8) | 10-ch Ikeda; chains verified; F_rel = 4.30e33 resolves Q-040b; E_LEP dual flagged; Q-055 |
| PAPER_060 | Bose Occupancy NIMROD-ISiS | dE_BEC = 0.4766 EXACT; 26-level ladder all-verified; SSq/0.50 exponent mismatch; Q-056 |
| PAPER_061 | Nuclear BEC Formation | Phi_BEC = SSq scale-invariant; yield closes 85 pct; GeV slip caught (margin 4000x); Q-057 |
| PAPER_062 | Widom-Larsen LENR | m* = 3.0 EXACT; omega_LENR = omega_SCm identity; k_eta = 1e-55 pinned; Q-058 |
| PAPER_063 | F_UBii Master Integral | mean -6.05e7 pinned by Planck-ratio closure; KAPPA MCMC validated; B_crit magnetar pin; Q-059 |
| PAPER_064 | Four Operational Modes | weights = KAPPA/SSQ/1e-4/H_SCm; Crab omega closes; 1784 evaluations EXACT; Q-060 |
| PAPER_065 | 121-System Validation | census 121 EXACT; 13 chains verified; mean-dev three-way + L26 inversion; Q-061 |
| PAPER_066 | Magnetars SGR1745/Crab/Vela | SOURCE4 anchors EXACT; 4 LENR chains close; Vela kick 296 km/s; Q-062 |
| PAPER_067 | AGN SgrA*/M87*/CenA/NGC1365 | k4 = 1e15 dual-closure pin; maser chain 3.6 pct end-to-end; M87 slip caught; Q-063 |
| PAPER_068 | Globular Clusters M13/OmegaCen | virial EXACT; IMBH anchors + formula OPEN (Rule D); SSq 13th role; Q-064 |
| PAPER_069 | ASKAP J1832 LPT | omega = 2*pi/2640 supersedes 066 (6th self-rect); 22-min flip mechanism; Q-065 |
| PAPER_070 | Helix + PN Archive | Kepler chain EXACT 0.0041 AU; x_2 dual-corrupt-print evidence; Q-066 |
| PAPER_071 | Stellar Superflares | solar g 274.0 EXACT; Ug1 formula confirmed; two-x2 evidence; Q-067 |
| PAPER_072 | Red Dwarf Reactor | F_TRZ lab claim 0.098/0.10; H0 anchor = registry route 0.37 pct; [UA] 3rd appearance; Q-068 |
| PAPER_073 | Gaia DR4 Validation | 1+SSq*0.034 = 1.0194 EXACT; 5-sigma solar pin; g_DPM column defects; Q-069 |
| PAPER_074 | NED/SIMBAD Suite | 6/6 tension chains verify; Newton beats UQFF all rows (Rule-7 pin); 0.032/0.034 conflict; Q-070 |
| PAPER_075 | X-Ray Binaries | eta = 1.99x EXACT; 5/5 ratio chains; ULX beaming limitation honest; Q-071 |
| PAPER_076 | Fermi-LAT 4FGL | null predictions + epoch-folded 1e-5 falsifiable; photon-mass formula defect; Q-072 |
| PAPER_077 | LIGO GWTC-4 | 3 events named (resolves Q-060d); anchors-over-formula; [UA] 5th; Q-073 |
| PAPER_078 | NED + Hubble Tension | dH0 = 0.0034 honest null; midpoint 70.2 on registry route; L* +0.3 dex EXACT; Q-074 |
| PAPER_079 | HEASARC Magnetars | 1.9801x EXACT; 4/5 rows tautological (pin); J1818 lone discriminator 2.69; Q-075 |
| PAPER_080 | Multi-Wavelength Capstone | 20+2+2 = 24 EXACT; live cross-consistency gates vs 073-079; Q-076 |
| PAPER_081 | Hawking Temperature | 1-F_TRZ² = 0.99 EXACT identity (7th self-rect drift correction); Q-077 |
| PAPER_082 | BH Evaporation | (1-F_TRZ²)^-4 = 1.0410 EXACT; sim chain 16.5 pct EXACT; unit-label pin; Q-078 |
| PAPER_083 | Primordial BHs | threshold sign-flip caught; -1.3 pct double-supported; delta_c null; Q-079 |
| PAPER_084 | Info Paradox 26D | partition 4+14+6+2 = D_crit EXACT; Cosmic Egg layers; Page kappa mechanism; Q-080 |
| PAPER_085 | Page Curve | t_P = 0.5205 t_evap EXACT flagship prediction; year-label pattern 2nd; Q-081 |
| PAPER_086 | Ug4 AGN Feedback | anchor 3.352941e22 (formula OPEN); kappa e-4->e-7 mojibake confirmed; Q-082 |
| PAPER_087 | AT2019qiz TDE | 10^6.45 pin; H0-chain distance; -8.3 pct EXACT; eta-direction siblings; Q-083 |
| PAPER_088 | Neutrino SED | f_TRZ fork: +1 vs +10 pct detectability; flavor null robust; Q-084 |
| PAPER_089 | Master Eq + 8 Calcs | 8/8 self-validate; beta_i auto-corrected; SC context support; Q-085 |
| PAPER_090 | MUGE Compressed | T0-doctrine root; U_bi/F_U = SSq*kappa EXACT; magnetar suppression falsifiable; Q-086 |
| PAPER_091 | MUGE Resonance | aDPM 270-R_S label fix; pulsar-timing fork joins Q-084; mode count 14/13/13; Q-087 |
| PAPER_092 | SgrA* MUGE Decomposition | horizon (1+[SCm]*0.07) EXACT; sum/DM chains EXACT; GM-normalization sharpened; Q-088 |
| PAPER_093 | M87* Event Horizon | r_S EXACT; shadow null EXACT; T_H sides with 081; shift-constant conflict; Q-089 |
| PAPER_094 | SGR1745 Calibration | KAPPA origin (600/1200)*1e-3 EXACT; SSq = 0.755² EXACT; Schwinger B_crit; Q-090 |
| PAPER_095 | 99.9% Solvability | 338/340 EXACT; ASKAP orbital reconciliation; (1+SSq) boost; Q-091 |
| PAPER_096 | FRB Emission Model | corrected chain 2.7e44 erg; 60.6-us pulse EXACT; 3rd f_TRZ fork; Q-092 |
| PAPER_097 | Whittaker 26-Layer | partition 4+4+10+6+2 EXACT; SSq band = SO_FIVE; refines 084; Q-093 |
| PAPER_098 | Big Bang / Cosmic Egg | eta_b = eps_CP*[UA] EXACT; T_CMB 24-sigma FIRAS pin; kappa doctrine; Q-094 |
| PAPER_099 | Plasma Shield | sqrt(SSq) 2nd role; T = 1e7 K pin -> 2.56 keV EXACT; 37.5-day slip; Q-095 |
| PAPER_100 | THz Resonance Holes | 6.25 THz = 5*f_SCm candidate; 4th fork (THz bench); Q = 62.4; Q-096 |
| PAPER_101 | Yang-Mills Mass Gap | three-epoch chain -> 1.736 GeV canonical (2.1 pct lattice); Q-097 |
| PAPER_102 | Navier-Stokes | nu = 1.0099 EXACT; fork twist favors drift in lab fluids; THz UV cutoff; Q-098 |
| PAPER_103 | Riemann Hypothesis | 5 zero anchors EXACT; self-labeled numerology (honest); bridge 4.1667e9; Q-099 |
| PAPER_104 | P vs NP | [UA] = v_UA/c = 1e-4 physical identity; [UA]² = 1e-8 EXACT; partition 3rd; Q-100 |
| PAPER_105 | BH Phases + 10 Models | Domain 1.13 capstone; suite = 053-058; 40-test total EXACT; Q-101 |
| PAPER_106 | Vacuum Energy / Dark Energy | header identity 1+κ²SSq² EXACT; Ω_L = (6/5)SSq link; CPL anchors; Q-102 |
| PAPER_107 | EP-12 α-BEC Proof | Ikeda 10α N_B = SSq EXACTLY (2nd anchor); T_c shift 5.272 EXACT; Q-103 |
| PAPER_108 | EP-10 IceCube ν SED | β_i tri-source confirmation; f_pp = 0.7549 SSq 4th role; Q-104 |
| PAPER_109 | EP-11 GW170817 r-Process | v = β_i·c = 1.83e8 EXACT; SSq activation 6th role; M_r = 1.15e-4 EXACT; Q-105 |
| PAPER_110 | EP-06 Gaia SgrA* | M_BH 0.07 pct; v_c 0.85 pct EXACT; Ug4 = 1.894-family origin candidate; Q-106 |
| PAPER_111 | EP-01 RACS Jet | cos sign-reversal mechanism; scan EXACT; R = 1.5 series OPEN; 27-Gyr fix; Q-107 |
| PAPER_112 | EP-02 PDG Ladder | EW/nuclear anchors EXACT; mid-band −1 defect; hadron cluster → 9-11; Q-108 |
| PAPER_113 | EP-05 4LAC Blazars | kappa chains EXACT; CTA 102 factor-10 error → 5.3x above canonical; Q-109 |
| PAPER_114 | EP-07 PSP Heliosheath | Ug2/P_ram/1.70 pct EXACT; d_sw = F_TRZ² vs SSq/57 dual route; Q-110 |
| PAPER_115 | EP-09 3C273 Jet | ladders crossed (129.8 = 1.5^12); N=15 corrected; 100x radius slip; Q-111 |
| PAPER_116 | EP-03 LHC n=4 | E_4 = 624 eV EXACT; 1-keV anchor underived; hadronic row confirms Q-108a; Q-112 |
| PAPER_117 | EP-04 Pb-206 n=8 | headline 8.205 EXACT; SSq 8th role; offset family; Z=82 = A_5+D_crit-D_phys; Q-113 |
| PAPER_118 | EP-08 DM/Vacuum | 2x anchor collapses headline; clean 0.622 secondary; Ω_b/Ω_DM = SSq³ 0.16 pct; Q-114 |
| PAPER_119 | 7-System Reference | anchors EXACT; dual-form 43 orders broken; SSq dual definition; Q-115 |
| PAPER_120 | 24-System Catalog | conversions EXACT; B_crit 1e4 fork; EP-09 3rd variant; g/cm3 drift; Q-116 |
| PAPER_121 | 71-Eq Catalog | M_bh fork; UA triple; alpha_fund = 1/phi + IMF = -sqrt(3) EXACT; Q-117 |
| PAPER_122 | Compressed PDG | proton n=10 canonized (self-rect No. 9); code R² falsified (0.468); Q-118 |
| PAPER_123 | Sub-Quantum n=4.20 | winding 1/5 = 2/SO_5 derives 0.989 keV; dn = log10(1.602) artifact; Q-119 |
| PAPER_124 | Buoyancy Pb-206 S_n | isotope misattribution fixed (self-rect No. 10); SSq → Pb-208; Q-120 |
| PAPER_125 | Superconductive 4LAC | kappa = 0.35/700 derived EXACT; named kappas; circular code pinned; Q-121 |
| PAPER_126 | Master Buoyancy Gaia | pair (4.3e6, 2.44e20) canonized; eps_UA circular; /10 = F_TRZ find; Q-122 |
| PAPER_127 | Resonant PSP Alfvén | d_sw grounded (PSP E8); code output falsified No. 2; [UA] 4th value; Q-123 |
| PAPER_128 | Quadratic DM SSq³ | anchor fixed (self-rect No. 11); N=3 settled; 0.185 = SSq³ circular; Q-124 |
| PAPER_129 | Triadic 3C273 t<0 | double error fixed: t = -0.809 → R = 130.0 EXACT; N = D_crit/2; Q-125 |
| PAPER_130 | Buoyancy IceCube β | 0.061 PeV EXACT; clean code; canonical β improves to 0.48 pct; Q-126 |
| PAPER_131 | Superconductive Dual | Y_e = 0.093 EXACT; RACS reclassified (1e5 fork); [UA] 5th value; Q-127 |
| PAPER_132 | Quadratic Hoyle BEC | 7.676 MeV at 0.28 pct; E_0 back-solved; block 122-132 complete; Q-128 |
| PAPER_133 | F_U Genesis §2.1 | provenance anchor; E_react v¹ = 1e46 EXACT resolves Q-115a; Q-129 |
| PAPER_134 | Heliosphere Ug2 | chain 1.18e40 (13-order slip resolved); age law breaks at Gyr; Q-130 |
| PAPER_135 | Quasar Jets + NS | F_SCm EXACT; time-reversal mechanism; code prints 511 vs claimed 37; Q-131 |
| PAPER_136 | Planetary Ug3 Core | P_SCm = F_TRZ³ EXACT; hierarchy tension; solar-rotation relabel; Q-132 |
| PAPER_137 | Genesis 26-Level | activation bands; Higgs n=18 label superseded; v¹ third support; Q-133 |
| PAPER_138 | NGC 3603 Burst | M(t) EXACT; cavity 21-ly manufactured (1000x slip); B_crit 3rd value; Q-134 |
| PAPER_139 | Hydrogen MUGE-H | Ug4 29 orders off chain; total < dominant; inverse-family units; Q-135 |
| PAPER_140 | Monopole Ratio 10 | = 1/F_TRZ origin; N = SO_5 + factor 11 = SO_5+1 convergences; Q-136 |
| PAPER_141 | H2O Azeotrope | chains EXACT; Buoy code-calibrated (3 failed chains shown); 1/5 pair; Q-137 |
| PAPER_142 | H_res Z=1-126 | Ni-62 EXACT; k_dp = α_G; d_pair five-convention chaos; island 1.80x; Q-138 |
| PAPER_143 | 40/60 Bridge | split = (D_phys, D_BSFG)/SO_5 EXACT find; circular as printed; Q-139 |
| PAPER_144 | Star Magic Capstone | genesis block closed; Ub/Ug = 14 doctrine tension; SSq 10th role; Q-140 |
| PAPER_145 | MUGE Cycle 3 | 12-term registry; vacuum split (self-rect No. 12); k4 fork; g-ID open; Q-141 |
| PAPER_146 | 12-Term Derivations | dominance map; fTRZ form fork; Ug4i collision; aDPM units open; Q-142 |
| PAPER_147 | FDPM Driver | LENR THz 1.7 pct; aTHz = 3.3e9x its driver (inversion); THz family; Q-143 |
| PAPER_148 | SGR1745 Magnetar | MUGE-g identified; fTRZ additive refuted; B_crit Schwinger vote; Q-144 |
| PAPER_149 | Sgr A* aDPM | scope-inside-r_s; inversion confirmed (1e15); abstract 6-order fork; Q-145 |
| PAPER_150 | Tapestry/Westerlund | floor claim 1e6 self-contradiction; 20-yr prediction; slips; Q-146 |
| PAPER_151 | Pillars/Rings | 1-2-5 x (1+P_SCm) fingerprint; lensing 30-order flag; Q-147 |
| PAPER_152 | Cosmological Base | 38.4-decade cascade; formula fork No. 3 root cause; H0 fork; Q-148 |
| PAPER_153 | MT Wormhole | r_0 = 2.32 mm genuine derivation; fTRZ native home; scoped doctrine; Q-149 |
| PAPER_154 | NS Jets Stam | f_jet = v·F_TRZ; T_Osc = τ/F_TRZ 54.8 yr; 1e46 2nd route; λ = 1 fm; Q-150 |
| PAPER_155 | SM Limit Keystone | proof valid modulo Ug4i 4th form; Pioneer outdated; Q-151 |
| PAPER_156 | Millennium Roadmap | block 145-156 closed; six-problem fork vs predecessor; Q-152 |
| PAPER_157 | Solar System F_U | §2.3 opens; F_U = −13·Ug3 derived; k4 = 2 implied; Q-153 |
| PAPER_158 | Hybrid MUGE Blend | bridge sound; table = float underflow artifact; Q-154 |
| PAPER_159 | 13th Wormhole Term | verified 0.06%; E_vac = ρ_UA EXACT; throat fork vs 153; Q-155 |
| PAPER_160 | Ug4 Calibration | k4 = 2 canonical confirms 157 derivation; Λ bridge; Q-156 |
| PAPER_161 | Relativistic SCm Jet | γ = 7.09 verified; curl-free 154-consistent; ~4 vs 98× claim; Q-157 |
| PAPER_162 | Solar Cycle ω_c | 2.33× testable prediction; amplitude/period/perturbative defects; Q-158 |
| PAPER_163 | Modular MUGE | 4,108 functions; 1e11 base-test slip; H0 fork; mixing exposed; Q-159 |
| PAPER_164 | High-Energy Datasets | dE_vac verified; SGR B fork 13×; sec-5 contradiction; Q-160 |
| PAPER_165 | A_μν Tensor Coupling | ΔA = 4.448e-15 EXACT; 4 = D_PHYS; input defects; Q-161 |
| PAPER_166 | Solar Wind Modulation | wind_mod wired; km/s ambiguity persists; 10×/100× slips; Q-162 |
| PAPER_167 | GW231123 Mass Gap | real O4 event; F_U additive EXACT; YM 300 MeV fork; Q-163 |
| PAPER_168 | 3D Entity Framework | Tier 3 gateway; minus-buoyancy convention; scale defects; Q-164 |
| PAPER_169 | CoAnQi Architecture | §2.4 opens; κ·SSq consistent; GPU/JWST prediction; Q-165 |
| PAPER_170 | CelestialBody Struct | ω_s_Sun = predecessor EXACT; compact Ubi form; forks; Q-166 |
| PAPER_171 | Ug1-Ug4 Decomposition | k1/k2/k3 = May-2025 source EXACT; 3rd Ubi form; Q-167 |
| PAPER_172 | F_U Assembly | resonance smoking gun 9.3e53; 4 Ubi forms; wind clarified; Q-168 |
| PAPER_173 | 9-Term Compressed | 1.782e39 = 3GM²/r³ DERIVED; H0 = 70 vote; 10× slips; Q-169 |
| PAPER_174 | 13-Term Resonance | code-truth 1.773e-9; fTRZ refuted #2; aDPM root break; Q-170 |
| PAPER_175 | 26 Energy Levels | (κ·SSq)² correction EXACT; bands match 171; anchors queued; Q-171 |
| PAPER_176 | SCm Properties | real anchors EXACT; κ derivation 1e9 break; dominance intentional; Q-172 |
| PAPER_177 | FluidSolver Coupling | 3rd code-truth vote; jet/UQFF 5.6e10; curl-free 3rd; Q-173 |
| PAPER_178 | 3D Infrastructure | SLERP/OBJ/shaders; stubs confessed; heightmap mismatch; Q-174 |
| PAPER_179 | 5-Chapter Theory | DPM = UA′/SCm; π-gate; honesty landmark; YM 4th construct; Q-175 |
| PAPER_180 | 26-Test Catalog | afluid = ffluid·V·SO₅/c derived; corpus self-audit; Q-176 |
| PAPER_181 | H-Magic Labelings | §2.5 opens; name etymology; ASD 4-vs-8 defect; Q-177 |
| PAPER_182 | Variable Dictionary | β 0.603; Bcrit 3rd vote; layered slips; U_UA fork; Q-178 |
| PAPER_183 | YM Hamiltonian | SU(2)×U(1) map; 5th gap construct; transposition propagates; Q-179 |
| PAPER_184 | Quasar NS Asymmetry | arrow-of-time mechanism valid; Prodi-Serrin 1.5≠1; Q-180 |
| PAPER_185 | Riemann π-Bridge | eta-not-Mobius correction; 3-way fork; honest hedge; Q-181 |
| PAPER_186 | Body Reference v2 | Q-166b/c resolved; placeholder dropped from μ_s; Q-182 |
| PAPER_187 | 7-Object Catalog | B/Bcrit = F_TRZ ALL systems; Q-176a resolved; ω₂ = −ω₁; Q-183 |
| PAPER_188 | Build Architecture | 6,688-term census; 4.68 terms/kB; Qt5/Qt6 pin; Q-184 |
| PAPER_189 | S-C Architecture | Q-184a resolved; in-corpus Units class unused (irony); Q-185 |
| PAPER_190 | Integration Engine | all 10 rules verified; ζ(1) divergence; PINE oddity; Q-186 |
| PAPER_191 | Multi-Modal Features | 8 systems cataloged; infrastructure only; Q-187 |
| PAPER_192 | Collab Protocol | WebSocket/OT/ECDSA/Snappy; sign/verify mismatch; Q-188 |
| PAPER_193 | 7-Namespace Arch | constants exact; F_U form divergence umbrella; Q-189 |
| PAPER_194 | Graphics3D Mesh I/O | Assimp/VTK; Perlin mismatch persists; infrastructure; Q-190 |
| PAPER_195 | Data Loader | JSON/YAML/CSV; stale ω_c example vs 186; Q-191 |
| PAPER_196 | Triadic Master Eq | §2.6 opens; predecessor convergence; SSq redefinition; Q-192 |
| PAPER_197 | F_U_Bi_i Integral | UV/mm/hybrid/hier terms; two-buoyancy clarification; Q-193 |
| PAPER_198 | F_UBii Taxonomy P1 | 18 variants; predecessor 2151 registry match; Q-194 |
| PAPER_199 | F_UBii Taxonomy P2 | 19 cosmo/dark variants; registry complete; Q-195 |
| PAPER_200 | Um Magnetism Taxonomy | 50+ variants; L_mag/1072 tie; operator trilogy; Q-196 |
| PAPER_201 | GW Lifecycle Chain | both channels; GW150914/Hulse-Taylor verified; Q-197 |
| PAPER_202 | Cosmic Dawn | BBN/CMB/reion anchors verified; BUCKET C tie; Q-198 |
| PAPER_203 | Inflation Cosmology | n_s/r/σ8/BAO verified; low-l CMB prediction; Q-199 |
| PAPER_204 | Dark Matter | NFW/SIDM/virial/lens verified; core-cusp honest; Q-200 |
| PAPER_205 | Ramanujan Q_n | spectral expansion genuine; Q_26 + root errors corrected; Q-201 |
| PAPER_206 | Vortex Avalanche SOC | α=1.6 glitch stats; anti-glitch prediction; Q-202 |
| PAPER_207 | Entanglement Chain | Bell/Mermin correct; GHZ S_VN=ln2 corrected; Q-203 |
| PAPER_208 | Variable Calibration | SSq/Q_wave canonical; f_TRZ name collision; Q-204 |
| PAPER_209 | UQFF vs Lambda-CDM | LCDM = UQFF subset; running-vac 1.000000081225; Q-205 |
| PAPER_210 | UQFF vs MOND | a0 = c*H0/6 emergent; k_UA = F_TRZ^4 EXACT; Abell 2744 +9%; Q-206 |
| PAPER_211 | 99-System Compression Cycle 3 | 1287 raw -> 11 backbone (0.855%); 89.5% unification; Q_wave 6.33e4; Q-207 |
| PAPER_212 | 48-Scale + CIA Refit | 48 scales / ~61-decade span; CIA sigma(400)=11.65 A^2 (+5.9%); k_phi ~1e-113; Q-208 |
| PAPER_213 | H_res Suite + D_universe | 7 sub-eqs; S_shell 208Pb=0.832 MeV; D_universe 93.016 Gly (dD/D 0.002%); Q-209 |
| PAPER_214 | MHD Clusters/Jets/Accretion | 6 MHD types; strong-shock ratio 4 EXACT; Cycle 2 456->38 F_env (8.33%); Q-210 |
| PAPER_215 | Cosmic Rays / WHIM / CR Knee | DSA index 2 EXACT; a_Ug1=3*F_TRZ^2=0.03; knee p 3.09e15..Fe 8.04e16 eV; Q-211 |
| PAPER_216 | Triadic Validation (Wd2 + Pillars) | 3 modes simultaneous; couplings F_TRZ / 3*F_TRZ^2; decay e^-(pi-t_n); Q-212 |
| PAPER_217 | F_U_Bi_i Polynomial + Rare Discoveries | two-branch quadratic, asymmetry 3940, disc=0; F_hier/dF/F_hyb; Q-213 |
| PAPER_218 | NGC 3603 Pressure Dispersal | (1-P(t)) unique pressure suppressor; P=0.15 -> 15%; 5-term taxonomy; Q-214 |
| PAPER_219 | M16 Eagle Nebula SFR + Radiation | dual (1+M_sf) - E_rad; photoevap E_rad>g_base; Pillars gravity-protected; Q-215 |
| PAPER_220 | Crab Nebula PWN | F_wind + M_mag; F_wind/g_base=20; E_sd=4.4e31 W; expanding r(t); Q-216 |
| PAPER_221 | Bubble Nebula NGC 7635 | (1+E(t)) positive expansion (sign-inverse of Pillars); F_UBii phonon +7.5%; Q-217 |
| PAPER_222 | Horsehead Nebula P_rad | Stefan-Boltzmann P_rad=4sigmaT^4/3c=2.52 Pa; P_rad/g_base~400,000; Q-216 |
| PAPER_223 | NGC 1275 Perseus AGN | F_BH=P_jet/r_jet=3.24e14; self-regulated feedback; M_fil filaments g_fil=1.4e-13; Q-216 |
| PAPER_224 | Saturn Dual Gravity + T_ring | dual-source asymmetric modifiers; g_saturn=10.44; T_ring=2.043e-7 (Roche); Q-218 |
| PAPER_225 | Early-Universe Relativistic UV | F_EU=k_UV*(v/c)^2*L_UV (4th rare discovery); enhancement (v/c)^2; CLEAN |
| PAPER_226 | SGR 0501+4516 11-Term MUGE | 3 novel terms a_GW/a_mag/a_decay; g_0501=4.474e12 m/s^2; new thread; Q-219 |
| PAPER_227 | Tapestry Starbirth LMC MUGE | gas-ratio M(t) (41.67) + wind ram a_wind=4e12=v^2; wind family; Q-220 |
| PAPER_228 | Westerlund 2 OB-Wind MUGE | rho_wind=1e-20 (10x, family top); a_wind=4e4 (rho_fluid=1e-12); self-rectifies Q-220 |
| PAPER_229 | Pillars of Creation (M16) MUGE | decaying erosion (1-E(t)); sign taxonomy vs Bubble (1+E); a_base=5.40e-12; Q-221 |
| PAPER_230 | NGC 2525 + SN 2018gv | ONLY negative MUGE term g_SN<0; |g_SN|=2.30e-21; H(z)=2.287e-18; Q-222 |
| PAPER_231 | HUDF Cosmic Field z=3.5 | Friedmann H(z=3.5)=5.295*H0=370.7; double I(t) on base+Ug; Q-223 |
| PAPER_232 | NGC 1792 Stellar Forge | specific-SFR growth SFR_factor=1e-9; SN wind a_SN=4e12; CLEAN |
| PAPER_233 | SGR 1745-2900 Enhanced | SMBH tidal a_BH=6.63e-7; static B a_mag=9.58e4; ATNF P=3.76s; CLEAN |
| PAPER_234 | Sgr A* Enhanced | secular M(t) 0.22% growth; Gauss->Tesla; Kerr precession 1.5*GM/r^3; CLEAN |
| PAPER_235 | Antennae Double Merger | double I(t) on base+Ug; I(300 Myr)=0.0472; local vs HUDF (231); CLEAN |
| PAPER_236 | UQFF Learning Meta-Assessment | first meta-calc; advancement=(3+3+0.8)/3=226.67% super-linear; CLEAN |
| PAPER_237 | UQFFSource10 Catalogue | 5-class master buoyancy F_U_Bi_i; Eta Carinae 2.11e208 N ties PAPER_217 Branch1; 26-layer M_i=M/26; Q-224 |
| PAPER_238 | Vacuum Repulsion Surface-Tension | F_vac_rep = G·Δρ_vac·M·v; 3rd repulsive force (after F_DE, F_rel), only one linear in v; CP3 Eta Carinae 1.99e15 N; CLEAN |
| PAPER_239 | THz Shock + H2O Conduit SF | F_thz=k_thz·(ω/ω₀)²·… + F_conduit; (120)²=14400 exact; binary water gate; derived-correct 1.47e-19/6.65e9; Q-225 |
| PAPER_240 | Spooky Action + DPM Resonance | F_spooky=k_spooky·(ω/ω₀) linear-in-ω (5.55e-30 N); Q_wave DPM resonance; g_H=1.252e46 hydrogen g-factor ties PAPER_237; Q-226 |
| PAPER_241 | Validation Cross-Reference | 3 streams (ArXiv 92.53% / exp 93.3% / comp 100%) → 95.28% overall; Higgs 99.79%, 26D 100%, χ²ᵥ=1.03; CLEAN |
| PAPER_242 | Rings of Relativity Lensing MUGE | GAL-CLUS-022058s 9-term MUGE; static Einstein-ring L_t=(GM/c²r)·0.67=3.21e-4; T4 ρ_UA/ρ_SCm=10 exact; Q-227 |
| PAPER_243 | NGC 3603 Full MUGE Cavity Pressure | 10-term MUGE; M(t)=M₀(1+Ṁ·e^-t/τ)=1.607 M₀; additive P(t)/ρ_fl=2.43e12 m/s²; T4 ρ_UA/ρ_SCm=10 exact; CLEAN |
| PAPER_244 | MUGE Quantum Uncertainty Sub-Term | universal g_Q=(ℏ/√(Δx·Δp))·β·(2π/t_H); in all 19 MUGE modules; g_Q_min=2.10e-34 m/s² floor; Q-228 |
| PAPER_245 | MUGE Fluid Self-Gravity Archimedes | universal g_fluid=(4πG/3)·ρ_fl·r (mass-independent, linear); crossover r_c=1.17 pc; cluster 8.39e-14 m/s²; CLEAN |
| PAPER_246 | MUGE Dual-Mode Oscillatory Gravity | universal g_osc = standing 2A·cos(kx)cos(ωt) + Hubble traveling; Mode-2 0.455, resonance 2π Gyr, ⟨g_osc⟩=0; CLEAN |
| PAPER_247 | MUGE Merger Interaction Modulation | g_merger=g_base·(1+I₀e^-t/τ); peak 2.42·Ug1; t_half=277 Myr, t_relax=921 Myr; f_TRZ=0.1; Antennae+HUDF; CLEAN |
| PAPER_248 | Source10 Batch OpenMP DPM Calibration | adj_factor=2.82e-56=C_DPM Eta Carinae anchor (ties PAPER_240); 26-layer g_UQFF, 104N=52000 ops; DPM_resonance 3.10e9; Q-229 |
| PAPER_249 | CUDA GPU Tiled GEMM Acceleration | H100 295 FLOP/byte; benchmark 26·500·10000=1.3e8 ops; CUDA Graph 80% reduction; 26-Layer Parallelism, speedup 3150×; CLEAN |
| PAPER_250 | SN 1006 Type Ia SNR F_U_Bi_i | founding member of ω₀=1e-12 Force Equivalence Class; F_U_Bi=+2.11e208 N (ties PAPER_217/237); ω_LENR=7.854e12, E_knot=4.5e-11; Q-230 |
| PAPER_251 | Eta Carinae DPM Invisibility | 2nd Equiv-Class member; F_U_Bi=+2.11e208 N invariant under 100× B0 (F_LENR B0-independent); M=2.387e32, F_DE=1e5; Q-231 |
| PAPER_252 | Chandra Composite Equivalence Class | SN 1987A+Eta Car+Helix confirm ω₀=1e-12 class; F_U_Bi=+2.11e208 N invariant (5 systems); geom-mean L_X=1e33, ratios reproduce; Q-232 |
| PAPER_253 | Sgr A* Negative Buoyancy Inversion | class departure (ω₀=1e-15); first NEGATIVE F_U_Bi=-8.31e211 N = PAPER_217 Branch2 (asym 3938≈3940); Fermi Bubble t=48.9 Myr; Q-233 |
| PAPER_254 | Kepler SNR 1604 Distance-Independence | 4th positive Equiv-Class member; F_U_Bi=+2.11e208 N invariant vs 3× distance; L_X inverse-square, E_shock=8e-11; 5-system series complete; Q-234 |
| PAPER_255 | PSR J0030 NS-Density Buoyancy | neutron-star regime; F_neutron-dominant (~9 orders > F_LENR); positive F_U_Bi=+2.53e208 N; DPM=1.76e31; class spans 53 orders s_n; Q-235 |
| PAPER_256 | Crab Nebula Radius Sign-Determinant | same ω₀=1e-15: Crab (r=1e4, a large) +5.30e208 vs Sgr A* (r=6.17e18) −8.31e211; \|F\| ratio 1568; DPM geometry flag; Q-236 |
| PAPER_257 | Cassiopeia A Class Completeness | NS matches ChandraArchive +2.11e208 N across 53 orders σ_n/14 r; x2=F0/b=3.88e73 (independent of M,r); Q-237 |
| PAPER_258 | Multi-Messenger UQFF Validator | maps F_U_Bi to ALMA/EHT/Chandra (isotopic/kinematic/flare) + detection_score(0-3); f_flare_sgrA=1.157e-5 Hz; Q-238 |
| PAPER_259 | NGC 1275 AGN Feedback Equilibrium | 13-term MUGE; cooling-flow term co-acts with 3 buoyancy tiers (shared G·M/r²); AFET; filament period 272 Myr; CLEAN |
| PAPER_260 | Horsehead Erosion-Buoyancy Universality | Structural-Form Independence: E(t)=E₀(1-e^-t/τ) same across all PDR geometries; static-M asymmetric; CLEAN |
| PAPER_261 | NGC 3603 Scale-Invariant Feedback | dual M(t)+additive P(t); ΔΦ/Φ=1-e^(-Δt/τ) independent of t → universal 30-35% SFE; Q-239 |
| PAPER_262 | NGC 2525 SN Negative-Mass-Loss | term_SN=-G·M_ej(1-e^-t/τ)/r²; second negative-g channel (mass removal vs field inversion); ε_SN=1.2e-10; Q-240 |
| PAPER_263 | Co-action Universality Master Theorem | g_UQFF=g_base+g_diss+g_buoy^(3); dissipation ⊥ buoyancy → simultaneous; unifies 4 sub-theorems / 7 classes / 5 systems; CLEAN |
| PAPER_264 | HUDF TRZ CPT Phase Transition | f_TRZ as CPT-asymmetry parameter; 5-regime phase diagram; zero point f_TRZ=-1, anti-gravity f_TRZ<-1; HUDF 0.1=F_TRZ; Q-241 |
| PAPER_265 | HUDF Dual-Channel Cascade Buoyancy | I(t) on both channels → quadratic (1+I₀)²; Δ_cascade=I₀²·U_g1·1.1; U_g1=8.77e-23 confirms 264; N=2; CLEAN |
| PAPER_266 | HUDF Gravitational Meissner Effect | corr_B=1-B/B_crit quenches UQFF gravity at B_crit=1e11 T (SC analogy, distinct from Schwinger); HUDF unquenched benchmark; CLEAN |
| PAPER_267 | NGC 1792 sSFR Coupling Coherence | sSFR=SFR/M0=1e-9 couples to all 3 buoyancy tiers; peak SF = peak buoyancy (same τ_SF); C=sSFR=1e-9; Q-242 |
| PAPER_268 | NGC 1792 Dual Oscillatory Hubble Slow Mode | dimensional fix → ω_H=1.44e-17 (Hubble) vs ω_osc=2.49e-12 (fast); GW envelope modulation 5.8 ppm; CLEAN |
| PAPER_269 | NGC 1792 Ram-Pressure Degeneracy Point | at ρ_wind=ρ_fluid feedback → density-independent invariant g=v_wind²=4e12; buoyancy neutral, 3 regimes; Q-243 |
| PAPER_270 | Source10 g_H Cosmic Orbital Bridge | Q_bridge=g_H·2.82e-56=3.53e-10; E_DPM=3.11e9 confirms PAPER_248 (resolves Q-229a); γ_H=1.1e57; 89-decade span; CLEAN |
| PAPER_271 | Source10 THz Double-Gate Star Formation | F_conduit+F_thz require water_state AND neutron_factor (orthogonal gates); F_conduit=6.65e9 confirms PAPER_239; (ω/ω₀)²=1.44; CLEAN |
| PAPER_272 | Source10 Vacuum-Gravitational Duality | k_vac=G exactly; one G governs static gravity + vacuum drag; η_UQFF=1.19e-25 Pa·s; confirms PAPER_238; CLEAN |
| PAPER_273 | Andromeda Blueshift Approach Amplifier | κ_approach=1/(1+z); M31 z=-0.001→1.001; z→-1 resonance cascade; first velocity→gravity amplifier; CLEAN |
| PAPER_274 | Andromeda HI 21-cm Buoyancy Resonance | ω_HI=8.925e9 rad/s as galactic resonance freq; Ω_bridge=ω_HI/ω_g=1.223e25 (atomic→galactic); CLEAN |
| PAPER_275 | Andromeda DM 80/20 Shell Partition | ξ_DM=f_DM^(1/3)=0.9283 NFW coupling; g_DM_total=1.210e-10 (~1.4% reduction vs monolithic); CLEAN |
| PAPER_276 | Andromeda Friedmann-UQFF Expansion | g_exp=G·M/r²·H(z)·t; H_UQFF=H(z)·t_H=0.987 near-unity (gravitational doubling); completes M31 series; CLEAN |
| PAPER_277 | Sombrero UQFF Recession Damping | κ_recession=1/(1+z)=0.99374 (z=+0.0063); complements PAPER_273 → Universal Bidirectional Redshift Law κ(z)=1/(1+z); dual outer multiplier κ·σ_SC; CLEAN |
| PAPER_278 | Sombrero Dust Ring Gravitational Resonator | ω_ring=√(GM/r_ring³)=1.650e-14 rad/s, T_ring=12.08 Myr, A_ring=(r/r_ring)²·f_ring·g_base=9·0.001·g_base=2.144e-12; first stable UQFF ring resonator (pure oscillatory); sec-2.2 mass-exponent typo Q-244 |
| PAPER_279 | Sombrero SMBH Dominance Ratio + Sphere of Influence | γ_BH=M_BH/M=0.01 (250× Sgr A*, highest in catalogue); g_BH=γ_BH·g_base=2.382e-12; r_SOI=r·√(γ_BH)=2.36e19 m=2.49 kly; universal BH-dominance prescription; CLEAN |
| PAPER_280 | Saturn UQFF Solar Tidal Perturbation Ratio | first planetary-scale UQFF module (g_base=10.44 m/s²); τ_Sun=(M_Sun/M_pl)(r_pl/r_orbit)²=6.22e-6; g_Sun_tidal=6.49e-5; universal planetary formula (Mercury 1.07e-2 … Saturn 6.22e-6); CLEAN |

### Corpus (2,419 files)
- `whitepapers/` — 2,255 `.md` files + 1 `.bak` — physics source of truth
- `pdf/` — 45 · `tex/` — 107 · `txt/` — 11

### Clean baseline
- `uqff_registry_primitives.py` — 96 canonical constants (from predecessor
  v5.86.0 UNIFIED_REGISTRY R5 baseline). **Registry-clean.**
- `uqff_calculator.py` — `DISPATCH` grows one paper at a time;
  `calc(paper_id, dataset)` public interface; 1766-function primitive-sourced
  equation library + derived-constant accessors.
- `uqff_derived_constants.py` — 1,272-constant catalog (predecessor-registry
  derived constants re-expressed as data per Rule E; callable via `derived_constant()`).
- `uqff_fidelity_tests.py` — gate (2153 assertions), locking every
  primitive identity + every wired paper's stated values + the catalog. Runs on every ship.

### Registry pantheon (live, grows per band)
- `UNIFIED_REGISTRY.csv` — master registry (17-col schema), +rows per paper
- `UNIFIED_REGISTRY_GRAPH.csv` — falsifiability edges (primitive→observable→paper)
- `UNIFIED_REGISTRY_CORPUS_CITATIONS.csv` — cross-reference ledger
- XGEO / R1 / R2 / R3 ledgers + QA views + regen modules
- `UNIFIED_REGISTRY_VERSION.txt` — per-ship marker

### Campaign infrastructure
- `CLAUDE.md` — campaign charter (sessions self-configure)
- `ship.ps1` — one-command band ship (gate → commit → tag-verify → push)
- `RULINGS_QUEUE.md` — never-block ambiguity protocol
- `WHITEPAPER_INDEX.md` — per-paper wired/not-wired ledger
- `SHIP_MESSAGE.txt` — per-band commit message
- `_BUILD_LOG.md` · `CHANGELOG.md` · `SESSION_LOG.md`

## Campaign roadmap

| Milestone | Content | Papers wired |
|---|---|---|
| v0.1.0 | Scaffold + registry primitives baseline | 0 |
| v0.2.0 | Corpus (2,419 files) + registry scaffolds | 0 |
| v0.3.0/v0.3.1 | Charter + campaign start | 1 |
| v0.4.0 | Band 1: PAPER_002+003 | 3 |
| v0.5.0 | Band 1: PAPER_004..006 | 6 |
| v0.6.0 | Band 1: PAPER_007 | 7 |
| v0.7.0 | Band 1: PAPER_008 | 8 |
| v0.8.0 | Band 1: PAPER_009 | 9 |
| v0.9.0 | Band 1: PAPER_010 | 10 |
| v0.10.0 | Band 1: PAPER_011 | 11 |
| v0.11.0 | Band 1: PAPER_012 | 12 |
| v0.12.0 | Band 1: PAPER_013 | 13 |
| v0.13.0 | Band 1: PAPER_014 | 14 |
| v0.14.0 | Band 1: PAPER_015 | 15 |
| v0.15.0 | Band 1: PAPER_015b | 16 |
| v0.16.0 | Band 1: PAPER_016 | 17 |
| v0.17.0 | Band 1: PAPER_016b | 18 |
| v0.18.0 | Band 1: PAPER_017 | 19 |
| v0.19.0 | Band 1: PAPER_018 | 20 |
| v0.20.0 | Band 1: PAPER_019 | 21 |
| v0.21.0 | Band 1: PAPER_020 | 22 |
| v0.22.0 | Band 1: PAPER_021 — GW family 001-021 complete | 23 |
| v0.23.0 | Band 1: PAPER_022 | 24 |
| v0.24.0 | Band 1: PAPER_023 — BSM domain opens | 25 |
| v0.25.0 | Band 1: PAPER_024 | 26 |
| v0.26.0 | Band 1: PAPER_025 | 27 |
| v0.27.0 | Band 1: PAPER_025b | 28 |
| v0.28.0 | Band 1: PAPER_026 | 29 |
| v0.29.0 | Band 1: PAPER_026b | 30 |
| v0.30.0 | Band 1: PAPER_027 | 31 |
| v0.31.0 | Band 1: PAPER_028 | 32 |
| v0.32.0 | Band 1: PAPER_029 | 33 |
| v0.33.0 | Band 1: PAPER_030 | 34 |
| v0.34.0 | Band 1: PAPER_031 | 35 |
| v0.35.0 | Band 1: PAPER_032 | 36 |
| v0.36.0 | Band 1: PAPER_033 | 37 |
| v0.37.0 | Band 1: PAPER_034 | 38 |
| v0.38.0 | Band 1: PAPER_035 | 39 |
| v0.39.0 | Band 1: PAPER_036 — FUBii family opens | 40 |
| v0.40.0 | Band 1: PAPER_037 | 41 |
| v0.41.0 | Band 1: PAPER_038 | 42 |
| v0.42.0 | Band 1: PAPER_039 — FUBii family complete | 43 |
| v0.43.0 | Band 1: PAPER_040 | 44 |
| v0.44.0 | Band 1: PAPER_041 | 45 |
| v0.45.0 | Band 1: PAPER_042 — 26D framework opens | 46 |
| v0.46.0 | Band 1: PAPER_043 | 47 |
| v0.47.0 | Band 1: PAPER_044 | 48 |
| v0.48.0 | Band 1: PAPER_045 | 49 |
| v0.49.0 | Band 1: PAPER_046 — 50-paper milestone | 50 |
| v0.50.0 | Band 1: PAPER_047 | 51 |
| v0.51.0 | Band 1: PAPER_048 | 52 |
| v0.52.0 | Band 1: PAPER_049 | 53 |
| v0.53.0 | Band 1: PAPER_050 — 26D block complete | 54 |
| v0.54.0 | Band 1: PAPER_051 | 55 |
| v0.55.0 | Band 1: PAPER_052 | 56 |
| v0.56.0 | Band 1: PAPER_053 | 57 |
| v0.57.0 | Band 1: PAPER_054 | 58 |
| v0.58.0 | Band 1: PAPER_055 | 59 |
| v0.59.0 | Band 1: PAPER_056 | 60 |
| v0.60.0 | Band 1: PAPER_057 | 61 |
| v0.61.0 | Band 1: PAPER_058 | 62 |
| v0.62.0 | Band 1: PAPER_059 | 63 |
| v0.63.0 | Band 1: PAPER_060 | 64 |
| v0.64.0 | Band 1: PAPER_061 | 65 |
| v0.65.0 | Band 1: PAPER_062 | 66 |
| v0.66.0 | Band 1: PAPER_063 | 67 |
| v0.67.0 | Band 1: PAPER_064 | 68 |
| v0.68.0 | Band 1: PAPER_065 | 69 |
| v0.69.0 | Band 1: PAPER_066 | 70 |
| v0.70.0 | Band 1: PAPER_067 | 71 |
| v0.71.0 | Band 1: PAPER_068 | 72 |
| v0.72.0 | Band 1: PAPER_069 | 73 |
| v0.73.0 | Band 1: PAPER_070 | 74 |
| v0.74.0 | Band 1: PAPER_071 | 75 |
| v0.75.0 | Band 1: PAPER_072 | 76 |
| v0.76.0 | Band 1: PAPER_073 | 77 |
| v0.77.0 | Band 1: PAPER_074 | 78 |
| v0.78.0 | Band 1: PAPER_075 | 79 |
| v0.79.0 | Band 1: PAPER_076 | 80 |
| v0.80.0 | Band 1: PAPER_077 | 81 |
| v0.81.0 | Band 1: PAPER_078 | 82 |
| v0.82.0 | Band 1: PAPER_079 | 83 |
| v0.83.0 | Band 1: PAPER_080 | 84 |
| v0.84.0 | Band 1: PAPER_081 | 85 |
| v0.85.0 | Band 1: PAPER_082 | 86 |
| v0.86.0 | Band 1: PAPER_083 | 87 |
| v0.87.0 | Band 1: PAPER_084 | 88 |
| v0.88.0 | Band 1: PAPER_085 | 89 |
| v0.89.0 | Band 1: PAPER_086 | 90 |
| v0.90.0 | Band 1: PAPER_087 | 91 |
| v0.91.0 | Band 1: PAPER_088 | 92 |
| v0.92.0 | Band 1: PAPER_089 | 93 |
| v0.93.0 | Band 1: PAPER_090 | 94 |
| v0.94.0 | Band 1: PAPER_091 | 95 |
| v0.95.0 | Band 1: PAPER_092 | 96 |
| v0.96.0 | Band 1: PAPER_093 | 97 |
| v0.97.0 | Band 1: PAPER_094 | 98 |
| v0.98.0 | Band 1: PAPER_095 | 99 |
| v0.99.0 | Band 1: PAPER_096 | 100 |
| v0.100.0 | Band 1: PAPER_097 | 101 |
| v0.101.0 | Band 1: PAPER_098 | 102 |
| v0.102.0 | Band 1: PAPER_099 | 103 |
| v0.103.0 | Band 1: PAPER_100 | 104 |
| v0.104.0 | Band 1: PAPER_101 | 105 |
| v0.105.0 | Band 1: PAPER_102 | 106 |
| v0.106.0 | Band 1: PAPER_103 | 107 |
| v0.107.0 | Band 1: PAPER_104 | 108 |
| v0.108.0 | Band 1: PAPER_105 | 109 |
| v0.109.0 | Band 1: PAPER_106 | 110 |
| v0.110.0 | Band 1: PAPER_107 | 111 |
| v0.111.0 | Band 1: PAPER_108 | 112 |
| v0.112.0 | Band 1: PAPER_109 | 113 |
| v0.113.0 | Band 1: PAPER_110 | 114 |
| v0.114.0 | Band 1: PAPER_111 | 115 |
| v0.115.0 | Band 1: PAPER_112 | 116 |
| v0.116.0 | Band 1: PAPER_113 | 117 |
| v0.117.0 | Band 1: PAPER_114 | 118 |
| v0.118.0 | Band 1: PAPER_115 | 119 |
| v0.119.0 | Band 1: PAPER_116 | 120 |
| v0.120.0 | Band 1: PAPER_117 | 121 |
| v0.121.0 | Band 1: PAPER_118 | 122 |
| v0.122.0 | Band 1: PAPER_119 | 123 |
| v0.123.0 | Band 1: PAPER_120 | 124 |
| v0.124.0 | Band 1: PAPER_121 | 125 |
| v0.125.0 | Band 1: PAPER_122 | 126 |
| v0.126.0 | Band 1: PAPER_123 | 127 |
| v0.127.0 | Band 1: PAPER_124 | 128 |
| v0.128.0 | Band 1: PAPER_125 | 129 |
| v0.129.0 | Band 1: PAPER_126 | 130 |
| v0.130.0 | Band 1: PAPER_127 | 131 |
| v0.131.0 | Band 1: PAPER_128 | 132 |
| v0.132.0 | Band 1: PAPER_129 | 133 |
| v0.133.0 | Band 1: PAPER_130 | 134 |
| v0.134.0 | Band 1: PAPER_131 | 135 |
| v0.135.0 | Band 1: PAPER_132 | 136 |
| v0.136.0 | Band 1: PAPER_133 | 137 |
| v0.137.0 | Band 1: PAPER_134 | 138 |
| v0.138.0 | Band 1: PAPER_135 | 139 |
| v0.139.0 | Band 1: PAPER_136 | 140 |
| v0.140.0 | Band 1: PAPER_137 | 141 |
| v0.141.0 | Band 1: PAPER_138 | 142 |
| v0.142.0 | Band 1: PAPER_139 | 143 |
| v0.143.0 | Band 1: PAPER_140 | 144 |
| v0.144.0 | Band 1: PAPER_141 | 145 |
| v0.145.0 | Band 1: PAPER_142 | 146 |
| v0.146.0 | Band 1: PAPER_143 | 147 |
| v0.147.0 | Band 1: PAPER_144 | 148 |
| v0.148.0 | Band 1: PAPER_145 | 149 |
| v0.149.0 | Band 1: PAPER_146 | 150 |
| v0.150.0 | Band 1: PAPER_147 | 151 |
| v0.151.0 | Band 1: PAPER_148 | 152 |
| v0.152.0 | Band 1: PAPER_149 | 153 |
| v0.153.0 | Band 1: PAPER_150 | 154 |
| v0.154.0 | Band 1: PAPER_151 | 155 |
| v0.155.0 | Band 1: PAPER_152 | 156 |
| v0.156.0 | Band 1: PAPER_153 | 157 |
| v0.157.0 | Band 1: PAPER_154 | 158 |
| v0.158.0 | Band 1: PAPER_155 | 159 |
| v0.159.0 | Band 1: PAPER_156 | 160 |
| v0.160.0 | Band 1: PAPER_157 | 161 |
| v0.161.0 | Band 1: PAPER_158 | 162 |
| v0.162.0 | Band 1: PAPER_159 | 163 |
| v0.163.0 | Band 1: PAPER_160 | 164 |
| v0.164.0 | Band 1: PAPER_161 | 165 |
| v0.165.0 | Band 1: PAPER_162 | 166 |
| v0.166.0 | Band 1: PAPER_163 | 167 |
| v0.167.0 | Band 1: PAPER_164 | 168 |
| v0.168.0 | Band 1: PAPER_165 | 169 |
| v0.169.0 | Band 1: PAPER_166 | 170 |
| v0.170.0 | Band 1: PAPER_167 | 171 |
| v0.171.0 | Band 1: PAPER_168 | 172 |
| v0.172.0 | Band 1: PAPER_169 | 173 |
| v0.173.0 | Band 1: PAPER_170 | 174 |
| v0.174.0 | Band 1: PAPER_171 | 175 |
| v0.175.0 | Band 1: PAPER_172 | 176 |
| v0.176.0 | Band 1: PAPER_173 | 177 |
| v0.177.0 | Band 1: PAPER_174 | 178 |
| v0.178.0 | Band 1: PAPER_175 | 179 |
| v0.179.0 | Band 1: PAPER_176 | 180 |
| v0.180.0 | Band 1: PAPER_177 | 181 |
| v0.181.0 | Band 1: PAPER_178 | 182 |
| v0.182.0 | Band 1: PAPER_179 | 183 |
| v0.183.0 | Band 1: PAPER_180 | 184 |
| v0.184.0 | Band 1: PAPER_181 | 185 |
| v0.185.0 | Band 1: PAPER_182 | 186 |
| v0.186.0 | Band 1: PAPER_183 | 187 |
| v0.187.0 | Band 1: PAPER_184 | 188 |
| v0.188.0 | Band 1: PAPER_185 | 189 |
| v0.189.0 | Band 1: PAPER_186 | 190 |
| v0.190.0 | Band 1: PAPER_187 | 191 |
| v0.191.0 | Band 1: PAPER_188 | 192 |
| v0.192.0 | Band 1: PAPER_189 | 193 |
| v0.193.0 | Band 1: PAPER_190 | 194 |
| v0.194.0 | Band 1: PAPER_191 | 195 |
| v0.195.0 | Band 1: PAPER_192 | 196 |
| v0.196.0 | Band 1: PAPER_193 | 197 |
| v0.197.0 | Band 1: PAPER_194 | 198 |
| v0.198.0 | Band 1: PAPER_195 | 199 |
| v0.199.0 | Band 1: PAPER_196 | 200 |
| v0.200.0 | Band 1: PAPER_197 | 201 |
| v0.201.0 | Band 1: PAPER_198 | 202 |
| v0.202.0 | Band 1: PAPER_199 | 203 |
| v0.203.0 | Band 1: PAPER_200 | 204 |
| v0.204.0 | Band 1: PAPER_201 | 205 |
| v0.205.0 | Band 1: PAPER_202 | 206 |
| v0.206.0 | Band 1: PAPER_203 | 207 |
| v0.207.0 | Band 1: PAPER_204 | 208 |
| v0.208.0 (skipped: CI break) | Band 1: PAPER_205 | 209 |
| v0.209.0 | Band 1: PAPER_205 (+ deps) | 209 |
| v0.210.0 | Band 1: PAPER_206 | 210 |
| v0.211.0 | Band 1: PAPER_207 | 211 |
| v0.212.0 | Band 1: PAPER_208 | 212 |
| v0.213.0 | Band 1: PAPER_209 | 213 |
| v0.214.0 | Band 1: PAPER_210 | 214 |
| v0.215.0 | Band 1: PAPER_211 | 215 |
| v0.216.0 | Band 1: PAPER_212 | 216 |
| v0.217.0 | Band 1: PAPER_213 | 217 |
| v0.218.0 | Band 1: PAPER_214 | 218 |
| v0.219.0 | Band 1: PAPER_215 | 219 |
| v0.220.0 | Band 1: PAPER_216 | 220 |
| v0.221.0 | Band 1: PAPER_217 | 221 |
| v0.222.0 | Band 1: PAPER_218 | 222 |
| v0.223.0 | Band 1: PAPER_219 | 223 |
| v0.224.0 | Band 1: PAPER_220 | 224 |
| v0.225.0 | Band 1: PAPER_221 | 225 |
| v0.226.0 | Band 1: PAPER_222 | 226 |
| v0.227.0 | Band 1: PAPER_223 | 227 |
| v0.228.0 | Band 1: PAPER_224 | 228 |
| v0.229.0 | Band 1: PAPER_225 | 229 |
| v0.230.0 | Band 1: PAPER_226 | 230 |
| v0.231.0 | Band 1: PAPER_227 | 231 |
| v0.232.0 | Band 1: PAPER_228 | 232 |
| v0.233.0 | Band 1: PAPER_229 | 233 |
| v0.234.0 | Band 1: PAPER_230 | 234 |
| v0.235.0 | Band 1: PAPER_231 | 235 |
| v0.236.0 | Band 1: PAPER_232 | 236 |
| v0.237.0 | Band 1: PAPER_233 | 237 |
| v0.238.0 | Band 1: PAPER_234 | 238 |
| v0.239.0 | Band 1: PAPER_235 | 239 |
| v0.240.0 | Band 1: PAPER_236 | 240 |
| v0.241.0 | Band 1: PAPER_237 | 241 |
| v0.242.0 | Band 1: PAPER_238 | 242 |
| v0.243.0 | Band 1: PAPER_239 | 243 |
| v0.244.0 | Band 1: PAPER_240 | 244 |
| v0.245.0 | Band 1: PAPER_241 | 245 |
| v0.246.0 | Band 1: PAPER_242 | 246 |
| v0.247.0 | Band 1: PAPER_243 | 247 |
| v0.248.0 | Band 1: PAPER_244 | 248 |
| v0.249.0 | Band 1: PAPER_245 | 249 |
| v0.250.0 | Band 1: PAPER_246 | 250 |
| v0.251.0 | Band 1: PAPER_247 | 251 |
| v0.252.0 | Band 1: PAPER_248 | 252 |
| v0.253.0 | Band 1: PAPER_249 | 253 |
| v0.254.0 | Band 1: PAPER_250 | 254 |
| v0.255.0 | Band 1: PAPER_251 | 255 |
| v0.256.0 | Band 1: PAPER_252 | 256 |
| v0.257.0 | Band 1: PAPER_253 | 257 |
| v0.258.0 | Band 1: PAPER_254 | 258 |
| v0.259.0 | Band 1: PAPER_255 | 259 |
| v0.260.0 | Band 1: PAPER_256 | 260 |
| v0.261.0 | Band 1: PAPER_257 | 261 |
| v0.262.0 | Band 1: PAPER_258 | 262 |
| v0.263.0 | Band 1: PAPER_259 | 263 |
| v0.264.0 | Band 1: PAPER_260 | 264 |
| v0.265.0 | Band 1: PAPER_261 | 265 |
| v0.266.0 | Band 1: PAPER_262 | 266 |
| v0.267.0 | Band 1: PAPER_263 | 267 |
| v0.268.0 | Band 1: PAPER_264 | 268 |
| v0.269.0 | Band 1: PAPER_265 | 269 |
| v0.270.0 | Band 1: PAPER_266 | 270 |
| v0.271.0 | Band 1: PAPER_267 | 271 |
| v0.272.0 | Band 1: PAPER_268 | 272 |
| v0.273.0 | Band 1: PAPER_269 | 273 |
| v0.274.0 | Band 1: PAPER_270 | 274 |
| v0.275.0 | Band 1: PAPER_271 | 275 |
| v0.276.0 | Band 1: PAPER_272 | 276 |
| v0.277.0 | Band 1: PAPER_273 | 277 |
| v0.278.0 | Band 1: PAPER_274 | 278 |
| v0.279.0 | Band 1: PAPER_275 | 279 |
| v0.280.0 | Band 1: PAPER_276 | 280 |
| v0.281.0 | Band 1: PAPER_277 | 281 |
| v0.282.0 | Band 1: PAPER_278 | 282 |
| v0.283.0 | Band 1: PAPER_279 | 283 |
| v0.284.0 | Band 1: PAPER_280 | 284 |
| ~~v0.285.0~~ | *burned / yanked on PyPI — skipped* | — |
| v0.286.0 | Backfill 10 skipped papers (008b–014b, 026c, 221b/c) + registry/index integrity fixes | 294 |
| v0.287.0 | Doc correction (stale version strings in README title/heading + CITATION that shipped in v0.286.0) | 294 |
| v0.288.0 | Band 1: PAPER_281 (Saturn ring tidal resonance) | 295 |
| v0.289.0 | Band 1: PAPER_282 (Saturn atmospheric wind) | 296 |
| v0.290.0 | Band 1: PAPER_283 (Saturn solar-tidal Hubble coupling) | 297 |
| v0.291.0 | Band 1: PAPER_284 (M16 Eagle Nebula dual mass co-action) | 298 |
| v0.292.0 | Band 1: PAPER_285 (M16 erosion saturation half-time) | 299 |
| v0.293.0 | Band 1: PAPER_286 (M16 nebular Friedmann redshift) | 300 |
| v0.294.0 | Band 1: PAPER_287 (DPM-THz plasmotic vacuum cascade) | 301 |
| v0.295.0 | Band 1: PAPER_288 (cosmic-age standing-traveling wave bridge) | 302 |
| v0.296.0 | Band 1: PAPER_289 (Cooper-DPM SC synthesis, OPEN_RULING Q-245) | 303 |
| v0.297.0 | Band 1: PAPER_290 (Crab SNR DPM vacuum dilution) | 304 |
| v0.298.0 | Band 1: PAPER_291 (Crab filament spectral triad) | 305 |
| v0.299.0 | Band 1: PAPER_292 (Crab pulsar 60s resonance window) | 306 |
| v0.300.0 | Band 1: PAPER_293 (Compressed+Resonance dual-channel co-sum) | 307 |
| **v0.301.0** | Band 1: PAPER_294 (vacuum differential harmonic ħ-denominator) | 308 |
| **v0.302.0** | Band 1: PAPER_295 (compressed Cooper super-seeding, f_DPM² quadratic law) | 309 |
| **v0.303.0** | Band 1: PAPER_296 (first explicit UQFF cosmological-constant vacuum acceleration a_Λ=Λc²/3) | 310 |
| **v0.304.0** | Band 1: PAPER_297 (first UQFF superluminal expansion module η_exp=3.328>1) | 311 |
| **v0.305.0** | Band 1: PAPER_298 (first UQFF GR-dominant regime ε_GR=5.056>1) | 312 |
| **v0.306.0** | Band 1: PAPER_299 (first atomic UQFF module, electrogravitational dominance η_EM=9.65e29) | 313 |
| **v0.307.0** | Band 1: PAPER_300 (Lyman-α cosmic bridge, universal T/S=π/13.8=0.2277) | 314 |
| **v0.308.0** | Band 1: PAPER_301 (hydrogen proton GR minimum ε_GR=7.04e-44, GR spectral range ~44 orders) | 315 |
| **v0.309.0** | Band 1: PAPER_302 (hydrogen PToE U_g4i vacuum bridge Γ_u4i=4.704e36) | 316 |
| **v0.310.0** | Band 1: PAPER_303 (hydrogen PToE triple Lyman-α lock, freq_lock_ratio=1.000) | 317 |
| **v0.311.0** | Band 1: PAPER_304 (hydrogen PToE aether dominance ξ_aether=1.852e24, Q-247) | 318 |
| **v0.312.0** | Band 1: PAPER_305 (Lagoon Nebula SFR mass-runaway, ΔM/M0=10 at 1 Myr) | 319 |
| **v0.313.0** | Band 1: PAPER_306 (Lagoon Nebula Herschel 36 radiation erosion η_rad=1.53e18) | 320 |
| **v0.314.0** | Band 1: PAPER_307 (Lagoon Nebula dual radiation-EM barrier a_EM/a_rad=12.77) | 321 |
| **v0.315.0** | Band 1: PAPER_308 (spiral arm torque amplifier τ_spiral=2.046, T_pattern=307 Myr) | 322 |
| **v0.316.0** | Band 1: PAPER_309 (SN Ia Hubble-tension imprint η_SN=2.0e16, Δ_SN/SN=2.52%) | 323 |
| **v0.317.0** | Band 1: PAPER_310 (spiral DM/visible partition η_DM/vis=5.667, rotation excess 67.1%) | 324 |
| **v0.318.0** | Band 1: PAPER_311 (NGC 6302 bipolar-PN wind-shock dominance η_wind=7.127e5) | 325 |
| **v0.319.0** | Band 1: PAPER_312 (NGC 6302 central-WD UV radiation pressure η_rad=1.913e20) | 326 |
| **v0.320.0** | Band 1: PAPER_313 (NGC 6302 equatorial-torus magnetic confinement η_B=3.979e5) | 327 |
| **v0.322.0** | Band 1: PAPER_314 (NGC 6302 PN lobe DPM macro-antenna F_DPM=1.267e50 N); v0.321.0 burned | 328 |
| **v0.323.0** | Band 1: PAPER_315 (NGC 6302 VacDiff-THz crossover r_cross=3.280 km) | 329 |
| **v0.324.0** | Band 1: PAPER_316 (NGC 6302 Cooper-DPM A_sc=6.994e21, Q-248) | 330 |
| **v0.325.0** | Band 1: PAPER_317 (Orion M42 Trapezium wind ram-pressure η_wind=28.47) | 331 |
| **v0.326.0** | Band 1: PAPER_318 (Orion M42 Trapezium OB UV radiation η_rad=7.664e18, champagne flow) | 332 |
| **v0.327.0** | Band 1: PAPER_319 (Orion M42 SFR binding transition t_cross=67.7 kyr) | 333 |
| **v0.328.0** | Band 1: PAPER_320 (CR34 DPM force-density atlas, ξ-span=1e35) | 334 |
| **v0.329.0** | Band 1: PAPER_321 (CR34 cross-channel reversal V_f=5.43e28, 113-order spread) | 335 |
| **v0.330.0** | Band 1: PAPER_322 (CR34 intra-HII THz geometric differential Orion/Lagoon=8.59) | 336 |
| **v0.331.0** | Band 1: PAPER_323 (CR34b vacuum aether frequency mode, 11th UQFF term) | 337 |
| **v0.332.0** | Band 1: PAPER_324 (CR34b Saturn first planetary dual-channel, a_vac_diff=1.29e-2) | 338 |
| **v0.333.0** | Band 1: PAPER_325 (CR34b ρ-ISM fluid density coupling ξ_fluid=1.269e-35) | 339 |
| **v0.334.0** | Band 1: PAPER_326 (Triadic Master UQFF 26-state co-sum architecture) | 340 |
| **v0.335.0** | Band 1: PAPER_327 (Q_wave_47 non-Gaussian distribution, Shapiro-Wilk W=0.644) | 341 |
| **v0.336.0** ← current | Band 1: PAPER_328 (nuclear α-BEC LENR, N_B=29.75 at T_BEC=14.52 MeV) | 342 |
| v0.4.0+ | One band per session (~20-80 papers each) | growing |
| PAPER_500 milestone | FULL STOP — Daniel's manual review | 500 |
| v1.0.0 | Full whitepaper coverage | 2,255 |

## Predecessor / attribution

Physics content, whitepapers, and canonical primitives originate in
[Star-Magic](https://github.com/Daniel8Murphy0007/Star-Magic).
That repository remains the canonical archive of the framework's development
history and whitepaper corpus. This repository (Star-Magic-Program) inherits
the physics and rebuilds only the code layer, correctly this time.

## Install

```
pip install star-magic-program
```

## Quick start

```python
from uqff_calculator import calc, wired_count, list_wired

print(f"Papers wired: {wired_count()}")

# Look up a specific paper (returns OPEN if not yet wired)
result = calc('PAPER_646')
print(result)

# Flagship UQFF closed forms (individually callable)
import uqff_calculator as C
print(C.cosmological_constant_26fact())   # 5.957e-10 J/m^3  (Planck Lambda)
print(C.proton_electron_ratio())          # 1836  (m_p/m_e from integers)
print(C.yang_mills_mass_gap())            # 1.736 GeV  (Millennium)

# Derived-constants catalog — 1,272 predecessor-registry constants by name
print(C.derived_constants_count())                  # 1272
print(C.derived_constant('alpha_inverse'))          # 137.0
print(C.derived_constant_record('alpha_inverse'))   # {value, formula, route, paper: PAPER_1167, ...}
print(C.list_derived_constants(sector='SI')[:5])    # filter by sector or paper
```

## Fidelity gate

Every ship must run and see exit 0:

```
python uqff_fidelity_tests.py
```

## License

- **Free / academic / non-commercial:** AGPL-3.0-or-later (see `LICENSE-AGPL-3.0.txt`)
- **Commercial / proprietary / closed-source SaaS:** contact
  `daniel.murphy00@enrgyone.com` (see `COMMERCIAL.md`)

See also: `NOTICE`, `CITATION.cff`, `CHANGELOG.md`, `SESSION_LOG.md`.

<!-- BUILD 2026-08-04: COMPLETE-COMPILE PAPER_001-015 + b-variants; 408-fn equation library; 342 dispatches, 0 duplicates. Windows-side save. -->
