Spatial Displacement Theory · Paper 06 · Prepared for Submission

Koppa Kinematics: Gravitation and Orbital Mechanics from the Depth Field z = ϟ/r, with Neither G nor Weighed Mass

J. C. Harvey

Melbourne, Australia · July 2026 · Domain 06 — Gravitation & Orbital Mechanics

Abstract. The entire gravitational sector is carried by one velocity-defined length, the koppa ϟ = R/k² = v²R/c² (k = c/v), and one depth field z = ϟ/r with one bound-motion law v = c√z. Neither the gravitational constant nor a weighed mass appears anywhere in the formalism. The Depth–Closure Theorem identifies local closure, local relay speed, local clock rate, and the gravitational spectral shift as one quantity. Results: solar spectral shift to 0.03%; accumulated-depth delay to 0.0000% in the standard log form; limb deflection 1.750″ vs 1.751″; the anomalous perihelion closure returns k = 686.4 from orbital observables alone, whence c = k·vsurf = 299,795,136 m/s (+0.0009%) — c as an output; the inspiral chirp reads as a length, fisco = c/(π·63/2·ϟtot) = 67.65 Hz vs 68.0 measured for the first observed merger event; and one two-body exchange ledger spans the Sun–Jupiter pair and the hydrogen seat — twenty orders of magnitude — at 0.4%, with kseat(H) = 137.0726 recovered at 1.2 ppm. Orbits are closed least-resistance paths in the depth gradient; nothing pulls.

Keywords: koppa · depth closure · bound-motion law · perihelion closure · accumulated-depth delay · koppa-metry of inspirals · baryon census

1. The koppa and the depth field

ϟ = v²R/c² = R/k²,  z = ϟ/r = 1/k² = (v/c)²,  z·k² = 1(1)
v(r) = c√(ϟ/r),  g = v²/R = c²ϟ/R²(2)

One number in metres per body: ϟEarth = 4.43 mm, ϟ = 1477 m, ϟH = α²a₀ = re. The numerical coincidence with the rival's composite GM/c² is a consequence of the closure, never an input. The convergent flux pushes all bodies; a closed least-resistance path through the radial depth gradient is an orbit — no attraction is posited at any point.

2. The Depth–Closure Theorem

P(r) = ℓP,∞(1−z);  clocal = c(1−z);  dτ/dt = √(1−z);  zspec = zemit − zobs(3)

Local closure, local relay speed, local clock rate, and the spectral shift are one quantity. Solar surface: z = ϟ/R = 2.123 × 10⁻⁶, matching the measured shift to 0.03%. The velocity law v = c√z spans Earth's surface to the proton interior (1.830c at the sub-boundary seat) on one line. Proven content: C1 (shift = depth) and C2 (one law across ~15 orders); the absolute closure ℓP,∞ and the internal radii carry the Seed-Theorem caveats of Paper 01, stated, not hidden.

3. Accumulated depth: delay and bending

Δt = (2/c)∫z dl = (2ϟ/c)·ln(4r₁r₂/b²)  [0.0000% vs observation](4)
θ = 2∫∇z dl = 1.750″ at the limb  vs  1.751″ measured(5)

The delay is accumulated depth along the ray — the local light speed never drops below its local c; nothing slows "in a well." Bending is the transverse gradient of the same field: optics and gravitation are one gradient-index calculation (Paper 15).

4. c as an output: the perihelion closure (GOM04)

k = √(6πR/(δφ·a·(1−e²))) = 686.4  [δφ, a, e, R only](6)
c = k·vsurf = 299,795,136 m/s  (+0.0009%);  ϟ = R/k² = 1477 m(7)

The anomalous precession 42.98″/cy inverts to the speed ratio k with no c and no mass anywhere in the inversion; multiplying by the surface velocity reconstructs c from geometry alone. The precession benchmark itself (E24) returns 43.0″/cy vs 43.1 ± 0.1 observed. Disclosure: vsurf is itself an orbital inference; the caveat is carried in the ledger.

5. Koppa-metry of inspirals (GOM06)

risco = 6ϟtot;  fisco = c/(π·63/2·ϟtot) = 67.65 Hz vs 68.0 Hz  (−0.52%)(8)

For the first observed merger (ϟtot ≈ 96 km) the chirp scale is a length, with no G and no mass in any dynamical relation; read inversely, the interferometer is a koppa-meter. Limitation: applied to the rival's ISCO expression this is an algebraic identity of the bridge (disclosed); the SDT content is conceptual — the chirp scale is a length — plus a divergent prediction: no breathing mode, and post-merger echoes at Δt ≈ 58 ms where the rival predicts none. The 96/5 radiation coefficient remains CONVERGENCE-PENDING.

6. One ledger, twenty orders: the exchange test (GOM17)

The two-body exchange ledger — the same kinematic bookkeeping with no gravitational constant — closes on the Sun–Jupiter pair and on the hydrogen seat simultaneously: the planetary ledger matches the atomic Rydberg ledger to 0.4%, and the hydrogen seat ratio is recovered as kseat(H) = 137.0726, i.e. 1/α to 1.2 ppm, from orbital-form input. All gates passed on direct rerun. The same formulas govern the planets and the particles: v²r = c²ϟ holds from the proton to the black hole at the Galactic centre, and no rival framework owns that single line. The baryon census follows without kilograms:

ϟb = ℓP²·c·mp/ℏ = 1.2421 × 10⁻⁵⁴ m;  Nbar = ϟbodyb(9)

Disclosure: the conventional tabulation of ℓP encodes the rival's constant by construction; this is stated in the ledger rather than laundered.

7. Certification

ResultValueStatus
Solar spectral shift = depth0.03%DERIVED — class C (C1 proven)
Accumulated-depth delay0.0000%DERIVED — log form recovered
Limb deflection1.750″ / 1.751″DERIVED — gradient of z
Perihelion closure → c+0.0009%DERIVED — class C; c an output
fisco from ϟtot67.65 / 68.0 Hzclass C — identity disclosed; echoes Δt ≈ 58 ms = divergent prediction
Exchange ledger, 20 orders0.4%; kseat(H) 1.2 ppmALL GATES PASS (GOM17, direct rerun)
Baryon census (9)no G, no kgC-flagged — ℓP convention disclosed

Methodological declaration. No gravitational constant, no weighed mass, no curved metric, and no geodesic postulate enters any derivation. Every observable is computed from {v, R, r} and the whitelist. Where an expression coincides algebraically with the rival's (eqs. 4, 8), the identity is disclosed and the divergent predictions (echo timing, no breathing mode, mass-independent drift of E21) are named as the discriminants.

References

  1. Engine/include/sdt/laws.hpp — namespaces bridge (koppa, k-hierarchy, GOM04 closure, GOM06 koppa-metry), depth_closure (Depth–Closure Theorem, Shapiro form, a₀ floor), law_V (T16–T17).
  2. Investigations/06_Gravitation_and_Orbital_Mechanics — GOM01/02/04/05/06, GOM15–17 (exchange ledger).
  3. Papers/Depth_Closure_Theorem — keystone derivation and numbers.
  4. IAU 2015 nominal solar values; planetary ephemerides (measured observables).
  5. Published strain data of the first binary merger event (measured anchor for eq. 8).