FROSTYVERSE FROSTFIELD GRAVITY — EXPECTED RESULTS
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Compact reference (`python lab_test.py --reference`)
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Inputs:
  half-width h                 = 9
  normalized source radius     = 1.75
  maximum SOR sweeps           = 450
  omega                        = 1.82
  tolerance                    = 1e-10
  comparison samples           = 320

Expected compact reference output:
  wedge converges after        = 93 sweeps
  wedge residual relative      = 1.5557533142300647e-09
  wedge unknowns               = 360
  full interior unknowns       = 4913
  raw storage reduction        = 13.647222222222222 x
  full-cube residual relative  = 1.5557533558032921e-09
  max wedge/full abs mismatch  = 1.3877787807814457e-17
  max wedge/full rel mismatch  = 4.784067286065331e-16
  worst sampled coordinate     = (-1, -2, -1)

These values reproduce the public browser Lab's deterministic compact calculation.
Small last-bit/platform differences are acceptable; material disagreement is not.

Historical H-103 validation (`python lab_test.py --historical-validation`)
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Expected final line:
  VALIDATION VERDICT: PASS

Representative historical validation values:
  R=10/11 source cubic-generator residual = 0.0
  worst u_x wedge reconstruction relative error ~1.59e-16
  worst 48-fold vector covariance relative error ~1.59e-16
  exhaustive RHS symmetry residual = 0.0
  highest validation raw-data wedge reduction ~15.64x

Important:
- The full-cube result is an internal numerical ruler for the same discrete FV equation.
- No GR/Newton value is used to generate or score the compact FrostField symmetry result.
- The exact wedge claim is limited to the declared spherical-source/cubic-domain symmetry problem.
