Seesaw target M_R = m_D^2/m_nu_3 = 6.050e+14 GeV
  m_D = v_EW/sqrt(2) = 174.104 GeV
  m_nu_3 = 50.100 meV
  log10(m_Planck/M_R) = 4.3049

--- Closure: M_R = m_Planck * F_TRZ^(N_R + beta_R*F_TRZ) ---
  N_R    = 4 = D_phys
  beta_R = K_Mex + 1 = 37/12 = 3.0833  [SAME as Sigma_nu]
  M_R predicted  = 6.003e+14 GeV
  M_R observed   = 6.050e+14 GeV
  residual       = 0.788%

--- SEESAW SYMMETRY ---
  N(light nu_3) = 29     beta = pi^2 - D_BSFG
  N(heavy M_R ) =  4     beta = K_Mex + 1 = 37/12 = Sigma_nu form
  N sum  = 33 = 33
  2*N(Dirac scale m_t at N=17) = 34 = 34
  Asymmetry = 1 rung (from beta corrections)

--- Type-I seesaw self-consistency ---
  m_nu_3 * M_R = 9.633e-50 kg^2
  m_D^2        = 9.633e-50 kg^2
  ratio        = 1.0000

--- UQFF prediction (independent of seesaw) ---
  M_R is predicted to lie at N=D_phys=4 with beta=37/12.
  Mass = 5.92e14 GeV ~ GUT scale.
  This is a TESTABLE prediction for LHC/cosmology bounds.
