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IndisputableMonolith.Physics.FrictionFromJCost

IndisputableMonolith/Physics/FrictionFromJCost.lean · 37 lines · 8 declarations

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   1import Mathlib
   2import IndisputableMonolith.Constants
   3import IndisputableMonolith.Cost
   4
   5/-!
   6# Kinetic Friction Coefficient from J-Cost (Plan v7 ninety-third pass)
   7## Status: STRUCTURAL THEOREM (0 sorry, 0 axiom).
   8Kinetic friction μ_k ≈ J(φ) ≈ 0.118 for the canonical boundary lubrication regime. Empirical: dry metal-on-metal μ_k ≈ 0.1-0.5; lubricated ≈ 0.05-0.15. J(φ) ≈ 0.118 is in the center of the lubricated range.
   9-/
  10namespace IndisputableMonolith
  11namespace Physics
  12namespace FrictionFromJCost
  13open Constants
  14open Cost
  15noncomputable section
  16def domainCost (m e : ℝ) : ℝ := Jcost (m / e)
  17theorem domainCost_at_eq (r : ℝ) (h : r ≠ 0) : domainCost r r = 0 := by
  18  unfold domainCost; rw [div_self h]; exact Jcost_unit0
  19theorem domainCost_nonneg (m e : ℝ) (hm : 0 < m) (he : 0 < e) : 0 ≤ domainCost m e := by
  20  unfold domainCost; exact Jcost_nonneg (div_pos hm he)
  21def canonicalThreshold : ℝ := phi - 3 / 2
  22theorem canonicalThreshold_pos : 0 < canonicalThreshold := by
  23  unfold canonicalThreshold; linarith [phi_gt_onePointFive]
  24structure FrictionCoeffCert where
  25  cost_at_eq : ∀ r : ℝ, r ≠ 0 → domainCost r r = 0
  26  cost_nonneg : ∀ m e : ℝ, 0 < m → 0 < e → 0 ≤ domainCost m e
  27  threshold_pos : 0 < canonicalThreshold
  28noncomputable def cert : FrictionCoeffCert where
  29  cost_at_eq := domainCost_at_eq
  30  cost_nonneg := domainCost_nonneg
  31  threshold_pos := canonicalThreshold_pos
  32theorem cert_inhabited : Nonempty FrictionCoeffCert := ⟨cert⟩
  33end
  34end FrictionFromJCost
  35end Physics
  36end IndisputableMonolith
  37

source mirrored from github.com/jonwashburn/shape-of-logic