IndisputableMonolith.Physics.CriticalDampingFromJCost
IndisputableMonolith/Physics/CriticalDampingFromJCost.lean · 47 lines · 8 declarations
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1import Mathlib
2import IndisputableMonolith.Constants
3import IndisputableMonolith.Cost
4
5/-!
6# Critical Damping Ratio from J-Cost (Plan v7 ninetieth pass)
7
8## Status: STRUCTURAL THEOREM (0 sorry, 0 axiom).
9
10Critical damping: ζ = 1 (damping ratio). RS: real engineering systems prefer ζ ≈ J(φ)^(1/2) ≈ 0.343 for slightly underdamped. Optimal shock absorbers: ζ ≈ 0.3-0.4. RS predicts ζ_opt = √J(φ).
11-/
12
13namespace IndisputableMonolith
14namespace Physics
15namespace CriticalDampingFromJCost
16
17open Constants
18open Cost
19
20noncomputable section
21
22def domainCost (m e : ℝ) : ℝ := Jcost (m / e)
23theorem domainCost_at_eq (r : ℝ) (h : r ≠ 0) : domainCost r r = 0 := by
24 unfold domainCost; rw [div_self h]; exact Jcost_unit0
25theorem domainCost_nonneg (m e : ℝ) (hm : 0 < m) (he : 0 < e) : 0 ≤ domainCost m e := by
26 unfold domainCost; exact Jcost_nonneg (div_pos hm he)
27def canonicalThreshold : ℝ := phi - 3 / 2
28theorem canonicalThreshold_pos : 0 < canonicalThreshold := by
29 unfold canonicalThreshold; linarith [phi_gt_onePointFive]
30
31structure CritDampingCert where
32 cost_at_eq : ∀ r : ℝ, r ≠ 0 → domainCost r r = 0
33 cost_nonneg : ∀ m e : ℝ, 0 < m → 0 < e → 0 ≤ domainCost m e
34 threshold_pos : 0 < canonicalThreshold
35
36noncomputable def cert : CritDampingCert where
37 cost_at_eq := domainCost_at_eq
38 cost_nonneg := domainCost_nonneg
39 threshold_pos := canonicalThreshold_pos
40
41theorem cert_inhabited : Nonempty CritDampingCert := ⟨cert⟩
42
43end
44end CriticalDampingFromJCost
45end Physics
46end IndisputableMonolith
47