OHME-e/t Human Outcome Physics


Human Outcome Physics

Why lives, organizations, and civilizations grow, stall, or collapse — and how to diagnose recovery modes over time

OHME-e/t is a diagnostic physics engine for human systems.
It treats a person, a school, a company, or a civilization as a machine that converts people, rules, resources, and culture into outcomes under constraints over time.

This page is the canonical loader for the OHME-e/t program inside the EduKate Education OS.

EduKate OS Core
What Is Education → /what-is-education/
DLT Capability Engine → /dlt/
Meta-Control Layer (MCL) → /mcl/
WW2 Germany Runtime → /ohme-et-ww2-germany/
Civilization Diagnostics → /collapse-signatures/


Program Outputs

Running OHME-e/t produces:

  • Collapse signature
  • Dominant failure loop
  • Binding constraint detection
  • Recovery mode selection
  • Time-state classification (pre-tipping vs post-tipping)

What OHME-e/t stands for

O — Outcomes

Real performance of the system: capability, productivity, stability, execution quality.

Related engine → /dlt/

H — Human Cohesion

Trust, morale, initiative, and cooperative energy.

M — Moral Alignment / Rule Integrity

Truth safety, incentive alignment, governance signal integrity.

Failure loops → /collapse-signatures/

e — Environment

Energy, logistics, supply chains, geography, external pressure.

t — Time

Compounding, lags, tipping points, irreversibility.

Case execution → /ohme-et-ww2-germany/


Inputs required to run OHME-e/t

  • System boundary
  • Time window
  • 5–10 observable indicators
  • Trend per axis
  • Suspected binding constraint

Indicator Library

Outcomes (O)

Learning results, productivity, readiness, defect rate, replacement rate, growth trend.

Cohesion (H)

Trust levels, attrition, polarization, morale, initiative, compliance cost.

Alignment (M)

Corruption extraction, truth safety, rule consistency, censorship pressure.

Environment (e)

Energy cost, supply concentration, logistics depth, demographic ratios, trade access.

Time (t)

Slope acceleration, volatility, lag build-up, regime shifts.


How the OHME-e/t program runs

  1. Define system
  2. Score O H M e t
  3. Identify binding constraint
  4. Detect dominant failure loop
  5. Classify state
  6. Select recovery mode

Toolkit → /ohme-et-tools/


Quick Start Runtime

Student stagnation
O4 H5 M6 e7 t↓
Constraint: learning pipeline
Loop: replacement deficit
Recovery: Mode 2

Company decline
O3 H4 M3 e6 t↓
Constraint: trust & signal integrity
Loop: fear governance
Recovery: Mode 1

Civilization stress
O5 H4 M4 e3 t↓
Constraint: energy & supply
Loop: overreach
Recovery: Mode 4


Recovery Modes

Mode 1 — Signal Repair
Mode 2 — Complexity Pruning
Mode 3 — Cohesion Rebinding
Mode 4 — Constraint Relief
Mode 5 — Time Strategy

Constraint diagnostics → /environment-constraints/


Collapse Signature

DLT weakens → O stalls → H fractures → M collapses → e binds → t flips


Tipping Points

Two axes fall together → negative loops self-reinforce → shocks become fatal → recovery cost explodes


Diagnostic Worksheet

System: _ Goal:
Time window: _

O _ H M e t Binding constraint:
Loop:

State: Growth / Stall / Decline / Collapse
Recovery mode: __


OS Core Links

What Is Education → /what-is-education/
DLT Capability Engine → /dlt/
Meta-Control Layer (MCL) → /mcl/
Civilization Diagnostics → /collapse-signatures/