Totaphysics Primer

Totaphysics Primer — Iyaboko Totaphysics Institute
Primer

Totaphysics Primer — Scientific Overview

This primer introduces Totaphysics as a real-world scientific framework: a Reforming-Universe model where every system carries internal law (Kaboo), continuity flow (Imoumikapo), lawful reformation (Gotomai), and Multiral dynamics (Itamuto).

It is written for students, researchers, engineers, and institutions who want a clear, testable, and law-based alternative to expansion-only or cycle-style explanations — grounded in continuity and reform, not metaphysics.

Motivation

Why Totaphysics?

Many narratives describe the universe in terms of expansion, decay, or abstract cycles. Totaphysics replaces this with a continuity-based picture: every Enature has a lawful origin, a continuity flow, and permitted pathways for reform. No evolution of a system is “free”; each transformation must remain inside its Kaboo.

Continuity instead of cycles

Totaphysics does not use return, rebirth, or closed-loop logic. An Enature moves forward through reform: once a Dakii threshold is crossed, it does not go back; it continues as lawful Gotomai under its own Kaboo.

Law instead of “randomness”

Apparent randomness is treated as unresolved law. Kaboo and Totakabo-Dakii specify which states and transitions are admissible, even when measurements are incomplete or coarse.

Reforming-Universe view

Collapse events — in physics, biology, technology, or society — are interpreted as reform points in Imoumikapo, not final endings. The key question becomes: into which lawful state is this system allowed to reform?

Core Objects

Core Totaphysical Quantities

Totaphysics is built from a compact set of core quantities. These can be written as symbols, constants, and equations, and then encoded inside TSS and Iyaboko engineering systems.

Kaboo — Foundation Law

Kaboo is the foundational law-set of an Enature or system. It defines:

  • Which identities and states belong to the system
  • Which states are forbidden to it
  • How it may interact with other realms and Enatures
Kaboo(E) = minimal law-set that remains invariant under all lawful Gotomai for E.

Imoumikapo — Continuity Flow

Imoumikapo (Im) is the continuity of an Enature across Umikapo realms: origin, motion, journey, harmonisation, and witness. It is forward continuity, not a loop.

Im(E, t) = continuity state of Enature E at Totaphysical “time” t across the realms.

Gotomai — Lawful Reformation

Gotomai is the reformation map. A system may change form, topology, architecture, or scale, but must preserve its Kaboo and respect threshold conditions encoded in Totakabo-Dakii.

Gotomai: state → state′, with Kaboo(E) preserved and all Totakabo-Dakii constraints satisfied.

Itamuto — Multiral Dynamics

Itamuto encodes multiral (multi-directional) flow: not purely linear, not spiral-only, but a structured field of permitted directions in which Imoumikapo may move under Kaboo.

Itamuto(E) = set of allowed multiral directions for Im(E) within Kaboo(E).

Totakabo & Totakabo-Dakii

Totakabo describes the constant field aspect of a system. Totakabo-Dakii is the threshold field that decides when interactions are allowed, blocked, or forced into reform.

Totakabo-Dakii = constant threshold field governing interaction windows and reform triggers.

Umikapo Realms & Enature

Each Enature passes through Umikapo realms (Maakapo, Ayakapo, Kedakapo, Iyakapo, Totakapo), each with its own mode of continuity, but there is only one Imoumikapo flow.

  • Maakapo: origin & anchoring
  • Ayakapo: organic motion & growth
  • Kedakapo: journey, purpose, and work
  • Iyakapo: harmonisation, checking, and justice
  • Totakapo: witness, record, and final resonance
STEM Alignment

How Totaphysics Relates to Existing Science

Totaphysics does not ask researchers to abandon measurement, experiment, or mathematical rigour. It adjusts the framing: from decay and expansion narratives to continuity and reform under explicit law.

Physics & Astrophysics

  • Re-interpret observational data as continuity flows through Kaboo-defined states.
  • Treat black holes, supernovae, and collapse events as Gotomai transitions, not terminal points.
  • Use Totakabo-Dakii as a field for when interactions and transitions are permitted.

Engineering & Prototypes

  • Design IOSTS, detection machines, and producer systems around clear Kaboo + Dakii thresholds.
  • Model safety as staying inside Kaboo(E) and Totakabo-Dakii for every subsystem.
  • Use TSS to explore reform paths before physical prototyping.

Biology, Health & Longevity

  • Frame organs and tissues as Enatures with their own Kaboo and continuity flow.
  • Model degeneration as misuse or violation of thresholds, then search for lawful Gotomai-based reforms.
  • Study longevity as stable continuity alignment, not just “slower decline”.

Computing, Data & Totaphysics AI

  • Use Totaphysical rules to constrain AI reasoning to lawful continuity and reform.
  • Design Enature-specific AIs (Human, Water, Stone, Plant, Dark Matter) each governed by its Kaboo.
  • Use TSS and IyabokoNet concepts as back-ends for simulation, routing, and observability.
Simulation

From Concepts to Equations and TSS Modules

The Totaphysical Simulation System (TSS) encodes these quantities into equations, state machines, and visual modules. The aim is not only conceptual clarity, but reproducible and inspectable behaviour.

Example schema (conceptual):
state(t+1) = Gotomai(state(t), Kaboo, Totakabo-Dakii, Itamuto, external_inputs)
  • Input: current state of an Enature or system.
  • Constraints: Kaboo and Totakabo-Dakii define what transitions are admissible.
  • Flow: Itamuto selects an allowed multiral direction for Imoumikapo.
  • Output: a new state that preserves internal law and continuity.

In practical terms, this becomes code: discrete time-steps, continuous fields, or hybrid models, all of which can be logged, tested, and compared by researchers and students.

Next Steps

How to Engage with Totaphysics

Study the Lawbooks

Begin with Akiyakiyakabo and the 36 Laws of Iyaboko as the core legal and scientific foundation for Totaphysics.

Read About the Institute →

Use Totaphysics AI

Explore Totaphysics AI previews, then move into research-level workspaces for deeper modelling, writing, and design.

Visit Totaphysics AI Portal →

Support Research & Labs

Help build the first Totaphysics labs, TSS modules, and Iyaboko prototypes through structured, multi-stage support.

Support the Institute →

Collaborate as an Institution

Universities, labs, foundations, and communities can propose pilots, joint research, and education pathways.

Contact the Institute →