MJPS Thermodynamics - Potential IP pathways
MJPS Thermodynamics / Orange
MJ Physics Engineering | Bangel Language | MJos Operating System
Owned and operated by Michael Bangel | Clearwater, Florida
ENGINEERING CONTRIBUTION
Bangel 0.1 MJPS component for bounded thermoelectric calculations, network proposals and deterministic reference simulation.
SPECIFIC CONTRACT SURFACE
- Profile: Bangel 0.1 MJPS
- Temperature: expected, anticipated or delivered
- Calibration: verified or unverified
- ProposalReceipt: PASS_PROPOSAL or HOLD
IMPLEMENTATION RELATIONSHIP
Thermodynamic research identity with a recovered bounded steady thermoelectric reference component. The general Bangel 1.0 implementation remains a separate profile.
PROVENANCE REGISTER
The cited source establishes the recovered role and its stated development status. Compare actual implementation, contributor work, source versions and prior work before assessing a contribution claim. This paper does not determine patentability, ownership, inventorship or an invention count.
ATTRIBUTION RULE
The MJ Physics Engineering identity does not relicense source dependencies or remove existing notices.
EVIDENCE TO COLLECT
Unknown temperature and unverified calibration must remain HOLD rather than physical control commands.
DISCOVERY NAMES
MJPS; Bangel Measurement Reference; Bangel Thermoelectric Reference; MJPS thermodynamic
These names aid search; current compiler naming remains Elsa.
SOURCE STATUS AND LIMITS
Current source inspected; these documentary bindings do not report newly executed software or physical tests.
Recovered status: implementation_source.
No physical controller, board backend or actuation is established.
SOURCE REFERENCES
- components/thermoelectric-reference/README.md · line 1
https://github.com/Mjos23/bangel-language/blob/229548f13a4856455b3d30d408cf845fb5b557fc/components/thermoelectric-reference/README.md#L1
- components/thermoelectric-reference/README.md · line 31
https://github.com/Mjos23/bangel-language/blob/229548f13a4856455b3d30d408cf845fb5b557fc/components/thermoelectric-reference/README.md#L31
RECOVERED HISTORICAL CONTEXT
- Historical scope: Package-native thermoelectric simulation combining Seebeck harvesting, Peltier heat pumping, uncertainty and bounded thermal/electrical optimization.
- Historical 0.2 package; physical effect and authority effect remained NONE, global JP acceptance MERGE_CANDIDATE, and bench/HIL/field gates remained held.
- Historical evidence has not been rerun in this discovery pass.
SEPARATE HISTORICAL CONTRACT OUTLINE
- ThermalBoundary — module and operating conditions
- ThermoelectricModel — Seebeck/Peltier parameters
- UncertaintyEnvelope — bounded temperature and model inputs
- SimulationReceipt — result, assumptions and effect ceiling
IF
A thermoelectric module is evaluated under declared thermal and electrical conditions.
HOW
Apply the documented package formulas and uncertainty bounds, keeping steady and transient coverage distinct.
THEN
Return the bounded simulation result and retain the separate hardware-validation requirements.
This historical outline is separate from the current-source contract above. It does not establish native integration or newly executed results.