SYNTHETIC parameters · no hardware experiment performed · residual contributes zero work · no free-energy claim · Carnot is a ceiling only
BROWSER-ONLY PROTOTYPE / NO NETWORK REQUESTS

Residuals are not energy.
Gradients are.

A falling residual is a computational change. Predicted electrical output lives in a separate lane and requires an explicit external hot-to-cold gradient.

01  COMPUTATIONAL RESIDUAL02  THERMOELECTRIC MODELMODEL OUTPUT ≠ HARDWARE MEASUREMENT
01 COMPUTATION / OBSERVER ONLY

Residual replay

Re-score a 32-component vector after one bounded correction. A lower R means simulation only.

PINNED CONTRACT oes32-residual @ b77b612 · rᵢ = |yᵢ − xᵢ| · R = max(rᵢ)

Enter 32 numbers separated by commas or whitespace. The default fixture includes a 0.55 spike and smaller residuals.

RE-SCOREREADY
R before—
R after—
Observer latch—

Apply one step to re-score the current vector.

work from residual = 0No joules are assigned to a residual change.

Component residual vector

r₁ … r₃₂ selected worst

Observer log

append-only this session
  1. No replay step logged yet.

A correction updates at most one observed component, by no more than the cap. All other components are preserved. The “latch” is only the R > τ comparison; it is not an energy gate.

02 CLASSICAL PHYSICS / EXTERNAL SOURCE

Thermoelectric output

Predict loaded electrical output only from the hot and cold reservoirs entered here.

External heat flow requiredReservoir temperatures are model inputs, not measurements.SYNTHETIC
LOADED OUTPUT · IDEALIZED MODELREADY
Open-circuit Voc—
Load current I—
Load voltage Vload—
Electrical power Pelec—
Electrical energy Eelec—
Matched-load Pmax—
η

Carnot ceiling: —Maximum fraction of heat convertible to work between these reservoirs—not actual device efficiency.

Q

Heat input unmeasured.Available work in joules is unknown until Qhot is measured.

Matched-load maximum occurs at Rload = Rint.
Energy boundary

The model uses Voc = SΔT, I = Voc/(Rint + Rload), and P = I²Rload. Any predicted output comes from externally supplied heat flow across the gradient; it is not created from nothing.

Keep a local run recordExport current vectors, replay log, thermal inputs and calculated outputs. Nothing is uploaded.

Sample report (JSON)