C D E F G A B C: eight diatonic notes, with five sharps between them. A4 = 440 Hz. All selected notes use equal weights. These colors follow your palette; named blends are display colors, not literal additive-light equations.
The null conductor
A source/sink port between this field and an external reservoir. Admit or release energy and matter tokens; open a window to let energy leave continuously.
The external reservoir is the model's explicit “somewhere.”
Waveform at the audio output
Point / wave model and projective geometry
The point carries note selection and a local energy/matter state. The wave field expresses its oscillatory output. The source/sink port exchanges state with an external reservoir. This is an executable proposal for your hierarchy, not a derivation of fundamental matter from sound.
“Null conductor” is the model's name for this port. In standard mathematics an empty set contains no points; a point is a 0-dimensional object. Empty note selection and the point carrying state remain distinct here.
frequency = 440 * 2^((note_index - 9) / 12)wave(z,t) = amplitude * sin(2*pi*(frequency*z/343 - frequency*t_visual))t_visual = elapsed_time * slow_motionscreen_x = f * (X - eye_x) / Zscreen_y = -f * Y / Zleft_x - right_x = f * eye_separation / Z
The two parallel cameras have a horizontal baseline, so matching points share a vertical image coordinate. Dashed epipolar rows and a white-ringed tracer show this correspondence. Sideways movement and yaw apply to the shared camera rig. Stereo sound uses equal-power left/right panning based on source bearing; it is not a binaural acoustic simulation.
The spatial sine traces represent pressure variation, not sideways motion of air. Propagation uses 343 distance units per second with frequencies in hertz, then slows visual time for inspection. Audio stays at concert pitch. Perspective motion is a schematic field: no reflections or diffraction solver. The live scope samples the actual audio graph; a silent preview is explicitly labeled.
local_equivalent = energy + matter * c_model^2total_equivalent = local_equivalent + reservoir_energy + reservoir_matter * c_model^2c_model = 2; convert 1 matter token <-> 4 energy unitsamplitude_factor = sqrt(energy / (energy + 9))
Units are dimensionless. Conversion illustrates the form E = m*c^2 using a model constant; it is not a physical mass-conversion process. Transfers preserve combined system/reservoir accounting. Audio power is not calibrated to the ledger and does not consume ledger energy. An open window explicitly transfers energy to the reservoir at 1 unit per simulation second. Matter tokens are a display of the ledger, not an atomic model.
References: MIT: stereo geometry; Web Audio stereo panning.