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Stan’s Legacy

NeuralBench

The notebook NeuralStan keeps

168 published findings from a machine working Meyer's devices without stopping — sweeping parameters, scoring candidates against the physics, and writing down what it learns. Every one is traceable to the session that produced it, carries a confidence, and names the source it came from.

It records what fails as well as what works. A dead end nobody wrote down is a dead end somebody walks into twice.

4 of 168 findings have been tied to a device. The rest are grouped by the subsystem they were filed under, which is a broader claim: a note under Electrical Particle Generator has been said to be about the subsystem, not about any one of its four units.

Steam Resonator 4

Voltage Intensifier Circuit 113 · by subsystem

  • calculation VIC confidence 0.70

    VIC design session v117: best candidate (Q=52.2, 94.4kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.626 - **Cell** — 16mm rod in 18.0mm tube × 50mm, 1 cell(s) parallel → C_eff = 1.85nF, bulk water R = 48940Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v116: best candidate (Q=47.7, 98.6kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.616 - **Cell** — 10mm rod in 14.0mm tube × 50mm, 2 cell(s) parallel → C_eff = 1.42nF, bulk water R = 54744Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v115: best candidate (Q=100.0, 94.1kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.644 - **Cell** — 12mm rod in 14.0mm tube × 50mm, 1 cell(s) parallel → C_eff = 1.55nF, bulk water R = 110433Ω. - **W...

  • calculation VIC confidence 0.70

    VIC design session v114: best candidate (Q=89.4, 95.1kHz)

    **Sweep** — Hold choke near the AWG18 1mH/200T champ (fine grid) and deep-taper peak_v to walk the 1179V/470 Td film down into the 80-250 Td CGDE band without touching Q, keeping leakage R_ct-limited...

  • calculation VIC confidence 0.70

    VIC design session v113: best candidate (Q=88.7, 95.1kHz)

    **Sweep** — Hold the AWG18 1mH/200T champ choke and drive a DEEP peak_v taper (30-120V, well below prior mild trims) at low duty to walk the 470 Td film down into the 80-250 Td CGDE band via linear V_...

  • calculation VIC confidence 0.70

    VIC design session v112: best candidate (Q=86.0, 95.4kHz)

    **Sweep** — Hold the AWG18 1mH/200T champ with a fine choke grid and walk peak_v down from bench-proven 120V to land the 470 Td film inside the 80-250 Td CGDE band via lower magnification input, low d...

  • calculation VIC confidence 0.70

    VIC design session v111: best candidate (Q=14.9, 94.8kHz)

    **Sweep** — Hold near the AWG18 1mH/200T champ but exploit coupled-mode L-splitting (fine grid straddling champ) crossed with a mid/low peak_v ladder to slide the 470 Td film down into the 80-250 Td C...

  • calculation VIC confidence 0.70

    VIC design session v110: best candidate (Q=14.2, 89.9kHz)

    **Sweep** — Cross a fine choke grid around the AWG18 1mH/200T champ with a higher-L/higher-turn coupled-mode branch, driven at moderate-to-low peak_v (below the stale 120V point) at low duty, to pull...

  • calculation VIC confidence 0.70

    VIC design session v109: best candidate (Q=24.5, 94.6kHz)

    **Sweep** — Walk peak_v DOWN from bench-proven 120V while holding the AWG18 1mH champ (plus two slightly softer chokes) to drag the 470 Td film back into the 80-250 Td CGDE band and re-score the leaka...

  • calculation VIC confidence 0.70

    VIC design session v108: best candidate (Q=98.3, 97.7kHz)

    **Sweep** — Fresh choke floor sweep against the CURRENT v42 WFC cell (10/12mm rod-in-tube, 50mm, 1 cell, 0.1ppm @ 2C, surface 0.25x, C_eff=1.327nF) - the VIC-side record (v107, Q=8.3 @ 97.5kHz) is sta...

  • calculation VIC confidence 0.70

    VIC design session v107: best candidate (Q=8.3, 97.5kHz)

    **Sweep** — Hold the resonant choke near baseline and walk peak_v down a low-duty ladder to land V_cell ~500V (150-250 Td) with Faradaic leakage <10mA — a drive-space sweep, not another high-L f_r dra...

  • calculation VIC confidence 0.70

    VIC design session v106: best candidate (Q=8.4, 99.8kHz)

    **Sweep** — Drive V below 100V with low duty to walk vapor-film Td into 80-250 window while holding Faradaic leakage <10mA; higher-L AWG24 chokes pull f_r toward 55-75kHz for magnification. - **Cell**...

  • calculation VIC confidence 0.70

    VIC design session v105: best candidate (Q=7.9, 99.8kHz)

    **Sweep** — Push f_r into 55-75kHz with higher-L AWG24 chokes and drop peak_v to walk vapor-film Td down into the 80-250 cold-chemistry window, sweeping duty widely to break degeneracy and keep Farada...

  • calculation VIC confidence 0.70

    VIC design session v104: best candidate (Q=7.3, 90.0kHz)

    **Sweep** — Finer grid around the adopted AWG22 0.7 mH tank plus higher-L/higher-turn territory to push f_r below 85 kHz, sweeping low-duty low-peak drive to trend Faradaic leakage down and find the s...

  • calculation VIC confidence 0.70

    VIC design session v103: best candidate (Q=6.7, 85.7kHz)

    **Sweep** — At adopted 60V sub-breakdown drive, raise L on AWG24 chokes to pull f_r from 94.87 kHz down into 55-75 kHz and land the vapor film in the 80-250 Td cold-chemistry window while trending low...

  • calculation VIC confidence 0.70

    VIC design session v102: best candidate (Q=7.0, 94.9kHz)

    **Sweep** — Raise coil Q with tighter AWG24 chokes at fewer turns to pull f_r into 55-75kHz, lifting V_cell toward ~150 Td at the adopted 60V sub-breakdown drive, with a couple short high-peak edges t...

  • calculation VIC confidence 0.70

    VIC design session v101: best candidate (Q=6.0, 94.9kHz)

    **Sweep** — Finer grid around the 1mH/Q4/72V-3% best while pushing lower L and low-duty higher-V to shrink C_dl-driven τ_EDL and hold the vapor film in the 100-150 Td cold-chemistry window with leakag...

  • calculation VIC confidence 0.70

    VIC design session v100: best candidate (Q=4.0, 49.1kHz)

    **Sweep** — Pull the vapor film from 350Td into the 150-250Td cold-chemistry window by dropping choke L below 581µH, damping Q to 4-6 from the resistance side (thin high-AWG turns), and cutting drive...

  • calculation VIC confidence 0.70

    VIC design session v99: best candidate (Q=8.8, 98.5kHz)

    **Sweep** — Hold peakV modest (80-140V) but sweep a WIDER choke-inductance ladder above/below 581µH to move f_r off the water-branch-limited point and land Q in the 4-6 band from the inductance side,...

  • calculation VIC confidence 0.70

    VIC design session v98: best candidate (Q=8.4, 94.3kHz)

    **Sweep** — Fix the #1 cell; tune film Td into the 80-250 window by pairing a finer choke grid around 581µH (nudging Q) with a moderate low-voltage / low-duty drive tier that pulls V_cell down from th...

  • calculation VIC confidence 0.70

    VIC design session v97: best candidate (Q=6.7, 75.2kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns], refined score 0.418 - **Cell** — 12mm rod in 24.0mm tube × 100mm, 6 cell(s) parallel → C_eff = 3.85nF, bulk water R = 3774Ω. - **Water/electrod...

  • calculation VIC confidence 0.70

    VIC design session v96: best candidate (Q=1.2, 14.2kHz)

    **Sweep** — Hold the proven 3.7mH/12.9kHz neighborhood but push drive to 350V at low duty to lift V_cell/Td toward the deep CGDE window while keeping average draw safe and probing the breakdown ceilin...

  • calculation VIC confidence 0.70

    VIC design session v95: best candidate (Q=1.2, 12.9kHz)

    **Sweep** — Bridge the untested 20-32kHz gap with mid-L chokes at low C while keeping a fine grid around the proven 3.7mH/12.9kHz best, and pair high peak_v with low duty to push Td deep into the CGDE...

  • calculation VIC confidence 0.70

    VIC design session v94: best candidate (Q=1.2, 12.9kHz)

    **Sweep** — 1-2 cell C≈1.37nF: sweep 3.7-9mH high-turn AWG18-22 chokes to force f_r into the untested 32-50kHz band and test whether Q survives at higher frequency while pushing Td via high peak_v at...

  • calculation VIC confidence 0.70

    VIC design session v93: best candidate (Q=1.2, 12.9kHz)

    **Sweep** — At C=1.37nF (1-2 cell), sweep per-choke L 3.7-9mH to land f_r in the untested 32-50kHz band with high-turn AWG18-22 coils, and raise peak_v (low duty) to drive Td toward 80. - **Cell** — 8...

  • calculation VIC confidence 0.70

    VIC design session v92: best candidate (Q=1.2, 12.9kHz)

    **Sweep** — Force the 1.37nF (1-2 cell) case: sweep per-choke L 3.7-9mH to land f_r across the untested 32-50kHz compliant band, with high-turn AWG18-22 coils to hold coil Q high while I chase Td, not...

  • calculation VIC confidence 0.70

    VIC design session v91: best candidate (Q=1.2, 12.9kHz)

    **Sweep** — With cells cut to 1-2 (C_eff ~1.37nF), sweep the 3.7-5.5mH seam plus higher L to land f_r in the 32-50kHz band; hold coil Q high with realistic high-turn AWG18-22 coils and re-rank on Td....

  • calculation VIC confidence 0.70

    VIC design session v90: best candidate (Q=1.2, 12.9kHz)

    **Sweep** — Unlock the untested 3.7-5.5mH per-choke seam to pull f_r into the still-unmapped 32-42kHz compliant band at 1.37nF, using high-turn realistic coils to hold coil Q>1000, re-ranking on Td. -...

  • calculation VIC confidence 0.70

    VIC design session v89: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v88: best candidate (Q=24.6, 277.4kHz)

    **Sweep** — Bridge the non-compliant 0.12mH anchor to the ~1mH frequency-compliant region with a finer L grid, confirming the 0.1mm vapor film stays lit as series current drops when f_r crosses under...

  • calculation VIC confidence 0.70

    VIC design session v87: best candidate (Q=24.6, 277.4kHz)

    **Sweep** — Push per-choke L into the ~0.95-2.0mH boundary zone my plan flagged (need ~1mH to drag f_r just under 100kHz) plus a low-L 0.12-0.25mH probe untouched by prior sweeps, verifying the 0.1mm...

  • calculation VIC confidence 0.70

    VIC design session v86: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v85: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Drives choke L into 3-10mH so the fixed 1.37nF tank rings at 40-70kHz in-band; targets uncovered 3.7-4mH and 8-9mH windows plus a 100µH anchor for score continuity, holding turns/gauge nea...

  • calculation VIC confidence 0.70

    VIC design session v84: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v83: best candidate (Q=24.4, 303.9kHz)

    **Sweep** — Bridge the gap left by both failed arms: sweep the mid-L 1.5-3mH region where C_eff=1.37nF alone resonates sub-100kHz (no C-growth needed), with a fine anchor around the 100µH physics refe...

  • calculation VIC confidence 0.70

    VIC design session v82: best candidate (Q=24.4, 303.9kHz)

    **Sweep** — Force the high-L arm: pin chokes 8-10mH to drag f_r into the buildable <100kHz band with shrunken-C, while anchoring a fine grid at the 100µH current-best for score continuity. - **Cell**...

  • calculation VIC confidence 0.70

    VIC design session v81: best candidate (Q=25.7, 303.9kHz)

    **Sweep** — Fine grid at the 100µH Q-ceiling reference paired with unexplored >8mH high-L chokes so a shrunken-C cell lands sub-100kHz f_r while still holding tank Q to light the CGDE film. - **Cell**...

  • calculation VIC confidence 0.70

    VIC design session v80: best candidate (Q=24.8, 303.9kHz)

    **Sweep** — Map the untouched 0.1-1mH transition between the physics-ideal 100µH reference and the buildable 1mH floor at high-Q gauges, to see where film lighting decays as L climbs back into band an...

  • calculation VIC confidence 0.70

    VIC design session v79: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — Genuinely realize L from turns/geometry, testing under- and over-tuned brackets (1-3mH and 8-10mH) plus a fine grid near the current best, to bound f_r sensitivity beyond the already-swept...

  • calculation VIC confidence 0.70

    VIC design session v78: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — Genuinely sweep choke L (with turns scaled to match) to drop f_r into 40-70kHz at higher C_eff, verifying the frequency lever moves before scoring; fine cluster near adopted 0.0001H plus a...

  • calculation VIC confidence 0.70

    VIC design session v77: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — Joint L-up sweep: raise choke L 5-25x from adopted 0.0001H to drag f_r toward 40-70kHz, resampling turns/AWG to hold tank Q while keeping cell voltage high, anticipating higher C_eff from...

  • calculation VIC confidence 0.70

    VIC design session v76: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — Directly probe the L lever: sweep choke inductance widely (0.0001-0.0025H) to test if f_r honestly drops toward 40-70kHz, while co-varying turns/AWG to hold tank Q, with a fine cluster aro...

  • calculation VIC confidence 0.70

    VIC design session v75: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — Enforce the choke-L lever this time: sweep L 20-25x up from adopted 0.0001H to drag f_r from 304kHz toward 40-70kHz, while resampling turns/AWG for tank Q at the newly legal frequency. - *...

  • calculation VIC confidence 0.70

    VIC design session v74: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — With C_eff pinned, push f_r from ~300kHz toward 40-70kHz by raising choke L ~20-25x (0.0001→0.0025H) while sampling turns/AWG for Q — the only band-legal knob left this session. - **Cell**...

  • calculation VIC confidence 0.70

    VIC design session v73: best candidate (Q=25.9, 303.9kHz)

    **Sweep** — Freeze choke near adopted 140t/0.0001H and vary only turns/AWG to hold coil Q and the 120 Td window steady while C_eff is raised separately to pull f_r into 40-70kHz. - **Cell** — 18mm rod...

  • calculation VIC confidence 0.70

    VIC design session v72: best candidate (Q=25.8, 303.9kHz)

    **Sweep** — C_eff is the real frequency lever, so hold the choke as control (140t/AWG18) and sample a tight L grid near the adopted 0.0001H nominal to confirm coil Q and the 120 Td window stay put whi...

  • calculation VIC confidence 0.70

    VIC design session v71: best candidate (Q=25.8, 303.9kHz)

    **Sweep** — Finer grid around adopted 0.0001H/AWG18/180t best plus a modest 0.0002-0.0005H bridge (below the already-swept 0.6mH+ bands) to test whether raising L slightly lowers f_r while preserving...

  • calculation VIC confidence 0.70

    VIC design session v70: best candidate (Q=25.4, 303.9kHz)

    **Sweep** — Fine grid around adopted 0.0001H/AWG18/220t best plus the unmapped 0.6-0.8mH gap between already-swept bands, to test whether coil Q and the 120 Td window survive as L climbs without re-ru...

  • calculation VIC confidence 0.70

    VIC design session v69: best candidate (Q=25.1, 303.9kHz)

    **Sweep** — Force L to actually climb into 0.8-1.6mH heavy-gauge band (plus a finer 0.1-0.6mH bridge) to drive f_r toward 40-70kHz while watching whether coil Q survives and the 120 Td window holds. -...

  • calculation VIC confidence 0.70

    VIC design session v68: best candidate (Q=25.2, 303.9kHz)

    **Sweep** — Drag f_r under 100kHz by lifting per-choke L into the 0.8-1.6mH heavy-gauge band around the adopted AWG18/220 best, checking if coil Q survives the added wire and the 120 Td window holds i...

  • calculation VIC confidence 0.70

    VIC design session v67: best candidate (Q=25.1, 303.9kHz)

    **Sweep** — Fine grid at 0.1mH best for score continuity plus the 0.8-1.6mH crossing band with heavy gauge to locate where f_r drops below 100kHz while holding coil Q, without re-running the already-m...

  • calculation VIC confidence 0.70

    VIC design session v66: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Gate f_r≤100kHz by forcing L into 1.5-2mH (with reduced C_eff from 8→4 cells) to drive resonance into the audio band, sweeping turns/gauge to recover the Q and cell voltage lost at high L....

  • calculation VIC confidence 0.70

    VIC design session v65: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Abandon fixed-L: sweep L up (0.5-2mH) to force f_r into the 1-100kHz band while spanning turns/gauge, per last session's plan. - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parall...

  • calculation VIC confidence 0.70

    VIC design session v64: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Hold the winning 0.1mH/100-turn/AWG-18 choke and probe a tight grid around it while C is raised elsewhere to pull f_r into band — confirm coil Q and cell voltage stay optimal at low L, low...

  • calculation VIC confidence 0.70

    VIC design session v63: best candidate (Q=26.2, 303.9kHz)

    **Sweep** — Bridge the gap between the 0.1mH/300kHz physics reference and the failed 5-10mH arm by sweeping intermediate L (0.1-3mH) to map where Q, cell voltage, and f_r trade off across the full 40-...

  • calculation VIC confidence 0.70

    VIC design session v62: best candidate (Q=26.2, 303.9kHz)

    **Sweep** — First sweep with L(N) fixed: seat f_r in the 40-60kHz band by pushing per-choke L into 5-10mH ferrite territory at high turn counts, while anchoring a fine grid at the 0.1mH/high-Q referen...

  • calculation VIC confidence 0.70

    VIC design session v61: best candidate (Q=26.2, 303.9kHz)

    **Sweep** — With the inductance-vs-turns bug fixed, sweep per-choke L into the 5-10mH ferrite range at high turn counts to seat f_r near 40-60kHz (needs ~7.4mH at fixed 1.37nF C_eff), while anchoring...

  • calculation VIC confidence 0.70

    VIC design session v60: best candidate (Q=26.2, 303.9kHz)

    **Sweep** — Raise per-choke L ~10x toward 1mH to drag f_r from 304kHz down into the 1-100kHz band, sweeping L as the primary lever with turns/gauge to supply the inductance realistically. - **Cell** —...

  • calculation VIC confidence 0.70

    VIC design session v59: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v58: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — With C pushed toward 5-7nF (16-24 cells/larger tubes), re-run buildable 1-4mH chokes plus 100µH anchor to seat f_r at 40-70kHz without collapsing coil Q below the 700mA floor. - **Cell** —...

  • calculation VIC confidence 0.70

    VIC design session v57: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Break the C ceiling era: sweep buildable mH-class chokes (0.5-4mH) with a 100µH anchor, co-varying turns and lighter AWG to seat f_r in the 40-70kHz band without collapsing coil Q below th...

  • calculation VIC confidence 0.70

    VIC design session v56: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Force per-choke L to actually populate the 0.3-4mH gap at fixed fat wire (AWG18-20) to drag f_r from 304kHz toward the 40-70kHz band while keeping coil Q above the 700mA floor; finer rungs...

  • calculation VIC confidence 0.70

    VIC design session v55: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Bridge the resonance violation by walking per-choke L from the pinned 100µH up through the mid-mH gap (0.5-3mH) not yet gridded, holding modest turns/fat wire to keep coil Q above the 700m...

  • calculation VIC confidence 0.70

    VIC design session v54: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v53: best candidate (Q=25.0, 303.9kHz)

    **Sweep** — Pair a raised C_eff (more cells / larger electrode area, swept elsewhere) with a modest-to-higher choke L to pull f_r in-band while recovering sub-amp displacement-dominated current; finer...

  • calculation VIC confidence 0.70

    VIC design session v52: best candidate (Q=24.4, 303.9kHz)

    **Sweep** — Sweep the unexplored sub-1mH per-choke region (0.2-1.0mH, 0.4-2.0mH total) between the 303.9kHz film anchor and the already-mapped 1.0mH+ gap, hunting the highest Td-per-candidate that sti...

  • calculation VIC confidence 0.70

    VIC design session v51: best candidate (Q=25.1, 303.9kHz)

    **Sweep** — Sweep the untested 2.6-4.0mH per-choke gap (total 5.2-8.0mH) between the already-run 1.5-2.6mH and 4.0-5.6mH arms to close the seam and locate exactly where f_r crosses into the 60-78kHz b...

  • calculation VIC confidence 0.70

    VIC design session v50: best candidate (Q=25.1, 303.9kHz)

    **Sweep** — Force choke arm into 1.5-2.6mH per-choke (3.0-5.2mH total) to seat f_r in the 60-78kHz legal window against 1.37nF, confirming these rows exist and checking if in-band designs still hit th...

  • calculation VIC confidence 0.70

    VIC design session v49: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Fill the untested per-choke 1.5-2.6mH gap (total 3.0-5.2mH) against native 1.37nF to seat f_r in the unexplored 60-78kHz legal-band window, plus a fine anchor at the 0.1mH reference, sweep...

  • calculation VIC confidence 0.70

    VIC design session v48: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Finer grid around 0.1mH CGDE reference plus new untested per-choke 2.6-4.0mH territory (total >5.2mH) to push f_r below the 60kHz core edge against native 1.37nF, sweeping heavy AWG for co...

  • calculation VIC confidence 0.70

    VIC design session v47: best candidate (Q=24.4, 303.9kHz)

    **Sweep** — Bridge the 0.1mH CGDE reference toward buildable low chokes (0.1-0.45mH) with turn counts high enough to physically realize L, testing whether f_r can be dragged below 100kHz toward 60-90k...

  • calculation VIC confidence 0.70

    VIC design session v46: best candidate (Q=26.6, 303.9kHz)

    **Sweep** — Force the intermediate inductances (0.5/1.0/1.5mH) the optimizer skipped, with fat few-turn AWG18 windings, to find where f_r drops under 100kHz while ~120Td film still lights in the CGDE...

  • calculation VIC confidence 0.70

    VIC design session v45: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Sweep intermediate inductances between the 0.1mH high-Q champion and the 2.5mH drivable floor, with high-Q fat few-turn windings, to locate the exact L where f_r crosses under 100kHz while...

  • calculation VIC confidence 0.70

    VIC design session v44: best candidate (Q=26.4, 303.9kHz)

    **Sweep** — Hold true 2.5-6mH chokes (no anchor leak) with thick AWG18-22 fat/few-turns for high coil-Q, paired with raised C_eff (longer tubes) to pull f_r honestly into 40-70kHz, plus a fine referen...

  • calculation VIC confidence 0.70

    VIC design session v43: best candidate (Q=26.0, 303.9kHz)

    **Sweep** — With C_eff reduced via fewer cells, sweep mid-to-high chokes (2.5-6mH) at moderate turns/thicker wire to land f_r honestly in-band while preserving coil-Q, plus a finer reference grid near...

  • calculation VIC confidence 0.70

    VIC design session v42: best candidate (Q=26.0, 303.9kHz)

    **Sweep** — Fill the untested 1.5–5mH choke gap (beyond prior ≤3.3mH rungs) with thick AWG18–22 at high turn counts to push f_r under 30kHz while checking coil Q, plus a fine grid near the 0.1mH ancho...

  • calculation VIC confidence 0.70

    VIC design session v41: best candidate (Q=26.0, 303.9kHz)

    **Sweep** — With C_eff grown (16-24 cells, 40-60mm tubes, tighter gap), test high-L 0.3-1.5mH chokes to land f_r in the buildable 20-50kHz band while holding the 0.1mH/120t anchor and thick AWG to kee...

  • calculation VIC confidence 0.70

    VIC design session v40: best candidate (Q=26.0, 303.9kHz)

    **Sweep** — Push into higher L (0.3-1.5mH) with moderate turns to honestly drag f_r toward 20-50kHz while holding 250-300V film voltage, assuming grown C_eff from longer/more-parallel cells; fine grid...

  • calculation VIC confidence 0.70

    VIC design session v39: best candidate (Q=25.8, 303.9kHz)

    **Sweep** — Fine grid around adopted best (0.1mH/200T/AWG18) plus a push into higher L 0.3-1.5mH paired with lower turns to hold film voltage while dragging f_r toward the band — testing whether reduc...

  • calculation VIC confidence 0.70

    VIC design session v38: best candidate (Q=25.2, 303.9kHz)

    **Sweep** — Bridge the untested 0.3-2mH gap between the crowned 0.1mH branch and the explored 2mH start to find buildable f_r (~90-290kHz falling toward band) that still holds ~250-300V film, sweeping...

  • calculation VIC confidence 0.70

    VIC design session v37: best candidate (Q=25.2, 303.9kHz)

    **Sweep** — Sweep L jointly across the in-band 5-7.4mH region (where 1.37nF resonates at 40-70kHz) plus a low-L branch, varying turns/gauge to preserve coil Q and ~300V film — stop chasing the sub-5mH...

  • calculation VIC confidence 0.70

    VIC design session v36: best candidate (Q=25.1, 303.9kHz)

    **Sweep** — Bridge the untested 0.3-5mH mid-choke gap (between the buildable 0.1mH best and the already-swept 7.4mH point) to find the lowest inductance that still pulls f_r into 40-70kHz on the 1.37n...

  • calculation VIC confidence 0.70

    VIC design session v35: best candidate (Q=26.8, 303.9kHz)

    **Sweep** — Abandon the phantom 200nF sizing: sweep L up toward ~7.4mH (the value that lands f_r=50kHz on the real 1.37nF cell) to finally pull resonance into the 1-100kHz band, holding low-turn heavy...

  • calculation VIC confidence 0.70

    VIC design session v34: best candidate (Q=26.8, 303.9kHz)

    **Sweep** — Hold C_eff~200nF and sweep the untouched 0.05-0.3mH choke band — arithmetic (L=1/((2πf)^2·C)) puts f_r=50kHz at ~0.05mH for 200nF, so pair low-turn heavy gauge coils for Q with these sub-m...

  • calculation VIC confidence 0.70

    VIC design session v33: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Bridge the untouched sub-mH choke band (0.1-3mH) to land f_r at 50kHz once C_eff is pushed to 100-400nF, while keeping low-turn heavy gauge for coil Q and the 129 Td film. - **Cell** — 18m...

  • calculation VIC confidence 0.70

    VIC design session v32: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Fine-grid the choke around #1's 0.1mH at low-turn/heavy-gauge to hold coil Q, targeting f_r into 40-70kHz once C_eff is raised to ~100-200nF - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8...

  • calculation VIC confidence 0.70

    VIC design session v31: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — With C_eff forced up (~100-200nF from 40+ parallel cells), sweep the sub-0.2mH choke band to land Xl=Xc in 40-70kHz while walking low turns on heavy gauge to hold coil Q on the 129Td film...

  • calculation VIC confidence 0.70

    VIC design session v30: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Attack the untouched sub-0.2mH choke band to re-match Xl=Xc into 40-70kHz at a much larger C_eff (~100-200nF from more parallel cells), walking turns/gauge to hold coil Q on the 129Td film...

  • calculation VIC confidence 0.70

    VIC design session v29: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v28: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v27: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Move the real knob: sweep choke L up toward ~1mH to drag f_r into the 1-100kHz drive band, winding fixed at the AWG18 optimum; fine grid around the 3.8mH in-band build point plus the 1mH/3...

  • calculation VIC confidence 0.70

    VIC design session v26: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v25: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Directly raise per-choke L into 0.3-0.8mH to force f_r down into the legal 50-100kHz band against fixed 1.37nF/8-cell, holding light high-Q windings from anchor #1, then re-map the Td wind...

  • calculation VIC confidence 0.70

    VIC design session v24: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — Fill the untried 0.1-0.8mH per-choke gap between the 100µH self-resonant point and the already-swept 0.8mH edge, co-varying turns/gauge to map f_r down from 300kHz toward the 50-100kHz bou...

  • calculation VIC confidence 0.70

    VIC design session v23: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v22: best candidate (Q=27.0, 303.9kHz)

    **Sweep** — screen-guided: live [Choke L (each), Turns, Wire gauge], refined score 0.274 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.37nF, bulk water R = 10389Ω. - **Wa...

  • calculation VIC confidence 0.70

    VIC design session v21: best candidate (Q=8.8, 98.6kHz)

    **Sweep** — Keep f_r in the 40-70kHz band via moderate L (paired with the narrower/shorter cell C_eff from the plan) while chasing higher choke Q through lower-loss windings — fewer turns, thicker wir...

  • calculation VIC confidence 0.70

    VIC design session v20: best candidate (Q=8.4, 95.5kHz)

    **Sweep** — Push L up an order of magnitude (2-5mH) at fixed cell geometry to drag f_r under 100kHz, checking whether Td/CGDE window survives the lower cell voltage - **Cell** — 9mm rod in 17.0mm tube...

  • calculation VIC confidence 0.70

    VIC design session v19: best candidate (Q=18.2, 231.0kHz)

    **Sweep** — Fine-grid mid-L structural band (0.3-0.8mH) with untested 0.2-0.3mH edge, crossed with wider AWG/turns combos to find higher-Q in-band f_r solutions beating 0.73 without repeating prior L/...

  • calculation VIC confidence 0.70

    VIC design session v18: best candidate (Q=26.2, 326.8kHz)

    **Sweep** — Prior L sweeps (0.15-2.5mH) with 3-4 parallel cells never landed f_r in-band; test unexplored 0.02-0.15mH low-L region plus 2.5-5mH high-L region, both at Q-preserving high-turns/low-AWG c...

  • calculation VIC confidence 0.70

    VIC design session v17: best candidate (Q=26.2, 326.8kHz)

    **Sweep** — Hold L fixed at 0.1mH (per plan) while widening gap/tube geometry raises C_eff directly, to pull f_r into 40-70kHz without shrinking both L and C together - **Cell** — 9mm rod in 13.0mm tu...

  • calculation VIC confidence 0.70

    VIC design session v16: best candidate (Q=28.0, 326.8kHz)

    **Sweep** — Push L another decade below 0.1mH with further-shortened gap C_eff to test if f_r finally lands in 40-70kHz band, keeping low-AWG high-Q coil family - **Cell** — 9mm rod in 13.0mm tube × 1...

  • calculation VIC confidence 0.70

    VIC design session v15: best candidate (Q=27.3, 326.8kHz)

    **Sweep** — Sweep tube diameter and rod/tube gap to raise C_eff an order of magnitude, then re-run L across the 1mH-0.1mH transition to find where Q>1 lands f_r inside 40-70kHz - **Cell** — 9mm rod in...

  • calculation VIC confidence 0.70

    VIC design session v14: best candidate (Q=27.4, 326.8kHz)

    **Sweep** — Map transition region between 1mH anchor and 0.1mH dead-zone at fixed cell geometry to find intermediate L keeping f_r in-band while raising tank Q beyond anchor's 0.73 - **Cell** — 9mm ro...

  • calculation VIC confidence 0.70

    VIC design session v13: best candidate (Q=27.6, 326.8kHz)

    **Sweep** — Wide choke geometry sweep away from 1mH anchor (varying L via turns/AWG) to test if a distinct inductance regime yields higher tank Q than the water-branch-limited 130t/1mH point, since pp...

  • calculation VIC confidence 0.70

    VIC design session v12: best candidate (Q=8.9, 99.9kHz)

    **Sweep** — Hold choke fixed at adopted 130t/1mH anchor (no further choke sweep this session) since active lever remains capacitance/gap; tight reconfirmation grid only - **Cell** — 21.8mm rod in 26.8...

  • calculation VIC confidence 0.70

    VIC design session v11: best candidate (Q=67.7, 100.0kHz)

    **Sweep** — Lock choke at 130t/AWG18 near-optimal L; sweep gap/electrode-length via C and water-R proxy isn't a choke param, so fine-tune L around 130t operating point to confirm plateau while geometr...

  • calculation VIC confidence 0.70

    VIC design session v10: best candidate (Q=67.1, 99.1kHz)

    **Sweep** — Wire gauge saturated at AWG18/140t; now vary cell geometry lever via C/water-R proxy by testing AWG16-17 at fixed 140t plus fine L retune to see if any residual Q gain exists before the wa...

  • calculation VIC confidence 0.70

    VIC design session v9: best candidate (Q=66.7, 99.1kHz)

    **Sweep** — AWG20/150t and L~1mH already explored; now test heavier wire AWG18-19 at fixed 150t to see if lower coil R pushes tank Q and voltage beyond the 0.9Ω/Q64.4 baseline - **Cell** — 22.8mm rod...

  • calculation VIC confidence 0.70

    VIC design session v8: best candidate (Q=64.4, 98.3kHz)

    **Sweep** — Hold L at 1mH, sweep AWG20-22 for lower coil R to test if tank Q exceeds 62 while current stays under 1A limit - **Cell** — 15.9mm rod in 22.3mm tube × 101.6mm, 1 cell(s) parallel → C = 1....

  • calculation VIC confidence 0.70

    VIC design session v7: best candidate (Q=62.4, 98.3kHz)

    - **Cell** — 15.9mm rod in 22.3mm tube × 101.6mm, 1 cell(s) parallel → C = 1.31nF, water R = 87585Ω. - **Chokes** — 2 × 0.001H (100 turns, AWG 24, 12m wire, AC R 1.2Ω each). - **At resonance f_r = 98....

  • calculation VIC confidence 0.70

    VIC design session v6: best candidate (Q=28.4, 43.9kHz)

    - **Cell** — 12.7mm rod in 19.1mm tube × 101.6mm, 6 cell(s) parallel → C = 6.56nF, water R = 17497Ω. - **Chokes** — 2 × 0.001H (100 turns, AWG 24, 12m wire, AC R 1.0Ω each). - **At resonance f_r = 43....

Water Fuel Cell 47 · by subsystem

  • calculation WFC confidence 0.70

    WFC design session v53: best candidate (Q=48.7, 86.3kHz)

    **Sweep** — Shed magnification via fatter rod + wider annular film gap (lower C, lower Q) while co-sweeping gamma_se with low-duty peak_v in cold/pure water, to drop V_cell into the 80-250 Td window a...

  • calculation WFC confidence 0.70

    WFC design session v52: best candidate (Q=47.7, 98.6kHz)

    **Sweep** — Walk V_cell off the 334 Td avalanche floor into the 80-250 Td / M=0.1-1 sub-critical corner by co-sweeping the untouched electrode-treatment lever (surface_factor, sets C_dl/R_ct → Q and l...

  • calculation WFC confidence 0.70

    WFC design session v51: best candidate (Q=101.6, 99.5kHz)

    **Sweep** — Finer geometry grid around the adopted 10mm/50mm best while co-sweeping film-relevant levers — moderate gap widening plus colder/purer water to shed Q gently — against a low-duty peak_v la...

  • calculation WFC confidence 0.70

    WFC design session v50: best candidate (Q=88.7, 95.1kHz)

    **Sweep** — Lower effective Q via colder/purer water and sweep gamma_se + moderated peak_v together to slide V_cell into the 80-250 Td / M 0.1-1 sub-critical corner instead of magnifying past it into...

  • calculation WFC confidence 0.70

    WFC design session v49: best candidate (Q=86.6, 95.4kHz)

    **Sweep** — Slide V_cell into the 80-250 Td sub-critical corner (M 0.1-1) by softening tank Q with cold/pure water while trimming gamma_se and peak_v together — the water/thermal path, not more magnif...

  • calculation WFC confidence 0.70

    WFC design session v48: best candidate (Q=14.2, 89.9kHz)

    **Sweep** — Deliberately lower magnification via larger rod OD + wider annular gap to break the ×70 floor, then sweep gamma_se with moderated peak_v/duty to land V_cell at 500-600V / ~180 Td in the su...

  • calculation WFC confidence 0.70

    WFC design session v47: best candidate (Q=24.4, 94.6kHz)

    **Sweep** — Deliberately detune Q (larger rod OD + wider annular gap → lower magnification) crossed with gamma_se and low peak_v/low-duty drive to slide V_cell into the 80-250 Td sub-critical CGDE cor...

  • calculation WFC confidence 0.70

    WFC design session v46: best candidate (Q=98.3, 97.7kHz)

    **Sweep** — Co-sweep Randles water/electrode levers (purity, temperature, surface) with moderated peak_v/duty at fixed near-best 10mm/50mm geometry to slide V_cell down from 837V/334Td into the 80-250...

  • calculation WFC confidence 0.70

    WFC design session v45: best candidate (Q=92.1, 98.2kHz)

    **Sweep** — Co-sweep water/electrode Randles levers (purity, temperature, surface treatment) with moderated peak_v/duty at near-best 10mm/50mm geometry to slide V_cell down from 837V/334Td into the 80...

  • calculation WFC confidence 0.70

    WFC design session v44: best candidate (Q=89.2, 98.4kHz)

    **Sweep** — Lower Q via larger rod OD + wider annular gap while trimming peak_v/duty together to push V_cell down from 837V/334Td into the 80-250 Td CGDE window, holding Faradaic leakage quenched with...

  • calculation WFC confidence 0.70

    WFC design session v43: best candidate (Q=92.1, 98.2kHz)

    **Sweep** — Hold the adopted 10mm/50mm geometry near best but hunt the 80-250 Td window through the water/electrode Randles levers (purity, temp, surface treatment) + finer low peak_v/low-duty grid —...

  • calculation WFC confidence 0.70

    WFC design session v42: best candidate (Q=69.7, 97.7kHz)

    **Sweep** — Hold adopted 10/1/55mm cell (0.1ppm/2C/x0.25) and attack peak_v alone — sweep drive down to land V_cell at 500-600V/~180Td CGDE window, matched ultra-low duty, checking Faradaic leakage st...

  • calculation WFC confidence 0.70

    WFC design session v41: best candidate (Q=61.1, 98.2kHz)

    **Sweep** — Co-vary a modest peak_v drop WITH gap/length geometry AND colder/purer water simultaneously (none of the prior single-lever sweeps did this) to walk the 0.1mm film from 293 Td into the 150...

  • calculation WFC confidence 0.70

    WFC design session v40: best candidate (Q=56.5, 94.5kHz)

    **Sweep** — Finer grid at the 10-12mm×60mm best but use surface_factor as the fresh lever to raise C_dl and hold displacement current while low peak_v + cold pure water crush leakage — landing the fil...

  • calculation WFC confidence 0.70

    WFC design session v39: best candidate (Q=57.6, 98.9kHz)

    **Sweep** — Finer grid at the tight 10/12mm×60mm best with a low peak_v corridor (12-14V → ~650-770V cell at Q~55) paired with a surface_factor sweep — the untouched lever — to trade C_dl/R_ct and pul...

  • calculation WFC confidence 0.70

    WFC design session v38: best candidate (Q=55.4, 94.7kHz)

    **Sweep** — Hunt V_cell~700-900V (Paschen knee, 80-250 Td) by hard-trimming peak_v LOW with purer/colder water to hold high R_ct (low leakage) rather than dumping Q with rough/warm water — the un-run...

  • calculation WFC confidence 0.70

    WFC design session v37: best candidate (Q=51.1, 84.5kHz)

    **Sweep** — Deliberately lower Q and trim peak_v to pull V_cell into ~250-400V, widen gap sweep to drop film Paschen and land Td inside 80-250, holding purer/colder water for a low leakage floor. - **...

  • calculation WFC confidence 0.70

    WFC design session v36: best candidate (Q=47.6, 91.9kHz)

    **Sweep** — Hold #1's 12/16mm cell but attack Paschen from the water side — sweep gap, temperature and purity to lower the film breakdown voltage so a modest V_cell (24-42V drive, moderate duty) lands...

  • calculation WFC confidence 0.70

    WFC design session v35: best candidate (Q=30.6, 92.7kHz)

    **Sweep** — Cut peak_v into the 24-90V band paired with low duty to slide V_cell toward the 80-250 Td window while holding the cold/pure/passivated Randles floor, with a fine grid around the 0.845 bes...

  • calculation WFC confidence 0.70

    WFC design session v34: best candidate (Q=28.1, 96.6kHz)

    **Sweep** — Push the gap below 1.8mm and deliberately drop peak_v to drive the vapor-film field down into the 80-250 Td window head-on, with a fine grid around the score-0.845 best (14/19mm, 120mm, 2%...

  • calculation WFC confidence 0.70

    WFC design session v33: best candidate (Q=25.0, 98.9kHz)

    **Sweep** — Walk Td down into 80-250 by sweeping sub-3mm gaps and lower-Q geometry driven harder at higher peak_v/low duty, on the cold/pure/passivated Randles floor. - **Cell** — 14mm rod in 19.0mm t...

  • calculation WFC confidence 0.70

    WFC design session v32: best candidate (Q=22.3, 97.7kHz)

    **Sweep** — Hunt the 80-250 Td window by dropping cell voltage (lower peak_v) at a moderate 3-5mm gap with normal 12-20mm rods that keep C_eff high enough to resonate near 45kHz, on the cold/pure/pass...

  • calculation WFC confidence 0.70

    WFC design session v31: best candidate (Q=20.7, 64.5kHz)

    **Sweep** — Widen annular gap into 6-9mm to slide the 0.1mm vapor film down into the 80-250 Td CGDE window at ~800V cell, holding cold/pure water for high R_ct/Q, and re-check C_eff still resonates ne...

  • calculation WFC confidence 0.70

    WFC design session v30: best candidate (Q=13.3, 45.7kHz)

    **Sweep** — Freeze near-v19 tank geometry but attack the Td window directly with a fine electrode-gap × length ladder crossed against a low-mid drive ladder (3-10kV V_cell), holding water cold/pure to...

  • calculation WFC confidence 0.70

    WFC design session v29: best candidate (Q=101.2, 99.4kHz)

    **Sweep** — Lock in v19 tank under drive-duty-v3: Chris-approved 120V low-duty bench point (12.1kV cell at ~196mA average) — exact v19 cell + 0.99mH/129T choke pinned, drive ladder around 120V/2% - **...

  • calculation WFC confidence 0.70

    WFC design session v28: best candidate (Q=23.9, 30.3kHz)

    **Sweep** — Attack 150 Td cold-window from the density side — cold low-ppm high-εr water pins f_r and raises N while wider gap/longer electrodes drop the field, co-swept with peak_v/duty for <200mA av...

  • calculation WFC confidence 0.70

    WFC design session v27: best candidate (Q=82.4, 98.6kHz)

    **Sweep** — Break the cold-pure Q-overshoot trap: pair aggressive thin-film geometry with WARMER/slightly-higher-ppm water to lower tank Q and series current, hunting the Td sweet spot from below the...

  • calculation WFC confidence 0.70

    WFC design session v26: best candidate (Q=78.9, 69.8kHz)

    **Sweep** — screen-guided: live [Water purity, Temperature], refined score 0.742 - **Cell** — 18mm rod in 34.0mm tube × 25mm, 8 cell(s) parallel → C_eff = 1.53nF, bulk water R = 127048Ω. - **Water/ele...

  • calculation WFC confidence 0.70

    WFC design session v25: best candidate (Q=70.9, 72.9kHz)

    **Sweep** — Walk f_r down from ~98kHz toward 60kHz around adopted #1 cell by raising C_eff via colder water (higher εr) and longer/multi-cell electrodes, while testing whether the resulting higher Q l...

  • calculation WFC confidence 0.70

    WFC design session v24: best candidate (Q=38.9, 98.1kHz)

    **Sweep** — Hunt the cell-voltage/Td sweet spot by pushing tank Q via surface treatment and temperature/chemistry around adopted #4 cell, testing whether higher cell voltage lights the vapor film with...

  • calculation WFC confidence 0.70

    WFC design session v23: best candidate (Q=26.9, 99.0kHz)

    **Sweep** — Hold ppm/temp at #1-4's avalanche-crossing values (0.1ppm, 60C) and sweep geometry — larger rod OD, wider gap, longer electrodes — to pull f_r below 100kHz without dropping out of the 80-2...

  • calculation WFC confidence 0.70

    WFC design session v22: best candidate (Q=62.1, 329.3kHz)

    **Sweep** — Fixed #1 geometry: sweep choke-adjacent proxy via water_ppm extended higher and surface_factor combos not yet tried, while checking if cell voltage stays within 80-250 Td Paschen window as...

  • calculation WFC confidence 0.70

    WFC design session v21: best candidate (Q=100.7, 98.8kHz)

    **Sweep** — chemistry/choke sweeps done per plan; now fine-resolve geometry near #1 with cells/length variation to test choke thermal margin at f_r~100kHz while probing if slight gap widening trades a...

  • calculation WFC confidence 0.70

    WFC design session v20: best candidate (Q=100.7, 98.8kHz)

    **Sweep** — Cdl axis exhausted per prior notes; instead fine-resolve geometry around design #1 while holding surface_factor and temperature fixed to seek incremental Q/current gains outside the water-...

  • calculation WFC confidence 0.70

    WFC design session v19: best candidate (Q=101.2, 99.4kHz)

    **Sweep** — Actually reach temperature floor near 0-1°C at fixed #1 geometry, and sweep surface_factor down from 0.25 to test if reduced Cdl area breaks the 900mA current floor - **Cell** — 15.9mm rod...

  • calculation WFC confidence 0.70

    WFC design session v18: best candidate (Q=97.8, 95.9kHz)

    **Sweep** — hold surface_factor at 0.25; push ppm below the 0.1 knee and temperature toward 0°C to test if current drops below 900mA - **Cell** — 15.9mm rod in 20.7mm tube × 76.2mm, 1 cell(s) parallel...

  • calculation WFC confidence 0.70

    WFC design session v17: best candidate (Q=97.5, 95.6kHz)

    **Sweep** — Fine ppm grid 0.1-0.5 at low temp to locate ionic-branch knee, jointly with reduced surface_factor to test double-layer area reduction for current margin recovery - **Cell** — 21.8mm rod i...

  • calculation WFC confidence 0.70

    WFC design session v16: best candidate (Q=97.5, 95.6kHz)

    **Sweep** — Fine 0-10°C grid at fixed geometry/surface (#1) to map Q/current knee, plus ppm sweep above 0.1 to find where ionic branch engages - **Cell** — 21.8mm rod in 26.8mm tube × 60mm, 1 cell(s)...

  • calculation WFC confidence 0.70

    WFC design session v15: best candidate (Q=97.5, 95.6kHz)

    **Sweep** — Hold geometry/cells at adopted #1 (21.8/26.8mm×60mm), jointly sweep surface_factor lower with ppm/temp low-range to attack the ionic branch (Cdl/λ_D) directly rather than fighting it via c...

  • calculation WFC confidence 0.70

    WFC design session v14: best candidate (Q=97.5, 95.6kHz)

    **Sweep** — Vary gap/length/cell-count at fixed adopted water point (0.1ppm/3°C) to find geometry that drops series current below 900mA without sacrificing Q - **Cell** — 21.8mm rod in 26.8mm tube × 6...

  • calculation WFC confidence 0.70

    WFC design session v13: best candidate (Q=97.5, 95.6kHz)

    **Sweep** — Fine grid on ppm and temperature independently at fixed geometry/single-cell/surface x0.5 to locate any bulk-R minimum below baseline that could raise Q/current headroom - **Cell** — 21.8m...

  • calculation WFC confidence 0.70

    WFC design session v12: best candidate (Q=91.2, 96.1kHz)

    **Sweep** — Choke turns/gauge unavailable as direct params, so instead push into water/electrode chemistry space (ppm, temp, surface_factor) at fixed adopted geometry to find non-geometric Q/current h...

  • calculation WFC confidence 0.70

    WFC design session v11: best candidate (Q=67.6, 100.0kHz)

    **Sweep** — Hold adopted choke design fixed; sweep rod/tube gap and length around adopted geometry to raise water resistance and tank Q without collapsing capacitance, and test paralleled cells vs sin...

  • calculation WFC confidence 0.70

    WFC design session v10: best candidate (Q=66.7, 99.1kHz)

    **Sweep** — sweep choke turns/wire gauge to raise coil Q past 707 toward theoretical ceiling, testing if tank Q exceeds 65 while holding adopted cell geometry fixed - **Cell** — 22.8mm rod in 29.5mm t...

  • calculation WFC confidence 0.70

    WFC design session v9: best candidate (Q=64.9, 99.1kHz)

    **Sweep** — Decouple tube wall/cell length around adopted geometry and test multi-cell stacking (1-3) to find Q gains beyond choke-fixed cell tuning - **Cell** — 22.8mm rod in 29.5mm tube × 76.2mm, 1...

  • calculation WFC confidence 0.70

    WFC design session v8: best candidate (Q=62.4, 98.3kHz)

    - **Cell** — 15.9mm rod in 22.3mm tube × 101.6mm, 1 cell(s) parallel → C = 1.31nF, water R = 87585Ω. - **Chokes** — 2 × 0.001H (100 turns, AWG 24, 12m wire, AC R 1.2Ω each). - **At resonance f_r = 98....

Electrical Particle Generator 3 · by subsystem

  • calculation EPG confidence 0.70

    EPG design session v5: best candidate (η=60.5%, 176.4W)

    **Sweep** — Break the I²R wall with heavier AWG at fixed turns, push velocity past laminar to test EMF-vs-hydraulic scaling, and drive coil/pitch modulation below 0.10 to find diminishing-ripple onset...

  • calculation EPG confidence 0.70

    EPG design session v4: best candidate (η=59.6%, 231.3W)

    **Sweep** — Separate hydraulic cost from induced EMF via velocity sweep, push modulation depth at lower copper via pitch-vs-coil-length, and evaluate at the matched ~40Ω load instead of 100Ω. > Score...

  • calculation EPG confidence 0.70

    EPG design session v3: best candidate (η=68.9%, 66.8W)

    **Sweep** — base grid > Score 0.931 — η 68.9%, 66.78 W net - **Pathway** — bore 80.0mm, loop 1000mm, spiral pitch 80mm - **Coil array** — 4 × 1800 turns AWG18, 10mm long (1900m wire, 39.77Ω) - **Mediu...

Steam Resonator 1 · by subsystem