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Oscillating Reed Switch Pulse Motor.

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  • Bob Smith
    replied
    Originally posted by Allen Burgess View Post
    I read something over twenty years ago, I couldn't fully understand; I'm repeating now:

    "Any ordinary transformer can be turned into an overunity generator with a primary input pulse of correct length and intensity".

    All the input pulse needs is the correct frequency and amplitude to shift the magnetic vector 90 degrees to generate gain!
    I think I understand your point here, Allen, if read in the context of all your posts leading to this one. One thing that strikes me is the notion of a multi stranded (Litz wire) primary, as you elaborated a few posts back. When we pulse wire strands in parallel, the amperage will multiply. This would mean a larger magnetic pulse, which in turn should produce a larger longitudinal (perpendicular) impulse.

    I think the genius of the TPU involved this very point. If a small pulse could be collected from the ambient medium in a cap and discharged into a multi-stranded wire, then we'd have a multiplied magnetic pulse and accompanying longitudinal impulse for collection. I would think that in this way, the TPU would be do-able without any input other than what the ambient might supply.

    I can get into more specifics, but will await your comment. I don't want to lead your thread off course. Enjoying your posts.
    Bob

    Leave a comment:


  • Allen Burgess
    replied
    Larmor frequencies

    Chosen nuclei in the region of 0 to 440 MHz
    at a field corresponding to 400 MHz proton frequency

    Isotope Symbol Name Spin Natural
    Abund. % Receptivity
    (rel. to 13C) Magnetic
    Moment Gamma
    (x 10^7
    rad/Ts) Quadrup.
    Moment
    Q/fm^2 Frequency Reference
    191 Ir Iridium 3/2 37.30000 0.06412 0.19460 0.48120 81.60000 6.872
    197 Au Gold 3/2 100.00000 0.16294 0.19127 0.47306 54.70000 6.916
    235 U Uranium 7/2 0.72000 --- -0.43000 -0.52000 493.60000 7.366
    193 Ir Iridium 3/2 62.70000 0.13765 0.21130 0.52270 75.10000 7.484
    187 Os Osmium 1/2 1.96000 0.00143 0.11198 0.61929 --- 9.129 OsO4
    179 Hf Hafnium 9/2 13.62000 0.43824 -0.70850 -0.68210 379.30000 10.068
    41 K Potassium 3/2 6.73020 0.03341 0.27740 0.68607 7.11000 10.245 KCl
    167 Er Erbium 7/2 22.93000 --- -0.63935 -0.77157 356.50000 11.520
    155 Gd Gadolinium 3/2 14.80000 --- -0.33208 -0.82132 127.00000 12.280
    103 Rh Rhodium 1/2 100.00000 0.18600 -0.15310 -0.84680 --- 12.746 Rh(acac)3 p
    57 Fe Iron 1/2 2.11900 0.00425 0.15696 0.86806 --- 12.951 Fe(CO)5
    145 Nd Neodymium 7/2 8.30000 --- -0.74400 -0.89800 -33.00000 13.440
    161 Dy Dysprosium 5/2 18.91000 --- -0.56830 -0.92010 250.70000 13.760
    149 Sm Samarium 7/2 13.82000 --- -0.76160 -0.91920 7.40000 13.760
    73 Ge Germanium 9/2 7.73000 0.64118 -0.97229 -0.93603 -19.60000 13.953 (CH3)4Ge
    83 Kr Krypton 9/2 11.49000 1.28235 -1.07311 -1.03310 25.90000 15.390 Kr
    177 Hf Hafnium 7/2 18.60000 1.53529 0.89970 1.08600 336.50000 16.028
    157 Gd Gadolinium 3/2 15.65000 --- -0.43540 -1.07690 135.00000 16.120
    107 Ag Silver 1/2 51.83900 0.20500 -0.19690 -1.08892 --- 16.191 AgNO3
    183 W Tungsten 1/2 14.31000 0.06310 0.20401 1.12824 --- 16.666 Na2WO4
    147 Sm Samarium 7/2 14.99000 --- -0.92390 -1.11500 -25.90000 16.680
    87 Sr Strontium 9/2 7.00000 1.11765 -1.20902 -1.16394 33.50000 17.335 SrCl2
    105 Pd Palladium 5/2 22.33000 1.48824 -0.76000 -1.23000 66.00000 18.304 K2PdCl6
    99 Ru Ruthenium 5/2 12.76000 0.84706 -0.75880 -1.22900 7.90000 18.421 K4[Ru(CN)6]
    109 Ag Silver 1/2 48.16100 0.29000 -0.22636 -1.25186 --- 18.614 AgNO3
    39 K Potassium 3/2 93.25810 2.80000 0.50543 1.25006 5.85000 18.665 KCl
    163 Dy Dysprosium 5/2 24.90000 --- 0.79580 1.28900 264.80000 19.280
    173 Yb Ytterbium 5/2 16.13000 --- -0.80446 -1.30250 280.00000 19.284
    89 Y Yttrium 1/2 100.00000 0.70000 -0.23801 -1.31628 --- 19.601 Y(NO3)3
    101 Ru Ruthenium 5/2 17.06000 1.59412 -0.85050 -1.37700 45.70000 20.645 K4[Ru(CN)6]
    143 Nd Neodymium 7/2 12.20000 --- -1.20800 -1.45700 -63.00000 21.800
    47 Ti Titanium 5/2 7.44000 0.91765 -0.93294 -1.51050 30.20000 22.550 TiCl4
    49 Ti Titanium 7/2 5.41000 1.20588 -1.25201 -1.51095 24.70000 22.556 TiCl4
    53 Cr Chromium 3/2 9.50100 0.50765 -0.61263 -1.51520 -15.00000 22.610 K2CrO4
    40 K Potassium 4 0.01170 0.00360 -1.45132 -1.55429 -7.30000 23.208 KCl
    25 Mg Magnesium 5/2 10.00000 1.57647 -1.01220 -1.63887 19.94000 24.487 MgCl2
    67 Zn Zinc 5/2 4.10000 0.69412 1.03556 1.67669 15.00000 25.027 Zn(NO3)2
    95 Mo Molybdenium 5/2 15.92000 3.06471 -1.08200 -1.75100 -2.20000 26.068 Na2MoO4
    201 Hg Mercury 3/2 13.18000 1.15882 -0.72325 -1.78877 38.60000 26.446 (CH3)2HgD
    97 Mo Molybdenium 5/2 9.55000 1.95882 -1.10500 -1.78800 25.50000 26.615 Na2MoO4
    43 Ca Calcium 7/2 0.13500 0.05106 -1.49407 -1.80307 -4.08000 26.920 CaCl2
    14 N Nitrogen 1 99.63200 5.88235 0.57100 1.93378 2.04400 28.905 CH3NO2
    33 S Sulfur 3/2 0.76000 0.10118 0.83117 2.05568 -6.78000 30.704 (NH4)2SO4
    189 Os Osmium 3/2 16.15000 2.32353 0.85197 2.10713 85.60000 31.062 OsO4
    21 Ne Neon 3/2 0.27000 0.03912 -0.85438 -2.11308 10.15500 31.577 Ne
    176 Lu Lutetium 7 2.59000 --- 3.38800 2.16840 497.00000 32.524
    37 Cl Chlorine 3/2 24.22000 3.87647 0.88320 2.18437 -6.43500 32.623 NaCl
    131 Xe Xenon 3/2 21.18000 3.50588 0.89319 2.20908 -11.40000 32.976 XeOF4
    169 Tm Thulium 1/2 100.00000 --- -0.40110 -2.21800 --- 33.160
    61 Ni Nickel 3/2 1.13990 0.24059 -0.96827 -2.39480 16.20000 35.744 Ni(CO)4
    91 Zr Zirconium 5/2 11.22000 6.29412 -1.54246 -2.49743 -17.60000 37.185 Zr(C5H5)2Cl2
    85 Rb Rubidium 5/2 72.17000 45.11765 1.60131 2.59271 27.60000 38.620 RbCl
    35 Cl Chlorine 3/2 75.78000 21.05882 1.06103 2.62420 -8.16500 39.192 NaCl
    135 Ba Barium 3/2 6.59200 1.94118 1.08178 2.67550 16.00000 39.738 BaCl2
    50 V Vanadium 6 0.25000 0.81765 3.61376 2.67065 21.00000 39.881 VOCl3
    15 N Nitrogen 1/2 0.36800 0.02250 -0.49050 -2.71262 --- 40.547 MeNO2
    10 B Boron 3 19.90000 23.23529 2.07921 2.87468 8.45900 42.975 BF3.Et2O
    153 Eu Europium 5/2 52.19000 --- 1.81390 2.93690 241.20000 43.920
    137 Ba Barium 3/2 11.23200 4.62941 1.21013 2.99295 24.50000 44.452 BaCl2
    175 Lu Lutetium 7/2 97.41000 --- 2.53160 3.05520 349.00000 45.616
    181 Ta Tantalum 7/2 99.98800 220.00000 2.68790 3.24380 317.00000 47.958 KTaCl6
    123 Sb Antimony 7/2 42.79000 117.05882 2.89120 3.48920 -49.00000 51.837 KSbCl6
    133 Cs Cesium 7/2 100.00000 284.70588 2.92774 3.53325 -0.34300 52.465 CsNO3
    138 La Lanthanum 5 0.09000 0.49765 4.06809 3.55724 45.00000 52.777 LaCl3
    17 O Oxygen 5/2 0.03800 0.06529 -2.24077 -3.62808 -2.55800 54.226 D2O
    9 Be Beryllium 3/2 100.00000 81.76471 -1.52014 -3.75967 5.28800 56.207 BeSO4
    139 La Lanthanum 7/2 99.91000 355.88235 3.15568 3.80833 20.00000 56.503 LaCl3
    6 Li Lithium 1 7.59000 3.79412 1.16256 3.93717 -0.08080 58.864 LiCl
    2 H Deuterium 1 0.01150 0.00653 1.21260 4.10663 0.28600 61.402 (CD3)4Si
    209 Bi Bismuth 9/2 100.00000 847.05882 4.54440 4.37500 -51.60000 64.277 Bi(NO3)2
    75 As Arsenic 3/2 100.00000 149.41176 1.85835 4.59616 31.40000 68.490 NaAsF6
    171 Yb Ytterbium 1/2 14.28000 --- 0.85506 4.72880 --- 69.997
    199 Hg Mercury 1/2 16.87000 5.89000 0.87622 4.84579 --- 71.643 Me2Hgr
    77 Se Selenium 1/2 7.63000 3.15000 0.92678 5.12539 --- 76.286 Me2Se
    29 Si Silicon 1/2 4.68320 2.16000 -0.96179 -5.31900 --- 79.469 Me4Si
    127 I Iodine 5/2 100.00000 561.17647 3.32871 5.38957 -71.00000 80.030 KI
    207 Pb Lead 1/2 22.10000 11.80000 1.00906 5.58046 --- 83.682 Me4Pb
    111 Cd Cadmium 1/2 12.80000 7.27000 -1.03037 -5.69831 --- 84.862 Me2Cd
    165 Ho Holmium 7/2 100.00000 --- 4.73200 5.71000 358.00000 85.360
    195 Pt Platinum 1/2 33.83200 20.70000 1.05570 5.83850 --- 85.987 Na2PtCl6
    113 In Indium 9/2 4.29000 88.82353 6.11240 5.88450 79.90000 87.463 In(NO3)3
    115 In Indium 9/2 95.71000 1988.23529 6.12560 5.89720 81.00000 87.651 In(NO3)3
    113 Cd Cadmium 1/2 12.22000 7.94000 -1.07786 -5.96092 --- 88.773 Me2Cd
    99 Tc Technetium 9/2 0.00000 --- 6.28100 6.04600 -12.90000 90.033 NH4TcO4
    185 Re Rhenium 5/2 37.40000 305.29412 3.77100 6.10570 218.00000 90.098 KReO4
    187 Re Rhenium 5/2 62.60000 526.47059 3.80960 6.16820 207.00000 91.006 KReO4
    59 Co Cobalt 7/2 100.00000 1635.29412 5.24700 6.33200 42.00000 94.908 K3[Co(CN)6]
    121 Sb Antimony 5/2 57.21000 548.82353 3.97960 6.44350 -36.00000 95.722 KSbCl6
    69 Ga Gallium 3/2 60.10800 246.47059 2.60340 6.43886 17.10000 96.005 Ga(NO3)3
    159 Tb Terbium 3/2 100.00000 --- 2.60000 6.43100 143.20000 96.160
    45 Sc Scandium 7/2 100.00000 1776.47059 5.39335 6.50880 -22.00000 97.167 Sc(NO3)3
    93 Nb Niobium 9/2 100.00000 2870.58824 6.82170 6.56740 -32.00000 97.905 K[NbCl6]
    55 Mn Manganese 5/2 100.00000 1052.94118 4.10424 6.64525 33.00000 99.157 KMnO4
    151 Eu Europium 5/2 47.81000 --- 4.10780 6.65100 90.30000 99.440
    79 Br Bromine 3/2 50.69000 237.05882 2.71935 6.72562 31.30000 100.216 NaBr
    13 C Carbon 1/2 1.07000 1.00000 1.21661 6.72828 --- 100.580 Me4Si
    27 Al Aluminum 5/2 100.00000 1217.64706 4.30869 6.97627 14.66000 104.227 Al(NO3)3
    123 Te Tellurium 1/2 0.89000 0.96100 -1.27643 -7.05910 --- 104.679 Me2Te
    51 V Vanadium 7/2 99.75000 2252.94118 5.83808 7.04551 -5.20000 105.212 VOCl3
    23 Na Sodium 3/2 100.00000 545.29412 2.86298 7.08085 10.40000 105.808 NaCl

    63 Cu Copper 3/2 69.17000 382.35294 2.87549 7.11179 -22.00000 106.062 [Cu(CH3CN)4][ClO4]

    81 Br Bromine 3/2 49.31000 288.82353 2.93128 7.24978 26.20000 108.026 NaBr
    129 Xe Xenon 1/2 26.44000 33.60000 -1.34749 -7.45210 --- 111.241 XeOF4
    65 Cu Copper 3/2 30.83000 208.23529 3.07465 7.60435 -20.40000 113.615 [Cu(CH3CN)4][ClO4]
    71 Ga Gallium 3/2 39.89200 335.88235 3.30787 8.18117 10.70000 121.987 Ga(NO3)3
    141 Pr Praseodymium 5/2 100.00000 --- 5.05870 8.19070 -5.89000 122.480
    125 Te Tellurium 1/2 7.07000 13.40000 -1.53894 -8.51084 --- 126.199 Me2Te
    11 B Boron 3/2 80.10000 776.47059 3.47103 8.58470 4.05900 128.336 BF3.Et2O
    115 Sn Tin 1/2 0.34000 0.71100 -1.59150 -8.80130 --- 130.875 Me4Sn
    87 Rb Rubidium 3/2 27.83000 290.00000 3.55258 8.78640 13.35000 130.882 RbCl
    117 Sn Tin 1/2 7.68000 20.80000 -1.73385 -9.58879 --- 142.529 Me4Sn
    119 Sn Tin 1/2 8.59000 26.60000 -1.81394 -10.03170 --- 149.163 Me4Sn
    7 Li Lithium 3/2 92.41000 1594.11765 4.20408 10.39770 -4.01000 155.455 LiCl
    31 P Phosphorus 1/2 100.00000 391.00000 1.95999 10.83940 --- 161.923 H3PO4
    203 Tl Thallium 1/2 29.52400 340.00000 2.80983 15.53933 --- 228.493 Tl(NO3)3
    205 Tl Thallium 1/2 70.47600 836.00000 2.83747 15.69218 --- 230.735 Tl(NO3)3
    3 He Helium 1/2 0.00014 0.00356 -3.68515 -20.38016 --- 304.718 He
    19 F Fluorine 1/2 100.00000 4900.00000 4.55333 25.18148 --- 376.376 CCl3F
    1 H Hydrogen 1/2 99.98850 5870.00000 4.83735 26.75221 --- 400.000 Me4Si
    3 H Tritium 1/2 0.00000 --- 5.15971 28.53498 --- 426.656 Me4Si-t1

    Links to NMR Periodic Tables and NMR frequency listings
    Last edited by Allen Burgess; 10-31-2016, 11:27 PM.

    Leave a comment:


  • Allen Burgess
    replied
    Larmor frequency and "Spin Flip"

    These basics of MR physics help to explain the magnetic vector shift: It makes it really simple to understand using the example of the single proton of the Hydrogen atom on the left below; When the input frequency's higher then the nuclear spin rate in Hertz, the precessing proton flips over, like we see on the left and we get the magnetic vector shift at 90 degrees! The copper atom has 29 positively charged protons, they spin like planets, generate magnetic fields and have a precession angle like Earth:

    Look at this video on the copper atom: I believe the Larmor frequency for the copper [Cu(CH3CN)4][ClO4] proton is approximately 106.062 megahertz in a magnet field of 1 Tesla strength.

    Last edited by Allen Burgess; 10-22-2017, 10:33 PM.

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  • Allen Burgess
    replied
    Transformer and vector shift.

    I read something over twenty years ago, I couldn't fully understand; I'm repeating now:

    "Any ordinary transformer can be turned into an overunity generator with a primary input pulse of correct length and intensity".

    All the input pulse needs is the correct frequency and amplitude to shift the magnetic vector 90 degrees to generate gain!
    Last edited by Allen Burgess; 10-31-2016, 05:04 PM.

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  • Allen Burgess
    replied
    Pulse length and intensity causing magnetization vector shift.

    This is very highly illuminating for me:

    The magnetization vector is moved by an angle proportional to the length and intensity of the pulse."Length and Intensity of Pulse" determines magnetization vector shift!

    This pulse induced "Magnetic Vector Shift" can cause nested coils to transition from "Transformer" to "Generator" induction!

    Take a close look at this diagram below:
    Last edited by Allen Burgess; 10-22-2017, 10:33 PM.

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  • Allen Burgess
    replied
    Nuclear Magnetic Resonace Pulse

    @Bob Smith,

    Thanks for the orthogonal lead, It helped me uncover these finds:

    Look at the diagram on the left of the NMR. 1T is 90 degrees, and 2T is 180 degrees:

    Next we see a flat upper primary winding on the perpendicular to the solenoid in Tesla's first radio broadcast transmitter:


    Fig. 4 illustrates a flat-spiral Tesla winding (upper) as a primary winding at the center of a fine-wire-solenoid of thousands of turns as the secondary winding.

    The connection between magnetic field vector and pulse timing in the NMR diagram below may help explain the mystery behind the Akula and Kapanadze induction coils.
    Last edited by Allen Burgess; 10-22-2017, 10:33 PM.

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  • Bob Smith
    replied
    Hi Allen
    So if I understand correctly, you're saying that the wire that goes along the toroid's outer rim is basically litz wire (individual strands joined at both ends) that is pulsed, and the perpendicular winding over it is what is picking up the radiant/scalar/longitudinal impulses? This is how I understand what you've been presenting (noting that with more or heavier gauge litz windings, you're getting larger magnetic response and radiant impulses to pick up with the perpendicular windings). Am I correct in this understanding?

    Bob

    Edit: If this is indeed the case, then we have orthogonal windings. Typing [orthogonal windings Tesla] into a search engine will produce interesting results.
    Last edited by Bob Smith; 10-30-2016, 10:31 PM.

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  • Allen Burgess
    replied
    Pulse interuption.

    This message was deleted.
    Last edited by Allen Burgess; 10-30-2016, 05:03 PM.

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  • Allen Burgess
    replied
    Magnetic force and Radient output.

    Hob Nilre's magnetic force to unit of copper mass for fixed input ratio should be mirrored by the same proportion in the TPU. Radient power, and the accompanying magnetic field should increase with additional copper mass per fixed unit of pulsed high voltage spark gap power; To the same degree that increased copper mass adds to the attraction force of an electro-magnet.

    Leave a comment:


  • Allen Burgess
    replied
    Uninsulated copper wire.

    Here's 500 feet of uninsulated #8 gauge copper wire from "Home Depot". We could saw through this, and solder copper disks to the cut ends to act as electrodes. Wrapped with electrical tape, then wound with 2 strand speaker wire for output; This would deliver kilowatts of power!
    Last edited by Allen Burgess; 10-22-2017, 10:33 PM.

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  • Allen Burgess
    replied
    Radient wave and electron lattice.

    Why does the magnetic vector shift 90 degrees from radial to axial in the high voltage electrode wire?

    Ohm's law describes the lowered resistance caused by increased voltage. The high voltage D.C. creates a pathway for the "Radient Wave" wake that floods into the wire from the electron lattice following the implosive evacuating collapse. The collapse scours the wire of electrons, and the more highly charged electron surroundings flow into the negative zone to restore the balance. The copper wire dielectric has already been instantly neutralized by the high voltage and a viaduct for the resurgence established.

    The new current originates from the "Quantum Plane"; from the sub atomic outward to the "Macro-Dimension". This new "Longitudinal Wave" current is traveling sideways through the wire, forming magnetic poles to either side, which turns out to be end to end. A longitudinal wave is merely a transverse wave traveling sideways. The Hob Nilre proportion of copper mass to magnetic field strength probably has a close corollary in the generation of this kind of "Zero Point Energy".

    The radient longitudinal wave can be collected from the HV wire with a perpendicular winding as output. Wrapping the low voltage concentric field wire would yield nothing from a pulse, because the windings would run parallel to the current generated magnet field.

    A series bifilar solenoid coil with a wide core filled with thick uninsulated copper wire would probably work best. I plan to build and test one as soon as my HV D.C converter arrives.
    Last edited by Allen Burgess; 10-27-2016, 12:26 AM.

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  • Allen Burgess
    replied
    "Oersted Paradox".

    The motion of the axial magnets over the wires in these two videos, coupled with Tom Bearden's illustration and discription below explains the secret behind the power of the TPU:

    First we see the magnets "Spinning" from the magnet field in the Oersted video:



    Then we see the magnets "Rocking" from the radient energy wave in the high voltage wire:



    The "Radient Waves" are actually traveling sideways through the high voltage wire!

    Quote from Tom Bearden:

    "The wave radiates out horizontally from the vertical wire"! We have the concentric "Magnet Field" in the wire of the first Oersted test video and the "Radient Energy Wave" on the perpendicular in the high voltage wire test video.

    I'm calling this the "Oersted Paradox" and a verifiable proof of ZPE. Our TPU replicators really fail to understand this basic operating principle!
    Last edited by Allen Burgess; 10-22-2017, 10:33 PM.

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  • Allen Burgess
    replied
    Earth Magnetic field.

    Akula maintains his TPU is tapping power from Earth's magnetic field. This shows Akula really dosen't understand where the power's comming from. The "Earth Field" exerts an influence, but Tom Bearden explains the source with deeper understanding. Akula's "Earth Field" theory has cost him credibility.

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  • Allen Burgess
    replied
    At 15:25 in this 1 watt dismanteling video, we see a closeup of the first layer of Akula's coil: It's definitly copper wire! The exterior output wrap is on the perpendicular as you can plainly see in the earlier part of the video.



    The $3.99 3-6v to 400KV D.C. converter off ebay should do an even better job then his homemade input circuit.
    Last edited by Allen Burgess; 10-25-2016, 09:15 PM.

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  • Allen Burgess
    replied
    Wesley explaining Akula.

    Wesley's schematic. Core pulsing:
    Dally thread Grumage: core pulsing
    Bifilar output coil in aiding mode.

    Take a look at the diagram below; Wesley uses it to explain Akula's TPU. There's a high voltage transformer on the left. The HV positive electrode's connected to one end of a very thick rod that is grounded through a "Spark Gap" on the other side. The Khz frequency's controlled by the spark gap. The thick rod is wrapped with a one layer output coil.

    This is identical to the ignition coil wire and spark gap circuit I used to get the longitudinal spin wave in my last few videos. Here we see Akula with the an output coil on the HV electrode wire as I proposed, but notice the end connected to the high voltage ground. One can see that this is exactly what I came up with independently from my particular angle of testing!

    The magnetic poles in Akula's core form end to end not side to side. The transverse wave travels sideways through the core as "Longitudinal". The sideways current is ZPE!
    Last edited by Allen Burgess; 10-22-2017, 10:33 PM.

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