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My Replication Journal

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Page 1: My Replication Journal
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The Plasma globe Magnetic Flux Amplification
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This Illuma Storm, plasma globe will output about 400 Miligauss of magnetic induction Don said, 1 miligauss is equal is equal to 100 volts of magnet induction. So 400 X 100 = 40,000 volts of magnetic induction. When Transformed back into Electrical Flux it provides a very Large increase, becoming a Self Powered Energy Source.
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This prospect excites me so much I must join in this hunt.
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With Respect and honor I wish to dedicate this study to my dad and mom. James Franklin Muckey 1927-2004, Who believed in the American way, "a boomer", who followed union work nearly all his life. And my mother Sandra Lee Griffin, whom dedicates her life to each of her children. She taught me tenasity and grace. Remembering, This day Augest 25 2009 Dustan Zane Muckey.
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I acknowlege Donnald L Smith CEO of Trans World Energy as the supplier and original creator of this work I am replicating. He is the authority in this field and as such I feel it my obligation to "see for myself", weather the things defined are actual laws of our universe!
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Device 4 . . .A High Gauss Source . . . Magnetic Flux from The Plasma, Generates Useful Energy. One Gauss equals the Magnetic Flux equivalent equal to 100,000. Volts of Electrical Energy. When Transformed back into Electrical Flux it provides a very Large increase, becoming a Self Powered Energy Source.
Page 2: My Replication Journal
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Intentions and Scope of Project
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Don own intuition has led him to devoloped many working models,and too has compiled the electrical relationship understanding necessary to impiment these concepts. As Don has given this information and as the Establishment has chosen to hide it. I say we individuals are called to prove and expose this knowlege.
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Don states, if we chase the magnetic component of electricty we will succeed in this research. We must decide how to recognise what magnetic flux is, and understand how to change it into electrical flux.
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Observations
Page 3: My Replication Journal
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Tesla's are the measurement of Magnetic Flux Density One Tesla and One Weber are equal
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With the following information we can deduct how many Teslas' are necessary to produce any quantity of electricty.
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Tesla milli-T (mT) Gauss (G) micro-T (uT) milli-G (mG) Gamma (Gm) 1 T = 1 1,000 10,000 1,000,000 10,000,000 100,000,000 1 mT= .001 1 10 1,000 10,000 100,000 1 G = .000,1 .1 1 100 1,000 10,000 1 uT= .000,001 .001 .01 1 10 100 1 mG= .000,000,1 .000,1 .001 .1 1 10 1 Gm .000,000,01 .000,01 .000,1 .01 .1 1
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Henry (H) milli-H (mH) micro-H (µH) nano-H (nH) pico-H (pH) 1 H 1 1,000 1,000,000 1,000,000,000 1,000,000,000,000 1 mH .001 1 1,000 1,000,000 1,000,000,000 1 µH .000,001 .001 1 1,000 1,000,000 1 nH .000,000,001 .000,001 .001 1 1,000 1 pH .000,000,000,001 .000,000,001 .000,001 .001 1
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Farads (F) micro-F (µF) nano-F (nF) pico-F (pF) 1 F 1 1,000,000 1,000,000,000 1,000,000,000,000 1 µF .000,001 1 1,000 1,000,000 1 nF .000,000,001 .001 1 1,000 1 pF .000,000,000,001 .000,001 .001 1
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Capacitor formula; W = .5 X CE X C.P.S. W = energy in joules (watt seconds) C = capacitance in farads E = applied potential in volts squared Inductor (Coil ) formula; W = .5 X LI X C.P.S. W = energy in joules (watt seconds) L = inductance in henrys I = current in amperes squared
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Flux lines are created by; the fliping motion related to an A/C impulse. Causes; One.............. Induction-henrys-amperage, Two...............Capacitance-coulombs-volts, Both being defined; electrical energy.
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Each one henry, one farad and .1 gamma = 1 Volt >>> One Gamma is equal to 10 active Volts of electricty. >>> 24 gamma will equal 240 Volts >>> One Oersted is equal to 50,000 volts. >>> One gauss is equal to 100,000 volts. >>>
Page 4: My Replication Journal
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Compilation Notes:
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Let us examine this backwards and start with a conventional output transformer. Consider one which has the required voltage and current handling characteristics and which acts as an isolation transformer. This is needed to determine the amount of electricty you gather.
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Only the magnetic flux passes through the input winding. No electrons pass through from the input side to the output side. Therefore, we only need to flux the output side of the transformer to have an electrical output.
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A power correction factor system, being a capacitor bank, maintains an even flow of flux. These same capacitors, when used with a coil system (Your isolation transformer input side) become a frequency-timing system. Therefore, the inductance of the input side of the transformer, when combined with the capacitor bank, provides the required fluxing to produce the required electrical energy (cycles per second).
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How it all works
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Any feedback , Ideas, or communication; send to [email protected]
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Tesla symposium 1996 Notes: Missing information found are numerous as follows; by Part # on u-tube. http://www.youtube.com/watch?v=6mV89RvaBYk&feature=related
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This is a 5 part video http://www.youtube.com/user/cosmolv
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This metacafe video is best viewed by the metacafe-pro program. http://www.metacafe.com/watch/2820531/don_smith_free_energy/
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Quantum neon DS replications http://www.youtube.com/watch?v=CrTYjaCc_hY
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http://www.youtube.com/watch?v=Nutub2iNr48
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1996 Tesla Symposium 1 of 19 videos http://www.youtube.com/watch?v=6mV89RvaBYk&feature=related
Page 5: My Replication Journal

In coil systems, magnetic and amperage are one package. This suggests that electrons in their natural non-ionic state, exist as doublets. When pushed apart by agitation, one spins right (yielding Volts-potential electricity) and the other spins left (yielding Amperage-magnetic energy), one being more negative than the other. This further suggests that when they reunite, we have (Volts x Amps = Watts) useful electrical energy. Until now, this idea has been totally absent from the knowledge base. The previous definition of Amperage is therefore flawed.

Electron Related Energy

Left hand spin of electrons results in Electrical Energy and right hand spin results in Magnetic Energy. Impacted electrons emit visible Light and heat.

Useful Circuits, Suggestions for Building an Operational Unit

3 - 30

Zane
What is Electricty, and how is it Collected?
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In coil systems, magnetic and amperage are one package. This suggests that electrons in their natural nonionic state, excist as doublets. When pushed apart by agitation, one spins right (yealding Volts-potential electricty) and the other spins left (yealding Amperage-magnetic energy), one being more negitive than the other. This further suggests that when they reunite, we have (Volts X Amps = Watts) useful electrical energy. Until now, this idea has been totally absent from the knowlege base. The previous deffinition of Amperage is therefore flawed.
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Left hand spin of electrons results in Electrical Energy and right hand spin results in Magmetic Energy. Impacted electrons emit visible Light and heat.
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We now venture, a new window opens to see the light of electricty. From a magnetic impulse, we must measure to extrapilate the potential and amperage.
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Electricty is a mystery!
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For Voltage, the Correct Method of Measurment.. Use the inverse square law with an electrostatic volt meter. Measure at a safe distance, they are frequncy nonspacific.
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For Amperage, the Correct Method of Measurment.. Use the inverse square law with hall-effect devices, measure from a safe distance. They are normally frequency nonspacific. The magnetic field they measure converts directly to amperage.
Page 6: My Replication Journal
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Derivation of Magnetic and Electric Power
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Analogus relationships: 1. Potential power is present in a bar magnet as shown. 2. The source of these Electrons is from Solar Plasma, are non ionic and occupy all Free Space. They are commonly obtained from Earth and air Groundings. They excist in Doublet Pairs, one being more negative than the other. The more negative has a Left Hand Spin, The less negative has a Right Hand Spin. 3. Resonant Electrical Coil Systems, (Tesla) are Analogus to the system observed in the Bar Magnet, (below).
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The Block Wall is located at the base of the L-2 Coil.
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The Left Spin portion (Voltage Only) part of the Coil predominates. The more negative has a Left Hand Spin. The right hand spin (magnetic-Amperage), portion is mostly absent. The less negative has a Right Hand Spin.
Page 7: My Replication Journal
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<
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Tesla Coil Geometry *
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Electron-Volts
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Curent-Ampers
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Correct Method of Measurment.. Use the inverse square law with an electrostatic volt meter Measure at a safe distance, they are frequncy nonspacific.
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Correct Method of Measurment.. Use the inverse square law with hall-effect devices, measure from a safe distance. They are normally frequency nonspacific The magnetic field they measure converts direct- ly to amperage.
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This End has Greater Amperage Distributive Inductance at Maximum Induction-Henrys-Amperage Amperage has electrons spinning to the right.
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Volts dominate if L-1 coil is far to the right. Volts and amperage is about equal when L-1 coil is centered.
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This End has Greater Voltage Distributive Capcitance at maximum Capacitance-couloumbs- Voltage. Voltage have Electrons spinning to the Left.
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Volts represents the more negative and amperes the less negative, therefore the electrical charge of more negative must seek the charge of less negative to regain Ambient.
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As seen above flux lines are created by; One.............. Induction-henrys-amperage, Two...............Capacitance-coulombs-volts, Both being defined; electrical energy. The faster they are pumped the more created within the system.
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Ignorance in how to measure and relate magnetic and electrical flux, is the chief weapon of the under unity gaggle. This is the POISON we are attacked with. If we are to believe Don, This is the Rabit we are hunting. Will this be our nemesis or our discovery?
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I believe if I read it correct that the representation for volts below is incorrect. As stated below "Voltage has Electrons spinning to the Left' This should be pictured like Left hand threads. Amperes should be pictured as right hand threads as below pictured. Right now it is pictured as an all-thread, "Right hand threads".
Page 8: My Replication Journal
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1. Random movement of electrons in "A" and "B" mostly cancel out each other. 2. "C" (Volt Amperes Reactive V.A.R) All electrons move in the same direction at the same time. Therefore, near unity energy output by resonant induction transfer. 3. Resonant induction transfer from one isolation power system allows other resonant induction systems to duplicate the original source, which in no way diminishes the original source. Air core coils, (Isolation Transformers) when part of a functioning system confirm this. 4. Resonant induction transfer disturbes a large amount of adjacent electrons which were not part of the original source. The pulsating- pumping effect then encorporates the newley available extra electrons into the ongoing energy generation source-system.
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Note: A near unity energy system of resonant air core coils, then coupled with, "the extra aquired electron-energy source", (Earth and or air groundings), this constitutes an over unity system.
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L-1 and L-2 coil; resonant relationships
Page 9: My Replication Journal
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Induced Electrical Energy System
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The increase in flux lines present disturbes more electrons than previous, resulting in over-unity energy being present and available.
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Each unit of increase causes a squaring of the flux lines present.
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The frequency at which the capacitor and coils are pumped determines the amount of electrical energy that moves onward.
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The amount of energy transfered relates directly to the density of the lines of flux present.
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The kenetic energy formula is helpful in establishing the amount of energy present. This formula squares the velocity times mass. In the case of electrical energy, intencity of voltage and amperes times cycles per second replace velocity.
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"Note" The "acceleration" of voltage "E" and Amperage "I" which, [Watt seconds, plus squaring of the Hz] increase as non linier, then obeys the Law of Squares.
Page 10: My Replication Journal
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Page 11: My Replication Journal
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Below 20,00 Hertz per second = Fields Greater than 20,000 Hertz per second = Waves, (Radio frequency)
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Energy Lines of flux (force) Fields and Waves
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Electrical Energy with associated Phoenomina
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3. Magnetic imbalance causes the gravitational effect. 3. A. As two kinds of spark gaps are used, one earth grounded may be - in charge "The grvitationsl Effect" one air grounded may be + charged. "The antigrvitationsl Effect"?
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1. Curent-Ampers result from unequal distribution of negativity (Electrons). 1. A. It is the spark gap; the component that causes this inequality.
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2. Electron spin causes electrical curent and magnetic lines of force. 2. A. Electron spin is caused by frequency.
Page 12: My Replication Journal
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Electrical Energy System Donald L. Smith Energy Consultant
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This explanation will be an exersize of cretive understanding, in placing updated knowlege at your fingertips. Whether it becomes a useful tool or selectively ignored it is your choise. Electrons are defined as a practical source of electrical and magnetic energy. When the electron is agitated it produces magnetic and negative electrical energy. The electron as a particle was postulated by professor J. Thompson in early 1900s. It is now universally accepted the electron exist and it is the source of electricty. Improving upon professor Thompson's postulation, other obvious char- acter defines the electron. It has both electrical and magnetic eman- ation resulting from a right and left hand spin. Since amperage and magnetic are one package this suggests, that electrons in a natural non-ionic state exist as doublets. When pushed apart by agitation one spins and supplies electricty and the other spins and supplies magnetic (amperage) energy. When they reunite, we have Volts X Amperage = Watts. This idea, until now, has been totally absent from the knowledge base. The times an electron is cycled sets the collective energy potential present. The electrical equivelent of E = MC squared is E = (Volts X Amperes) X Cycles Per Second squared. Thoes who choose, are now free to head for the bushes and make there unusual contribution to hymanity.
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Coulomb's and Newtons's inverse square law is ignored and it's opposite is allowed in only in the most abstract status. Without opposites we have no definitions. The source value of a remote flux reading, requires the squaring of the distance, times the remote reading, to obtain the original value. The oposite of this being the derivations relate to Energy equals mass times the velocity constant squared. The Electrical Equivelent; being, energy equal capacitance times voltage squared and too Energy equals induction times amperes squared.
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As seen above flux lines result both from induction-henrys-amperage, and Capacitance-coulombs-volts and defined electrical energy. The nonlinier of this system does not obey ohms law, which is replaced with impedance and reactance for alternating current systems. Impedance is the sum of the system resistance, which becomes Zero at resonance. In resonate induction systems, cycles per seconds increases, which invokes a second round for the law of squares.
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Flux lines increase as the law of squares. The cumulative capacitance and inductance as the distal ends of a Tesla coil are approached, results in energy greater than the input being present. This energy is real when properly understood. It can be safely measured by, "magnetic flux methods and electrostatic voltmeters", based on the inverse square law....
Page 13: My Replication Journal
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The degree to which flux lines are present, disturbs an equal anount of electrons, upsetting ambient, resulting in useful electrical energy.
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The frequency at which the disturbance occurs, obeying the law of squares further accelerates away from ambient, increasing the useful energy available. Two square law entities, flux density and frequency are envoked. Enter resonance which cancels the resistive effect.
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The Masters "Illusive Rabbit" is found!
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Don is saying: (((Frequency is the Pump.>>>>>>> The magnetic flux lines are the Horse.))) Increase the pump speed and you get a bigger horse. That simple!
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The Intensity/CPS of the resonant-frequency-flux rate, sets the available energy. "Potential"
Page 14: My Replication Journal
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Don Smith's "Earths Electrical System II"
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E.E.S. II, BACKROUND INFORMATION and CONCEPT With alternating electrical current, electrons do not move from point "A" to point "B" as normally invisioned! Electrical potential (Oscill- ating electrons) at point "A" result in harmonic electron activity at point "B". When the grounding switch (circuit) is closed. That is to say, point "B" supplies it's own electrons and mirrors the activity at point "A". Impulsing (turbulence) by magnetic induction causes elec- trons to be pulled into the system, which then oscillates. When the magnetic field collapses (becomes absent) the electrical potential returnes to it's natural backround.
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This Statement, "Being pulled into the system" And "the grounding switch" is as my interpritation like the Open door, a way to allow an additional energy to become part of the multiplied system's energy.
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This study will limit it's scope to air core coil transformers at radio frequency and upward. The electrical power produced by this method is inverted to direct current and then to alternating current as required for popular usage.
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These are Don's directions for some of the various devices within his E E S II group.
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To start aquiring this extra energy we need two coils (Separate- apart), L-1 the reactor and L-2 the reactant coil. When L-1 is pulsed with say 1,200 volts A.C. through 10 turns, each turn will recieve 120 volts of potential. This induced magnetic field, then replicates itself in each turn of L-2 coil.
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The Quality of Grounding is of Great value!
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The quality of the grounding system determines the effictiveness of this method of producing electricty.
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Each time Hz's is doubled the effictiveness of induction is Squared.
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At about 20,000 Hz when radio frequency is achieved the electrons begin spinning free from the resistance of the inductor. They become increasingly free of the inverse relationship of volt- amperes. From this point on, they replicate by the inductive process as V.A.R. (Volt-Ampers-Reactive). Volts and amperes are equal until resistnce is introduced. Therefore additional, not previously available electrons become incorporated for a very large net gain in potential.
Page 15: My Replication Journal
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Earth Electrical System II, Modular Units
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The system consists of three seperate modules. Reverse engineering is used in matching the modules to the de- sired usage.
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HIGH VOLTAGE INDUCTION TRANSFORMER MODUEL:
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1. Preferably an off-the-shelf-unit similar to a TV flyback and/or ignition typerelated coil (Transformer) 2. Ratio of input to output may be fromless than 1/100 to greater than 1/1,000. A voltage tripler may be then used. 3. A connection allowing the high voltage output to pass onward through the induction coil L-1 and then to it's grounding.
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AN AIR CORE INDUCTION COIL TRANSFORMER MODULE:
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1. Two coils, the reactor coil L-1 and the reactant coil L-2 has a high voltage radio frequency capacitor between it and it's grounding. 2. Input into the L-1 inductor is devided by the number of turnes there- in. The magnetic flux field provided from each turn of L-1 rep- licates itself as an electrical potential in each turn of L-2. 3. L-2 may have one turn or many hundreds of turnes. The net gain depends upon the number of turnes of L-2. Output from L-2 is in V.A.R. (Volt-Ampers-Reactive).
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With this type of output, volts and amperes are the same until work (resistivity) is introduced.
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THE INVERTER MODULE:
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1. Inverts to direct current (DC) 2. Inverts to alternating current (A.C.) as desired. 3. Provides customized output of electrical power ready for designed usage.
Page 16: My Replication Journal
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By clearly reading the EES II Modules These systems can be very simple,
Page 17: My Replication Journal
Page 18: My Replication Journal
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This being the Brief case device, "is said to be incomplete", lets consider what is here.
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1. Battery 6 or 12 volt Dated 2. Diode Poss. a varactor Jan 17 1997 3. High Voltage module L-1 and L-2 4. Capacitor TDK 10.9 pF 30 KV 5. Spark plug Small engine .0025 in. gap 6. Inductor coil L-3 7. Induction coil L-4 8. Voltage controle shunt 9. Frequency adjuster prevents derating by diode bridge. 10. Diode bridge 200 nanosecond, rf > 100 KV 11. Voltage devider circuit, corrects voltage for next stage. 12. Capacitor Electrolytic, smoothes out DC and ripple effect 13. Earth Ground 14. Voltage devider circuit, connects voltage to transformer 15. Inverter circuit DC + in 60 CPS to transformer 16. Output from transformer to load. 17. Center tap: This has been stated in the Metacafe video this is the ground wire to make the device run. This also has a varactor to ground.
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Hard to read between the #8 and #14 on the right--> Note, # 12; is a capacitor bank and you need to expiriment to find the correct number, it will be a function of coloumbs (Volt - Amperes)required Note Above # 3; If the + connector # 7 wire is a wave length, of the # 6 or # 7s frequency, the battery will recharge itself while it is being used. To see this use two light emmiting diods. They show the direction the electrons are moving, DC electrons out and radio frequency electrons into the battery.
Page 19: My Replication Journal

Don Smith's Suggestions: Get a copy of the "Handbook of Electronic Tables and Formulas", published by Sams, ISBN 0-672-22469-0, also an LCR meter is required. Chapter 1 in this book has important time constant (frequency) information and a set of reactance charts in nomograph style ("nomograph": a graph, usually containing three parallel scales graduated for different variables so that when a straight line connects values of any two, the related value may be read directly from the third at the point intersected by the line) which makes working, and approximating of the three variables (capacitance, inductance and resistance) much easier. If two of the variables are known, then the third one can be read from the nomograph. For example, if the input side of the isolation transformer needs to operate at 60 Hz, that is 60 positive cycles and 60 negative cycles, being a total of 120 cycles. Read off the inductance in Henries using the LCR meter attached to the input side of the isolation transformer. Plot this value on the (nomographic) reactance chart. Plot the needed 120 Hz on the chart and connect these two points with a straight line. Where this line crosses the Farads line and the Ohms line, gives us two values. Choose one (resistor) and insert it between the two leads of the transformer input winding. The Power Correction Factor Capacitor (or bank of more than one capacitor) now need adjusting. The following formula is helpful in finding this missing information. The capacitance is known, as is the desired potential to pulse the output transformer. One Farad of capacitance is one volt for one second (one Coulomb). Therefore, if we want to keep the bucket full with a certain amount, how many dippers full are needed? If the bucket needs 120 volts, then how many coulombs are required?

Now, go to the Reactance Chart mentioned above, and find the required resistor jumper to place between the poles of the Correction Factor Capacitor. A earth grounding is desirable as a voltage-limiter and transient spike control. Two are necessary, one at the Power Factor Capacitor and one at the input side of the isolation transformer. Off-the-shelf surge arrestors / spark gaps and varistors having the desired voltage/potential and amperage control are commonly available. Siemens, Citel America and others, make a full range of surge arrestors, etc. Varistors look like coin-sized flat capacitors. Any of these voltage limiters are marked as "V - 1" in the following text.

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I should interject here, to bring it to the forefrount of your mind however counterintuitive it may seem, groundings to the Earth at various points within the systems are unusually odd. This is a closed part of the system yet is open to the Ambient. Look at the center tap below; I believe this is a ground in certain devices. Further, as you read you will notice Don says a ground at the bace of L-2 is an advantage.
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Note; as referanced, The block wall is the base of a dipole,(or L-2 coil) this is the area of electron spin separation. I may be wrong.
Page 20: My Replication Journal
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In the resonant induction system a very high percentage of the energy present is useful. When resonant, (Ohms-Impedance-Z)becomes zero and all energy present is available, undegraded. Ohms is load or wasted energy and ampers is the rate of wasting. Using this information, now apply it to an air-core coil, resonant transformer energy system. L-1 and L-2 coils are now present. L-1 has less turns and is many times the diameter of L-2. Input from a 12 V gelcel source produces 8,000 V with low (wasted energy) amperage into 4 turns of coil L-1. Each turn of L-1 recieves 2,000 V of resonant potential. Each turn of L-2 is then exposed the electric flux of 2,000 V. Each turn at the bottom end of L-2 aquire 2,000 V. The flux lines are squared and are additive to as the voltage and amperage progresses toward the top end of L-2's many turns.
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Energy stored, times cycles per second, represents that being pumped by the system. Capacitors and inductors temporarly store electrons.
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Capacitor formula; W = .5 X CE X C.P.S. W = energy in joules (watt seconds) c = capacitance in farads E = applied potential in volts squared Inductor (Coil ) formula; W = .5 X LI X C.P.S. W = energy in joules (watt seconds) L = inductance in henrys I = current in amperes squared Both one henry one farad and .1 gamma = 1 Volt. The higher the cycles per second including the squaring flux lines cause a large increase in the amount of energy being produced.
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The above combined with a resonant energy induction system, (all electrons moving at the same time, in the same direction), make the next move into overunity practical.
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A huge amount of flux lines that were not previously present occure at the top end of L-2. These flux lines excite the electrons nearby in it's earth, and air groundings. This high level of excitment above the ambient causes a large amount of electrons not previously part of the energy present, to become available.
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At this point overunity is present in large amounts!
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Remember that amperage is wasted energy and untill that happens there is no amperage. This energy is turned into DC and then into the desired working frequency.
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Quantity of electricty available
Page 21: My Replication Journal
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Electrical Power Generation / Points of Referance
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The electrical energy generation system here presented, the resonate Electrons all moving in the same direction at the same time. This allows NEAR UNITY ELECTRICAL POWER to devolop. This is the room temperature equivalent of super conductivity.
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Useful electrical power is generated when electrons form Earth and Air groundings are disturbed by the movement of coils and magnets with referance to each other.
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The resulting of electrical and magnetic energy is then changed to joules, (Watt seconds,Volts X Amps X Seconds). Each forward electron movement results in a magnetic impulse, and each return movement causes an elecrtical impulse. The composite of electrical energy impulses from these electrons yealds useful energy (Power).
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The Energy System here presented consists of a properly adjusted and functional resonate air core coil tank.
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The electrical energy is stored in capacitors. The magnetic energy in the coil system.
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Don's system takes "joules and combines X C.P.S. Squared" to establish the USEFUL ENERGY OF THE SYSTEM"
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At Resonance, impedance becomes Zero! The full force and effect of the Energy Transfer occures. This again is superconductor conditions room temperature.
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At radio frequencies the electrons do not pass through the conductor as at lower frequencies. These Electrons encircle the conductor and are free of the conductors resistance.
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Joule calculation = [.5 C X V squared] = 1 watt/second "Don's system" Joules = [.5 C x V squared] x C.P.S. squared Watt Seconds = [Volts x Amperes x Seconds] C = Capacitance in microfarads V = Potential in Volts C.P.S. = Cycles Per Second In the RESONANTE TANK INDUCTION ENERGY TRANSFER SYSTEM here presented impedance [system resistance] replaces the conventional ohms usage.
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From Maxwell and others, we know that electrical related energy has an equal amount of magnetic energy associated with it...
Page 22: My Replication Journal
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The Masters Hand
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BENIFITS OF THE INVENTOR'S SYSTEM ARE SUMMERIZED 1. Induction Energy transfer is enhansed by squaring the cycles per second by the System. 2. Induction Energy transfer is enhansed by squaring the input voltage and amperage 3. The increase in flux lines occuring from the above, disturbing more electrons, causes more electrical energy to become available. 4. Resonant Induction has all the electrons moving unimpeded, resulting in superconductor conditions at room temperature. 5. A smaller amount of energy is used to disturb a larger number of electrons. Electrons not originally part of the System then combine their energy, resulting in a net gain in available usable power. 6. The physical size of the System [Device] is small. The Device dis- cribed in "B" sits comfortable on the breakfast table. 7. A small energy source is used to start the device and remains fully charged at all times from the system.
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Let the ESTABLISHMENTS POWER GENERATION SYSTEM be "A" and the SYSTEM here presented be "B". "A" Given 60 CPS at 120 Volts and a 10 microfarad capacitor. Joules = [0.5 x .000,010 x 120 squared] x C.P.S's squared [ 120 X's 120 = 14,400 ] [ .000,010 X 14,400 = .144 [ .144 x .05 = .072 ] [.072 X 3,600 = 259.2 ]
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"B" Given One Million Cycles Per Second at 100,000 volts using a 10 microfarad capaitor. Joules = [ .05 X .000,010 X 100,000 squared ] X C.P.S.'s squared. [ 100,000 X 100,000 = 10,000,000,000 ] [ 10,000,000,000 X .000,010 = 100,000 ] [ 100,000 X 0.5 = 50,000 ] [ 50,000 x 1,000,000 Squared = 50,000,000,000,000,000 ] The useful Energy Available is greater than 50 Mega K-Joules actually 50 Mega-Mega K-joules. [Watt seconds] Since the Resonant Electrons are nonimpacting, all the Energy is available for direct usage.
Zane
If using the Dons' resonant induction system the electrical power available would be 259.2 joules [watt seconds]. Using the normal method only permits 10 watt seconds of useful electrical energy.
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1. Substitute a Plasma Globe such as Radio Shack's "Illumna-Storm" for the source-resonant induction system. It will have about 400 milligauss of magnetic induction. One milligauss is equal to 100 volts worth of magnetic induction.

2. Construct a coil using a 5-inch to 7-inch (125 to 180 mm) diameter piece of PVC for the coil former. 3. Get about 30 feet (10 m) of Jumbo-Speaker Cable and separate the two strands. This can be done by

sticking a carpet knife into a piece of cardboard or wood, and then pulling the cable carefully past the blade to separate the two insulated cores from each other. (PJK Note: "Jumbo-Speaker Cable" is a vague term as that cable comes in many varieties, with anything from a few, to over 500 strands in each core. As Don points out that the output power increases with each turn of wire, it is distinctly possible that each of these strands acts the same as individual insulated turns which have been connected in parallel, so a 500-strand cable may well be far more effective than a cable with just a few strands).

4. Wind the coil with 10 to 15 turns of wire and leave about 3 feet (1 m) of cable spare at each end of the

coil. Use a glue gun to hold the start and finish of the coil. 5. This will become the "L - 2" coil shown in the Circuits page. 6. When sitting on top of the Plasma Globe (like a crown) you have a first-class resonant air-core coil

system. 7. Now, substitute two or more capacitors (rated at 5,000 volts or more) for the capacitor bank shown on the

Circuits page. I use more than two 34 microfarad capacitors. 8. Finish out the circuit as shown. You are now in business ! 9. Voltage - Amperage limiting resistors are required across the output side of the Load transformer. These

are used to adjust the output level and the desired cycles per second.

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Directions: Plasma Globe, first-class resonant air-core coil system
Zane
1. Substitute a Plasma Globe such as Radio Shack's "Illumna Storm" for the source-resonant induction system. It will have about 400 milligauss of magnetic induction. One milligauss is equal to 100 volts worth of magnetic induction. 2. Construct a coil using a 5-inch to 7-inch diameter piece of PVC for the coil former. 3. Get about 30 feet (10 m) of Jumbo-Speaker Cable and separate the two strands. As Don points out that the output power increases with each turn of wire.
Zane
4. Wind the coil with 10 to 15 turns of wire and leave about 3 feet (1 m) of cable spare at each end of the coil. Use a glue gun to hold the start and finish of the coil. 5. This will become the "L - 2" coil shown in the Circuits page. 6. When sitting on top of the Plasma Globe (like a crown)you have a first-class resonant air-core coil system.
Zane
7. Now, substitute two or more capacitors (rated at 5,000 volts or more) for the capacitor bank shown on the Circuits page. I use more than two 34 microfarad capacitors. 8. Finish out the circuit as shown. You are now in business! 9. Voltage - Amperage limiting resistors are required across the output side of the Load transformer. These are used to adjust the output level and the desired cycles per second.
Zane
Zane
Dons' Suggestions: Get a copy of the "Handbook of Electronic Tables and Formulas", pub- lished by Sams, ISBN 0-672-22469-0, also an LCR meter is required. Chapter 1 in this book has important time constant (frequency) inform- ation and a set of reactance charts in nomograph style which makes working, and approximating of the three variables (capacitance, in- ductance and resistance)much easier. If two of the variables are known, then the third one can be read from the nomograph.
Page 24: My Replication Journal

Don Smith's Suggestions: Get a copy of the "Handbook of Electronic Tables and Formulas", published by Sams, ISBN 0-672-22469-0, also an LCR meter is required. Chapter 1 in this book has important time constant (frequency) information and a set of reactance charts in nomograph style ("nomograph": a graph, usually containing three parallel scales graduated for different variables so that when a straight line connects values of any two, the related value may be read directly from the third at the point intersected by the line) which makes working, and approximating of the three variables (capacitance, inductance and resistance) much easier. If two of the variables are known, then the third one can be read from the nomograph. For example, if the input side of the isolation transformer needs to operate at 60 Hz, that is 60 positive cycles and 60 negative cycles, being a total of 120 cycles. Read off the inductance in Henries using the LCR meter attached to the input side of the isolation transformer. Plot this value on the (nomographic) reactance chart. Plot the needed 120 Hz on the chart and connect these two points with a straight line. Where this line crosses the Farads line and the Ohms line, gives us two values. Choose one (resistor) and insert it between the two leads of the transformer input winding. The Power Correction Factor Capacitor (or bank of more than one capacitor) now need adjusting. The following formula is helpful in finding this missing information. The capacitance is known, as is the desired potential to pulse the output transformer. One Farad of capacitance is one volt for one second (one Coulomb). Therefore, if we want to keep the bucket full with a certain amount, how many dippers full are needed? If the bucket needs 120 volts, then how many coulombs are required?

Now, go to the Reactance Chart mentioned above, and find the required resistor jumper to place between the poles of the Correction Factor Capacitor. A earth grounding is desirable as a voltage-limiter and transient spike control. Two are necessary, one at the Power Factor Capacitor and one at the input side of the isolation transformer. Off-the-shelf surge arrestors / spark gaps and varistors having the desired voltage/potential and amperage control are commonly available. Siemens, Citel America and others, make a full range of surge arrestors, etc. Varistors look like coin-sized flat capacitors. Any of these voltage limiters are marked as "V - 1" in the following text.

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Step # 1 For example, if the input side of the isolation transformer needs to operate at 60 Hz, that is 60 positive cycles and 60 negative cycles, being a total of 120 cycles. Read off the inductance in Henries using the LCR meter attached to the input side of the isolation transformer. Plot this value on the (nomographic) reactance chart. Plot the needed 120 Hz on the chart and connect these two points with a straight line. Where this line crosses the Farads line and the Ohms line, gives us two values. Choose one (resistor) and insert it between the two leads of the transformer input winding.
Zane
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As far as I can figure out all we have done is set out Isolation Transformer in resonance for a certain frequency.
Zane
The Farads and Henrys of the resonant system provide the resonant frequency when pulsed by an external energy system. A system shunt in the resonant circuit sets the containment level for energy potential.
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1 ohm
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.1 ohm
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.01 ohm
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.001 ohm
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T = Frequency in cycles per second 16 C = Capacitance in microfarads 113 L = Inductance in milliheneries 75 R = Resistance in Ohms
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Don states this as a timming formula T = RC and T = L/R
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100 K
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1 F
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10 F
Page 26: My Replication Journal
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--16 uF capacitor
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75 Ohm resistor--
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120 CPS --
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-- 113. uH of IT
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Examining the above information we are able to gather the following information: Starting from the IT inductance and the 120 CPS 50 % + and 50 % -. We find the missing information; The size of the capacitors needed for the resonant circuit. The resistor needed to accomplish that resonance.
Zane
Found the capacitors!
Zane
Step # 2 The Power Correction Factor Capacitor (or bank) now need adjusting. The following formula is helpful in finding this missing information.
Zane
Now the capacitance is known, as is the desired potential to pulse the output transformer. One Farad of capacitance is one volt for one second (one Coulomb). Therefore, if we want to keep the bucket full with a certain amount, how many dippers full are needed? If the bucket needs 120 volts, then how many coulombs are required?
Zane
Desired Voltage ____________________________ Capacitance in Microfarads
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= Required Frequency in Hertz
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240 Volts _______________ .000,136 uF
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= 1,764,705 CPS
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Now, go to the Reactance Chart mentioned above, and find the required resistor jumper to place between the poles of the Correction Factor Capacitor.
Zane
Calculate the values for your capacitors Capacitor formula; W = .5 X CE X C.P.S. W = energy in joules (watt seconds) C = capacitance in farads E = applied potential in volts squared
Zane
.5 X .000,016 X 240 X 240 X 120 = W = 55.29 joules
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60 CPS--
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-- Don's 34 uF Caps
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39 Ohm resistor --
Page 27: My Replication Journal
Zane
None of the electrons active at the power source (battery) are passed through the system for use downstream. At any point, if the magnetic flux rate should happen to vary, then the number of active electrons also varies. Therefore, controlling the flux rate controls the electron (potential) activity. Electrons active at point "A" are not the same electrons active at point "B", or point "C", and so on. If the magnetic flux rate (frequency Hz) varies, then a different number of electrons will be disturbed. This does not violate any Natural Law and does pro- duce more energy out than in, "should that be desirable".
Zane
Example # 1 It should be obvious that several separate closed circuits are present in the suggested configuration: The power input source, The high-voltage module, A power factor capacitor bank, combined with the input side of the isolation transformer. Lastly, the output side of the isolation transformer and its load.
Zane
A convenient high-voltage module is a 12 volt DC neon tube transformer. The Power Factor Correction Capacitors should be as many microfarads as possible as this allows a lower operating frequency. The 12-volt neon tube transformer oscillates at about 30,000 Hz. At the Power Correction Factor Capacitor bank we lower the frequency to match the input side of the isolation transformer. Other convenient high-voltage sources are car ignition coils, television flyback transformers, laser printer modules, and various other devices. Always lower the frequency at the Power Factor Correction Capacitor and correct, if needed, at the input side of the isolation transformer.
Zane
The isolation transformer comes alive when pulsed. "Amperage becomes a part of the consideration only at the isolation transformer".
Zane
Transformer designs resulting in hysteresis, "magnetic saturation", creates heat, which selfdestructs the transformer if it is overloaded. Transformers which have a composite core run cool and can tolerate much higher amperage.
Zane
Step # 3 An earth grounding is desirable as a voltage-limiter and transient spike control. Two are necessary, one at the Power Factor Capacitor and one at the input side of the isolation transformer.
Zane
Off-the-shelf surge arrestors / spark gaps and varistors having the desired voltage/potential and amperage control are commonly available. Siemens, Citel America and others, make a full range of surge arrestors, etc. Varistors look like coin-sized flat capacitors. Any of these voltage limiters are marked as "V - 1" in the following text.
Page 28: My Replication Journal
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My build, The plasma globe...
Page 29: My Replication Journal
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The L-2 Coil
Zane
Ref. # (6.) When sitting on top of the Plasma Globe (like a crown)you have a first-class resonant air-core coil system.
Zane
I bought 30' of this wire; "( http://www.knukonceptz.com/product Detail.cfm?prod ID=KLE10BL ), for $ 22.5. After I competed this order, I found another "power cable type" from this same supplier with more wires in the sheeth, but I will build the first with this type.
Zane
I found a piece of PVC pipe 6 5/8 diameter, = 20.8131 circumference / 12" = 1.7344' per revolution X 15 turnes = 26.0163' of wire. 30' of wire will work nicely ! I turned it on a lathe for acuracy. I made three pieces 3", 4" and 5". The 3" holdes 14 turns of the jumbo speaker wire tightly. I used electric tape to secure the wire to the pipe.
Zane
Caution; Don stated to use a blade to split it , I did it the normal way by pulling. This wire did not split well, one side has square encasement, the other side is round. The square side the one I used first, has bare wire in many places and will shock when the values are turned up on the plasma globe I turned the wire on the PVC to a position that the bare wire is not on the perimeter, rather between the coils. The only exposed wire is on the leads where they can be taped.
Zane
The magnetic energy is stored in the coil system.
Zane
Inductor (Coil ) formula; W = .5 X LI X C.P.S. W = energy in joules (watt seconds) L = inductance in henrys I = current in amperes squared
Zane
.5 X .113 X ? X ? X 120 = W = ?
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.5 X .113 X ? X ? X 120 = W = ?
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.5 X .00003425 X ? X ? X 120 = W = ?
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.5 X .00003425 X ? X ? X 120 = W = ?
Page 30: My Replication Journal
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The capacitor bank...
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What we are looking for is more than two, with 5Kw 34uF capacitance, I do not know how many that is, so I figured I should get at least four. Looking at another device on u-tube Don displays Capacitors with large capacitance that are truely small. The picture at the beginning of this document shows four yellow components connected to the L-2 coil, these are probably the capacitors.
Zane
Series Voltage: C total = 1 / ((1 / C1) + (1 / C2) + (1 / C3) + (1 / etc.)) Voltage rating is the rating of the smallest capacitor times the number of capacitors. Series Farads: Capacitors in series combined is slightly less than least capacitance of the smallest capacitor. Parallel Voltage: C total = C1 + C2 + C3 + etc. Voltage rating is the rating of the smallest capacitor. Paralell Farads: Capacitors in paralell are added together, the sum is the value of capacitance.
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Desired Voltage _____________________________ Capacitence in Microfarads
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= Required Frequency in Hertz 240 Volts / .000016 = 15 mHz
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The electrical energy is stored in capacitors.
Zane
Calculate the values for your capacitors ........>>>>>>>>>> Capacitor formula; W = .5 X CE X C.P.S. W = energy in joules (watt seconds) C = capacitance in farads E = applied potential in volts squared
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Joule calculation = [.5 C X V squared] = 1 watt/second "Don's system" Joules = [.5 C x V squared] x C.P.S. squared Watt Seconds = [Volts x Amperes x Seconds] C = Capacitance in microfarads ".0000_" V = Potential in Volts C.P.S. = Cycles Per Second
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.5 X .000,016 X ? X ? X 120 = W = ? joules electrostatic voltmeter measurmentis used here!
Page 31: My Replication Journal
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My Isolation Transformer
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My my my, I found a transformer on e-bay rated at 30 to 50 amps @ 120 - 240 volts. This equates to on the high side 7,200 to 12,000 KV. A Monster, UPS box said 80# but it only weighs about 65# I guess.