Body
Ole,
I agree with your assessment scalar is a misnomer for a wave, for a
field fine. Beardens fault...
On 2/9/2019 10:52 AM, [email protected] [EVGRAY] wrote:
>
>
> Hi Norman,
>
> After reading about the Dotto ring it does look amazing. My belief is
> that the field given off by the ring is a powerful motional electric
> field (W.J. Hooper's research
> http://www.rexresearch.com/hooper/gibson.htm). This could explain the
> antigravity effect. According to Hooper the electrons move faster in
> hot metals than in cold metals. At constant current in cold conductors
> few electrons move at a high speed while in hot conductors many
> electrons move at low speed. As the magnetic field is determined by
> the current only there's no difference in its size because of the
> temperature of the conductor. But as the motional electric field is
> also determined by the speed of the charges this has great influence
> on the size of the motional electric field. As the Dotto ring has
> different temperatures along the ring this means decelerating the
> speed of the electrons which again means electromagnetic radiation as
> in antennas. Citing from the F. Gibson report
> (http://www.rexresearch.com/hooper/gibson.htm):
>
> "These experiments show that the number of conduction electrons
> remains fairly constant at room temperatures and that the drift
> velocity increases linearly with the current. When resistance in the
> form of heat, carbon pile rheostat, or photo floods was added to the
> circuit, the number of conduction electrons decreased from that of
> room temperature and normal resistance while the drift velocity
> increased. At dry ice temperature and at low current, there were
> almost ten times as many conduction electrons moving, but moving very
> slowly, like cars on a crowded highway. As the amperage increased, the
> number of conduction electrons decreased rapidly, causing a greatly
> accelerated increase in the electron drift velocity. When AC current
> was put in the generator, it appeared that 3 to 4 times as many
> electrons were moving at low amperage as move under DC current at room
> temperature, but as with dry ice, when more electrons were moving,
> they were moving very slowly. By the time the amperage increased to 20
> amps the number of electrons had decreased to almost the same number
> as with DC current at room temperature. From 20 to 30 amps the number
> of electrons remained fairly constant. The electron drift velocity
> increased rapidly at low amperages and continued to increase but at a
> decreasing rate at higher amperages.
>
> These observations regarding electron drift velocity and number of
> conduction electrons would appear to be more consistent with current
> theory regarding gases, semiconductors, and semi-metals, than with the
> current theory for metals. If these findings are true, they would seem
> to indicate that the conductivity of a metal is related to the number
> of electrons in motion and their velocity, both of which change with
> temperature and resistance."
>
> Looking at Alexey Chekurov's antigravity device this also has variable
> motional fields as well as a conventional permanent magnetic field
> which is actually rotating like in motors and generators. The motional
> part is done by mechanical rotating the rippled discs which gives much
> higher speeds than the normal conduction speed of electrons in metals.
>
> In the Dotto paper is mentioned scalar waves which is an oxymoron as
> waves can't be scalars and vice versa. Waves have a time factor as
> well as a direction besides their size (scalar) which is varying too.
>
> Regards
> Ole
>
>
> ---In [email protected], <nwootan@...> wrote :
>
> https://www.remedyspot.com/content/topic/1430589-dotto-ring/
>
> http://www.keelynet.com/biology/dotto.htm
>
> What is the Thompson Effect?
>
>
> One end of a copper rod is heated and the other is cooled. If
> the hot side is heated high enough, it will thermally increase
> the kinetic energy of the outer orbit electrons to a point
> where their kinetic energy (1/2 mv squared) will be greater
> than the work function and allow them to discharge into space.
> Due to the copper conductivity the electrons, instead of
> dissipating into the air, will shift in tremendous quantity
> toward the cool side in straight lines, following the heat
> propagation velocity. By reaction, excited electrons from the
> cool side will travel in the opposite direction at the speed
> of a particle (1/2 mv squared) toward the hot side encircling
> the copper rod by gyroscopic phenomenon and following the
> Fleming's rule. The product is very low voltage (few
> millivolts) as a resultant of the electrons traveling in
> circular motion. But, as in any electrical circuit, the EMF in
> the copper rod is governed by the Ohm's law (E/R=I), and will
> be in the range of several thousand amperes.
>
> Peltier Effect
>
>
> In a metal alloy bar (such as constantan, 60% Cu, 40% Ni) one
> end is heated and the other is maintained cold. When the hot
> end is heated enough, electrons of nickel and copper atoms
> become excited. The electrons of nickel force the electrons of
> coper to reverse orbital spinning (as described in Part 1). By
> centripetal force electrons from the cool side shift toward
> the hot side. The hot side becomes negative in respect to the
> cold positive side, exactly opposite to the Thompson effect.
> Of course, the Thompson and the Peltier effects are temporary;
> they last only until the proportion between the cool and the
> hot side reaches the electrons numerical balance. Let's now
> combine the Thompson and Peltier effects together in the
> thermocouple fashion. In the Thompson effect the electrons
> move from the hot side toward the cold side.
>
> Ole, Hermes, I suggest a little pipe smoking time here and grasp the
> whole theory of operation. Norm
>
>
> On 2/8/2019 6:26 AM, Norman Wootan wrote:
>
>> https://patents.google.com/patent/US3839771 Simple reading and
>> reading comprehension are totally different animals. Please read
>> the Rex Research article to understand how the Dotto Ring worked
>> with the DNA of the body. My understanding of the ring and
>> counter flow of high amperage cyclic currents within the copper
>> gave a scarlar effect in that there was partial magnetic field
>> cancellation and even possible reconnect phenomenon since there
>> was an emission of photon energy when in operation. The reason
>> for my bringing up of the Dotto Ring was to alert you as to the
>> possible reconnect phenomenon here in this device. I was very
>> interested in the temperature differential causing the
>> anti-gravity effect just as Walter Russel had mentioned. Here we
>> get back into on of my pet theory of ionization causing the AG
>> effect.
>>
>> On 2/7/2019 5:32 PM, onielsen@... <mailto:onielsen@...> [EVGRAY]
>> wrote:
>>>
>>>
>>> Hi Hermes,
>>>
>>> "What happens with Lenz Law in an inductor if a capacitor is added?"
>>> Nothing will happen to Lenz's law by adding capacitors. The
>>> reactive part of the power can be shifted from inductive power
>>> to capacitive power or simply cancel the inductive power when at
>>> resonance. At resonance the inductive reactance is equal in size
>>> to the capacitive reactance but of opposite sign. This makes
>>> them cancel to leave only the resistive part of the circuit.
>>>
>>> From Wikipedia:
>>> Lenz's law <https://en.wikipedia.org/wiki/Lenz%27s_law> states
>>> that the direction of the current induced in a conductor by a
>>> changing magnetic field
>>> <https://en.wikipedia.org/wiki/Magnetic_field> is such that the
>>> magnetic field created by the induced current opposes the
>>> initial changing magnetic field. This is similar to Newtons
>>> third law
>>> <https://en.wikipedia.org/wiki/Newton%27s_laws_of_motion#Newtons_3rd_Law>
>>> of motion in physics when talking about motion of bodies: "Law
>>> III: To every action there is always opposed an equal reaction:
>>> or the mutual actions of two bodies upon each other are always
>>> equal, and directed to contrary parts."
>>>
>>> Regards
>>> Ole
>>>
>>>
>>>
>>> ---In [email protected] <mailto:[email protected]>,
>>> <hermesatar@...> <mailto:hermesatar@...> wrote :
>>>
>>> "Wouldn't it be easier and more energy efficient to use 1000
>>> turns for a winding and then send one or more amps of current
>>> through it?"
>>>
>>> What happens with Lenz Law in an inductor if a capacitor is
>>> added? Best Wishes, Hermes
>>>
>>> Den torsdag 7 februari 2019 15:28:28 CET, onielsen@... [EVGRAY]
>>> <[email protected]> <mailto:[email protected]> skrev:
>>>
>>>
>>>
>>>
>>> Wouldn't it be easier and more energy efficient to use 1000
>>> turns for a winding and then send one or more amps of current
>>> through it? That way at least a thousand amps magnetic field is
>>> made.
>>>
>>> Regards
>>> Ole
>>>
>>>
>>>
>>> ---In [email protected] <mailto:[email protected]>,
>>> <wall_jakob@...> <mailto:wall_jakob@...> wrote :
>>>
>>> In canada its probably good enought just to stick the copperr
>>> bar tru the wall, -23 outsiide, +22 inside
>>> = 55 Degree difference, here you go. Don't forget to wind a nice
>>> coil around the rod. ''Thousends of amps''
>>> should be enough to induce 30 amps 115volt after transforming
>>> the voltage to 115Volt
>>> Would be nice if it could be thru:
>>> --------------------------------------------
>>>
>>> On Sun, 2/3/19, Warren Keillor schoonersolsticemoon@...
>>> <mailto:schoonersolsticemoon@...> [EVGRAY]
>>> <[email protected] <mailto:[email protected]>>
>>> wrote:
>>>
>>> Subject: Re: Fwd: Re: [EVGRAY] Patent, Dotto
>>> To: "[email protected]
>>> <mailto:[email protected]>" <[email protected]
>>> <mailto:[email protected]>>
>>> Received: Sunday, February 3, 2019, 7:58
>>> Norman
>>> couldn't open the attachment link on my phone, but your
>>> description of the ring experiment was cool, so to
>>> speak.So,
>>> you take a 3 foot length of solid copper bar stock 1/2"
>>> thick, and roll it in a ring. Heat one end, and freeze the
>>> other to get a potential difference between the
>>> ends?You
>>> say current? Lots of current? How does it manifest
>>> itself?
>>> A
>>> CO2 fire extinguisher gets you dry ice any time you want
>>> it.Butane,
>>> propane, what ever, gets you heat, maybe concentrated
>>> sunlight?Now
>>> lets talk making a practical fun gadget here! You suggest a
>>> lot of amps. How do you lead those suckers out of you toy,
>>> into the big World so we can have fun with them.Can
>>> it make the tires of my Tesla screech? A hot rodder's
>>> super charger on command?Pull
>>> you electric airplane out of a stall?What
>>> do we have here?Cheers
>>> Warren
>>> Sent
>>> from Yahoo Mail on Android
>>> On Sun, 3 Feb 2019 at 8:25
>>> AM, Norman Wootan nwootan@... <mailto:nwootan@...>
>>> [EVGRAY]<[email protected]
>>> <mailto:[email protected]>>
>>> wrote:
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>>
>>> Talking about Anti-Gravity, take a look at this
>>> Patent.
>>> https://patents.google.com/patent/US3839771
>>> I actually formed a Dotto ring out of 2 inch wide X
>>> 1/2 inch
>>> thick X 36 inch long yielding a 12 inch of pure
>>> copper bar stock
>>> into the familiar ring design of Dotto. By heating one
>>> end of ring
>>> with butane flame and cooling other end with liquid
>>> CO2, measured
>>> the millivolt differential of the ring ends and ,
>>> using Ohms Law
>>> calculated a flowing current of several thousands of
>>> amps. You say
>>> , Flowing with open circuit of ring ends, the
>>> current flows one
>>> way on the surface of the copper and returns to the
>>> other end via
>>> the core conductivity. Really strange. The
>>> bridge is made of
>>> material which will cause oscillations in the current
>>> flow of
>>> which I never built. At least I did the
>>> experiment.
>>>
>>>
>>>
>>> ....
>>>
>