Body
On 12/30/2018 8:42 AM, Norman Wootan wrote:
>
> The subject of iron being the key, as Tesla stated, to attach our
> machinery to the wheel works of nature is derived from one of his
> famous lectures. In his lecture, Tesla said that we on earth are
> blessed in that iron is such an abundant element and further stated
> that a fine grade of steel would enable us to generate power from the
> interesting atomic structure of iron. See the other properties of iron:
>
> https://en.m.wikipedia.org/wiki/Iron
>
>
> Crystal structure <https://en.m.wikipedia.org/wiki/Crystal_structure>
> body-centered cubic
> <https://en.m.wikipedia.org/wiki/Cubic_crystal_system> (bcc)
> Body-centered cubic crystal structure for iron
> <https://en.m.wikipedia.org/wiki/File:Cubic-body-centered.svg>
>
> /a/=286.65 pm
> Crystal structure face-centered cubic
> <https://en.m.wikipedia.org/wiki/Cubic_crystal_system> (fcc)
> Face-centered cubic crystal structure for iron
> <https://en.m.wikipedia.org/wiki/File:Cubic-face-centered.svg>
>
> between 1185–1667 K
>
>
> Pay attention to the shift in molecular structure, here described.
>
>
> Phase diagram and allotropes
>
> Main article: Allotropes of iron
> <https://en.m.wikipedia.org/wiki/Allotropes_of_iron>
>
> Iron represents an example of allotropy
> <https://en.m.wikipedia.org/wiki/Allotropy> in a metal. At least four
> allotropic forms of iron are known as α, γ, δ, and ε; at very high
> pressures and temperatures, some controversial experimental evidence
> exists for a stable β phase.^[15]
> <https://en.m.wikipedia.org/wiki/Iron#cite_note-beta-iron-15>
>
> <https://en.m.wikipedia.org/wiki/File:Pure_iron_phase_diagram_(EN).png>
> Low-pressure phase diagram
> <https://en.m.wikipedia.org/wiki/Phase_diagram> of pure iron
> <https://en.m.wikipedia.org/wiki/File:Magnetization_curves.svg>
> Magnetization curves of 9 ferromagnetic materials, showing saturation.
> 1.Sheet steel, 2.Silicon steel, 3.Cast steel, 4.Tungsten steel,
> 5.Magnet steel, 6.Cast iron, 7.Nickel, 8.Cobalt, 9.Magnetite^[16]
> <https://en.m.wikipedia.org/wiki/Iron#cite_note-16>
>
> As molten iron cools past its freezing point of 1538 °C, it
> crystallizes into its δ allotrope, which has a body-centered cubic
> <https://en.m.wikipedia.org/wiki/Body-centered_cubic> (bcc) crystal
> structure <https://en.m.wikipedia.org/wiki/Crystal_structure>. As it
> cools further to 1394 °C, it changes to its γ-iron allotrope, a
> face-centered cubic
> <https://en.m.wikipedia.org/wiki/Face-centered_cubic> (fcc) crystal
> structure, or austenite <https://en.m.wikipedia.org/wiki/Austenite>.
> At 912 °C and below, the crystal structure again becomes the bcc
> α-iron allotrope. Finally, at 770 °C (the Curie point
> <https://en.m.wikipedia.org/wiki/Curie_point>, T_c ) iron's magnetic
> ordering changes from paramagnetic
> <https://en.m.wikipedia.org/wiki/Paramagnetic> to ferromagnetic
> <https://en.m.wikipedia.org/wiki/Ferromagnetic>. As it passes through
> the Curie temperature, iron does not change its structure, but
> "magnetic domains" appear, where each domain contains iron atoms with
> a particular electronic spin. In unmagnetized iron, all the electronic
> spins of the atoms within one domain have the same axis orientation;
> however, the electrons of neighboring domains have other orientations
> with the result of mutual cancellation and no magnetic field. In
> magnetized iron, the electronic spins of the domains are aligned and
> the magnetic effects are reinforced. Although each domain contains
> billions of atoms, they are very small, about 10 micrometres
> across.^[17]
> <https://en.m.wikipedia.org/wiki/Iron#cite_note-Metallo-17> This
> happens because the two unpaired electrons on each iron atom are in
> the d_/z/^2 and d_/x/^2 − /y/^2 orbitals, which do not point directly
> at the nearest neighbors in the body-centered cubic lattice and
> therefore do not participate in metallic bonding; thus, they can
> interact magnetically with each other so that their spins align.^[18]
> <https://en.m.wikipedia.org/wiki/Iron#cite_note-Greenwood1075-18>
>
> Remember that Tesla experimented with a pyro/magnetic generator that
> used the phase shift characteristics of iron. Now let us look at a
> very controversial idea of iron upon magnetic super-saturation makes
> a shift (momentarily) into manganese which is one step down on the
> periodic table of the elements. See
> https://en.m.wikipedia.org/wiki/Manganese
>
> In this idea that the iron would give up free electrons and go from
> Fe-26 to Mn-25 and gain back from the space background to revert back
> to Fe-26. Here you have in effect a huge electron pump for each atom
> of iron would yield an electron for our use them revert back to normal
> iron state. Far fetched as it may sound, this concept is found in
> William Lynn's books, Space Aliens from the Pentagon and in Occult
> Ether Physics. This was the quest that Tesla was on when trying to
> formulate an iron that had the correct BH saturation characteristics.
> Dead soft pure iron.
>
> “If you want to find the secrets of the universe, think in terms of
> energy, frequency and vibration.”
> ― Nikola Tesla
>
>
> “My brain is only a receiver, in the Universe there is a core from
> which we obtain knowledge, strength and inspiration. I have not
> penetrated into the secrets of this core, but I know that it exists.”
> ― Nikola Tesla
>
>
> “Today’s scientists have substituted mathematics for experiments, and
> they wander off through equation after equation, and eventually build
> a structure which has no relation to reality. ”
> ― Nikola Tesla
>
>
>
>
> On 12/30/2018 5:54 AM, Mick [email protected] [EVGRAY] wrote:
>>
>> Norm,
>>
>> Can you tell us about /your/ experiments with the magnetic wire?
>>
>> Yes the removal and reappearance of an inductor or a capacitor for
>> that matter makes a great pump! I like to see how many different
>> functions Tesla was up to as mutual factors are at work to generate,
>> amplify, and propagate this energy. "First there was a mountain then
>> there was no mountain then there was"
>>
>> In most of the OU systems we see a variable capacitor effect used in
>> order to phase modulate the system as for Hectors brick through the
>> window. It is interesting this design is also used in the Hyde
>> generator but not nearly as elegant as Teslas.
>>
>>
>>
>> On 12/29/2018 8:47 PM, Norman Wootan [email protected] [EVGRAY] wrote:
>>>
>>> https://www.electronics-tutorials.ws/electromagnetism/magnetic-hysteresis.html
>>>
>>> Please understand that Tesla totally understood the BH curves of the different types of iron and steel. Tesla advocated driving soft iron cores into deep supersaturation where as Ole has pointed out the L value of your inductor disappears. The simple door buzzer experiment is a classic example of the anamalous spike output because the iron core material is so soft grade of iron, you can carve off a sliver with a sharp knife. It is dead soft iron. I wanted to make soft iron cores from electrolytic iron or Ferricpentacarbynol which you can sinster into any shape you want. The iron wire coils were experimented with by Tesla and you can see by the above charts that they saturate very early on the scale. Tesla experimented with a coil device that used the idea of popping in and out of the saturation point which is a variable inductor effect which in amplified current. The rapid varying capacitor effect is used in the Hyde generator which in effect magnifies voltage (electron pump).
>>>
>>>
>>> On 12/29/2018 6:59 PM, Mick [email protected] [EVGRAY] wrote:
>>>>
>>>> Norm,
>>>>
>>>> BTW this should remind you of your mirror image coil experiment that
>>>> cannot be replicated by simply switching polarity. Pretty cool how one
>>>> version of it transmits through a Faraday cage by design. This system
>>>> is a very high Q design so requires the fine level of assembly Warren
>>>> and Sven also example in their work.
>>>>
>>>> As far as taming the magnetoelectric event yes it is quite the
>>>> challenge
>>>> but why not, already have a trash can full of deactivated sand,
>>>> might as
>>>> well keep on going when the new thyratrons arrive.
>>>>
>>>> Can you elaborate on your experiments utilizing iron wire coils and
>>>> what
>>>> you found with this investigation?
>>>>
>>>> Here is an antenna design that generates and receives Tesla's
>>>>
>>>> hyper-luminal waves
>>>>
>>>> http://www.freepatentsonline.com/y2007/0013595.html
>>>>
>>