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Stan’s Legacy

Reiyuki

3 posts · 19 more in threads this archive does not carry · writing between Sep 2015 and Sep 2015

An identity on Energetic Forum as it was harvested, not an account on this site. Nobody here has claimed it, and nothing connects it to a person by name.

What is Cold Electricity?

#15 ·

wayne.ct wrote:

No one mentioned the thermoelectric effect, also known as the Peltier effect.
Good point!!
Not sure , but Iotayodi's post of a vortex tube might describe this, where positive electric flow creates our negative gradiant that sucks in energy from the other side of a PN junction.

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This actually gives us a few experiments to narrow down the source if a peltier is indeed a manifestation of 'cold electricity'.

* Stick a big neodymium magnet next to a peltier module junction and measure the difference in performance with, without, and at various angles. If there is no change in current flow or temperature, then it would suggest cold electricity does NOT have magnetic properties (assuming Peltiers are a manifestation of it).

* Same experiment as above, except use a big coil instead of a magnet and apply sharp DC pulses or AC sinewaves. It may only respond to changing magnetic fields and not static fields. Repeat the experiment in reverse and try to get a voltage on the coil by pulsing the peltier. Look for one-way actions

* Use a peltier module as the 'air gap' in a simple transformer and measure effects between transformer windings and peltier junction. Does one field induce power in the other?

* Find a way to put a peltier in a static or dielectric field and measure the results. Like putting one near a tesla coil terminal and measure the results. Repeat with a running peltier and measure changes in temperature or current flow. If cold electricity has dielectric properties, you may see some changes.

What is Cold Electricity?

#10 ·

Continuing the pondering that 'cold electricity' is actually 'coherent electricity' (the same difference as laser light vs conventional scattered light).
Lets look at various systems and see if we can narrow down a few more properties of coherent electricity.


Bedini speaks of 'Pulses that cannot be picked up on a scope or meter, but will charge a battery just fine'. The conclusion from this:
* Coherent cannot be picked up directly with a shunt because the resistance scatters coherent EM back into conventional EM. This would be akin to shooting a laser into opaque glass. The glass lights up but scatters the beam in the process.


Floyd Sweet's videos shows him managing to run motors and light bulbs just fine on coherent electricity, which would lead to one of two conclusions:
* 1: Coherent electricity has an associated magnetic field just like conventional electricity
or
* 2: The resistance of the wire is converting coherent electricity back to conventional, and that is where the magnetic field is coming from. Coherent electricity either has no direct magnetic field or its magnetic properties mimic a superconductor.
I don't know the answer but I suspect the 2nd proposition is closer to reality. If the 2nd is the case, this form of electricity might be called 'electro-dielectric' as opposed to the 'electromagnetic' that we are used to.


Don Smith and Eric Dollard and others reference FTL propagation in dielectric setups. This suggests that:
* Coherent electricity likely has dielectric properties, making its propagation velocity likely around 1.53c.
It also suggests that:
* Capacitors can convert coherent to conventional.


Almost every system seems to light bulbs just fine, and with a rare exception in certain HV Tesla circuits, few report their bulbs running cold. This would mean:
* Resistance converts coherent to conventional.
If we're designing a circuit based on this, it means:
* In general, any wire where coherent EM flows should have low winding resistance. Secondary and load side of circuit should minimize resistance.


Systems that report getting cold seem to do so in different regions. Bedini reported the magnets themselves got cold, Sweet said directly shorting leads would create frost on the wires, one odd experiment on OU forum mentioned when he blew a MOSFET that the junction was ice cold. This would suggest that:
* The below-ground energy well can be generated multiple ways in multiple places.
* Coherent EM is almost universally derived from a coil and magnetic field, and has dielectric properties.


One more consideration to determine where coherent EM comes from in an OU circuit:
* Since coherent electricity seems to flow toward below-ground-state regions, energy may not actually be flowing foward, but instead flowing backward into the sink. I'm not sure how to exploit this in a circuit, but it's still worth mentioning.

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On toward creating coherent EM:

* Laser light is created when over-exited particles return to a ground state. Following that logic, Coherent EM should arise from electrons falling into a below-ground state.

* Laser light propagates best in a low resistance path. Coherent EM likely needs a low resistance path to flow as well (short wire, thick wire, silver coated wire, litz wire)

* Diode laser light comes from the gap between the P+N junction in a transistor, and propagates at a 90deg angle to the impressed dielectric field.

And lastly:

* Laser light is generated as a one-way action. Energy translated into light does not get reflected back into energy, at least at the source. Receiving laser light on the other end does not affect the source in any way.
In a circuit, this means we need to generate currents that do not reflect back to the source (heat pump, water hammer, diodes, parameter variation, etc).

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I don't have any neat experiments to show off, yet.
Just trying to narrow down a few parameters so when we build our circuits, we are not completely in the dark.

What is Cold Electricity?

#8 ·

Dog-One wrote:

This is a good topic to hash out, because I think it lies central to our discovery and understanding of the type of devices characterized as free energy or overunity.

The first consideration is symmetry. If we can agree there is such thing as hot electricity, it only seems natural to suspect there is an opposite, behaving very similar but when the two are combined in equal quantities, you get a neutral or balanced result. Nature has a fascination for ying and yang.

I have been studying the Ruslan Kulabuhov device for months now and Ruslan himself has stated the two key components of this device are Cold Current and Back EMF. This particular device uses a rigid earth ground where it would appear electrical charge is kept in balance.

Another concept I think is key, is inertia. If you have an electrical flow of current and you abruptly stop it, the current itself has inertia, it continues to move some amount, some distance for some time after the gate is closed. So one has to ask themselves what happens just past the gate. Certainly you don't pull an electrical vacuum at that point; something must fill that void. My thinking is the "void" is filled with this mysterious cold current. If you allow the hot current to reverse direction and go back to that void, you lose the cold current, but if you don't let the hot current reverse by adding a second gate, now you have forced nature to show its other side.

The best way to visualize the above scenario is to look at the operation of a hydraulic ram pump.


That's very close to my views on this as well.

Another way I've heard it described was as 'coherent electricity' instead of 'cold electricity'. Think of it as the difference between laser light and regular light.

Much like the different properties between a light bulb and laser beam, coherent electricity would have different properties in the same electrical circuits. It may act on battery chemistry differently, or have different magnetic properties (or no magnetic properties?), or act on dielectrics differently, etc. Anyway, it's a good starting point to understand when we hear about some overunity devices being hard to measure. Bedini talks about pulses that can't be measured with any meter or scope but can charge a battery just fine.

Because you are extracting from a below-ground state, the electricity produced may be in this coherent state before being scattered by resistive circuits.