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One Wire Phenomenon1 min to read

Ok this is going to be my thread where I post about things that might or might not be relevant or important to people.

Im learning as I go and enjoying things I find and sharing it please anyone feel free to reply and help out with stuff it helps me and maybe some things will help others aswell.

I might not always be right about stuff but I am slowly putting pieces of the puzzle together. This is nessary for me to grow as a individual.

Anyway here is the first thing I want to share here it's something people can make to see how your vibrations look like for example chanting mantras.
https://youtu.be/XTsjMCOTMWw

I already build some of them but I used a audio speaker and played HPS Pythia's voice Ritual sounds to see how they look.Here is a video if someone wants to try it.
https://youtu.be/C-V1uXeyGmg

You can even use a microphone and chant and see how your own sound vibrations look like.

#20
One Wire Phenomenonsaid:

In resonant circuits the resistivity (ohms) becomes zero therefor you are at super condutor conditions at that point. Basically what happens is your volts and amperage become equal called volts ampere reactant VAR system.You can look in any radio books and hardly any of them will give you an explanation for for that and I they do it's misleading in almost all cases. Basically what it means it your resistivity becomes zero at resonance which means you are at super condutor conditions at room temperature.

This is very confused. In resonant circuits, there always is some resistance because a perfect theoretical component does not exist. In every component, there is resistance, inductance, and capacitance. This works with complex numbers, or you may call it something different in your country, with resistance being the real part and the reactance due to the inductance or capacitance being the imaginary part. And both resistance and reactance are measured in ohms.

In every resonant system there is a phase difference between the voltage and the current. In a system with more inductance, voltage leads in front of current. And in a system with more capacitance, voltage lags vehind current. But the only way they could have equal phase is if there is no complex number in the impedance and the only component of the impedance is the real part resistance, which is not a resonant circuit. But no circuit is an exact perfect resistor, or exact perfect inductor, or an exact perfect capacitor, so the phase difference will not actually be exactly 90°. All of this will be very easy for you to understand if you look at voltage and current in what I believe is called the phasor model.

Since the impedance has both real and imaginary components, there is a different name for the power dissipated in each direction. The total power dissipation is measured in VA or Volt Amps, which includes both real and imaginary components. This is why you will see the power rating on all of your transformers shows you a number in VA Volt Amps instead of saying Watts, because it is both resistance and reactance. Purely real component power dissipation is measured in Watts being dissipated due only to resistance. And the imaginary component of power dissipation, due to reactance, is measured in VAR. Var is not an acronym for anything, it is a word just like how Watt is a word.


In a more inductive circuit, which most things are, you are wasting all of that power needed to maintain the magnetic field of the inductor, so the actual Watts you get out of the system will always be less than the power you put into it in VA. This is a lagging power factor. But in a more capacitive circuit, the capacitor stores voltage and can give out more power if it is needed, so you are running a leading power factor and you are able to [at one instant in time] draw more power out of it than what is being put in.

#21
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

In resonant circuits the resistivity (ohms) becomes zero therefor you are at super condutor conditions at that point. Basically what happens is your volts and amperage become equal called volts ampere reactant VAR system.You can look in any radio books and hardly any of them will give you an explanation for for that and I they do it's misleading in almost all cases. Basically what it means it your resistivity becomes zero at resonance which means you are at super condutor conditions at room temperature.

This is very confused. In resonant circuits, there always is some resistance because a perfect theoretical component does not exist. In every component, there is resistance, inductance, and capacitance. This works with complex numbers, or you may call it something different in your country, with resistance being the real part and the reactance due to the inductance or capacitance being the imaginary part. And both resistance and reactance are measured in ohms.

In every resonant system there is a phase difference between the voltage and the current. In a system with more inductance, voltage leads in front of current. And in a system with more capacitance, voltage lags vehind current. But the only way they could have equal phase is if there is no complex number in the impedance and the only component of the impedance is the real part resistance, which is not a resonant circuit. But no circuit is an exact perfect resistor, or exact perfect inductor, or an exact perfect capacitor, so the phase difference will not actually be exactly 90°. All of this will be very easy for you to understand if you look at voltage and current in what I believe is called the phasor model.

But then again thanks for sharing. Its good to know and it helps me learn and others awell

#22
This is the targeted message.
One Wire Phenomenonsaid:

Does someone know what this is? The tube is connected to one wire and my energy fields reacts with it that's what I think but what are those lines ?

What you are seeing in those bright spots are the actual wave fronts. In the animation below, you are seeing those bright spots are the pink/grey line. Blue is electric wave, red is magnetic, and the pink/grey is the Poynting Vector or the location where the total Power of the electromagnetic wave is being directed at that moment.

This is a very interesting demonstration of inductance. Remember that air is a dielectric material, and so is your body, so the circuit is able to magnetically couple with you and interact with you by coming close to it. It is basically the exact same thing as the experiment where you drop a magnet through a copper tube and you see that it falls very slowly. Because the magnetic field is inducing a current in the copper, and this current is producing its own magnetic field that is opposite direction to the original magnetic field, and this produces a force that pushes against the magnet and slows it down.

#23
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

#24
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

Does someone know what this is? The tube is connected to one wire and my energy fields reacts with it that's what I think but what are those lines ?

What you are seeing in those bright spots are the actual wave fronts. In the animation below, you are seeing those bright spots are the pink/grey line. Blue is electric wave, red is magnetic, and the pink/grey is the Poynting Vector or the location where the total Power of the electromagnetic wave is being directed at that moment.

This is a very interesting demonstration of inductance. Remember that air is a dielectric material, and so is your body, so the circuit is able to magnetically couple with you and interact with you by coming close to it. It is basically the exact same thing as the experiment where you drop a magnet through a copper tube and you see that it falls very slowly. Because the magnetic field is inducing a current in the copper, and this current is producing its own magnetic field that is opposite direction to the original magnetic field, and this produces a force that pushes against the magnet and slows it down.

Forgive me the prev post I posted to quickly I thought you are against me and wanted to make me to look bad didn't see your reply.

#25
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

No its connected to the dielectric of the capacitor and my hand on one side.

You posted all this just in time I was about to leave! Im sorry

#26
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

Does someone know what this is? The tube is connected to one wire and my energy fields reacts with it that's what I think but what are those lines ?

What you are seeing in those bright spots are the actual wave fronts. In the animation below, you are seeing those bright spots are the pink/grey line. Blue is electric wave, red is magnetic, and the pink/grey is the Poynting Vector or the location where the total Power of the electromagnetic wave is being directed at that moment.

This is a very interesting demonstration of inductance. Remember that air is a dielectric material, and so is your body, so the circuit is able to magnetically couple with you and interact with you by coming close to it. It is basically the exact same thing as the experiment where you drop a magnet through a copper tube and you see that it falls very slowly. Because the magnetic field is inducing a current in the copper, and this current is producing its own magnetic field that is opposite direction to the original magnetic field, and this produces a force that pushes against the magnet and slows it down.

Yes I saw this before with the magnet part.

I really appreciate you replying me about this this explains a lot of things but why does this not work with a tube that is plugged into the wall?

#27
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

Does someone know what this is? The tube is connected to one wire and my energy fields reacts with it that's what I think but what are those lines ?

What you are seeing in those bright spots are the actual wave fronts. In the animation below, you are seeing those bright spots are the pink/grey line. Blue is electric wave, red is magnetic, and the pink/grey is the Poynting Vector or the location where the total Power of the electromagnetic wave is being directed at that moment.

This is a very interesting demonstration of inductance. Remember that air is a dielectric material, and so is your body, so the circuit is able to magnetically couple with you and interact with you by coming close to it. It is basically the exact same thing as the experiment where you drop a magnet through a copper tube and you see that it falls very slowly. Because the magnetic field is inducing a current in the copper, and this current is producing its own magnetic field that is opposite direction to the original magnetic field, and this produces a force that pushes against the magnet and slows it down.

It's probably because its Radio frequency or what?

#28
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

Does someone know what this is? The tube is connected to one wire and my energy fields reacts with it that's what I think but what are those lines ?

What you are seeing in those bright spots are the actual wave fronts. In the animation below, you are seeing those bright spots are the pink/grey line. Blue is electric wave, red is magnetic, and the pink/grey is the Poynting Vector or the location where the total Power of the electromagnetic wave is being directed at that moment.

This is a very interesting demonstration of inductance. Remember that air is a dielectric material, and so is your body, so the circuit is able to magnetically couple with you and interact with you by coming close to it. It is basically the exact same thing as the experiment where you drop a magnet through a copper tube and you see that it falls very slowly. Because the magnetic field is inducing a current in the copper, and this current is producing its own magnetic field that is opposite direction to the original magnetic field, and this produces a force that pushes against the magnet and slows it down.

Is the dielectric of my body a part of my aura field,it has to be right?

#29
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

In resonant circuits the resistivity (ohms) becomes zero therefor you are at super condutor conditions at that point. Basically what happens is your volts and amperage become equal called volts ampere reactant VAR system.You can look in any radio books and hardly any of them will give you an explanation for for that and I they do it's misleading in almost all cases. Basically what it means it your resistivity becomes zero at resonance which means you are at super condutor conditions at room temperature.

This is very confused. In resonant circuits, there always is some resistance because a perfect theoretical component does not exist. In every component, there is resistance, inductance, and capacitance. This works with complex numbers, or you may call it something different in your country, with resistance being the real part and the reactance due to the inductance or capacitance being the imaginary part. And both resistance and reactance are measured in ohms.

In every resonant system there is a phase difference between the voltage and the current. In a system with more inductance, voltage leads in front of current. And in a system with more capacitance, voltage lags vehind current. But the only way they could have equal phase is if there is no complex number in the impedance and the only component of the impedance is the real part resistance, which is not a resonant circuit. But no circuit is an exact perfect resistor, or exact perfect inductor, or an exact perfect capacitor, so the phase difference will not actually be exactly 90°. All of this will be very easy for you to understand if you look at voltage and current in what I believe is called the phasor model.

Here is a interested video about quantum locking. If you want to see it
https://youtu.be/8GY4m022tgo

#30
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

I actually for forgot how I did this. I think i had the one end of the bulb on the caps body and with my other hand the signal wire.

I will see if I can get it right again an then I will tell you

I will see

#31

https://altered-states.net/barry/Lakhovsky/bioelectric.htm

https://altered-states.net/lmwo/lmwo.htm

I just want to share this link I found its a massive website and very interesting stuff!

Im going to be quiet for a while and focus on translations.

#32

https://youtu.be/3sYjGk2VqCA

https://youtu.be/DrbbCpOkEBg?list=PLtCd8rWmiM_4Wi9kWJDsmXTyGBAcoyRNW

https://youtu.be/2afyRNqcr-Q?list=PLtCd8rWmiM_4Wi9kWJDsmXTyGBAcoyRN
I now know what inspired the Ghost buster movies

#33
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

Here is a better view and its done with one wire the HV one. It's shows up only when I hold it.

I once asked this Master Ivo if this was a standing wave and he said no. He said that it was moving at such a high rate of speed that the human eye cannot see it.
https://youtu.be/M1oRfCLY3QM

To be honest I don't see any of these examples that explains this wave can you point me to the right one?
https://en.m.wikipedia.org/wiki/Standing_wave

#34
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

All this standing waves and stationary waves are moving it's the nodes that don't move. Why can't I find real life examples anywhere.
https://youtu.be/GsP5LqGtkwE
https://youtu.be/ieheeeKTbac
https://en.m.wikipedia.org/wiki/Standing_wave but the clip the waves nodes and anti nodes are not moving at all. The only place where it's moving is right at the top close to my hand but it's barely noticeable.

This is what I would describe as a standing wave and it's how they explain it. In this case it would be opposing standing waves and there are many of them

#35

There are many different waves. I will show another one which is perfectly straight and others that look like lightning which is the white arc I talked about. That type of arch lightning type of a thing does not ignite the blue gas inside the tube of the bulb and the tube goes dark and it has a cooling effect.Its difficult to get the right frequency or amplitude for it and also I need to remember how I connected it. What is really weird is today the machine will work perfectly normal and tommorow it doesn't work at all or not like it did before and the settings are all set te same. It's something I cannot understand

#36
One Wire Phenomenonsaid:
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

Here is a better view and its done with one wire the HV one. It's shows up only when I hold it.

I once asked this Master Ivo if this was a standing wave and he said no. He said that it was moving at such a high rate of speed that the human eye cannot see it.
https://youtu.be/M1oRfCLY3QM

Anyway Master Ivo got real power with the current and voltage in fase. And it's actually just like Don Smith said the resonant circuits and radiant energy makes it possible to manipulate things that could normally not happen but it's useless unless you can find a way to bring or capture it and bring it back to normal electricity.You saw my video of the wire that vaporized as soon as that violet red and white coloured arc happened.It was almost instant compared to the red orange arc flame which increased in light(heat) overtime. I believe I was in the true power range with the bright white arc that vaporized that wire. Also I have a speaker connected so any chance in frequency or anything I can hear even the arc itsself and what I heard made a sound like a car racing mixed with a jet engine that sounded like something you would hear in a Starwars movie lol but really it did.

#37

Think about it a wireless boombox which you can carry like a suitcase useing a 9 to 12 battery can be turned into generator that can do this. You see we are after the Amps its the amps that do work but we don't want the system to use more amps than what it can produce in a certain point in time. Don Smith expains this nicely you are not getting free energy you get what is there an good example will be a hose pipe with low pressure of water (battery) that is pumping water into a tank high up in the air.Then with the outlet at the bottom of the tank you open the tap and suddenly there is a lot of pressure which would be your volts and the water your amps. As soon as you open water(amps) would do what the picture shows above and with that amount of coulomb's per second you can charge your battery faster than what it is using.Its almost like a alternator of a car that charges the car battery everytime you drive it. It will never die unless the battery goes bad.

Think of everything one can do with it I mean not just a generator.

https://youtu.be/H4oHU3RXjiM😎💪

#38
One Wire Phenomenonsaid:
Ol argedco luciftiassaid:
One Wire Phenomenonsaid:

This one blows my mind it's very difficult to see but do you see the spiral is standing completely still! This happens only if a make a certain connection. Notice when I close my hand it moves but look at the way it moves. Isn't that strange?

This is a standing wave. I guess you have energy coming in from one end, and the other end is connected to a conductor? Inside of the bulb is a field of gas which works as a dielectric material. Then at the other end at the boundary of the dielectric and the conductor, you have a reflection where this wave is reflected backwards onto itself. So you have this standing wave where it looks like it's not moving. Then by moving your hands around it, you are slightly changing the reactive impedance of the system and changing the speed of the wave just like in the previous example, so the position of the standing wave is moved.

A great book for you to read is Field And Wave Electromagnetics 2nd edition by David Cheng. You can find it for free on Libgen. This book makes all of this stuff about waves very easy to understand, and shows you how every little piece works. I mostly mean the last chapter, chapter 8 but also some from 7.

Here is a better view and its done with one wire the HV one. It's shows up only when I hold it.

I once asked this Master Ivo if this was a standing wave and he said no. He said that it was moving at such a high rate of speed that the human eye cannot see it.
https://youtu.be/M1oRfCLY3QM

You see in standing waves the anti nodes still move and the nodes are stationary so Im not sure if it's correct to call this a standing wave.
https://m.youtube.com/watch?v=Hetc8O8CKVY

Ok so found this and because I'm using audio output this might be relevant but as I say I'm not so sure about this please someone explain more if you can. Thanks
https://physics.info/waves-standing/

Here is a interesting part of an electron. If you look at quantum physics the actual definition of a quantum particle is expained in a very similar way and it's not an actual particle but a field or like they say here a wave.

"three dimensions
In the one-dimensional case the nodes were points (zero-dimensional). In the two-dimensional case the nodes were curves (one-dimensional). The dimension of the nodes is always one less than the dimension of the system. Thus, in a three-dimensional system the nodes would be two-dimensional surfaces. The most important example of standing waves in three dimensions are the orbitals of an electron in an atom. On the atomic scale, it is usually more appropriate to describe the electron as a wave than as a particle. The square of an electron's wave equation gives the probability function for locating the electron in any particular region. The orbitals used by chemists describe the shape of the region where there is a high probability of finding a particular electron. Electrons are confined to the space surrounding a nucleus in much the same manner that the waves in a guitar string are constrained within the string. The constraint of a string in a guitar forces the string to vibrate with specific frequencies. Likewise, an electron can only vibrate with specific frequencies. In the case of an electron, these frequencies are called eigenfrequencies and the states associated with these frequencies are called eigenstates or eigenfunctions. The set of all eigenfunctions for an electron form a mathematical set called the spherical harmonics. There are an infinite number of these spherical harmonics, but they are specific and discrete. That is, there are no in-between states. Thus an atomic electron can only absorb and emit energy in specific in small packets called quanta. It does this by making a quantum leap from one eigenstate to another. This term has been perverted in popular culture to mean any sudden, large change. In physics, quite the opposite is true. A quantum leap is the smallest possible change of system, not the largest."

LOL guys I made a view hundred quantum leaps today 😂

#39

http://hyperphysics.phy-astr.gsu.edu/hbase/Sound/tralon.html#c1

I think I'm creating longitudinal waves check this out