This demonstration grounds abstract electromagnetic theory into a tangible reality, proving that even complex phenomena follow simple physical laws. It is a refreshing return to empirical clarity in an era of over-complicated theoretical fluff.
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The Energy that flows through a Tesla coil and the Ground 2追加:
[music] >> Hi guys.
I made this video because some of my subscribers informed me already that they want to know more informations about the energy that flows through a Tesla coil and the ground.
So, I'm using the same Tesla coil as before, which is a catcher's layer coil, anyway, whatever.
It resonates itself 1 MHz.
So, I'm starting now.
First of all, I connect the current supply.
The coil's ready.
You see the high voltage.
And this is the ground.
This thing.
Look the inductor, this ring uh 350 micro Henry with a LED shows that the current flows through the ground this time.
15 V I'm using at uh 1 A about, and the frequency is uh 1 MHz over there.
So, this is the first setup.
This is the Tesla coil.
I have already connected the bulb, a filament bulb, between the vent of the secondary coil, L2, and the ground.
This is uh how much energy consumes. 15 V at 0.65 A. And the the half of the power uses this time with the lamp.
And the frequency remains the same.
It's 1 MHz.
Okay, this is This is the second setup.
Instead of the bulb, I connected a coil here.
I made it myself with uh uh 140 turns about.
Taps every 10 turns.
Right here is connected in that the end of the secondary coil of the Tesla coil.
And the ground.
And I'm going to use the bulb again.
Now, it's already on.
High voltage, as usual.
And about the light bulb, yes.
Let me see.
This is the bulb at the very end of the coil.
The LED doesn't uh light up anymore.
Now, removing the tap, I can vary the power I'm using for the lamp.
So, it consumes less, yeah.
It has a function of the variable transformer or variac.
You see, this is uh very I'm sorry, but I cannot show you very well.
It's just a little bit.
It at the very end it's more.
Now, of course there is a high power at the output as a high voltage.
This is the power that consumes the same as before, half an amp here of 15 V, and the frequency remains the same, 1 MHz.
All right, in this setup, instead of the bulb and the coil, I connected four diodes, fast diodes UF 5408, and the capacitor, 6 micro microfarad at the 450 V.
I want to rectify this current, this energy that flows through the coil.
Now, this is the end of the L2, the bridge, these coils, and the capacitor.
This is the capacitor.
The ground.
And I'm using the multimeter to see what kind of uh voltage can I draw from it.
Starting again.
Well, as you see, we have 200 and No, no, sorry, 100 V now.
This is the power I'm drawing now, the same as before, not a big not a real thing.
The frequency is the same, 1 MHz.
Of course, at the same time, there is this high voltage at the end.
Yeah.
And I'm trying now with this screwdriver to break down the circuit right here.
See what is going to be happen.
Oops.
You see it?
The capacitor charge up very, very rapidly.
Let me show you.
This is what I'm doing here.
Discharging the capacitor.
And in 1 second about, the capacitor is full again.
The power supply, the frequency.
I'll do it again.
The frequency remains the same.
And the power.
And something I found very interesting.
Look the LED.
The time I'm discharging.
You see it?
Discharge.
Lights up.
And something else I would like to share with you. By it's discharging, right now the capacitor is discharged.
The Tesla coil is a switched off.
But look what is happening the capacitor.
It It is still charging up.
Without power.
Without power and I don't know, okay, I'm discharging again.
Zero.
And look Look what is happening.
This is not not normal.
Not at all.
Okay, it It's about millivolt, but oh, it's already 1 volt, a half a volt.
Discharging again.
And charge.
Charging up. No power at the coil.
Nothing.
Okay.
That's it for the now.
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