To discuss the devices of Akula.
I have moved some posts into this thread, in the hope of showing some work.
Chris
To discuss the devices of Akula.
I have moved some posts into this thread, in the hope of showing some work.
Chris
When the two Coils, L1 and L2 are in Resonance, the Electromagnetic Induction between these two Coils, which is the Time Rate of Change of the Magnetic Field in the Proximity of the Conducting Coils (L1 and L2) will be greater than the Input Power to bring L1 into Resonance.
But, this does entirely depend on the Coils, Turns, Configuration/Orientation and also the Inductance's of the Coils. So a little work to get the optimum configuration! A lot of observation!
All good fun however!
Chris
P.S: I have uploaded a massive amount of data, in the Reference Section you will find some references to this Circuit!!! Its worth looking at them to see!!!
Howdy Chris,
have you ever considered wire length as first priority, and then turns and/or shape instead of turns only?!
Good starting point
Beyond the Fabric of Existence ISBN-13: 978-1501098970, ISBN-10: 1501098977
Cheers
Jo
Howdy Chris, have you ever considered wire length as first priority, and then turns and/or shape instead of turns only?! Good starting point Beyond the Fabric of Existence ISBN-13: 978-1501098970, ISBN-10: 1501098977 https://www.amazon.com...wayne+thompson Cheers Jo
Hi Jo - Yes, yes this is exactly what we have tried to present for so long: Electromagnetic Waves and Electrical Energy
Many seem to miss this importance! None realise, and most don't bother reading and studding.
Turns roughly equates to Wire Length, and yes this is Important!
An Insulated piece of Copper Wire is a Wave Guide, for the Flow of Electrical Energy! Although my understanding is somewhat limited, I still have a lot to learn, I believe I have pointed toward these facts for years and it has gone unnoticed!
Chris
Hi, Chris! Can you please take a look at this circuit? Is this the right circuit you have in mind for finding the resonant frequencies? Did I understand correctly that we should be comparing current pulses from the input vs current pulses at the output? Or should we compare voltage pulses on the input vs voltage pulses on the output? Thanks
Hi Cd_Sharp, if you dont mind me saying, youre diverging from what the Circuit and original device was doing.
I recommend a look back at the thread: Akula's 30 W lantern - I posted more data there the other day, of another replication.
You will see the LC Time constant in the Scopeshots as the Curve, the Resonance, you already achieved with the MrPreva Replication, the Currents will be opposing, the same, but carefully look at the Videos, look at what they are tuning for.
This is not LC Resonance.
Hi Cd_Sharp - That's just what I would do.
The Coils are where we need to concentrate, looking at the Current Directions at the same time. Ensuring we have met the requirements needed to "Generate" the excess Energy we are looking for.
It may be the Core may need to be changed? I have found some cores better than others?
Just trying to help, hope you don't mind me pointing out these things.
I posted this toMy Replication.
All the best
Chris
Edit: Sorry, your question on the Capacitor, normally:f = 1 / 2 PI Sqt(L C)
But in this situation, you will find, this is not so important, the capacitor is just acting as a Reservoir and the Resistor's R1 & R3 is used to take the square edges off the DC Switching.
Some more data here: Magnetic Modulation of Charged Particles
Look at their Pulses, remember, the Capacitors are just acting as a reservoir, not LC Resonance, look for Coil Resonance.
Chris
Hi again Cd_Sharp,
Please remember a Mosfet is a DC Switch, designed to Chop a DC Source into Pulses.
The Gate signal shown in the Videos is a series of small, very narrow DC Pulses. The Gate Signal being inverted to the Drain Signal, but also some other signal effects in the Drain Signal that we are looking for.
M = 5.0 μs
P1 = 1.75μs (571.42857 KiloCycles) duration, but 10μs (100 KiloCyckes) after on.
P2 = 5μs (200 KiloCycles) approx after P1, 1μs (1 MegaCycles) width approx
Please note: Cycles is Cycles per second, which this is not, because its not repetitive, but this is to give an idea of the Frequency, or Cycles per-second. All easily obtainable with equipment today.
Chris
No one online at the moment
In physics, scalars are physical quantities that are unaffected by changes to a vector space basis. Scalars are often accompanied by units of measurement, as in "10 cm". Examples of scalar quantities are mass, distance, charge, volume, time, speed, and the magnitude of physical vectors in general.
You need to forget the Non-Sense that some spout with out knowing the actual Definition of the word Scalar! Some people talk absolute Bull Sh*t!
The pressure P in the formula P = pgh, pgh is a scalar that tells you the amount of this squashing force per unit area in a fluid.
A Scalar, having both direction and magnitude, can be anything! The Magnetic Field, a Charge moving, yet some Numb Nuts think it means Magic Science!
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Ere many generations pass, our machinery will be driven by a power obtainable at any point of the universe. This idea is not novel. Men have been led to it long ago by instinct or reason. It has been expressed in many ways, and in many places, in the history of old and new. We find it in the delightful myth of Antheus, who drives power from the earth; we find it among the subtle speculations of one of your splendid mathematicians, and in many hints and statements of thinkers of the present time. Throughout space there is energy. Is this energy static or kinetic? If static, our hopes are in vain; if kinetic - and this we know it is for certain - then it is a mere question of time when men will succeed in attaching their machinery to the very wheelwork of nature.
Experiments With Alternate Currents Of High Potential And High Frequency (February 1892).