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Author Topic: Negative Inductance and measure of Magnetic force.  (Read 56086 times)

Offline synchro1

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Re: Negative Inductance and measure of Magnetic force.
« Reply #555 on: May 11, 2019, 02:38:31 PM »
Adding magnet strength to the MMM (Mostly Magnet Motor) increases inductive kickback along with coil torque. Luc adds a latching relay to his SPDT switches. Inductive kickback increases with frequency of power interruption. The "Echo Canyon" of Adams resonance, not the mechanical throw, is where the COP advantage is greatest with this kind of super build.

Oscillating in Adam's resonance, the "Inductive Kickback" delivers half of the motor power! Vibration transducers provide a superior output in the millimeter throw range.
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Offline synchro1

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Re: Negative Inductance and measure of Magnetic force.
« Reply #556 on: May 13, 2019, 12:57:44 PM »
What would this current reversing monopole oscillator be called? Too bad he can't get the magnet rod to work his switch.

https://www.youtube.com/watch?v=ys2-wTU5w4E

Offline synchro1

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Re: Negative Inductance and measure of Magnetic force.
« Reply #557 on: May 13, 2019, 09:06:30 PM »
Quote from Gotoluc:

"So to please everyone I did tests to see if the super build could have OU potential even though I knew it would not since the design also suffers of the generator effect as the coil moves in the permanent magnet field. Since it can only move at a certain speed because the coil generates power as it moves, it fights the input power which is coming in the same direction, so we cannot beat the laws of physics here".

Everyone can see from Luc's final conclusions that his (MMM) failed to benefit from any propulsive "Delayed Lenz effect". Removing the latching relay in his motor circuit would allow it to Oscillate in Adam's resonance; Doubling it's power by dovetailing the inductive back kick instead of fighting out of phase like Luc describes it doing.
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Re: Negative Inductance and measure of Magnetic force.
« Reply #557 on: May 13, 2019, 09:06:30 PM »
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