Notice how all of these "free energy" devices never have a load on them? And the video always cuts out just as it starts choochin'.
The secret to this device is the springs. They have a resonance frequency, and once all the springs get synced, it seems like energy is being added into the system, where before, there was more energy in the system, but it was inefficient due to being out of sync. See: https://www.youtube.com/watch?v=T58lGKREubo
Once the resonance is sync, then it can do more work, IE, turn the flywheel. But at no time was there more energy in the system than before.
And once you put a load on the system, it will drain the energy almost immediately.
Dang, why can’t we do something like that, a wheel that flies around and around. It should probably be heavy. We should get our scientist and engineers on it immediately.
The energy required to get that sheave initially spinning is far, far greater than the energy that was needed to getting it spinning from a certain velocity to a certain faster velocity.
That machine will reach a peak velocity then slowly slow down. It will not speed back up. It's, for lack of a better term, burning off that potential energy by speeding up. However, it will slow down and stop. If you put a load on it, mechanical or electrical, it will reach a lower peak velocity, and slow faster.
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And the video always cuts out just as it starts choochin'.
The secret to this device is the springs.
They have a resonance frequency, and once all the springs get synced, it seems like energy is being added into the system, where before, there was more energy in the system, but it was inefficient due to being out of sync.
See: https://www.youtube.com/watch?v=T58lGKREubo
Once the resonance is sync, then it can do more work, IE, turn the flywheel.
But at no time was there more energy in the system than before.
And once you put a load on the system, it will drain the energy almost immediately.
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The energy required to get that sheave initially spinning is far, far greater than the energy that was needed to getting it spinning from a certain velocity to a certain faster velocity.
That machine will reach a peak velocity then slowly slow down. It will not speed back up. It's, for lack of a better term, burning off that potential energy by speeding up. However, it will slow down and stop. If you put a load on it, mechanical or electrical, it will reach a lower peak velocity, and slow faster.
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[ + ] mikenigger
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