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Overunity Machines Forum



Reactive power - Reactive Generator research from GotoLuc - discussion thread

Started by hartiberlin, December 12, 2013, 04:34:12 PM

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wings

the solution is to think out of the EGO box.
if we add the effect of asymmetry described by ufopolitics to a circuit as below.
everything should work note the use of multiple transformer with high transformation ratio (few turns on the primary to reduce the diode shorting effect?)

looking for
Ufopolitics experiment and "ASYMMETRY TO ENLIGHTENMENT" & "SYMMETRY OF DARKNESS"

MarkE

Wings we can test whether that circuit achieves an "asymmetry" that provides value:

Pick values for each of the circuit elements that should provide the best results for the ratio of input power to power dissipated in the resistor: 16.  The we can use the resistor 16 to heat a thermal mass to establish the output power delivered, and connect a power analyzer to the power source to determine the power drawn.  Then we can pick two resistors:  One to match the input power measured, and one to match the output power delivered.  If we use adjustable resistors we can match precisely.  We can connect those resistors directly to the supply in the same measurement arrangement and then record the input power and output heating power evolved.  In order for the LC networks to provide value we should see that the for the matched input power case the output power of the LC network case produces more heat than the case of the simple resistor, we should also see that for the case of the matched output heat, that the LC network case draws less power than the simple resistor matched to generate the same heat.

wings

Quote from: MarkE on January 19, 2014, 09:01:20 AM
Wings we can test whether that circuit achieves an "asymmetry" that provides value:

Pick values for each of the circuit elements that should provide the best results for the ratio of input power to power dissipated in the resistor: 16.  The we can use the resistor 16 to heat a thermal mass to establish the output power delivered, and connect a power analyzer to the power source to determine the power drawn.  Then we can pick two resistors:  One to match the input power measured, and one to match the output power delivered.  If we use adjustable resistors we can match precisely.  We can connect those resistors directly to the supply in the same measurement arrangement and then record the input power and output heating power evolved.  In order for the LC networks to provide value we should see that the for the matched input power case the output power of the LC network case produces more heat than the case of the simple resistor, we should also see that for the case of the matched output heat, that the LC network case draws less power than the simple resistor matched to generate the same heat.
not in this life


MileHigh

Exactly, why not?  I just made reference to it on another thread.  You go to a big-box store and get a few basics:  Styrofoam, a plastic bucket with a tight-fitting top, some insulation, and some plastic bags.  You line the inside of the bucket with insulation and insert the plastic bag.  Place the bucket on top of the Styrofoam.  Cut a small notch in the rim of the bucket to pass your wires.  Wrap the bucket in another layer of insulation.

The wrap up your circuit component and put it in the bucket and run your tests.  It's an easy and very useful project that you will always have a need for.