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I am looking for information about lighting an incasdescent light bulb with a capacitor at least for a second. Not using supercapacitors and using any kind of schematic.
i am interested in OU device in general but specialized in the E-TBC technology as a promising device.. so i just give my point of view about how could Don Smith device look like.
i am interested in OU device in general but specialized in the E-TBC technology as a promising device.. so i just give my point of view about how could Don Smith device look like.
Best regards.
Thanks, it seems interesting and I am going to search a little bit information about the E-TBC.
Smith device has a lot of questions to ask, but the two more important are:
1. How to use the energy from those capacitors to perform work
2. How to charge that capacitor bank in less time.
Maybe a capacitor with superconductivity charges very fast, or not.
nice video, i had the same problem with my E-TBC when i was able to charge a capacitors bank to a high level but when connecting a light bulb i only see a spark in the connection of the bulb ! when short circuit the capacitor with a thin copper wire, the wire burn immediately... my explanation is : i only get voltage without real current.
I am reading part of your pdf files.
About the bulbs, I see the same sparks when I connect them to the capacitors.
I don't see any light or sparks inside the bulb, only sparks in the connection of the bulb. Well, I think it's needed to select a correct value. I think it's needed more capacitance but I think also that is the capacitance is small the capacitor should discharge on the bulb without sparks.
Thanks, it seems interesting and I am going to search a little bit information about the E-TBC.
Smith device has a lot of questions to ask, but the two more important are:
1. How to use the energy from those capacitors to perform work
2. How to charge that capacitor bank in less time.
Maybe a capacitor with superconductivity charges very fast, or not.
----just a quick reply ---
superconductivity is achieved in room temperature using the capability of the induced rotating electric field to recharge the capacitor upon oscillation, so you have electrons in condensed quantum state, now you got a squared ( or amplified ) electromagnetic flux, you just need another L2 coil with proportional length to tune ( or talk ) with L1 coil.
when L2 is able to talk with L1 and L1 is able to talk with the ambient background energy the output from L2 will be a replicated active power thousand or million in time according your frequency ..
charging the capacitor bank isn't a problem even we could enhance this further more, at this stage we have to change the frequency and voltage to the desired level, here a lots of people will come and help ! don't worry .
superconductivity is achieved in room temperature using the capability of the induced rotating electric field to recharge the capacitor upon oscillation, so you have electrons in condensed quantum state, now you got a squared ( or amplified ) electromagnetic flux, you just need another L2 coil with proportional length to tune ( or talk ) with L1 coil.
when L2 is able to talk with L1 and L1 is able to talk with the ambient background energy the output from L2 will be a replicated active power thousand or million in time according your frequency ..
charging the capacitor bank isn't a problem even we could enhance this further more, at this stage we have to change the frequency and voltage to the desired level, here a lots of people will come and help ! don't worry .
What you mean with proportional length?
I have heard about different techniques and there are more that I don't know.
One technique I heard is that L1 wire lenght must be 1/4 of the L2 wire length.
Another technique is that the weight of L1 and the weight of L2 must be the same.
What you mean with proportional length?
I have heard about different techniques and there are more that I don't know.
One technique I heard is that L1 wire lenght must be 1/4 of the L2 wire length.
Another technique is that the weight of L1 and the weight of L2 must be the same.
in my opinion the correct option is the first where L1 wire length must be 1/4 of the L2 wire length, this is because we are using electrostatic induction, the E-TBC secure this condition because the voltage in it depend on its length so we have to follow it in L2 coil to make the two coil L1/L2 talk to each other.
It would be interesting to perform the Lenz's Law (coil + magnet + voltmeter) using a bucking coil configuration and check the behaviour. Also there are other configurations that would be interesting to test.
in my opinion the correct option is the first where L1 wire length must be 1/4 of the L2 wire length, this is because we are using electrostatic induction, the E-TBC secure this condition because the voltage in it depend on its length so we have to follow it in L2 coil to make the two coil L1/L2 talk to each other.
GOOD NIGHT to all
Apart of the 1/4 wire lenght... Do you look at any other parameters to make talk L1 to L2?
Thank You for all of your input, I don't know what to say yet but I want
you to know I am taking all of this in. I see the posts of yester-year
from folks who had no intention on teaching and I gained some knowledge.
I am beginning to understand these very specific diagrams and theory.
What I need is to hear a summation of any kind. Meaning that I need
and entry into the over all theory or device operation.
Not to low key at all what you and MED are sharing. You guys are
awesome and I enjoy every minute of your exchange. If possible
drop a line for those of us who wonder what these diagrams will
eventually apply to, if I said that right?
I stated before that I thought the Don Smith did different things but
I have never found an answer to that question. In other words how
would you explain the D.S. device operation by using a simple flow
chart for us who remain on the side lines wondering.
Don had a lot of stations that the energy went through.
AetherSci
There's plenty of DS material out there, but I thought I'd throw in this link: http://www.tuks.nl/pdf/Reference_Mat...an-11-2012.pdf
I've only skimmed through it, but for what it's worth, see what Zilano says on page 61 (first response).
I've got charge going into my caps., and sparks when I discharge (short) them. I'd sure like to be able to use that stored potential.
Tomorrow's another day.
Bob
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