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  • Allwest
    replied
    Originally posted by Herbie687 View Post
    Good Job guys

    Leave a comment:


  • Allwest
    replied
    Originally posted by plengo View Post
    Guys, excellent work! Show the teachers, students and everyone this work.

    Thank you,

    Fausto.
    Hows the grease cells doing?

    Leave a comment:


  • plengo
    replied
    Guys, excellent work! Show the teachers, students and everyone this work.

    Thank you,

    Fausto.

    Leave a comment:


  • Herbie687
    replied
    Our Video - f(x) = √x - The Proof of "Free Energy" in Crystal Battery Cells

    Here it is you guys! Enjoy!
    https://www.youtube.com/watch?v=-TWIyo6fAxo

    Documentation PDF: Crystal Battery Engineering - PV Engineeering Team
    Last edited by Herbie687; 05-30-2012, 01:49 AM. Reason: Link Correction

    Leave a comment:


  • NickZ
    replied
    Extropy also exists, which is the opposite of entropy, and is really what we are looking for here. It is the effect of building up instead of breaking down. Or a situation where something is constantly giving off, that which it is also constantly receiving. Such as what a Sun, a planet, or a Vortex are doing, although there may be nothing that may do so, forever.
    The best closest example of what we are trying to create here is the solar cell. There is no oxidation involved, and it produces energy by a conversion factor. And, so can our power cells, although it may take us a while to achieve this. Remember that it only took a few thousand years to come up with the current version of the solar cell. It's only a matter of time...
    China will produce them cheaper than we can buy the parts to build it ourselves. It is already happening, we just don't realize it, yet. There are many scientists in mayor companies like EverReady, Panasonic, G.E. Motorola, etz...working on this. I'm sure the N.A.S.A already is utilizing them. They are not being produced for the public for the same reason that gasoline motors are still being produced. As these companies will not compete with their own technologies. It's all about money, and competition.
    If you don't think so, just wait and see. There are already batteries that don't need to be recharged, with a three year guarantee. If they fail, they will be replaced for free.
    Even At the Dollar Stores now, regular AAs are being sold for 12 cent each.
    Are we going to make something better by placing a couple of pieces of metal into a puddle of salts???

    NickZ
    Last edited by NickZ; 05-27-2012, 02:58 PM.

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  • Allwest
    replied
    Originally posted by ibpointless2 View Post
    Everything is made up of pure energy.

    The 1.6 volts was on the AC side of your meter. The one volt was the DC side. If you move the nail in the tree closer to the copper tube you should see a increase in amps.

    I remember reading this awhile ago about some people doing the same thing. Scientists Draw Electricity from Trees
    "Everything is made up of pure energy"

    IB,

    I think you made a cell one time that was only made of carbon bits, one smaller and one bigger, can you supply link?

    To all, some thoughts

    This is a perfect example of nature applying energy to equal things out

    This is also what causes the wind, hot to cold

    Nature is always trying to equal things out, and we are capturing some of the energy that nature applies to accomplish this

    I know there is a name for this .... Entropy?

    Entropy is why they say there will never be a perpetual motion machine, because everything is destined to decrease to its lowest power or form

    Your thoughts?

    Leave a comment:


  • Allwest
    replied
    Originally posted by cgalvisardila View Post
    thats amazing, what are your long term results, still going at 500Ma? sure its strong, the chilli doesnt go bad?

    cheers
    It does go down fast, but have had cells last over a month above 100Ma

    I am trying different way of keeping the amps up

    One thing that helps keep it moist is (dry out) Dry Out® Dehumidifier

    Mix with electrolyte, or over the top of the cell

    You will not need to add water, it draws moisture from the air, and keeps your cell moist

    Regarding chili going bad-So far one cell still going after 2 months

    Best of luck,

    Leave a comment:


  • cgalvisardila
    replied
    Originally posted by Allwest View Post
    Have tried making the chili cell with 500Ma?

    Allwest power cell # 5b - YouTube

    thats amazing, what are your long term results, still going at 500Ma? sure its strong, the chilli doesnt go bad?

    cheers

    Leave a comment:


  • Allwest
    replied
    @ all

    I'm just throwing out a idea but I think Marcus Reid could have used Chemalloy for one of his electrodes. It does state he used aluminum and Chemalloy is mostly aluminum, this would explain the very slow deterioration of the aluminum on his cell. Making chemalloy battery would be of great interest because they last for a long time.

    Good find IB

    Nu EnergyTM Sodium Chloride Ion-valve Technology

    Leave a comment:


  • ibpointless2
    replied
    Originally posted by vintasalo View Post
    So their actually communicating energy through the tree it's self

    I have a solar panel connected to a watermellon plant now to see if I increase it's energy if it will grow it's fruit faster.
    No I think the research team misunderstood what was happening. You can have a voltage from using the same metals but the electrolyte you put them in must be different. They merely made a galvanic cell. The reason you get voltage is due to one metal having more electrons than the other and both want to be at a equal state so one gives up electrons so that they both balance out. Since its giving up electrons it will start to fall apart and soon stop. The real goal is to figure out a way to stop the falling apart but still get voltage from it. I never built a tree battery so i don't know if the metals decay or if the tree supplies power back to the metal to keep it from decaying or what.


    @ all

    I'm just throwing out a idea but I think Marcus Reid could have used Chemalloy for one of his electrodes. It does state he used aluminum and Chemalloy is mostly aluminum, this would explain the very slow deterioration of the aluminum on his cell. Making chemalloy battery would be of great interest because they last for a long time.

    Leave a comment:


  • vintasalo
    replied
    Originally posted by ibpointless2 View Post
    The reason for the more amps is due to less resistance. The closer you get the two metals the less resistance you have between them thus you have more amps.

    This has to do with ohm's law. Amps = Voltage / Resistance
    If you have 1 volt with a resistance of 5 ohms you have 0.2 amps (1V/5ohms = 0.2A)but if you increase the resistance to 20 ohms you have (1V/20ohms = 0.05A). So more resistance you have the lower the amps will be.


    The reason why you get more voltage than the research team has to do with you using dissimilar metals. The research team used the same metals and only got 200mV.
    So their actually communicating energy through the tree it's self

    I have a solar panel connected to a watermellon plant now to see if I increase it's energy if it will grow it's fruit faster.

    Leave a comment:


  • ibpointless2
    replied
    Originally posted by vintasalo View Post
    Hey IB

    I was just going to do that and figured I'd do it now and now the amps are at 3.50Ma that's quite the increase. Why do you think it gets stronger as they get closer to one another?

    Also that link has them having to use an oscillator to get to the volt I'm at without one

    The reason for the more amps is due to less resistance. The closer you get the two metals the less resistance you have between them thus you have more amps.

    This has to do with ohm's law. Amps = Voltage / Resistance
    If you have 1 volt with a resistance of 5 ohms you have 0.2 amps (1V/5ohms = 0.2A)but if you increase the resistance to 20 ohms you have (1V/20ohms = 0.05A). So more resistance you have the lower the amps will be.


    The reason why you get more voltage than the research team has to do with you using dissimilar metals. The research team used the same metals and only got 200mV.

    Leave a comment:


  • vintasalo
    replied
    Originally posted by gene gene View Post
    Hi all,

    My guess on amps from trees would always be higher in spring than any other time of the year. As with maple syrup harvest, it is during this time that the most sap is moving from the roots to the buds to form leaves. If one was to test the same tree in the fall, my bet would be on less amps at this time.

    My 2 cents, Gene
    It's a palm tree though

    Leave a comment:


  • gene gene
    replied
    Hi all,

    My guess on amps from trees would always be higher in spring than any other time of the year. As with maple syrup harvest, it is during this time that the most sap is moving from the roots to the buds to form leaves. If one was to test the same tree in the fall, my bet would be on less amps at this time.

    My 2 cents, Gene

    Leave a comment:


  • vintasalo
    replied
    Originally posted by ibpointless2 View Post
    Everything is made up of pure energy.

    The 1.6 volts was on the AC side of your meter. The one volt was the DC side. If you move the nail in the tree closer to the copper tube you should see a increase in amps.

    I remember reading this awhile ago about some people doing the same thing. Scientists Draw Electricity from Trees
    Hey IB

    I was just going to do that and figured I'd do it now and now the amps are at 3.50Ma that's quite the increase. Why do you think it gets stronger as they get closer to one another?

    Also that link has them having to use an oscillator to get to the volt I'm at without one

    Leave a comment:

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