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The electric field of a magnet

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  • Dave45
    replied

    Im not so sure you would even need permanent magnets
    If permanent magnets were used frequency's become an issue

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  • Dave45
    replied
    this is a good vid, the A vector potential is the electric field
    I think he's on the right track but his coil configuration is wrong
    SQM Replication Project - Hyiq.org - Update

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  • Dave45
    replied

    the truth, I like this man already, eye's to see ears to hear

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  • Dave45
    replied
    I would think any energy brought into a closed system could be more efficiently captured

    If we look at the van allen belts they are enclosed by the earths magnetic field we live in a closed system, but energy can be added to the system, look at the aurora lights this is energy being added to the system
    A transformer is more of a closed system than the planet the magnetic field is not allowed to expand it is concentrated and so concentrates the electric field as well, very efficient
    Last edited by Dave45; 12-13-2011, 11:22 AM.

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  • Dave45
    replied
    Hey Martin
    So many avenues we must explore

    Iv been looking at transformers
    Wondering why they have the efficiency that they do
    This is what Iv came up with
    A transformer is a closed magnetic system
    Its in the design of the structure
    the electric field is enclosed
    the electric field transfer's the energy
    the magnetic field keeps the system closed
    I think we can add energy to the system
    Iv looked at the VTA before I think I'll have another look
    it seems if we could add the PMH to a transformer we could boost the electric field and boost the transformer

    still thinking and studying
    I think if a person uses pemanent magnets your frequency would need to be 7.8 hz
    The transformer will be a good teacher because it is a closed system

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  • nueview
    replied
    For years i have believed that heat was a charge volume reaction no matter how derived but that is begining to change.
    i have done allot of different thngs with fuels and the most inportant is the heat value before starting.
    being no expert in k capture but reading many papers about it it seems to make an amount of sense to me that the captured charge by field action or mass related value for heat playes a big part in how energy interacts within molecules.
    the extreme actions of browns gas is a prime example and many others but this action of charge capture does make allot of sense to me.
    Martin

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  • MonsieurM
    replied
    Heat is merely a description of Atoms moving at a higher state of Vibration

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  • nueview
    replied
    @ Myenergetic
    yes that sumerizes the paper very well and i thank you for that information. i think for now i will try to get a single MOSFET and avoid some of the problems as induction motors have allot of frequency issues.

    i have to thinking about the physics 8 video i posted a few back in the thread and it is making me wonder if heat is not a nessary part of getting to higher energy levels.
    please bear with me for a moment. tesla often commented on the control of the heat during many of his projects useing k capture of the energy. in electrostatic machines the arc is always present and if we enrich uranium heating is also a part of the process even in the hydrocracking industry it plays a major part.
    this is just a thought and not fully formed yet.
    Martin

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  • mostromagnetico
    replied
    MonsieurM See this:

    Series english 5Articles pdf free ebook download from www.ostfalia.de

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  • myenergetic
    replied
    @ nueview

    Here is the summery concluded simplified

    1,Paralleled MOSFET devices with varied Breakdown Voltages work under different electrical and thermal stresses. The lower BV device experiences higher stresses.

    2, Under the same condition, paralleled MOSFET devices with higher terminal stray inductances have more balanced load and more evenly distributed junction temperature.

    3, Good thermal coupling among paralleled MOSFET devices can help ease the electrical stress and balance the load.

    4, This conclusion is only valid if paralleled MOSFET devices definitely work under avalanche.

    5, In high power applications, more than two power devices can be paralleled to share the high load current. So under worst case, the MOSFET with lowest BV could take most of the load current and be quickly damaged.

    6, When carefully selected there is more possibility for MOSFET devices to have even BV distribution and perform remarkably.

    7, The stray inductance would be under higher electrical stress, which could cause potential wire bond failure.

    Hope this helps

    Regards

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  • nueview
    replied
    thank you for the paper

    it looks like i am going to have to figure out the advantages and disadvantages of what i was thinking about doing.
    stepping power levels it looks like this is a way to go.
    Martin

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  • myenergetic
    replied
    MOSFET Paralleling @ nueview

    @ nueview
    Late reply better than no reply for the MOSFET paralleling . Please read the following link from IRF
    Regards

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  • nueview
    replied
    for those following along you might want to watch this and think about it some.

    Principle Physics 8. Electrostatic Force - YouTube

    Matrin

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  • nueview
    replied
    hi guys

    caduceus coil on slayer exciter 1.wmv - YouTube

    i have to say i am pushing this thought a bit hard so hope you are not going to be to upset with me about the magnetics being a double helix much like unto DNA strands it is making more sense now than ever as i am seeing some things others are doing it is the duality that i am being impressed with.
    it was always there in electrostatics but now seeing it in magnetics as well is so eye opening to me.
    this is done with a caduceus coil for the driver.
    Martin

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  • MonsieurM
    replied
    Originally posted by mostromagnetico View Post
    Per me le calamite hanno solo questo:

    [U]lines of force dense, more in the windings electrotechnical. [ /U]

    This is useful to make experiments of electronics for the ZPE.

    N. B. vortices on cubic magnets
    are always permanent magnetic lines of force.

    That experiments you have built?


    My apologies mostromagnetico, could you go into more details ..would love to know what you mean by

    This is useful to make experiments of electronics for the ZPE.

    N. B. vortices on cubic magnets
    are always permanent magnetic lines of force.

    Leave a comment:

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