Maxwell's Displacement Current - Making progress?

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  • Last Post 06 September 2018
Chris posted this 04 September 2018

My Friends,

I want to share some work posted to one of the other forums. Particularly Bradley Richard Atherton of all people...

Bradley named the topic: At T=0

Now all here will see right away that Bradley is still researching Coils, Electromagnetic Induction and Capacitive Coupling between Coils. Some of my friends have said that's how The Mr Preva Experiment works! Via Capacitive Coupling. 

At the end of the day, its still Induction, remembering E and B are orthogonal, they are one beast and many forget this!

This is great to see! I commend him for posting some data that has some sense.

We have seen some of this before! I have posted some data years back and some here about the capacitance and capacitive coupled inductance's. One in particular: An Experimental Evidence of Energy Non-Conservation.

 

 

The pdf document is attached below. Also another pdf, below:  A Novel Transformer with Compensating Coil, that I posted here:

 

 

If you have time and if you wish, I suggest having a quick read, some progress there. Clearly Brad did pay some attention!

   Chris

 

P.S: Yes I know what your'e going to say, they are still copying all our work, I know, we have covered all this already here in our pages! Many times!

P.P.S: Yes, its not a Maxwell thing, Heavyside introduced Displacement Current! Maxwell was very much smarter!

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Chris posted this 04 September 2018

I thought this was best in another post, so as to keep the News short.

Floyd Sweet gave us this about Maxwells Displacement Current:

THE FALLACY OF DISPLACEMENT CURRENT


Conventional electromagnetic theory proposes that when an electric current flows down a wire into a capacitor it spreads out across the plate, producing an electric charge on the plate which in turn leads to an electric field between the capacitor plates. The valuable concept of continuity is then retained by postulating "after Maxwell" a displacement current. This current is a manipulation of the electric field ( E ) between the capacitor plates which has the dimensions of electric current and completes the flow of electricity in the circuit. This approach permits us to retain Kirchhoff's laws and other valuable concepts even though superficially it appears that at the capacitor there is a break in the continuous flow of electric current.

The flaw in this model appears when we notice that the current entered the capacitor at only one point on the capacitor plate.

We then are left with the major difficulty of explaining how the electric charge flowing down the wire suddenly distributes itself uniformly across the entire capacitor plate, at a velocity in excess of the speed of light. This paradoxical situation is created by a flaw in the basic model.

Work in high speed logic conducted by Ivor Catt has shown that the model of lumped capacitance is faulty and displacement current is an artefact of the faulty model.

Since any capacitor behaves similarly to a transmission line it is no more necessary to postulate a displacement current for the capacitor than it is necessary to do so for a transmission line. The excision of "displacement current" from electromagnetic theory has been based on arguments which are independent of the classic dispute over whether the electric current causes the electromagnetic field, or vice versa.

 

Again, E and B are the same best, one is the other, but Time dependant and orthogonal to each other! I hope we have a general understanding here.

 

Check out Ivor Catt's website, awesome reading there!

   Chris

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Chris posted this 04 September 2018

 

Simply put, the above means one thing:

 

We all like to learn, and learning should not ever be something that should be subjected to excessive criticism or unjust harassment by anyone!

I have learnt in my time, that there is always something that can be learnt in every situation!

Engineers spend much of their time attempting to reduce or eliminate Parasitic Inductance's and Parasitic Capacitance's. The following video is one example of Parasitic Inductance:

 

Ref: Increasing the Rate of Kinetic Energy

 

Our threads on Nano Second Pulses, Akula Threads, on Nano second Pulses, Impulse Pressure Wave, all about Freeing Electrons and Accelerating them, also gives us some idea on why we may need to use sharp pulses! many threads here cover the Why's and How's!

Using sharp pulses Induces High Voltage, its a function of Electromagnetic induction. The Time Rate of Change of the Magnetic Field.

   Chris

dummyload posted this 05 September 2018

The math, I may never understand.. but I do really appreciate your persistence.

Oliver Heaviside Electromagnetic theory http://libgen.io/search.php?req=Oliver+heaviside&lgtopic=libgen&open=0&view=simple&res=25&phrase=1&column=def

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Chris posted this 06 September 2018

Hey Dummyload,

Thanks for the resource!

   Chris

Chris posted this 06 September 2018

Mind, one of the three greatest things given!

 

Food for thought:

What is Charge, why does Charge Exist?

What holds a Charge?

What happens when we move that Charge?

If the Electron has Charge what else must it have?

What is a Magnetic Field? Is it the Charge? Or an effect of the Charge?

Why does the word: "Electromagnetic" not have a space? "Electro" "Magnetic"...

A Hall probe can detect Electric or Magnetic? What if I told you that is actually detects both and can not determine one from the other?

Why do we measure the Electric Field as Radiation? The Electric Field Radiates...

 

Ref: Stack Exchange

 

Why do Electric Stations need to be tested for excessive Radiation Levels? ( NOT Nuclear, Electric )

 

Why does the Electric radiate? What makes the Electric Field an Inverse Square Law Fiend? Is the Electron Cloud an artefact of this Radiation?

My opinion is, that we all need to think of the Electric and Magnetic Fields as the same thing! One is the other, Time and Space dependant, one being Orthogonal or Perpendicular to the other, right angles, but, however, we only observe one or the other because we are at different observation points at different times.

   Chris

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