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If a charged particle curves in a magnetic field when moving....

 
-Adam-
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03/30/2017 09:17 AM
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If a charged particle curves in a magnetic field when moving....
Then a magnetic field will twist when moving past a fixed charged plate.

Eh?

This is how we twist up the magnetic field. Now, if we can twist up a magnetic field, we are imparting force into the magnetic field with out increasing the magnetic fields strength.


This just hit me this morning.
The Grand Inquisitor

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03/30/2017 09:29 AM
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Re: If a charged particle curves in a magnetic field when moving....
You on the wacky back again?

yoda
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03/30/2017 10:19 AM
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Re: If a charged particle curves in a magnetic field when moving....
Yes.

Not sure if the charge will stay or how much will be dissipated as heat or radiated energy, but yes, if one is true the converse should also be true.
The Grand Inquisitor

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03/30/2017 10:27 AM
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Re: If a charged particle curves in a magnetic field when moving....
Yes.

Not sure if the charge will stay or how much will be dissipated as heat or radiated energy, but yes, if one is true the converse should also be true.
 Quoting: Anonymous Coward 4187563


That doesn't necessarily follow goy. You're not much of a Philosopher
-Adam-  (OP)

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03/30/2017 10:35 AM
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Re: If a charged particle curves in a magnetic field when moving....
Yes.

Not sure if the charge will stay or how much will be dissipated as heat or radiated energy, but yes, if one is true the converse should also be true.
 Quoting: Anonymous Coward 4187563


That doesn't necessarily follow goy. You're not much of a Philosopher
 Quoting: The Grand Inquisitor


If A exerts force on B. Then B also exerts force on A.


Moving a magnet across a fixed charge will twist the magnetic field. The twist goes the other direction when the charge is flipped.

This might be used to measure a non conductive bodies charge state by how far it twists the mag field.
The Grand Inquisitor

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03/30/2017 10:40 AM
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Re: If a charged particle curves in a magnetic field when moving....


If A exerts force on B. Then B also exerts force on A.



If my leg (A) kicks (force) a football (b), then it is not the case that the football exerts a force on my leg
-Adam-  (OP)

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03/30/2017 10:49 AM
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Re: If a charged particle curves in a magnetic field when moving....
If A exerts force on B. Then B also exerts force on A.

 Quoting: Adam


If my leg (A) kicks (force) a football (b), then it is not the case that the football exerts a force on my leg
 Quoting: The Grand Inquisitor


Sure it does.

Don't you know Newtons Third Law?

Last Edited by -Adam- on 03/30/2017 10:50 AM
-Adam-  (OP)

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03/30/2017 10:52 AM
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Re: If a charged particle curves in a magnetic field when moving....
As well, if two pieces of metal were moved closer to each other over time, they are experiencing magnetic compression so the metals gain similar magnetic charges where the two are closest to each other.

This is because equal magnetic poles repel. Repulsion creates pressure and two pieces of iron moving towards each other simulates magnetic pressure.


This is another fact.
Anonymous Coward
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03/30/2017 10:53 AM
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Re: If a charged particle curves in a magnetic field when moving....
If A exerts force on B. Then B also exerts force on A.

 Quoting: Adam


If my leg (A) kicks (force) a football (b), then it is not the case that the football exerts a force on my leg
 Quoting: The Grand Inquisitor


Sure it does.

Don't you know Newtons Third Law?
 Quoting: -Adam-


Many ACL injuries take place when a soccer player kicks the ball.
Anonymous Coward
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03/30/2017 11:23 AM
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Re: If a charged particle curves in a magnetic field when moving....
No, the magnetic field doesn't twist, the object generating thr field moves.

This is basic electromagnetic theory any ee knows.
Hei-Anus & Deplorable

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03/30/2017 11:27 AM
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Re: If a charged particle curves in a magnetic field when moving....
Yeah I don't think the magnetic field twists?

.
Heinous Anus:

Where Blather Meets Godzilla
-Adam-  (OP)

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Re: If a charged particle curves in a magnetic field when moving....
Yeah I don't think the magnetic field twists?

.
 Quoting: Hei-Anus & Deplorable


Then it must be deflected to one side of the charged particle or charged plate... or be torqued upon.

Though it just may. We may have perceived twisting in a physical sense. IE, turning a magnet on it's axis does not twist the magnetic field.

Electrons do have a torqueing impact on the magnetic field. Look at conducting wires with the rotating magnetic field around the wire.


I am going to think up a test to prove or disprove this.

Last Edited by -Adam- on 03/30/2017 12:53 PM
-Adam-  (OP)

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03/30/2017 12:54 PM
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Re: If a charged particle curves in a magnetic field when moving....
Yeah I don't think the magnetic field twists?

.
 Quoting: Hei-Anus & Deplorable


twisting a magnet...no.

But twisting the flux itself outside the magnet.
Anonymous Coward
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03/30/2017 12:56 PM
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Re: If a charged particle curves in a magnetic field when moving....
no a magnetic field bends a charged particle (photon).
-Adam-  (OP)

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03/30/2017 12:56 PM
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Re: If a charged particle curves in a magnetic field when moving....
If my leg (A) kicks (force) a football (b), then it is not the case that the football exerts a force on my leg
 Quoting: The Grand Inquisitor


If you kick the ball hard enough you'll break your foot. That is force in the opposing direction.

If the ball was heavy enough, it won't move but your foot would shatter.


In this case, the resistance to go from stand still to motion, the energy required to accelerate the ball is shared between the ball and your foot. That is why heavier balls hurt the foot more.
Anonymous Coward
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03/30/2017 12:57 PM
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Re: If a charged particle curves in a magnetic field when moving....
did you know there is a black hole in the middle of every magnet??
Anonymous Coward
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03/30/2017 01:01 PM
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Re: If a charged particle curves in a magnetic field when moving....
The Lorrentz force violates newtons 3rd law
Anonymous Coward
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03/30/2017 01:06 PM
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Re: If a charged particle curves in a magnetic field when moving....


Congratulations on rediscovering science.
-Adam-  (OP)

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03/30/2017 01:07 PM
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Re: If a charged particle curves in a magnetic field when moving....
no a magnetic field bends a charged particle (photon).
 Quoting: Anonymous Coward 74580466


An electron is deflected in a vacuum with a linear, coherent magnetic field. It curves though that curve is a result of two vectors over time.

I shouldn't have to explain this. It is well known. It is how TV's directed the electrons to make the image.

Besides, Newtons 3rd Law states the magnetic field is acted upon equally as strong as it is on the charged particle.




So it would stand to reason, moving a magnetic field across a stream of charged particles would deflect the magnetic field.


We may not notice it as the mass of the electron is very small. So the equivalent reaction in the magnetic field be small.

however, firing one charged particle into a magnetic field will influence the field and thus, influence another charged particle moving through the field at the same time.



As well, if gravity bends light...then light gives up energy into gravity.
Anonymous Coward
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03/30/2017 01:07 PM
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Re: If a charged particle curves in a magnetic field when moving....
The Lorrentz force violates newtons 3rd law
 Quoting: Anonymous Coward 40483822


If you have a stationary wire between a stationary magnetic feild all strapped to a board, so that lorrentz force pushes the wire upwards, you will have a flying machine if you give it enough current. Put the board on a scale to show the decrease in weight when you put a current through the wire. Make a YouTube video and post it on this thread.
-Adam-  (OP)

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03/30/2017 01:08 PM
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Re: If a charged particle curves in a magnetic field when moving....
The Lorrentz force violates newtons 3rd law
 Quoting: Anonymous Coward 40483822


We are probably missing a part of the transfer of energy somewhere.

Until we understand all forces, it is not wise to make such a claim. IMHO.
-Adam-  (OP)

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03/30/2017 01:13 PM
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Re: If a charged particle curves in a magnetic field when moving....
The Lorrentz force violates newtons 3rd law
 Quoting: Anonymous Coward 40483822


If you have a stationary wire between a stationary magnetic feild all strapped to a board, so that lorrentz force pushes the wire upwards, you will have a flying machine if you give it enough current. Put the board on a scale to show the decrease in weight when you put a current through the wire. Make a YouTube video and post it on this thread.
 Quoting: Anonymous Coward 40483822


Biefeld-Brown, look it up.

Asymmetric capacitance. Causes lift, even if the electric polarity is flipped, inertial force is same direction.

It is based on the dielectric field shape. Which is the same if polarity is flipped.

Also, two positive charges will NOT repel on each other until a negative charge is introduced.

Hence, it is not the particle that acts upon the other. It is the particles field that interacts with others. With out a negative charge present, no flux lines are made to repel each other.



I know enough to hold my own with the best minds in science.

Last Edited by -Adam- on 03/30/2017 01:16 PM
Anonymous Coward
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03/30/2017 01:15 PM
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Re: If a charged particle curves in a magnetic field when moving....
no a magnetic field bends a charged particle (photon).
 Quoting: Anonymous Coward 74580466


An electron is deflected in a vacuum with a linear, coherent magnetic field. It curves though that curve is a result of two vectors over time.

I shouldn't have to explain this. It is well known. It is how TV's directed the electrons to make the image.

Besides, Newtons 3rd Law states the magnetic field is acted upon equally as strong as it is on the charged particle.




So it would stand to reason, moving a magnetic field across a stream of charged particles would deflect the magnetic field.


We may not notice it as the mass of the electron is very small. So the equivalent reaction in the magnetic field be small.

however, firing one charged particle into a magnetic field will influence the field and thus, influence another charged particle moving through the field at the same time.



As well, if gravity bends light...then light gives up energy into gravity.
 Quoting: -Adam-


yes and also moving stream of charged particles will move the magnetic field.
Anonymous Coward
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03/30/2017 01:18 PM
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Re: If a charged particle curves in a magnetic field when moving....
did you get the part about it being observable that a magnetic field bends light.

so what is the difference between magnetism and gravity and does gravity really exist and is it not just magnetism.
-Adam-  (OP)

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03/30/2017 01:20 PM
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Re: If a charged particle curves in a magnetic field when moving....
no a magnetic field bends a charged particle (photon).
 Quoting: Anonymous Coward 74580466


An electron is deflected in a vacuum with a linear, coherent magnetic field. It curves though that curve is a result of two vectors over time.

I shouldn't have to explain this. It is well known. It is how TV's directed the electrons to make the image.

Besides, Newtons 3rd Law states the magnetic field is acted upon equally as strong as it is on the charged particle.




So it would stand to reason, moving a magnetic field across a stream of charged particles would deflect the magnetic field.


We may not notice it as the mass of the electron is very small. So the equivalent reaction in the magnetic field be small.

however, firing one charged particle into a magnetic field will influence the field and thus, influence another charged particle moving through the field at the same time.



As well, if gravity bends light...then light gives up energy into gravity.
 Quoting: -Adam-


yes and also moving stream of charged particles will move the magnetic field.
 Quoting: Anonymous Coward 74580466


I wonder, conduct electrons from the outer perimeter to the inner perimeter of a coherent field. The lead the current out along the pole axis where it doesn't influence the mag field as much.

As long as there is current, the mag field is deflected or torqued.

Imagine discharging 500kv from a massive layden jar or capacitor bank.
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03/30/2017 01:27 PM
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Re: If a charged particle curves in a magnetic field when moving....
Anonymous Coward
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03/30/2017 01:28 PM
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Re: If a charged particle curves in a magnetic field when moving....

 Quoting: Anonymous Coward 74580466


can you see the side view of just inside the toroid field when he first places the magnet under the ferrocell?
-Adam-  (OP)

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03/30/2017 01:31 PM
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Re: If a charged particle curves in a magnetic field when moving....

 Quoting: Anonymous Coward 74580466


can you see the side view of just inside the toroid field when he first places the magnet under the ferrocell?
 Quoting: Anonymous Coward 74580466


I'm gonna watch it and then get back to you. I'm down for anything that deals with the latest edge in science.


btw, I like that fella in the vid. I watch a lot of his work. Really smart.

I wondered if he ever saw my understanding of Leedskalnins Symbol. Which I am certain I figured out.

anyways, will post up on my thoughts of the vid.

Last Edited by -Adam- on 03/30/2017 01:34 PM
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Re: If a charged particle curves in a magnetic field when moving....

 Quoting: Anonymous Coward 74580466


can you see the side view of just inside the toroid field when he first places the magnet under the ferrocell?
 Quoting: Anonymous Coward 74580466


I'm gonna watch it and then get back to you. I'm down for anything that deals with the latest edge in science.
 Quoting: -Adam-


excellent. to give you perspective, something that the video maker maybe doesn't realise is that due to the distance this magnet is from the ferrocell the cell is inside the toroid field and seeing the middle from the indide of it.
Anonymous Coward
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03/30/2017 01:36 PM
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Re: If a charged particle curves in a magnetic field when moving....
then he turns the magnet over and you are looking down on the centre of the magnetic field from just above it.
Anonymous Coward
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03/30/2017 01:38 PM
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Re: If a charged particle curves in a magnetic field when moving....
do you get what i was saying about there being a black hole in the middle of a magnet now?





GLP