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permanent magnets.


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Posted by teddy52food on May 25, 2010 at 15:01:39 from (209.237.115.177):

Just to keep this tractor related, I have a magnet charger that I use to charge the rotor on magneto's used on old tractors. There seems to be a hint of some learning in the last post. When I bring up E=MC squared, it seems bombs are all that is thought of or fizzle physics. When I charged a magnet some time ago I put my meters on the battery of the charger. It showed 200 amps at 11 volts =2200 watts. Lets call it 2m for short. Now take four different materials with the same mass & put the 2m charge to them. First a brick or piece of wood. shut off the charger & no results. Then a piece of soft iron such as is used in the poles of a tractor generator. 2m in & shut it off produces a small magnetic field that will pick up filings & maybe a paper clip.It can be picked off the charger with ease. It will show a n & s pole when checked with a compass. Then the rotor of a mag, 2m in & shut it off. This time it takes some effort to remove it. Then a piece of rare earth magnet material. 2m in & shut it off. Now it takes a lot of effort & is hard to remove. So what does that tell you? It tells me the magnetic field is coming from the material & not from the imput wattage. 4 different materials with the same imput & 4 different results. All the imput does is align the atoms of the material. Also once maximum alignment is reached for that material the field will never be any stronger no matter how much imput is used. So if it is coming from the material it must be matter and is matter in motion. It is the smallest endity of matter. When Faraday passed a wire through a mag field he found that a current was produced in the wire. Now a current moves at 186000 miles per sec. It is C in E=mc squared. So wouldn't it make sense that what is in a magnetic field must be moving at C? You don't get something from nothing. No matter how fast or slow the wire is moved, the speed of the current is the same. Would it be possible that those particles could be spinning at C also?? Even wicapedia talks about spinning particles in a magnetic field. So you have C X C or C squared . Now anything that is spinning will show the properties of a gyroscope. That is how the current knows which way to go. When the wire passes through the field it deflects the spin & like a cycle wheel, if you put a force to turn left, the left side will drop down. Force to the right & right will right will drop down. Spinning the wheel backwards will cause everything to reverse. Moving the wire parallel to the lines of force will not pick up a charge no matter how fast it is moved. Just like a cycle if equal force is used on the handlebars it will stay in a straight line. Looking at a PM (permanent magnet). If you put iron filings on a paper will show the lines of force. They are curved from one end to the other. It shows the flow of particles out one end and back in the other being spread in the middle & concentrated at the ends. Now they may look like curved lines but with their spin & gyroscopic features they will be traveling in a fashion like a cork screw. When unlike poles are brought together the spin of the particles will pull them tighter together just like corkscrews will when turned in to each other. When like poles are brought together, the spin is opposite & they will repell just like corkscrews turning backwards .This is just a summary of what is in Joe's book. He goes into great detail with many pictures & drawings to explain it. School's out. Open your mind & absorb. Thanks for your time. More tomorrow unless I get too much bashing.


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