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O;p;p;o;s;i;t;e;s totally a-t-t-r-a-c-t


Dweller of Parables

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Wait..

There are no "positive" and "negative" magnets. Each magnet is positive and negative.

 

However, an object can be given a positive charge without also being given a corresponding negative charge, and vice-versa. It is a different type of magnet to the horseshoe or bar that springs to mind, but it fits the definition adequately.

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Wait..

There are no "positive" and "negative" magnets. Each magnet is positive and negative.

 

However' date=' an object can be given a positive charge without also being given a corresponding negative charge, and vice-versa. It is a different type of magnet to the horseshoe or bar that springs to mind, but it fits the definition adequately.

[/quote']

 

I'm not really a magnet expert, but wouldn't they neutralize each other when getting in contact? If we're talking about electro magnetism.

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Wait..

There are no "positive" and "negative" magnets. Each magnet is positive and negative.

 

However' date=' an object can be given a positive charge without also being given a corresponding negative charge, and vice-versa. It is a different type of magnet to the horseshoe or bar that springs to mind, but it fits the definition adequately.

[/quote']

 

I'm not really a magnet expert, but wouldn't they neutralize each other when getting in contact? If we're talking about electro magnetism.

 

If a positively-charged object and an equally negatively-charged object come in contact and are sufficiently conductive, then yes, they will be able to neutralize each other. However, that is a lot of conditions listed under "If".

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Wait..

There are no "positive" and "negative" magnets. Each magnet is positive and negative.

 

However' date=' an object can be given a positive charge without also being given a corresponding negative charge, and vice-versa. It is a different type of magnet to the horseshoe or bar that springs to mind, but it fits the definition adequately.

[/quote']

 

I'm not really a magnet expert, but wouldn't they neutralize each other when getting in contact? If we're talking about electro magnetism.

 

If a positively-charged object and an equally negatively-charged object come in contact and are sufficiently conductive, then yes, they will be able to neutralize each other. However, that is a lot of conditions listed under "If".

 

Well, nvm. It's not necessary for the topic after all. But thanks to you, I refreshed my memory and knowledge about Magnetism.

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I dislike Facebook's lack of a "dislike" button.

 

d00d u can download dat just go to "downloadavirusontomycomputer.com" and clik the get virus get dislike button button and den u win teh game D:

 

I dislike everything that I don't like.

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I dislike Facebook's lack of a "dislike" button.

 

d00d u can download dat just go to "downloadavirusontomycomputer.com" and clik the get virus get dislike button button and den u win teh game D:

 

I dislike everything that I don't like.

 

I dislike you disliking everying that you don't like, which if the things that you dislike could dislike they would probably dislike you too for disliking them.

 

I dislike sea food.

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I dislike One Piece. Seriously' date=' if they're gonna make an elastic monkey named Luffy or whatever, the least they can do is make him hairy.

[/quote'][align=center]I dislike your ability to find amusement in it's unique comical action...

 

Also, I dislike lifeless twits...

[/align]

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