document.write( "Question 1209592: The solutions to the equation
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\n" ); document.write( "can be written in the form $x=\frac{P \pm \sqrt Q}{R}$, where $P$ and $R$ are relatively prime integers and $R > 0$.
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Algebra.Com's Answer #849644 by Edwin McCravy(20055)\"\" \"About 
You can put this solution on YOUR website!
The solutions to the equation
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document.write( "It would be better if would write your problems as above, and never use\r\n" );
document.write( "the notation you used on here since it is not compatible with the HTML in which\r\n" );
document.write( "this site was written.  You've been told this before, so I am starting to\r\n" );
document.write( "wonder if perhaps you are not a human.  We know that many solutions answered\r\n" );
document.write( "here are not done by humans.  Could some problems be posted by non-humans too?  \r\n" );
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document.write( "As the other tutor has shown, the solutions are non-real. They can be written\r\n" );
document.write( "with Q being a negative integer.\r\n" );
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document.write( "\"x+=+%28-22+%2B-+sqrt%28-60%29%29%2F%2816%29+\"\r\n" );
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document.write( "However P=-22 and R=16 are not relatively prime, so even though you stated that\r\n" );
document.write( "it would be possible, to the contrary, it turns out not to be possible.  \r\n" );
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document.write( "Edwin

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