document.write( "Question 776537: Write the standard form of the equation of the specified circle.
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document.write( "Center: (-4, 9); solution point: (-9, -3) \n" );
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Algebra.Com's Answer #473596 by solver91311(24713)![]() ![]() You can put this solution on YOUR website! \r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "The standard form of an equation of a circle centered at \n" ); document.write( " \n" ); document.write( "\n" ); document.write( " \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "Presuming that what you mean by \"solution point\" is a point that is on the circle, you need to use the distance formula to find the measure of the radius since the distance from the center to any point on the circle is the radius:\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( " \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "where \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "However, you can save yourself some work if you use a modified version of the distance formula -- don't take the square root just to square it right away again.\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( " \n" ); document.write( " \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "John \n" ); document.write( " \n" ); document.write( "Egw to Beta kai to Sigma \n" ); document.write( "My calculator said it, I believe it, that settles it \n" ); document.write( " \n" ); document.write( " \n" ); document.write( " |