document.write( "Question 651538: The vertices of rectangle ABCD on a coordinate grid are A(2, 6), B(2, 7), C(8, 7) and D(8, 6).
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\n" ); document.write( "Which of these rectangles is congruent to rectangle ABCD?\r
\n" ); document.write( "\n" ); document.write( "Rectangle with vertices at (-3,2) (-2, 2), (-2, -3) , (-3, -3)\r
\n" ); document.write( "\n" ); document.write( "Rectangle with vertices at (-1, -7), (-1, -6), (5, -6) , (5, -7)\r
\n" ); document.write( "\n" ); document.write( "Rectangle with vertices at (7, -2), (9, -2), (9, 3) , (7, 3)\r
\n" ); document.write( "\n" ); document.write( "Rectangle with vertices at (-8, 5), (-2, 5), (-2, 7) , (-8, 7) \r
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\n" ); document.write( "\n" ); document.write( "I tried to work it on my own but i compleletly forgot how to?
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Algebra.Com's Answer #407725 by MathLover1(20850)\"\" \"About 
You can put this solution on YOUR website!
answer is: Rectangle with vertices at (-1, -7), (-1, -6), (5, -6) , (5, -7) \r
\n" ); document.write( "\n" ); document.write( "here are the lengths of its sides:
\n" ); document.write( "(-1, -7), (-1, -6),\r
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
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\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
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\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%28-1--1%29%5E2+%2B+%28-6--7%29%5E2%29=+1+\"
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\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "(5, -6) , (5, -7)
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%285-5%29%5E2+%2B+%28-6--7%29%5E2%29=+1+\"
\n" ); document.write( "
\n" ); document.write( "
\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( " (-1, -6), (5, -6)\r
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%285--1%29%5E2+%2B+%28-6--6%29%5E2%29=+6+\"
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\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "(-1, -7), (5, -7)
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%285--1%29%5E2+%2B+%28-7--7%29%5E2%29=+6+\"
\n" ); document.write( "
\n" ); document.write( "
\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "here are the lengths of sides of rectangle ABCD on a coordinate grid are A(2, 6), B(2, 7), C(8, 7) and D(8, 6): \r
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\n" ); document.write( "\n" ); document.write( "A(2, 6), B(2, 7), : \r
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%282-2%29%5E2+%2B+%287-6%29%5E2%29=+1+\"
\n" ); document.write( "
\n" ); document.write( "
\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "C(8, 7) and D(8, 6)\r
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%288-8%29%5E2+%2B+%286-7%29%5E2%29=+1+\"
\n" ); document.write( "
\n" ); document.write( "
\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "A(2, 6),C(8, 7)\r
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%288-2%29%5E2+%2B+%287-6%29%5E2%29=+6.08276253029822+\"
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\n" ); document.write( "
\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "B(2, 7),D(8, 6)\r
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Solved by pluggable solver: Distance Formula to determine length on coordinate plane
The distance (d) between two points is given by the following formula:
\n" ); document.write( "
\n" ); document.write( " \"d=sqrt%28%28x2-x1%29%5E2+%2B+%28y2-y1%29%5E2%29\"
\n" ); document.write( "
\n" ); document.write( " Thus in our case, the required distance is
\n" ); document.write( " \"d=sqrt%28%288-2%29%5E2+%2B+%286-7%29%5E2%29=+6.08276253029822+\"
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\n" ); document.write( "
\n" ); document.write( " For more on this concept, refer to Distance formula.
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\n" ); document.write( "\n" ); document.write( "you can prove this way that all other rectangles are not congruent to ABCD\r
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