Exam 1: Review of Basic Concepts

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List all the elements of set B that belong to the indicated set. - B={11,5,17,0,04,16}B = \left\{ 11 , \sqrt { 5 } , - 17,0 , \frac { 0 } { 4 } , \sqrt { 16 } \right\} Whole numbers

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Find the sum or difference. - (2x+9y)2( 2 x + 9 y ) ^ { 2 }

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Tell whether the statement is true or false. -Let A={7,8,9,10,11,12},B={9,11,13},C={7,8,10,12},D={7,12}\mathrm { A } = \{ 7,8,9,10,11,12 \} , \mathrm { B } = \{ 9,11,13 \} , \mathrm { C } = \{ 7,8,10,12 \} , \mathrm { D } = \{ 7,12 \} , and U={7,8,9,10,11,12,13}\mathrm { U } = \{ 7,8,9,10,11,12,13 \} . BC\mathrm { B } \nsubseteq \mathrm { C }

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Rationalize the denominator. Assume that all variables represent nonnegative numbers and that the denominator is not zero. - 7727\frac { \sqrt { 7 } } { 7 \sqrt { 2 } - \sqrt { 7 } }

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Perform the indicated operations. Write the result using only positive exponents. Assume all variables represent nonzero real numbers. - 3738\frac { 3 ^ { - 7 } } { 3 ^ { 8 } }

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Factor, using the given factor. Assume all variables represent positive real numbers. - x3/7+3x2/7;x2/7x ^ { 3 / 7 } + 3 x ^ { 2 / 7 } ; \quad x ^ { 2 / 7 }

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Determine which property of absolute value justifies the statement. - x0| x | \geq 0

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Perform the indicated operations. - 23x612x+2+65x+10\frac { 2 } { 3 x - 6 } - \frac { 1 } { 2 x + 2 } + \frac { 6 } { 5 x + 10 }

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Factor the polynomial by substitution. - 36z6+87z4+45z236 z ^ { 6 } + 87 z ^ { 4 } + 45 z ^ { 2 }

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Write the expression with only positive exponents and evaluate if possible. Assume all variables represent nonzero real numbers. - (3)1( - 3 ) ^ { - 1 }

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Evaluate the expression. -Let x=8,y=5x = - 8 , y = 5 . Evaluate x+y| x + y | .

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Perform the indicated operation and write your answer with positive integer exponents. - m1+n1(mn)1\frac { m ^ { - 1 } + n ^ { - 1 } } { ( m n ) ^ { - 1 } }

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Factor the trinomial, if possible. - (x2y)2+12(x2y)+36( x - 2 y ) ^ { 2 } + 12 ( x - 2 y ) + 36

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Evaluate the expression. - 5(2)3- 5 ( - 2 ) ^ { 3 }

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Factor out the greatest common factor. Simplify the factors, if possible. - 10wx25wy15wz10 w x - 25 w y - 15 w z

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Simplify the expression. Assume all variables represent positive real numbers. - 256814\sqrt [ 4 ] { \frac { 256 } { 81 } }

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Simplify the expression. Assume all variables represent nonzero real numbers. - (5x3y2)0- \left( \frac { 5 x ^ { 3 } } { y ^ { 2 } } \right) ^ { 0 }

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Find the product or quotient. - 4x2840x3\frac { 4 x ^ { 2 } } { 8 } \cdot \frac { 40 } { x ^ { 3 } }

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Perform the indicated operation and write your answer with positive integer exponents. - m1n1m2n2\frac { m ^ { - 1 } - n ^ { - 1 } } { m ^ { 2 } - n ^ { 2 } }

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Simplify the expression. Assume all variables represent positive real numbers. - 27\sqrt { 27 }

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