Exam 1: Review of Basic Concepts

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Simplify the expression. Assume all variables represent positive real numbers. - 13+527312\frac { 1 } { \sqrt { 3 } } + \frac { 5 } { \sqrt { 27 } } - \frac { 3 } { \sqrt { 12 } }

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Find the domain of the expression. - x84+x\frac { x - 8 } { 4 + x }

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Rationalize the denominator. Assume that all variables represent nonnegative numbers and that the denominator is not zero. -At an altitude of h feet above the surface of the earth, the approximate distance in miles that a person can see is given by d=1.2247h\mathrm { d } = 1.2247 \sqrt { \mathrm { h } } How far can a person see if if he or she is 920 feet above the earth's surface? Round Your answer to the nearest tenth of a mile.

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Decide whether the expression has been simplified correctly. - (ab)4=ab4( a b ) ^ { 4 } = a b ^ { 4 }

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Simplify the expression. Assume all variables represent nonzero real numbers. - (2t5)(5t2)(3t7)\left( - 2 t ^ { 5 } \right) \left( 5 t ^ { 2 } \right) \left( - 3 t ^ { 7 } \right)

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Factor, using the given factor. Assume all variables represent positive real numbers. - 6k3+k5;k56 \mathrm { k } ^ { - 3 } + \mathrm { k } ^ { - 5 } ; \quad \mathrm { k } ^ { - 5 }

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Perform the indicated operations. Write the result using only positive exponents. Assume all variables represent nonzero real numbers. - x2x4\frac { x ^ { 2 } } { x ^ { - 4 } }

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Evaluate the expression. - (121)1/2( - 121 ) ^ { 1 / 2 }

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Evaluate the expression. -Let x=6x = 6 and y=3y = - 3 . Evaluate xx+yy\frac { | x | } { x } + \frac { | y | } { y } .

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Write the expression with only positive exponents and evaluate if possible. Assume all variables represent nonzero real numbers. - (25)2\left( \frac { 2 } { 5 } \right) ^ { - 2 }

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Determine which property of absolute value justifies the statement. - x=x| - x | = | x |

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Simplify the expression. Assume all variables represent positive real numbers. - 27x3y5- \sqrt { \frac { 27 x ^ { 3 } } { y 5 } }

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Identify the expression as a polynomial or not a polynomial. - 7x5+4x2147 x ^ { 5 } + 4 x ^ { 2 } - 14

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Factor out the greatest common factor. Simplify the factors, if possible. - 10x6+15x36x3910 x ^ { 6 } + 15 x ^ { 3 } - 6 x ^ { 3 } - 9

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Tell whether the statement is true or false. -Let A={8,9,10,11,12,13},B={10,12,14},C={8,9,11,13},D={8,13}\mathrm { A } = \{ 8,9,10,11,12,13 \} , \mathrm { B } = \{ 10,12,14 \} , \mathrm { C } = \{ 8,9,11,13 \} , \mathrm { D } = \{ 8,13 \} , and U={8,9,10,11,12,13,14}\mathrm { U } = \{ 8,9,10,11,12,13,14 \} . AB\mathrm { A } \subseteq \mathrm { B }

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Identify the polynomial as a monomial, binomial, trinomial, or none of these. - 17x2- 17 x ^ { 2 }

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Identify the property illustrated by the statement. Assume all variables represent real numbers. - 4+(4)=04 + ( - 4 ) = 0

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Tell whether the statement is true or false. -Let A={5,6,7,8,9,10},B={7,9,11},C={5,6,8,10},D={5,10}A = \{ 5,6,7,8,9,10 \} , B = \{ 7,9,11 \} , C = \{ 5,6,8,10 \} , D = \{ 5,10 \} , and U={5,6,7,8,9,10,11}U = \{ 5,6,7,8,9,10,11 \} . D C\nsubseteq \mathrm { C }

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Perform the indicated operations. Write the answer using only positive exponents. Assume all variables represent positive real numbers. - z2/5z3/5\mathrm { z } ^ { - 2 / 5 } \cdot \mathrm { z } ^ { 3 / 5 }

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Tell whether the statement is true or false. - {1,6,4,7}={4,1,6}\{ 1,6,4,7 \} = \{ 4,1,6 \}

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