Exam 1: Review of Basic Concepts

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Simplify the expression. Assume all variables represent positive real numbers. - 59x23\sqrt [ 3 ] { \frac { 5 } { 9 x ^ { 2 } } }

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Simplify the expression. Assume all variables represent positive real numbers. - 8x2y25\sqrt { \frac { 8 x ^ { 2 } y } { 25 } }

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Perform the indicated operation and write your answer with positive integer exponents. - m1n1(mn)1\frac { m ^ { - 1 } - n ^ { - 1 } } { ( m n ) ^ { - 1 } }

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Provide an appropriate response. -The number of farms in a certain country since 1940 , in millions, can be approximated by evaluating the polynomial 0.000026045689x30.1522580959x2+296.5669762x192,464.7130.000026045689 \mathrm { x } ^ { 3 } - 0.1522580959 \mathrm { x } ^ { 2 } + 296.5669762 \mathrm { x } - 192,464.713 , where x\mathrm { x } is the year in question. Evaluate the polynomial for x=1970x = 1970 to determine the number of farms in 1970 . Round the answer to the nearest million farms.

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Evaluate the expression. - 17- \left| \frac { 1 } { 7 } \right|

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Write in radical form. Assume all variables represent positive real numbers. - x1/8x ^ { 1 / 8 }

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Use these sets to find the following. Identify any disjoint sets. -Let U={7,8,9,10,11,12,13,14,15,16,17},M={7,9,11,13},N={8,10,12,14,16},Q={7,9,11,13,15,17}\mathrm { U } = \{ 7,8,9,10,11,12,13,14,15,16,17 \} , \mathrm { M } = \{ 7,9,11,13 \} , \mathrm { N } = \{ 8,10,12,14,16 \} , \mathrm { Q } = \{ 7,9,11,13,15,17 \} , and R={7,8,9,10}\mathrm { R } = \{ 7,8,9,10 \} . (U)R( \mathrm { U } \cup \emptyset ) \cap \mathrm { R } ^ { \prime }

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Simplify the expression. Assume all variables represent positive real numbers. - 239272 \sqrt { 3 } - 9 \sqrt { 27 }

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Determine the degree of the polynomial. - 3a416a2+8a+4a6- 3 a ^ { 4 } - 16 a ^ { 2 } + 8 a + 4 a ^ { 6 }

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Insert Insert   in the blank to make the statement true. -  in the blank to make the statement true. -Insert   in the blank to make the statement true. -

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Identify the set as finite or infinite. - {xx is a fraction between 0 and 1}\{ x \mid x \text { is a fraction between } 0 \text { and } 1 \}

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Factor the trinomial, if possible. - (m+2n)24(m+2n)+4( m + 2 n ) ^ { 2 } - 4 ( m + 2 n ) + 4

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Find the sum or difference. - 2(2r4+9r33r)3(8r49r3+6r22r)2 \left( - 2 r ^ { 4 } + 9 r ^ { 3 } - 3 r \right) - 3 \left( 8 r ^ { 4 } - 9 r ^ { 3 } + 6 r ^ { 2 } - 2 r \right)

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Find the product. Assume variables represent positive real numbers. - 7x7/5(x11/56x)7 x ^ { 7 / 5 } \left( x ^ { 11 / 5 } - 6 x \right)

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Tell whether the statement is true or false. - 6{4,54,6,7}6 \in \{ 4,54,6,7 \}

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Simplify the expression. Assume all variables represent positive real numbers. - 245x2\sqrt { 245 x ^ { 2 } }

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Simplify the expression. Assume all variables represent positive real numbers. - (27+105)(27+65)( 2 \sqrt { 7 } + 10 \sqrt { 5 } ) ( 2 \sqrt { 7 } + 6 \sqrt { 5 } )

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Write the expression with only positive exponents and evaluate if possible. Assume all variables represent nonzero real numbers. - (2x)0( - 2 x ) ^ { 0 }

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Insert Or\in \mathbf { O r } \notin in the blank to make the statement is true. - Insert  \in \mathbf { O r } \notin  in the blank to make the statement is true. -

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Identify the expression as a polynomial or not a polynomial. - 2x9x+42 x - \frac { 9 } { x } + 4

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