Exam 1: Review of Basic Concepts

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

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Evaluate the expression. - (4936)1/2\left( - \frac { 49 } { 36 } \right) ^ { - 1 / 2 }

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Evaluate the expression. - 11+82(10)411 + 8 ^ { 2 } - ( - 10 ) \cdot 4

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Evaluate the expression. -Let x=4x = 4 and y=5y = - 5 . Evaluate xx+yy\frac { | x | } { x } + \frac { | y | } { y } .

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Factor the trinomial, if possible. - (m5n)212(m5n)+36( m - 5 n ) ^ { 2 } - 12 ( m - 5 n ) + 36

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Perform the indicated operations. Write the answer using only positive exponents. Assume all variables represent positive real numbers. - x3/5x6/5x5\frac { x ^ { 3 / 5 } } { x ^ { 6 / 5 } \cdot x ^ { - 5 } }

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Factor out the greatest common factor. Simplify the factors, if possible. - 5m(2m)+8n(2m)5 m ( 2 - m ) + 8 n ( 2 - m )

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Simplify the expression. Assume all variables represent positive real numbers. - x2y3x3y23\frac { \sqrt [ 3 ] { \mathrm { x } ^ { 2 } \mathrm { y } } \cdot \sqrt [ 3 ] { \mathrm { x } } } { \sqrt [ 3 ] { \mathrm { y } ^ { 2 } } }

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Simplify the expression. Assume all variables represent positive real numbers. - 10x743xx3410 \sqrt [ 4 ] { x ^ { 7 } } - 3 x \sqrt [ 4 ] { x ^ { 3 } }

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Simplify the expression. Assume all variables represent nonzero real numbers. - x11x7x ^ { 11 } \cdot x ^ { 7 }

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Evaluate the discriminant for the equation. Then use it to predict the number of distinct solutions, and whether they are rational, irrational, or nonreal complex. - (x6)(5x2)( x - 6 ) ( 5 x - 2 )

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Identify the set as finite or infinite. - {xx is an even natural number }\{ x \mid x \text { is an even natural number } \}

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Decide whether the expression has been simplified correctly. - (x6)2=x12\left( x ^ { 6 } \right) ^ { 2 } = x ^ { 12 }

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Find the values of a, b, and c for which the quadratic equation ax2 + bx + c = 0 has the given numbers as solutions. Then use those values to write a quadratic equation. - (6y5)(36y2+30y+25)( 6 y - 5 ) \left( 36 y ^ { 2 } + 30 y + 25 \right)

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

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Find the product or quotient. - k2+9k+18k2+12k+36k2+6kk2+7k+12\frac { k ^ { 2 } + 9 k + 18 } { k ^ { 2 } + 12 k + 36 } \cdot \frac { k ^ { 2 } + 6 k } { k ^ { 2 } + 7 k + 12 }

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Write the expression in lowest terms. - 3x2+13x+124x2+13x+3\frac { 3 x ^ { 2 } + 13 x + 12 } { 4 x ^ { 2 } + 13 x + 3 }

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Tell whether the statement is true or false. - {10,13,14,16}{13,14,17,18}={13,14}\{ 10,13,14,16 \} \cap \{ 13,14,17,18 \} = \{ 13,14 \}

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Solve the problem. - (3x+7y)(3x3y+1)( 3 x + 7 y ) ( 3 x - 3 y + 1 )

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Factor by any method. - 8c3+7298 c ^ { 3 } + 729

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