Exam 5: Exponents and Polynomials

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Multiply. - (b7)(b2+7b4)( b - 7 ) \left( b ^ { 2 } + 7 b - 4 \right)

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Simplify the expression. - 4y0- 4 y ^ { 0 }

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Simplify the expression. - (x2)4(2x)3\frac { \left( x ^ { 2 } \right) ^ { 4 } } { ( 2 x ) ^ { 3 } }

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Multiply. - (4x8)(3x3)( 4 x - 8 ) ( 3 x - 3 )

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Write the number in scientific notation. - 0.0000000203050.000000020305

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Use the quotient rule to simplify the expression. - d9 d\frac { \mathrm { d } ^ { 9 } } { \mathrm {~d} }

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Simplify the expression. - (18t39 s4)2\left( \frac { 18 \mathrm { t } ^ { 3 } } { 9 \mathrm {~s} ^ { 4 } } \right) ^ { 2 }

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Evaluate the expression with the given replacement values. - 67x2;x=5\frac { 6 } { 7 x ^ { 2 } } ; x = - 5

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Multiply. - 2x(2x3)- 2 x ( 2 x - 3 )

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Simplify the expression. - (2)0+(7)0( - 2 ) ^ { 0 } + ( - 7 ) ^ { 0 }

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Simplify the expression. Write the result using positive exponents only. - (14)2\left( \frac { 1 } { 4 } \right) ^ { - 2 }

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Use the product rule to simplify the expression. Write the result using exponents. - x2x8x ^ { 2 } \cdot x ^ { 8 }

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Find the quotient using long division. - x236x6\frac { x ^ { 2 } - 36 } { x - 6 }

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Solve. -Find the area of the top of the table. Express the area as a product, then multiply and simplify. Solve. -Find the area of the top of the table. Express the area as a product, then multiply and simplify.

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Find the perimeter. -Find the perimeter. -

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Write the number in standard form. - 7.74×1057.74 \times 10 ^ { 5 }

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Simplify the expression. Write the result using positive exponents only. - x3(x9)8(x7)2\frac { x ^ { 3 } \left( x ^ { - 9 } \right) ^ { - 8 } } { \left( x ^ { - 7 } \right) ^ { - 2 } }

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Perform the indicated operation. - (4n73n6+13)(9n710n610)\left( 4 n ^ { 7 } - 3 n ^ { 6 } + 13 \right) - \left( 9 n ^ { 7 } - 10 n ^ { 6 } - 10 \right)

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Write the number in standard form. - 1.13×1041.13 \times 10 ^ { - 4 }

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Multiply. - 7z2(5z2+3z8)7 z ^ { 2 } \left( 5 z ^ { 2 } + 3 z - 8 \right)

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