Exam 17: Nonlinear Inequalities

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Solve the inequality and graph the solution on the real number line.​ x33x2x>3x ^ { 3 } - 3 x ^ { 2 } - x > - 3

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A

Use a graphing utility to graph the equation.Use the graph to approximate the values of x that satisfy the inequality. ​ Equation: y=16x26x+1y = \frac { 1 } { 6 } x ^ { 2 } - 6 x + 1 ​ Inequality: y0y \leq 0

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Use a graphing utility to graph the equation.Use the graph to approximate the values of x that satisfy each inequality. ​ Equation: y=x3x216x+16y = x ^ { 3 } - x ^ { 2 } - 16 x + 16 ​ Inequality: y0y \leq 0

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D

Solve the inequality 36xx3<036 x - x ^ { 3 } < 0 and write the solution set in interval notation.

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Determine whether the statement is true or false.Justify your answer, the solution set of the inequality 72x2+7x+140\frac { 7 } { 2 } x ^ { 2 } + 7 x + 14 \geq 0 is the entire set of real numbers. ​

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Use a graphing utility to graph the equation.Use the graph to approximate the values of x that satisfy each inequality. ​ Equation: y=6xx5y = \frac { 6 x } { x - 5 } ​ Inequality: y8y \geq 8

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Solve the inequality and graph the solution on the real number line. ​​ (x7)21( x - 7 ) ^ { 2 } \geq 1

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Solve the inequality and graph the solution on the real number line.​ x2+x<12x ^ { 2 } + x < 12

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Find the interval(s)for b such that the following equation has at least one real solution​ x2+bx+6=0x ^ { 2 } + b x + 6 = 0 . ​

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Find the key numbers of the expression.​ 1x7+1\frac { 1 } { x - 7 } + 1

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Find the interval(s)for b such that the following equation has at least one real solution and write a conjecture about the interval(s)based on the values of the coefficients​ 4x2+bx+13=04 x ^ { 2 } + b x + 13 = 0 . ​

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A rectangular parking lot with a perimeter of 442 feet is to have an area of at least 8050 square feet.Within what bounds must the length of the rectangle lie? ​

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Determine whether the value of x=1x = - 1 is a solution of the inequality.​ 3x2x2+4<1\frac { 3 x ^ { 2 } } { x ^ { 2 } + 4 } < 1

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Solve the inequality and graph the solution on the real number line.​ 1x1x+2\frac { 1 } { x } \geq \frac { 1 } { x + 2 }

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Solve the inequality and write the solution set in interval notation.​ x336x0x ^ { 3 } - 36 x \geq 0

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Solve the inequality and graph the solution on the real number line.​ x2+x12x0\frac { x ^ { 2 } + x - 12 } { x } \geq 0

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Solve the inequality and graph the solution on the real number line.​ 4x1x>0\frac { 4 x - 1 } { x } > 0

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Solve the inequality and graph the solution on the real number line.​ x210x24>0x ^ { 2 } - 10 x - 24 > 0

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Solve the inequality and graph the solution on the real number line.​ x2+5x+13>0x ^ { 2 } + 5 x + 13 > 0

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Determine the intervals on which the following polynomial is entirely negative and those on which it is entirely positive. x22x+35- x ^ { 2 } - 2 x + 35

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