AnswersLA-Algebra II AQuadratic Inequalities

Quadratic Inequalities Answers

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An object is dropped from a small plane. As the object falls, its distance, d, above the ground after t seconds, is given by the formula d = –16t2 + 1,000. Which inequality can be used to find the interval of time taken by the object to reach the height greater than 300 feet above the ground?

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What is the solution set to the inequality 5(x – 2)(x + 4) > 0?

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The graph below represents the solution set of which inequality?

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x2 – 2x – 8 < 0
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x2 + 2x – 8 < 0
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x2 – 2x – 8 > 0
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x2 + 2x – 8 > 0
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Which quadratic inequality does the graph below represent?

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What is the solution set of the quadratic inequality

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The height of a small rock falling from the top of a 124-ft-tall building with an initial downward velocity of –30 ft/sec is modeled by the equation h(t) = –16t2 – 30t + 124, where t is the time in seconds. For which interval of time does the rock remain in the air?

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t = 2
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–2 < t < 0
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0 < t < 2
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t > 2
7

Greg is in a car at the top of a roller-coaster ride. The distance, d, of the car from the ground as the car descends is determined by the equation d = 144 – 16t2, where t is the number of seconds it takes the car to travel down to each point on the ride. For which interval of time is Greg’s car moving in the air?

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What is the solution set of the quadratic inequality 4(x + 2)2 0?

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An acorn falls from the branch of a tree to the ground 25 feet below. The distance, S, that the acorn is from the ground as it falls is represented by the equation S(t) = –16t2 + 25, where t is the number of seconds. For which interval of time is the acorn moving through the air?

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The area of the conference table in Mr. Nathan’s office must be no more than 175 ft2. If the length of the table is 18 ft more than the width, x, which interval can be the possible widths?

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Quadratic Inequalities Answers — LA-Algebra II A