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1 Select the correct description of right-hand and left-hand behavior of the graph of the polynomial function. a. Falls to the left, falls to the
1 Select the correct description of right-hand and left-hand behavior of the graph of the polynomial function. a. Falls to the left, falls to the right b. Falls to the left, rises to the right c. Falls to the left d. Rises to the left, rises to the right e. Rises to the left, falls to the right 5 points Question 2 Determine the multiplicity of each zero and the number of turning points of the graph of the function. a. Even multiplicity; number of turning points: 3 b. Even multiplicity; number of turning points: 2 c. Even multiplicity; number of turning points: 1 d. Odd multiplicity; number of turning points: 1 e. Odd multiplicity; number of turning points: 2 5 points Question 3 Describe the right-hand and the left-hand behavior of the graph of . a. Because the degree is odd and the leading coefficient is positive, the graph falls to the left and falls to the right. b. Because the degree is even and the leading coefficient is positive, the graph rises to the left and rises to the right. c. Because the degree is odd and the leading coefficient is positive, the graph rises to the left and rises to the right. d. Because the degree is odd and the leading coefficient is positive, the graph rises to the left and falls to the right. e. Because the degree is odd and the leading coefficient is positive, the graph falls to the left and rises to the right. 5 points Question 4 Select from the following which is the polynomial function that has the given zeros. a. b. c. d. e. 5 points Question 5 Select from the following which is the polynomial function that has the given zeros. a. b. c. d. e. 5 points Question 6 Select from the following which is the polynomial function that has the given zeros. a. b. c. d. e. 5 points Question 7 Sketch the graph of the function by finding the zeros of the polynomial, a. b. c. d. e. 5 points Question 8 Use the Remainder Theorem and synthetic division to find the function value. Verify your answer using another method. a. 6 b. -2 c. 5 d. 2 e. 7 5 points Question 9 Use synthetic division to divide. a. b. c. d. e. , , , , , 5 points Question 10 Use the Remainder Theorem and synthetic division to find the function value. a. 8 b. 6 c. 7 d. -3 e. 3 5 points Question 11 Use the Remainder Theorem and synthetic division to find the function value. Verify your answer using another method. , a. -27 b. -29 c. -31 d. -25 e. -28 5 points Question 12 Use the Remainder Theorem and synthetic division to find the function value. Verify your answer using another method. a. 344 b. 343 c. -343 d. 340 e. 345 5 points Question 13 If , use synthetic division to evaluate . a. b. c. d. e. 5 points Question 14 Use the Remainder Theorem and synthetic division to find each function value. Verify your answers using another method. , a. -551 b. -547 c. -549 d. -548 e. -545 5 points Question 15 Find all real solutions of the polynomial equation a. b. c. d. e. 5 points Question 16 Find all the zeros of the function. a. b. c. d. e. 5 points Question 17 Find all the zeros of the function. . a. b. c. d. e. 5 points Question 18 A small theater has a seating capacity of 2000. When the ticket price is $20, attendance is in price, attendance increases by . The revenue . For each $1 decrease of the theater as a function of ticket price is as follows What ticket price will yield a maximum revenue? a. b. c. d. e. 5 points Question 19 The total revenue earned (in thousands of dollars) from manufacturing handheld video games is given by where, is the price per unit (in dollars). Find the unit price that will yield a maximum revenue. a. b. c. d. e. 5 points Question 20 The height, , of a punted rugby ball is given by where x is the horizontal distance in feet from the point where the ball is punted. How far, horizontally, is the ball from the kicker when it is at its highest point? a. b. c. d. e
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