Question: (Solving a comprehensive problem) Use the end-of-year stock price data in the popup window, , to answer the following questions for the Harris and Pinwheel

 (Solving a comprehensive problem) Use the end-of-year stock price data inthe popup window, , to answer the following questions for the Harrisand Pinwheel companies. a. Compute the annual rates of return for eachtime period and for both firms. b. Calculate both the arithmetic andthe geometric mean rates of return for the entire three-year period usingyour annual rates of return from part a. (Note: you may assume

(Solving a comprehensive problem) Use the end-of-year stock price data in the popup window, , to answer the following questions for the Harris and Pinwheel companies. a. Compute the annual rates of return for each time period and for both firms. b. Calculate both the arithmetic and the geometric mean rates of return for the entire three-year period using your annual rates of return from part a. (Note: you may assume that neither firm pays any dividends.) c. Compute a three-year rate of return spanning the entire period (i.e., using the ending price for period 1 and ending price for period 4) d. Since the rate of return calculated in part c is a three-year rate of return, convert it to an annual rate of return by using the following equation: ket f stud. Three-Year Annual Rate 1 + 1 - Rate of Return of Return Scree 9-06 the annual rate of return calculated in part e. How related to the geometric rate of return? When vou are evaluatina the nerformance of an investment that has been. a. Enter the annual rate return for each year for Harris in the table below. (Round to two decimal places.) Value of Annual Rate Value of Annual Rate Time Harris Stock of Return Pinwheel Stock of Return $22 1 $12 Scree 9-06 2 8 33 3 10 30 13 % 27 Enter the annual rate of return for each year for Pinwheel in the table below. (Round to two decimal places.) Value of Annual Rate Value of Pinwheel Stock Annual Rate of Return Time Harris Stock of Return $22 1 $12 8 2 33.33% 33 % 3 10 25.00% 30 % 13 30.00% 27 %. (Round to two decimal places.) b. The arithmetic average rate of return earned by investing in Harris stock over this period is %. (Round to two decimal places.) The arithmetic average rate of return earned by investing in Pinwheel stock over this period is . (Round to two decimal places.) The geometric average rate of return earned by investing in Harris stock over this period is %. (Round to two decimal places.) The geometric average rate of return earned by investing in Pinwheel stock over this period is %. (Round to two decimal places.) c. The three-year rate of return spanning the entire period for Harris is %. (Round to two decimal places.) The three-year rate of return spanning the entire period for Pinwheel is %. (Round to two decimal places.) d. The annual rate of return converted from the three-year rate in part c for Harris is %. (Round to two decimal places.) The annual rate of return converted from the three-year rate in part c for Pinwheel is e. How the annual rate of return calculated in part d related to the geometric rate of return? (Select the best choice below.) O A. The annual rate of return calculated in part d is nothing but the arithmetic average rate of return calculated in a different way. O B. The annual rate of return calculated in part d is nothing but the geometric average rate of return calculated in a different way. O C. The annual rate of return calculated in part d is the same as the geometric rate of return in this problem but this is only a coincidence. O D. The annual rate of return calculated in part d is not related to the geometric average rate of return. When you are evaluating the performance you use? Why? (Select the best choice below.) f an investment that has been held for several years, what type of average rate of return (arithmetic or geometric) should O A. Geometric average return better describes the average annual rate of return over a period because it concerning the expected rate of return over a period. O B. The geometric rate of return should be used. It better describes the average annual rate of return over a period because it compounds at the same rate while the arithmetic rate of return is best used for a single period O C. The arithmetic rate of return should be used. It better describes the average annual rate of return over a period because it compounds at the same rate while the geometric rate of return is best used for a single period. O D. Arithmetic average return better describes the average annual rate of return over a period because it is a simple average, so it answers the question concerning the expected rate of return over a period. a simple average, so it answers the question Time Harris Pinwheel 1 $12 $22 2 8 33 3 10 30 4 13 27

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