3. Future value The principal of the time value of money is probably the single...

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3. Future value The principal of the time value of money is probably the single most important concept in financial management. One of the most frequently encountered applications involves the calculation of a future Value This process requires knowledge of the values of three of The process for converting present values into future values is called compounding four time-value-of-money variables. Which of the following is not one of these variables? The present value (PV) of the amount invested The inflation rate indicating the change in average prices The interest rate (1) that could be earned by invested funds The duration of the investment (N) All other things being equal, the numerical difference between a present and a future value corresponds to the amount of interest earned during the deposit or investment period. Each line on the following graph corresponds to an interest rate: 0%, 8%, or 16%. Identify the interest rate that corresponds with each line All other things being equal, the numerical difference between a present and a future value corresponds to the amount of interest earned during the deposit or investment period. Each line on the following graph corresponds to an interest rate: 0%, 8%, or 16%. Identify the Interest rate that corresponds with each line. VALUE 10ollars! C 0 1 2 3 5 6 7 10 TIME Years Line A: Line B: Line C: interest and the vestments and loans base their interest calculations on one of two possible methods: the interest methods. Both methods apply three variables--the amount of principal, the interest rate, and the investment or deposit meriodto the amount deposited or invested in order to compute the amount of Interest. However, the two methods differ in their relationship between the variables. Assume that the variables 1, N, and PV represent the interest rate, Investment or deposit period, and present value of the amount deposited or nvested, respectively. Which equation best represents the calculation of a future value (FV) using Compound interest? OFV=PV / (1+1) O FV = PV x (1 + 1) OFV = (1 + 1) / PV Simple interest? O FPV/(PV XIXN) O FV = PV + (PVXI XN) OFVPV - (PVXIXN) Identify whether the following statements about the simple and compound interest methods are true or false. True False Statement After the end of the second year and all other factors remaining equal, a future value based on compound interest will never exceed the future value based on simple interest. All other variables held constant, investments paying simple interest have to pay significantly higher interest rates to earn the same amount of interest as an account earning compound interest. All other factors being equal, both the simple interest and the compound interest methods will accrue the same amount of earned interest by the end of the first year. Alek is willing to invest $30,000 for eight years, and is an economically rational investor. He has identified three investment alternatives (A, B, and C) that vary in their method of calculating interest and in the annual interest rate offered. Since he can only make one investment during the eight year investment period, complete the following table and indicate whether Alek should invest in each of the investments Note: When calculating each investment's future value, assume that all interest is earned annually. The final value should be rounded to the nearest Investment Expected Future Value Make this Investment? Interest Rate and Method 9% simple interest 4% compound interest 6% compound interest

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