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a. Find the FV of $1,000 invested to earn 12% after 6 years. Round your answer to the nearest cent. b. What is the investment's

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a. Find the FV of $1,000 invested to earn 12% after 6 years. Round your answer to the nearest cent. b. What is the investment's FV at rates of 0%, 5%, and 25% after 0, 1, 2, 3, 4, and 5 years? Round your answers to the nearest cent. Interest Rate Year 0% 5% 25% 0 $ ABL Aranna line is for 5%, and grey line is for 1 2 3 4 5 $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ Choose the correct graph of future value as a function of time and rate. Note: blue line is for 0%, orange line is for 5%, and grey line is for 25%. The correct graph is 7000- FV as Function of Time and Rate 6000 5000- 4000- 3000- 2000- 1000 Year FV as Function of Time and Rate A. B. Future Value (5) Future Value (5) 7000 6000- 5000 4000 3000 2000- 10000 C. D. Future Value (S) Future Value (S) 7000- 6000- 5000- 4000- 3000+ 2000- 1000 7000 6000- 5000- 4000 3000- 2000- 1000 FV as Function of Time and Rate Year FV as Function of Time and Rate Year c. Find the PV of $1,000 due in 6 years if the discount rate is 12%. Round your answer to the nearest cent. $ d. A security has a cost of $1,000 and will return $2,000 after 6 years. What rate of return does the security provide? Round your answer to two decimal places. e. Suppose California's population is 34.7 million people, and its population is expected to grow by 4% annually. How long will it take for the population to double? Round your answer to the nearest whole number. years OneNote f. Find the PV of an ordinary annuity that pays $1,000 each of the next 6 years if the interest rate is 15%. Then find the FV of that same annuity. Round your answers to the nearest cent. PV of ordinary annuity: $ FV of ordinary annuity: $ g. How will the PV and FV of the annuity in part f change if it is an annuity due rather than an ordinary annuity? Round your answers to the nearest cent. PV of annuity due: $ FV of annuity due: $ h. What will the FV and the PV for parts a and c be if the interest rate is 12% with semiannual compounding rather than 12% with annual compounding? Round your answers to the nearest cent. FV with semiannual compounding: $ PV with semiannual compounding: $ J. Find the PV and the FV of an investment that makes the following end-of-year payments. The interest rate is 10%. Year Payment 1 $200 2 $300 3 $500 Round your answers to the nearest cent. PV of investment: $ FV of investment: $ k. Five banks offer nominal rates of 8% on deposits, but A pays Interest annually, 8 pays semiannually, C pays quarterly, D pays monthly, and E pays daily. Assume 365 days in a year. 1. What effective annual rate does each bank pay? If you deposit $5,000 in each bank today, how much will you have in each bank at the end of 1 year? 2 years? Round your answers to two decimal places. A B C D E EAR % % % FV after 1 year $ $ FV after 2 years $ 2. If the TVM is the only consideration, what nominal rate will cause all of the banks to provide the same effective annual rate as Bank A? Round your answers to two decimal places. D Nominal rate 3. Suppose you don't have the $5,000 but need it at the end of 1 year. You plan to make a series of deposits annually for A, semiannually for B, quarterly for C, monthly for D, and daily for E-with payments beginning today. How large must the payments be to each bank? Round your aneware to the nearest rent 3. Suppose you don't have the $5,000 but need it at the end of 1 year. You plan to make a series of deposits annually for A, semiannually for B, quarterly for C, monthly for D, and daily for E- with payments beginning today. How large must the payments be to each bank? Round your answers to the nearest cent. A B D E Payment 4. Even if the five banks provided the same effective annual rate, would a rational investor be indifferent between the banks? It is more likely that an investor would prefer the bank that compounded | frequently. 1. Suppose you borrow $14,000. The interest rate is 10%, and it requires 4 equal end-of-year payments. Set up an amortization schedule that shows the annual payments, interest payments, principal repayments, and beginning and ending loan balances. Round your answers to the nearest cent. If your answer is zero, enter "0". Beginning Ending Repayment of Principal Year Balance Payment Interest Balance 1 $ $ $ $ 2 $ $ $ $ 3 $ $ 4 $ $ $ Choose the correct graph that shows how the payments are divided between interest and principal repayment over time. The correct graph is $ $ $ Choose the correct graph that shows how the payments are divided between interest and principal repayment over time. The correct graph is Breakdown of payments 6000 6000 5000 5000 4000+ 4000 3000- 3000+ 2000+ 2000 1000 1000+ 2 3 Repayment of Principal ($) Interest (5) Repayment of Principal (5) Interest (1) 6000 6000 5000 5000 4000 4000 A. Dollar Values Year Breakdown of payments B. Dollar Values Breakdown of payments [!!! 2 Year Breakdown of payments Repayment of Principal (5) Interest (5) 6000 5000 4000 3000 2000- 1000 1 Repayment of Principal ($) Interest (5) Dollar Values Check My Wodk 2 Reset Problem Year Breakdown of payments 3 2 11 3 Year D. Dollar Values Repayment of Principal ($) Interest ($) 6000 5000 4000+ 3000 2000- 1000 1 Repayment of Principal (8) Interest (1) 2 3 Year Breakdown of payments 2 3 Year

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