Your financial planner sends you information about the expected performance of your retirement account over the next five years, which 1 x+4 can be represented by the equation y=x+4. Select the graph of this equation.
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- Assume you deposit $1,000 in your savings account. Performance a sensitivity analysison the relationship between future value at the end of year 10 and interest rate. Plot therelationship on a chart and label the graph clearlyWhat is the present worth of a future payment of $19,000 in year 7 if the interest rate is 10% per year using (a) the tabulated factor values in your book, (b) TVM functions on a financial calculator, and (c) built-in functions on a spreadsheet?ind the future value of the following annuities. The first payment in these annuities is made at the end of Year 1, so they are ordinary annuities. (Notes: If you are using a financial calculator, you can enter the known values and then press the appropriate key to find the unknown variable. Then, without clearing the TVM register, you can "override" the variable that changes by simply entering a new value for it and then pressing the key for the unknown variable to obtain the second answer. This procedure can be used in many situations, to see how changes in input variables affect the output variable. Also, note that you can leave values in the TVM register, switch to Begin Mode, press FV, and find the FV of the annuity due.) Do not round intermediate calculations. Round your answers to the nearest cent. $800 per year for 10 years at 12%. $ $400 per year for 5 years at 6%. $ $800 per year for 5 years at 0%. $ Now rework parts a, b, and c assuming that payments are made…
- Nominal interest rates and yield curves Economic forecasters predict that the rate of inflation will hold steady at 2.5% per year indefinitely. The table, on the Treasury securities having different maturities. shows the nominal interest rate paid a. Approximately what real interest rate do Treasury securities offer investors at each maturity? b. If the nominal rate of interest paid by every Treasury security suddenly dropped by 1% without any change in inflationary expectations, what effect, if any, would this have on your answers in part a? c. Using your findings in part a, select the appropriate yield curve for U.S. Treasury securities. Describe the general shape and expectations reflected by the curve. d. What would a follower of the liquidity preference theory say about how the preferences of lenders and borrowers tend to affect the shape of the yield curve in part c? e. What would a follower of the market segmentation theory say about the supply and demand for long-term loans…Time value of money calculations can be solved using a mathematical equation, a financial calculator, or a spreadsheet. Which of the following equations can be used to solve for the future value of an annuity due? PMT x {[(1 + r)ª − 1]/r} x (1 + r) O FV/(1 + r)¹ PMT x {[(1 + r)" - 1]/r} O PMT x ({1 - [1/(1 + r)"]}/r) x (1 + r)Find the future value of the following annuities. The first payment in these annuities is made at the end of Year 1, so they are ordinary annuities. (Notes: If you are using a financial calculator, you can enter the known values and then press the appropriate key to find the unknown variable. Then, without clearing the TVM register, you can "override" the variable that changes by simply entering a new value for it and then pressing the key for the unknown variable to obtain the second answer. This procedure can be used in many situations, to see how changes in input variables affect the output variable. Also, note that you can leave values in the TVM register, switch to Begin Mode, press FV, and find the FV of the annuity due.) Do not round intermediate calculations. Round your answers to the nearest cent. $200 per year for 10 years at 14%. $ $100 per year for 5 years at 7%. $ $200 per year for 5 years at 0%. $ Now rework parts a, b, and c assuming that payments are made…
- Future values. Fill in the future values for the following table, using one of the three methods below a. Use the future value formula, FV= PVx(1+ b. Use the TVM keys from a calculator c. Use the TVM function in a spreadsheet Present Value $ 222.00 Interest Rate Number of Periods Future Value 3% $5.39 (Round to the nearest cent)In this project, you will use a graphing calculator to compare savings plans. For instance, suppose you are depositing $1000 in a savings account and are given the following options: 4 • 6.2% annual interest rate, compounded annually 6.1% annual interest rate, compounded quarterly 6.0% annual interest rate, compounded continuously •One can solve for payments (PMT), periods (N), and interest rates (1) for annuities. The easiest way to solve for these variables is with a financial calculator or a spreadsheet. Quantitative Problem 1: You plan to deposit $2,100 per year for 4 years into a money market account with an annual return of 3%. You plan to make your first deposit one year from today. a. What amount will be in your account at the end of 4 years? Do not round intermediate calculations. Round your answer to the nearest cent. $ b. Assume that your deposits will begin today. What amount will be in your account after 4 years? Do not round intermediate calculations. Round your answer to the nearest cent. $ Quantitative Problem 2: You and your wife are making plans for retirement. You plan on living 25 years after you retire and would like to have $95,000 annually on which to live. Your first withdrawal will be made one year after you retire and you anticipate that your retirement account will earn 12% annually. a.…
- Waiting periods. Fill in the number of periods for the following table,, using one of the three methods below: In (FV/PV) In (1 + r) a. Use the waiting period formula, n = b. Use the TVM keys from a calculator. c. Use the TVM function in a spreadsheet. Present Value 760.13 Future Value $ 1,585.01 Interest Rate 3% Number of Periods years (Round to the nearest whole number.)Determine the future value of the following single amounts. Note: Use tables, Excel, or a financial calculator. Round your final answers to nearest whole dollar amount. (FV of $1, PV of $1, FVA of $1, PVA of $1, FVAD of $1 and PVAD of $1) Invested Amount i- n Future Value 1. $ 11,500 7% 15 23 $ 15,000 6% 14 $ 28,000 12% 14 4. S 48,000 8% 6How much will be in an investment account 12 years from now if you deposit $3000 now and $5000 four years from now and the account earns interest at a rate of 10% per year? Use (a) tabulated factor values, (b) TVM functions on a financial calculator, and (c) built-in functions on a spreadsheet.