Find the amount that should be set aside today to yield the desired future amount. Use the table. Future amount Interest Compounding Investment time rate period 4% semiannually 4 years Click here to view page 1 of the table. Click here to view page 2 of the table. needed $2,000 The amount that should be set aside today is $ (Round to the nearest cent as needed.)
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- For each of the following annuities, calculate the future value. Note: Do not round intermediate calculations and round your answers to 2 decimal places, e.g., 32.16. Future Value Annual Payment $ $ $ $ 1,220 4,340 2,940 7,530 Years 10 50 9 35 Interest Rate 5% 6 3 7Calculate the present value of the following annuities, assuming each annuity payment is made at the end of each compounding period. (FV of $1. PV of $1. FVA of $1, and PVA of $1) (Use tables, Excel, or a financial calculator. Round your answers to 2 decimal places.) 1. 2. 3. Annuity Payment $ 5,600 10,600 4,600 Annual Rate Interest Compounded Semiannually 9.0% 10.0% Quarterly 11.0% Annually Period Invested 3 years 2 years 5 years Present Value of AnnuityFind the amount that should be set aside today to yield the desired future amount. Future amount Interest Compounding period semiannually Investment needed rate time $10,000 4% 2 years Click the icon to view the present value of $1.00 table. The present value is $ (Round to the nearest cent as needed.)
- You are calculating the present value of $1,000 that you will receive five years from now.Which table will you use to obtain the present value factor to multiply to calculate thepresent value of that $1,000?a. Present Value of $1 tableb. Future Value of $1 tablec. Present Value of Ordinary Annuity of $1d. Future Value of Ordinary Annuity of $1For each of the following situations involving annuities, solve for the unknown. Assume that interest is compounded annually and that all annuity amounts are received at the end of each period. (/= interest rate, and n= number of years) 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. EVAD of $1 and PVAD of $1) 1. $ 2 3 4. 15 Present Value Answer is complete but not entirely correct. Annuity Amount 2.200 145,000 190,000 72.523 45,787 8,784 558,865 480,945 520,000 240,000 8% 1.0% 9% 2.5% 10% n= 5 4 30 8 4Calculate the present value (principal) and the compound interest (in $). Use Table 11-2. Round your answers to the nearest cent. Nominal Rate (%) Compound Term of Interest Present Compound Amount Investment Compounded Value Interest $200,000 10 years 4 annually $ Need Help? Read It
- Calculate the future value of the following annuities, assuming each annuity payment is made at the end of each compounding period. (FV of $1. PV of $1, EVA of $1, and PVA of $1) (Use tables, Excel, or a financial calculator. Round your answers to 2 decimal places.) 1. Annuity Payment $ 3,700 Annual Rate Interest Period Compounded Invested Future Value of Annuity 7.0% Semiannually 9 years 2. 6,700 8.0% Quarterly 5 years 3. 5,700 12.0% Annually 6 yearsFor each of the following annuities, calculate the present value. Note: Do not round intermediate calculations and round your answers to 2 decimal places, e.g., 32.16. Present Value Annuity Payment $ 2,750 $ 1,505 13,455 33,900 LA $ $ SA Years 7 9 16 30 Interest Rate 6 % 5 7 9If you deposit $2 comma 7002,700 today into an account earning an annual rate of return of 1313 percent, what will your account be worth in 4040 years (assuming no further deposits)? In 5050 years? Question content area bottom Part 1 Click on the table icon to view the FVIF table: LOADING... . In 4040 years, your account will be worth $enter your response here. (Round to the nearest cent.)
- 2. Consider the data in the following table: Perpetuity Annual amount discount rateA 100,000 10B 3,000 6 Determine the present value of each perpetuity.If $16800 is deposited in a savings account today, what amount will be available three years from today? The following future value interest factors are provided: Periods Future Value of 1 at 12% 1 2 3 5 1.120 1.254 1.405 1.574 1.762 O ($16800 x 1.120) + ($16800 x 1.254) + ($16800 x 1.405) O $16800+ 1.405 $16800 x 1.405 O $16800 × 1.120 x 3Calculate the present value of the following annulties, assuming each annuity payment is made at the end of each compounding period. (FV of $1, PV of $1, FVA of $1, and PVA of S1) (Use tables, Excel, or a financial calculator. Round your answers to 2 decimal places.) \table[[, \table[[Annuity], [Payment]], \table [[ Annual], [Rate]], \table[[Interest], [Compounded]], \table [[Period], [Invested]], \table [[Present Value of], [ Annuity]]], [1., $5,000, 7.0%, Semiannually,3 years,], [2., 10, 000, 8.0%, Quarterly,2 years, ], [3., 4,000, 10.0 %, Annually,5 years,]]