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- Classify the financial problem. Assume a 4% interest rate compounded annually. Find the value of a $1,000 certificate in 6 years. A. amortizationB.ordinary annuity C.present valueD. sinking fundE.future value Answer the question. (Round your answer to the nearest cent.)For 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 4Classify the financial problem. Assume a 9% interest rate compounded annually. What annual deposit is necessary to give $10,000 in 6 years? A.future valueB.amortization C.sinking fundD.present valueE.ordinary annuity Answer the question. (Round your answer to the nearest cent.)
- 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 yearsWhat is the present value of a perpetuity of $8,447 per year given an interest rate of 8.2%, assuming that the first cash flow occurs today (that is, in year 0)? Record your answer as a dollar amount rounded to 2 decimal places , but do not include a dollar sign or any commas in your answer . For example , enter $ 12,327.24987 as 12327.25 .A lottery offers you a choice of $1,000,000 per year for 30 years or a lump-sum payment. What lump-sum payment (rounded to the nearest dollar) would equal the annual payments if the current interest rate is 1.9% compounded annually? (a) State the type. A. amortization B. present value of an ordinary annuity C. future value of an ordinary annuity D.sinking fund E. none of these (b) Answer the question. (Round your answer to the nearest dollar.)
- 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 $1Calculate 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, FVA of $1, and PVA of $1) (Use appropriate factor(s) from the tables provided. Round your answers to 2 decimal places.) Annuity Payment Annual Rate Interest Compounded Period Invested Future Value of Annuity 1. $3,100 8.0 % Semiannually 9 years $79,500.77 2. 6,100 10.0 % Quarterly 5 years 3. 5,100 12.0 % Annually 6 yearsFind the interest rate needed for the sinking fund to reach the required amount. Assume that the compounding period is the same as the payment period. $26746 to be accumulated in 6 years; quarterly payments of $925 The interest rate needed is approximately __ % (Type an integer or decimal rounded to two decimal places as needed) Thank you so much
- Solve the problem. solve using the formula for the future value of an ordinary annuity. given the monthly payment, capital, the annual interest rate, are, and the number of monthly payments, antique, find the future value of the annuity. R=$1300; r = 8.5%; nt= 17 A) $24,398.04 B) $17,548.36 C) $23,397.81 D) $24,198.38 Please search only correct answer as I am | paying for this and I keep receiving incorrect oneUsing ume value of money tables, calculate the following. (Exhibit 1-A, Exhibit 1-B, Exhibit 1-C., Exhibit 1-D) Note: Use approprlate factor(s) from the tables provided. a. The future value of $490 six years from now at 5 percent. b. The future value of $600 saved each year for 10 years at 7 percent c. The amount a person would have to deposit today (present value) at an interest rate of 7 percent to have $900 five years from now. d. The amount a person would have to deposit today to be able to take out $600 a year for 10 years from an account earning 9 percent. Complete this question by entering your answers in the tabs below. The future value of $600 saved each year for 10 years at? percent. Noter Round time value factor to 3 decimal place and finafapswes to 2 decimal places.a) What’s the rate of return you would earn if you paid $1,500 for a perpetuity thatpays $105 per year? b) At a rate of 8%, what is the present value of the following cash flow stream?$0 atTime 0; $100 at the end of Year 1; $300 at the end of Year 2; $0 at the end of Year 3;and $500 at the end of Year 4?