Complete the ordinary annuity as an annuity due (future value) for the following: (Please use the following provided Table.) (Do not round intermediate calculations. Round your answer to the nearest cent.) Payment payable Amount of Years Interest rate Annuity due payment %24 4,800 Annually 9 3 %
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- Give typing answer with explanation and conclusion to all parts If $387674 is used to purchase an annuity earning 5.5% compounded monthly and paying $3102 at the end of each month, what will be the term of the annuity? Include the final, smaller annuity payment in the total. (Just state total months as a number, not years and months) What is N? What is I/Y? What is C/Y? What is P/Y? What is PV? What is PMT? What is FV?Complete the ordinary annuity. (Please use the following provided Table.) (Do not round intermediate calculations. Round your answer to the nearest cent.) amount of payment payment payable years interest rate value of annuity 12,700 semiannual 9 6%We can now use the following formula to find the present value of the account where the annuity payments are $400 each month. present value = table factor ✕ annuity payment The table factor was determined to be 21.67568. Before using the above formula, we must add 1 to the table factor since this is an annuity due. Thus, the table factor to use in the formula is 21.67568 + 1 = . Substitute the values into the formula, rounding the result to the nearest cent. present value = table factor ✕ annuity payment = ✕ 400 = $ Therefore, to receive annuity payments of $400 at the beginning of each month for 2 years, the amount that should be deposited now into an account earning 6% interest compounded monthly, to the nearest cent, is $ .
- Choose the letter of the correct answer and write it on the space provided _____ 1. A sequence of payments made at equal (fixed) intervals or periods of time. A. Annuity C. Ordinary Annuity B. Annuity due D. Simple Annuity ______2. The amount of each payment. A. Payment interval C. Annuity Payment B. Periodic Payment D. Time payment ______3. It is time between the purchase of an annuity and the start of the payments for the deferred annuity. A. Period of deferral C. Payment interval B. Annuity payment D. Period of payment ______4. A type of annuity in which the payments are made at the end of each payment interval. A. Annuity due C. General Annuity D. Simple Annuity D. Ordinary Annuity ______5. Compounding quarterly means the interest period is A. every year C. every 6 months B. every 4 months D. every 3 months ______6. In a monthly payment of P2,000 for 5 years that will start 7 months from now, what will be the period of deferral? A. 7 B. 5 C. 4 D. 6 ______7. A loan is given an…Present value of an annuity Consider the following case. (Click on the icon located on the top-right corner of the data table below in order to copy its contents into a spreadsheet.) Amount of annuity Interest rate Period (years) $26,000 9% 4 a. Calculate the present value of the annuity assuming that it is (1) An ordinary annuity. (2) An annuity due. b. Compare your findings in parts a(1) and a(2). All else being identical, which type of annuity—ordinary or annuity due—is preferable? Explain why.Give typing answer with explanation and conclusion Determine the periodic payment for the following deferred annuity. The annuity is an ordinary annuity following the period of deferral. Deferral period Payment interval (months) Interest rate (%) Compounding frequency Term (years) Present value ($) 27 months 1 6.4 Quarterly 20 50,000.00
- Find the period of deferral in each of the following deferred annuity problems. Note: One way to find the period of deferral is to count the number of artificial payments, k. Make a diagram.Which of following formulas is used to calculate the present value of a perpetual annuity? Seleccione una: a. P= f / (1+i)^n b. P= f / (i - g) c. P= a / (i - g) d. P= a / (1+i)^n e. F = P * (1+i)^nUse these present value tables to answer the question that follow. Below is a table for the present value of $1 at Compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, what is the present value of $16,491.00 (rounded to the nearest dollar) to be received at the end of each of the next four years, assuming an earnings rate of 12%? a.$59,450 b.$16,491 c.$50,083 d.$39,611 Use these present value tables to answer the question that follow. Below is a table for the present value of $1 at Compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a…
- Use these present value tables to answer the question that follow.Below is a table for the present value of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, if an investment is made now for $23,500 that will generate a cash inflow of $8,000 a year for the next four years, what would be the net present value of the investment, assuming an earnings rate of 10%? a. $16,050 b. $25,360 c. $23,500 d. $1,860Use these present value tables to answer the question that follow.Below is a table for the present value of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, what would be the present value of $8,000 to be received one year from today, assuming an earnings rate of 12%?Use these present value tables to answer the question that follow.Below is a table for the present value of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, what would be the internal rate of return of an investment of $227,460 that would generate an annual cash inflow of $60,000 for the next five years?