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An investment will pay $150 at the end of each of the next 3 years, $250 at the end of Year 4, $300 at the end of Year 5, and $600 at the end of Year 6. If other investments of equal risk earn 9% annually, what is its
Present value: $
Future value: $
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- Keith Riggins expects an investment of $125,473.50 to return $15,000 annually for several years. If Riggins earns a return of 10%, how many annual payments will he receive? (PV of $1, FV of $1, PVA of $1, and FVA of $1) (Use appropriate factor(s) from the tables provided. Round "Table Factor" to 4 decimal places.) Present Value Annuity Payment = ון Table Factor Annual Payments paymentsYou are evaluating a growing perpetuity investment from a large financial services firm. The investment promises an initial payment of $20,100 at the end of this year and subsequent payments that will grow at a rate of 3.4 percent annually. If you use a 9 percent discount rate for investments like this, what is the present value of this growing perpetuity? (Round answer to 2 decimal places, e.g. 15.25.)You plan to analyze the value of a potential investment by calculating the sum of the present values of its expected cash flows. Which of the following would increase the calculated value of the investment? Group of answer choices The cash flows are in the form of a deferred annuity, and they total to $100,000. You learn that the annuity lasts for 10 years rather than 5 years, hence that each payment is for $10,000 rather than for $20,000. The discount rate decreases. The riskiness of the investment's cash flows increases. The total amount of cash flows remains the same, but more of the cash flows are received in the later years and less are received in the earlier years. The discount rate increases.
- Trestle Corporation wants to purchase a new finishing machine. They currently have an old machine, which is operable for five more years and is expected to have a zero-disposal value at the end of five years. If the company buys the new machine, the old machine will be sold now for $95,000 (book value is $75,000). The new machine will cost $635,000 and will be depreciated for tax purposes on a straight-line basis over its useful life of 5 years. The new machine will not have a salvage value and will not be sold after its useful life. An additional cash investment in working capital of $25,000 will be required if the new machine is purchased. The investment is expected to net $80,000 in before tax cash inflows during the first year of operation and $235,000 each additional year of use. These cash flows do not include depreciation and are recognized at the end of each year. The working capital investment will not be recovered at the end of the asset's life. The company's tax rate is 32%.Now it's time to practice what you've learned. Consider a future value of $2,000, 9 years in the future. Assume that the nominal interest rate is 24.00%. Assume that there is semiannual compounding. Entering PMT=0 and a FV=$2,000 into a financial calculator, along with the appropriate periodic interest rate and value of N, yields a present value of approximately $ with semiannual compounding. Assume that there is quarterly compounding. Entering PMT=0 and a FV=$2,000 into a financial calculator, along with the appropriate periodic interest rate and value of N, yields a present value of approximately $ with quarterly compounding. Suppose now that the cash flow of $2,000 occurs only 1 year in the future. Assume that there is monthly compounding. Entering PMT=0 and a FV $2,000 into a financial calculator, along with the appropriate periodic interest rate and value of N, yields a present value of approximately $ with monthly compounding.If you invest $9,400 per period for the following number of periods, how much would you have received at the end? ( Use a Financial calculator to arrive at the answers. Round the final answers to the nearest whole dollar.) a. 12 years at 6 percent. Future value $ b. 18 years at 8 percent. Future value $ c. 25 periods at 16 percent. Future value $
- Provided are links to the present and future value tables: (PV of $1, FV of $1, PVA of $1, and FVA of $1) (Use appropriate factor(s) from the tables provided. Round your answer to the nearest whole dollar.) a. How much would you have to deposit today if you wanted to have $55,000 in three years? Annual interest rate is 10%. b. Assume that you are saving up for a trip around the world when you graduate in three years. If you can earn 6% on your investments, how much would you have to deposit today to have $15,000 when you graduate? (Round your answer to 2 decimal places.) c-1. Calculate the future value of an investment of $666 for ten years earning an interest of 9%. (Round your answer to 2 decimal places.) c-2. Would you rather have $666 now or $1,800 ten years from now? d. Assume that a college parking sticker today costs $80. If the cost of parking is increasing at the rate of 6% per year, how much will the college parking sticker cost in seven years? (Round your answer to 2 decimal…Consider a future value of $2,000, 8 years in the future. Assume that the nominal interest rate is 18.00%. Assume that there is semiannual compounding. Entering PMT=0 and a FV=$2,000 into a financial calculator, along with the appropriate periodic interest rate and value of N, yields a present value of approximately $ with semiannual compounding. Assume that there is quarterly compounding. Entering PMT=0 and a FV=$2,000 into a financial calculator, along with the appropriate periodic interest rate and value of N, yields a present value of approximately $ with quarterly compounding. Suppose now that the cash flow of $2,000 occurs only 1 year in the future. Assume that there is monthly compounding. Entering PMT=0 and a FV=$2,000 into a financial calculator, along with the appropriate periodic interest rate and value of N, yields a present value of approximately $ with monthly compounding.You are considering two equally risky annuities, each of which pays $5,000 per year for 10 years. Investment ORD is an ordinary (or deferred) annuity, while Investment DUE is an annuity due. Which of the following statements is CORRECT? a. The present value of ORD exceeds the present value of DUE, and the future value of ORD also exceeds the future value of DUE. b. The present value of ORD must exceed the present value of DUE, but the future value of ORD may be less than the future value of DUE. c. The present value of DUE exceeds the present value of ORD, and the future value of DUE also exceeds the future value of ORD. d. The present value of DUE exceeds the present value of ORD, while the future value of DUE is less than the future value of ORD. e. If the going rate of interest decreases from 10% to 0%, the difference between the present value of ORD and the present value of DUE would remain constant.
- Bill Padley expects to invest $6,000 for 3 years, after which he wants to receive $6,945.60. What rate of interest must Padley earn? (PV of $1. EV of $1. PVA of $1. and EVA of $1) (Use appropriate factor(s) from the tables provided. Round "Table Factor" to 4 decimal places.) Future Value Present Value Table Factor Interest Rate %You are evaluating a growing perpetuity investment from a large financial services firm. The investment promises an initial payment of $15,000 at the end of this year and subsequent payments that will grow at a rate of 2.0 percent annually. If you use a 9 percent discount rate for investments like this, what is the present value of this growing perpetuity? (Round answer to 2 decimal places, e.g. 15.25.) Present value $You have a chance to buy an annuity that pays $25,000 at the beginning of each year for 10 years. You could earn 8.5% on your money in other investments with equal risk. What is the most you should pay for the annuity? You are not required to show calculations but you must list the inputs used such as N, PV, FV, etc. O $346,484.41 O $177,976.57 O $164,033.70
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