Assume you deposit $1,000 in your savings account. Performance a sensitivity analysis on the relationship between future value at the end of year 10 and interest rate. Plot the relationship on a chart and label the graph clearly
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Assume you deposit $1,000 in your savings account. Performance a sensitivity analysis
on the relationship between
relationship on a chart and label the graph clearly
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- Assume you deposit $1,000 in your savings account. Performance a sensitivity analysis on the relationship between future value at the end of year 10 and interest rate. Plot the relationship on a chart and label the graph clearlyInterest rates or discount rates. Fill in the interest rates for the following table using one of the three methods below: a. Use the interest rate formula, r=FVPV1n−1. b. Use the TVM keys from a calculator. c. Use the TVM function in a spreadsheet. Present Value Future Value Number of Periods Interest Rate $ 493.61 $ 1,902.61 20 ? $17,077.77 $228,416.84 32 ? $34,251.51 $ 63,755.61 24 ? $26,813.61 $212,279.67 10 ? Present Value Future Value Number of Periods Interest Rate $ 493.61 $ 1,902.61 20 nothing% (Round to two decimal places.) $17,077.77 $228,416.84 32 nothing% (Round to two decimal places.) $34,251.51 $ 63,755.61 24 nothing% (Round to two decimal places.) $26,813.61 $212,279.67 10 nothing% (Round to two decimal places.)Assume the returns from holding an asset are normally distributed. Also assume the average annual return for holding the asset a period of time was 15.3 percent and the standard deviation of this asset for the period was 33.2 percent. Use the NORMDIST function in Excel® to answer the following questions. a. What is the approximate probability that your money will double in value in a single year? (Do not round intermediate calculations and enter your answer as a percent rounded to 3 decimal places, e.g., 32.161.) b. What is the approximate probability that your money will triple in value in a single year? (Do not round intermediate calculations and enter your answer as a percent rounded to 8 decimal places, e.g., 32.16161616.)
- The present value represents the amount of money you would have to deposit today in order to match what you would get from the income stream at the future date. The formula is Time = M = i Future value represents the total amount of money you would have if you deposit the income stream until a future date. The formula is To start our problem we need to identify the variables. Rate =r= i Income Stream S(t) = i Present Value = years % M 1. 0 S (t) et dt. Future Value = Present Value* erM dollars/yearFor the cash flows below, use an annual worth comparison to determine which alternative is best at an interest rate of 1% per month.How do you add a 3 month treasury bill into a regression model on eviews.
- Ann Tyler, with the help of a financial newsletter and some library research, has been able to assign probabilities to each of the possible interest rates during the next year, as follows: Interest Rate (%) Probability 5 .2 6 .3 7 .3 8 .1 9 .1 Using expected value, determine her best investment decision.Construct a spreadsheet to convert a nominal interest rate compounded m times per year i(m) and convert it to an effective rate jn per 1/n of a year. On the same spreadsheet, also start with an effective rate jm per 1/m of a year and convert it to a nominal rate i(n) compounded n times per year. Use your spreadsheet to solve the following two problems: Given the nominal rate i(12) = 5.700%, find the equivalent effective semi-annual rate. Given the effective semi-annual rate j2 = 2.884%, find the equivalent nominal rate ¡(12).Assume the returns from holding an asset are normally distributed. Also assume the average annual return for holding the asset a period of time was 16.3 percent and the standard deviation of this asset for the period was 33.5 percent. Use the NORMDIST function in Excel® to answer the following questions. a. What is the approximate probability that your money will double in value in a single year? (Do not round intermediate calculations and enter your answer as a percent rounded to 3 decimal places, e.g., 32.161.) b. What is the approximate probability that your money will triple in value in a single year? (Do not round intermediate calculations and enter your answer as a percent rounded to 8 decimal places, e.g., 32.16161616.) a. b. X Answer is complete but not entirely correct. Probability Probability 0.624 % 0.00000200 X %
- Assume the returns from holding an asset are normally distributed. Also assume the average annual return for holding the asset a period of time was 16.3 percent and the standard deviation of this asset for the period was 33.5 percent. Use the NORMDIST function in Excel® to answer the following questions. a. What is the approximate probability that your money will double in value in a single year? (Do not round intermediate calculations and enter your answer as a percent rounded to 3 decimal places, e.g., 32.161.) b. What is the approximate probability that your money will triple in value in a single year? (Do not round intermediate calculations and enter your answer as a percent rounded to 8 decimal places, e.g., 32.16161616.) a. b. Probability Probability Answer is not complete. 0.624 % %Use factors and a spreadsheet to determine the interest rate per period from the following equation: 0 = -26,000 + 8,000(P/A,i∗,5) + 8,000(P/F,i∗,8) What is the interest rate per period? %Assume the returns from holding an asset are normally distributed. Also assume the average annual return for holding the asset a period of time was 15.2 percent and the standard deviation of this asset for the period was 33.1 percent. Use the NORMDIST function in Excel to answer the following questions. a. What is the approximate probability that your money will double in value in a single year? Note: Do not round intermediate calculations and enter your answer as a percent rounded to 3 decimal places, e.g., 32.161. b. What is the approximate probability that your money will triple in value in a single year? Note: Do not round intermediate calculations and enter your answer as a percent rounded to 8 decimal places, e.g., 32.16161616. a. Probability b. Probability % %