Principles of Corporate Finance (Mcgraw-hill/Irwin Series in Finance, Insurance, and Real Estate)
12th Edition
ISBN: 9781259144387
Author: Richard A Brealey, Stewart C Myers, Franklin Allen
Publisher: McGraw-Hill Education
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Chapter 10, Problem 22PS
Summary Introduction
To determine: whether the $18 million investment in phase II trials positive
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Assume that an investment is expected to generate the following returns: a 10% chance of a $1,400 return, a 50% chance of a $6,600 return, and a 40% chance of a $1,500 return. What is the expected rate of return on this investment?
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Consider a decision maker who is comfortable with an investment decision that has a50 percent chance of earning $25,000 and a 50 percent chance of losing $12,500, but notwith any larger investments that have the same relative payoffs.
a. Write the equation for the exponential function that approximates this decision maker’sutility function
Chapter 10 Solutions
Principles of Corporate Finance (Mcgraw-hill/Irwin Series in Finance, Insurance, and Real Estate)
Ch. 10 - Capital budgeting process True or false? a. The...Ch. 10 - Prob. 2PSCh. 10 - Prob. 3PSCh. 10 - Project analysis True or false? a. Sensitivity...Ch. 10 - Prob. 5PSCh. 10 - Real options True or false? a. Decision trees can...Ch. 10 - Prob. 7PSCh. 10 - Prob. 9PSCh. 10 - Prob. 10PSCh. 10 - Break-even analysis Break-even calculations are...
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- Consider a decision maker who is comfortable with an investment decision that has a 50% chance of earning $25,000 and a 50% chance of losing $12,500, but not with any larger investments that have the same relative payoffs. Write the equation for the exponential function that approximates this decision maker’s utility function. Plot the exponential utility function for this decision maker for x values between –20,000 and 35,000. Is this decision maker risk-seeking, risk-neutral, or risk-averse? Suppose the decision maker decides that she would actually be willing to make an investment that has a 50% chance of earning $30,000 and a 50% chance of losing $15,000. Plot the exponential function that approximates this utility function and compare it to the utility function from part (b). Is the decision maker becoming more risk-seeking or more risk-averse?arrow_forwardAlternatives X and Y have rates of return of 10% and 18%, respectively. What is known about the rate of return on the increment between X and Y if the investment required in Y is (a) larger than that required for X, and (b) smaller than that required for X? (c) Develop two spreadsheet examples that illustrate your responses to parts (a) and (b).arrow_forwardExplain well with proper answer.arrow_forward
- A firm has three investment alternatives. Payoffs are in thousands of dollars. a. Using the expected value approach, which decision is preferred? b. For the lottery having a payoff of 100,000 with probability p and 0 with probability (1 p), two decision makers expressed the following indifference probabilities. Find the most preferred decision for each decision maker using the expected utility approach. c. Why dont decision makers A and B select the same decision alternative?arrow_forwardH1. Accountarrow_forwardThe decision tree below describes a “sure thing” investment and a “risky” investment. Use backward induction to evaluate which is the better investment. Assume all values are already given in present value terms.arrow_forward
- Assume Sutaible dataarrow_forwardConsider the following payoff table: DA: Decision Alternative. Decision Alternative Good Bad Probabilities State of Nature 0.6 DA1 -3.22 DA2 13.80 DA3 3.75 DA4 4.06 6.33 What is the Expected value under perfect Information (EVUPI)? (Please keep 2 decimals for your answer) Your Answer: Answer 0.4 5.21 -5.40 6.00arrow_forwardLet each decision variable, A, P, M, H, and G, represent the fraction or proportion of the total investment placed in each investment alternative. Max 0.073A + 0.103P + 0.064M + 0.075H + 0.045Gs.t. A + P + M + H + G = 1 0.5A + 0.5P - 0.5M - 0.5H <= 0 -0.5A - 0.5P + 0.5M + 0.5H <= 0 -0.25M - 0.25H + G >= 0 -0.6A + 0.4P >= 0 A, P, M, H, G <= 0 a. What fraction of the portfolio should be invested in each type of security (A, P, M, H, G)?b. How much should be invested in each type of security?c. What are the total earnings for the portfolio?d. What is the marginal rate of return on the portfolio? That is, how much more could be earned by investing one more dollar in the portfolio? *Please use excel solver & show all steps**arrow_forward
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