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Problem 13-25 Certainty equivalent approach [LO13-1] Sheila Goodman recently received her MBA from the Harvard Business School. She has joined the family business, Goodman Software

Problem 13-25 Certainty equivalent approach [LO13-1]

Sheila Goodman recently received her MBA from the Harvard Business School. She has joined the family business, Goodman Software Products Inc., as Vice-President of Finance. She believes in adjusting projects for risk. Her father is somewhat skeptical but agrees to go along with her. Her approach is somewhat different than the risk-adjusted discount rate approach, but achieves the same objective. She suggests that the inflows for each year of a project be adjusted downward for lack of certainty and then be discounted back at a risk-free rate. The theory is that the adjustment penalty makes the inflows the equivalent of riskless inflows, and therefore a risk-free rate is justified.

A table showing the possible coefficient of variation for an inflow and the associated adjustment factor is shown next:

Coefficient of Variation Adjustment Factor
0 0.25 0.90
0.26 0.50 0.80
0.51 0.75 0.70
0.76 1.00 0.60
1.01 1.25 0.50

Assume a $165,000 project provides the following inflows with the associated coefficients of variation for each year.

Year Inflow Coefficient of Variation
1 $ 32,100 0.14
2 52,600 0.21
3 70,900 0.44
4 59,500 0.85
5 61,100 1.15

Use Appendix B for an approximate answer but calculate your final answer using the formula and financial calculator methods. a. Fill in the table below: (Do not round intermediate calculations. Round "Adjustment Factor" answers to 2 decimal places and other answers to the nearest whole dollar.)

Year Adjustment Factor Adjusted Inflow
1
2
3
4
5

b-1. If the risk-free rate is 5 percent, compute the net present value of the adjusted inflows. (Negative amount should be indicated by a minus sign. Do not round intermediate calculations and round your answer to 2 decimal places.)

Net present value

b-2. Should this project be accepted?

  • No

  • Yes

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