Following is the payoff table for the Pittsburgh Development Corporation (PDC) Condominium Project. Amounts are in millions of dollars. State of Nature Decision Alternative Strong Demand S₁ Weak Demand S₂ Small complex, di 7 6 Medium complex, dz 12 6 Large complex, dz 19 -9 Suppose PDC is optimistic about the potential for the luxury high-rise condominium complex and that this optimism leads to an initial subjective probability assessment of 0.8 that demand will be strong (S1) and a corresponding probability of 0.2 that demand will be weak (S2). Assume the decision alternative to build the large condominium complex was found to be optimal using the expected value approach. Also, a sensitivity analysis was conducted for the payoffs associated with this decision alternative. It was found that the large complex remained optimal as long as the payoff for the strong demand was greater than or equal to $15.75 million and as long as the payoff for the weak demand was greater than or equal to -$22 million. a. Consider the medium complex decision. How much could the payoff under strong demand increase and still keep decision alternative d3 the optimal solution? If required, round your answer to two decimal places. The payoff for the medium complex under strong demand remains less than or equal to $ remains the best decision. 20 X million, the large complex

Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter9: Decision Making Under Uncertainty
Section: Chapter Questions
Problem 46P
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Following is the payoff table for the Pittsburgh Development Corporation (PDC) Condominium Project. Amounts are in millions of dollars.
State of Nature
Decision Alternative Strong Demand S₁ Weak Demand S2
Small complex, d₁
7
6
Medium complex, dz
12
6
Large complex, d3
19
-9
Suppose PDC is optimistic about the potential for the luxury high-rise condominium complex and that this optimism leads to an initial
subjective probability assessment of 0.8 that demand will be strong (S₁) and a corresponding probability of 0.2 that demand will be weak
(S2). Assume the decision alternative to build the large condominium complex was found to be optimal using the expected value
approach. Also, a sensitivity analysis was conducted for the payoffs associated with this decision alternative. It was found that the large
complex remained optimal as long as the payoff for the strong demand was greater than or equal to $15.75 million and as long as the
payoff for the weak demand was greater than or equal to -$22 million.
a. Consider the medium complex decision. How much could the payoff under strong demand increase and still keep decision alternative
d3 the optimal solution? If required, round your answer to two decimal places.
The payoff for the medium complex under strong demand remains less than or equal to $
remains the best decision.
20 X million, the large complex
Transcribed Image Text:Following is the payoff table for the Pittsburgh Development Corporation (PDC) Condominium Project. Amounts are in millions of dollars. State of Nature Decision Alternative Strong Demand S₁ Weak Demand S2 Small complex, d₁ 7 6 Medium complex, dz 12 6 Large complex, d3 19 -9 Suppose PDC is optimistic about the potential for the luxury high-rise condominium complex and that this optimism leads to an initial subjective probability assessment of 0.8 that demand will be strong (S₁) and a corresponding probability of 0.2 that demand will be weak (S2). Assume the decision alternative to build the large condominium complex was found to be optimal using the expected value approach. Also, a sensitivity analysis was conducted for the payoffs associated with this decision alternative. It was found that the large complex remained optimal as long as the payoff for the strong demand was greater than or equal to $15.75 million and as long as the payoff for the weak demand was greater than or equal to -$22 million. a. Consider the medium complex decision. How much could the payoff under strong demand increase and still keep decision alternative d3 the optimal solution? If required, round your answer to two decimal places. The payoff for the medium complex under strong demand remains less than or equal to $ remains the best decision. 20 X million, the large complex
Consider the small complex decision. How much could the payoff under strong demand increase and still keep decision alternative d3
the optimal solution? If required, round your answer to two decimal places.
The payoff for the small complex under strong demand remains less than or equal to $
remains the best decision.
14.75 X million, the large complex
Transcribed Image Text:Consider the small complex decision. How much could the payoff under strong demand increase and still keep decision alternative d3 the optimal solution? If required, round your answer to two decimal places. The payoff for the small complex under strong demand remains less than or equal to $ remains the best decision. 14.75 X million, the large complex
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