The decision maker has utility function U(x) = 2 In(x). With 50% probability x=20 and with 50% x=100. The decision maker can buy insurance. For each unit of insurance they buy the get $1 if x=20 realizes. A unit of insurance costs $0.75. How many units of insurance does the decision maker buy? 80/3 ○ 40 40/3 20 None of the answers is correct.
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- An individual has 40,000 in income per year. The person will get sick with probability 0.1. If he does get sick, the medical bills will total 30,000. The following tables shows the utility derived from certain amounts of income: Income Utility40,000 20037,000 19535,000 19030,000 17020,000 14010,000 100Considering the probability of illness, what is the expected utility of income without insurance? Show your work.for remain uninsured? S. Amanda has a utility of money function of u(w)-w4, Her initial wealth is w-$20,000 and she faces a .10 probability of a loss L $5,000; with probability 9 she suffers no loss. Calculate the amount of insurance Amanda will purchase if $1 of coverage costs $.10 per dollar of coverage. Would purchase any insurance if the cost per dollar of coverage was $.20.A risk-neutral plaintiff in a lawsuit must decide whether to settle a claim or go to trial. The defendants offer $50,000 to settle now. If the plaintiff does not settle, the plaintiff believes that the probability of winning at trial is 50% if the plaintiff wins, the amount awarded to the plaintiff is X Will the plaintif settle if x is $62,500? What if X-$250,000? What is the critical value of X that would make the plaintiff indifferent between setting and going to trial? it the plaintiff were risk averse instead of risk neutral, would this critical value of X be higher or lower? If the amount to be awarded at trial with a win (X) were $62,500, then the plaintiff would settle If the amount to be awarded at trial with a win (X) were $250,000, then the plaintiff would not settle The critical value of X that would make the plaintiff indifferent between settling and going to trial is $ (Enter your response using rounded to wo decimal places)
- A risk-eutral plaintiff in a lawsuit must decide whether to settle a claim or go to trial. The defendants offer $70,000 to settle now. If the plaintiff does not settle, the plaintiff believes that the probability of winning at trial is 40%. If the plaintiff wins, the amount awarded to the plaintiff is X. Will the plaintiff settle if X is $87,500? What if X= $280,000? What is the critical value of X that would make the plaintiff indifferent between settling and going to trial? If the plaintiff were risk averse instead of risk neutral, would this critical value of X be higher or lower? If the amount to be awarded at trial with a win (X) were $87,500, then the plaintiff would settle If the amount to be awarded at trial with a win (X) were $280,000, then the plaintiff would not settle The critical value of X that would make the plaintiff indifferent between settling and going to trial is $. (Enter your response using rounded to two decimal places.)Joes initial income is y 10,000. Joe experiences illness with a probability of 20%. Jo's total medical costs associated with the illness are $1000. Joe's expected income without insurance isMoral Hasard and Insurance The utility is U = W1/2 − 350S + 95S1/2 ; where W is wealth and S is care taken to avoid accidents. Probability of accident is 0.70 − S1/2 Wealth is ✩850,000 without accident and ✩300,000 with accident. Calculate S, EU and CE without insurance. Calculate S and EU with full insurance
- Utility Theory You live in an area that has a possibility of incurring a massive earthquake, so you are considering buyingearthquake insurance on your home at an annual cost of $180. The probability of an earthquake damagingyour home during one year is 0.001. If this happens, you estimate that the cost of the damage (fully coveredby earthquake insurance) will be $160,000. Your total assets (including your home) are worth $250,000. A. Apply Bayes’ decision rule to determine which alternative (take the insurance or not) maximizes yourexpected assets after one year.Consider an insurance company offer a "standard contract" with the premium r= $100 and payout q=$500 to anyone who will purchase it. Peter has healthy-state income IH $500 and sick-state income Is $0. He has probability of illness p=0.1. Is the standard contract fair and/or full for Peter? If he ends up getting sick, what will his final income be? (please show all your calculations)An individual has 40,000 in income per year. The person will get sick with probability 0.1. If he does get sick, the medical bills will total 30,000. The following tables shows the utility derived from certain amounts of income: Income Utility 40,000 200 |37,000 195 35,000 190 30,000 170 |20,000 140 10.000 100 A. Is this person risk neutral, risk loving or risk averse? Why? B. Considering the probability of illness, what is the expected income without insurance? Show your work.
- A construction company needs to move lumber onto the roof of a building. If the lumber falls and hits someone it will cause $1,200,000 in damage. Assume that company must choose between the following levels of precaution: Spend $500 and the probability of an accident is .05 Spend $5,000 and the probability of an accident is .01 Spend $8,000 and the probability of an accident is .008 Spend $10,000 and the probability of an accident is .003 If the construction company is strictly liable for the costs of the accident, how much would they spend on precaution? A. $500 B. $5,000 C. $8,000 D. $10,000Suppose Grace and Lisa are to go to dinner. Lisa is visiting Grace from outof town, and they are to meet at a local restaurant. When Lisa lived in town,they had two favorite restaurants: Bel Loc Diner and the Corner Stable. Ofcourse, Lisa’s information is out of date, but Grace knows which is betterthese days. Assume that the probability that the Bel Loc Diner is better isp > 1/2 and the probability that the Corner Stable is better is 1 - p. Naturedetermines which restaurant Grace thinks is better. Grace then sends amessage to Lisa, either “Let’s go to the Bel Loc Diner,” “Let’s go to theCorner Stable,” or “I don’t know [which is better].” Lisa receives the message, and then Grace and Lisa simultaneously decide which restaurant to go to. Payoffs are such that Grace and Lisa want to go to the same restaurant, but they prefer it to be the one that Grace thinks is better. More specifically, if, in fact, the Bel Loc Diner is better, then the payoffs from theiractions are as shown in the…Imagine a market for used computers. There are two types of computers: good and bad. Also imagine that there are 50% of each on the market. Buyers can imagine paying 5,000 for a good computer and 1,000 for a bad computer Sellers want at least 4000 for a good computer and 1500 for a bad computer Assume that the buyer thinks that there is a 50% probability that the computer is of poor quality. What is the expected value and price of a computer that the buyer most wants to pay?