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Need more explanation please1-10 This question applies to parts 1-10. It contains drop-down multiple choice and numerical questions. Note: round your answers to 2 decimal

Need more explanation please1-10

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This question applies to parts 1-10. It contains drop-down multiple choice and numerical questions. Note: round your answers to 2 decimal places if necessary. 1) At least how many different securities is required for this market to be complete? For the rest of this question, consider Arrow-Debreu securities are available. 2) Compute the equilibrium fair weather state price: 3) Compute the equilibrium traded quantity of the fair weather atomic (Arrow-Debreu) security: 4) Compute the equilibrium quantity consumed in the bad weather state: 5) In this Arrow-Debreu economy, maximization of expected utility reflects the assumption of: Mark 1.00 out of 1.00 6) To solve for the Arrow-Debreu equilibrium, we need to do the following EXCEPT: 7) The agent in this economy is 8) The stochastic discount factor of the good weather state is 9) Assume now that the instantaneous utility is u(c)=10c and all other parameters remain the same. Compute the discount factor: This question applies to parts 1-10. It contains drop-down multiple choice and numerical questions. Note: round your answers to 2 decimal places if necessary. 1) At least how many different securities is required for this market to be complete? For the rest of this question, consider Arrow-Debreu securities are available. 2) Compute the equilibrium fair weather state price: 3) Compute the equilibrium traded quantity of the fair weather atomic (Arrow-Debreu) security: 4) Compute the equilibrium quantity consumed in the bad weather state: 5) In this Arrow-Debreu economy, maximization of expected utility reflects the assumption of: Mark 1.00 out of 1.00 6) To solve for the Arrow-Debreu equilibrium, we need to do the following EXCEPT: 7) The agent in this economy is 8) The stochastic discount factor of the good weather state is 9) Assume now that the instantaneous utility is u(c)=10c and all other parameters remain the same. Compute the discount factor

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