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- A duopoly faces an inverse market demand of P(Q) = 150−Q.Firm 1 has a constant marginal cost of MC1 (q1) = $30.Firm 2's constant marginal cost is MC2 (q2) = $60.Assume fixed costs are negligible for both firms. Calculate the output of each firm, market output, and price if there is (A) a collusive equilibrium or (B) a Cournot equilibrium. (A) Collusive equilibrium (Enter your responses rounded to two decimal places) The collusive equilibrium occurs where q1 equals ?and q2 equals ? Market output is ? The collusive equilibrium price is ? (B) Cournot equilibrium (Enter your responses using rounded to two decimal places) The Nash-Cournot equilibrium occurs where q1 equals ? and q2 equals ? Market output is ? The equilibrium occurs at a price of ? A duopoly faces an inverse market demand of P(Q) = 240−Q.Firm 1 has a constant marginal cost of MC1 (q1) = $10.Firm 2's constant marginal cost is MC2 (q2) = $20.Assume fixed costs are negligible for both firms. Calculate the output of each firm, market output, and price if there is (A) a collusive equilibrium or (B) a Cournot equilibrium. (A) Collusive equilibrium (Enter your responses rounded to two decimal places) The collusive equilibrium occurs where q1 equals ?and q2 equals ? Market output is ? The collusive equilibrium price is ? (B) Cournot equilibrium (Enter your responses using rounded to two decimal places) The Nash-Cournot equilibrium occurs where q1 equals ? and q2 equals ? Market output is ? The equilibrium occurs at a price of ?A duopoly faces a market demand of p= 120 - Q. Firm 1 has a constant marginal cost of MC' =S10. Firm 2's constant marginal cost is MC = S20. Calculate the output of each firm, market output, and price if there is (a) a collusive equilibrium or (b) a Cournot equilibrium. The collusive equilibrium occurs where q, equals and q, equals (Enter numeric responses using real numbers rounded to two decimal places) Market output is The collusive equilibrium price is S The Cournot-Nash equilibrium occurs where q, equals and q2 equals Market output is Furthermore, the Cournot equilibrium price is S
- Consider a Cournot duopoly with the following inverse demand function: P = 400 − 3Q1 − 3Q2 . The firms' marginal costs are identical and are given by MCi(Qi) = 2Qi. Based on this information, firm 1 and 2's marginal revenue functions are Multiple Choice MR1(Q1,Q2) = 400 − 6Q1 − 3Q2 and MR2(Q1,Q2) = 400 − 3Q1 − 6Q2. MR1(Q1,Q2) = 200 − 6Q2 and MR2(Q1,Q2) = 200 − 3Q1. MR1(Q1,Q2) = 200 − 3Q1 − 3Q2 and MR2(Q1,Q2) = 200 − Q1 − 3Q2. MR1(Q1,Q2) = 400 − 6Q1 − 6Q2 and MR2(Q1,Q2) = 400 − 6Q1 − 6Q2.Consider a Cournot duopoly with the following inverse demand function: P = 4,000 – 4Q1 - 4Q2. The firms' marginal costs are identical and are given by MC¡(Q¡) = 120QI. Based on this information, firm 1 and 2's reaction functions are Multiple Choice r1(Q2) = 485 - 0.5Q2 and r2(Q1) = 485 – 0.5Q1. r1(Q2) = 488 – 0.5Q2 and r2(Q1) = 488 – 0.5Q1. r1(Q2) = 33.3 – 0.25Q2 and r2(Q1) = 33.3 – | 0.25Q1. r1(Q2) = 288 - 0.5Q1 and r2(Q1) = 288 – %3D %3| 0.5Q2.Consider a duopoly, i.e., an industry with only two firms: firm A and firm B, making the same product. The industry’s inverse demand is P(Q)=320−(1/5)Q, where P is the market price and Q is the total industry output. Each firm has a marginal cost MC of $20. There are no fixed costs and no barriers to exit the market. a) Suppose that the two firms engage in Cournot competition. Find the equilibrium price PNE in the industry, the equilibrium outputs QANE and QBNE, as well as the profits πANE and πBNE, for each firm. b) Suppose the marginal cost for firm B increases from $20 to $140, while everything else remains unchanged. Find the new equilibrium price PNE in the industry, the new equilibrium outputs QANE and QBNE, as well as the new profits πANE and πBNE for each firm. c) Suppose that, in addition to the marginal cost increase from $20 to $140 from sub question b), firm B also has a fixed cost of $2500, out of which $2100 may be recouped if it shuts down; everything else remains…
- Consider a Cournot Oligopoly. One firm has costs C1(Q1) = 12Q1 while the other firm’s cost function is C2(Q2) = 10Q2. The demand for both firms’ products Q=Q1 +Q2 isQD(P)=200−2P. (a) Determine the equilibrium price P, the market shares s1, s2, and the quantities Q1, Q2 produced by both firms. (b) Suppose more firms with the lower cost technology, i.e., with cost function Ci(Qi) = 10Qi enter the market. How many firms with this technology must be in the market such that firm 1’s profit becomes negative. In other words, suppose there is one firm with the high costs, and n firms with the low costs. At what level n will profits of the high-cost firm be negative?What is the homogeneous-good duopoly Cournot equilibrium if the market demand function is Q=4,000-1,000p, and Firm l's and Firm 2's variable cost functions are V (q1) = 0.22qlandV (q2) = 0.22q2 , respectively. Select one alternative: Both firms produce 1300 units of outpuit. Both firms produce 1280 units of output. Both firms produce 1240 units of output. Both firms produce 1260 units of output.Question 2 Consider a Cournot duopoly, the firms face an (inverse) demand function: Pb=268-10Qb. The marginal cost for firm 1 is given by mc1= 6Q The marginal cost for firm 2 is given by mc2=4Q (Assume firm 1 has a fixed cost of $102 and firm 2 had a fixed cost of $104 What are the profits of firm 2? (hint 567.26) How much consumer surplus is created by industry transactions? (hint 1333.34) Full explain this question and text typing work only We should answer our question within 2 hours takes more time then we will reduce Rating Dont ignore this line ...
- Two firms - firm 1 and firm 2 - share a market for a specific product. Both have zero marginal cost. They compete in the manner of Bertrand and the market demand for the product is given by: q = 20 − min{p1, p2}. 1. What are the equilibrium prices and profits? 2. Suppose the two firms have signed a collusion contract, that is, they agree to set the same price and share the market equally. What is the price they would set and what would be their profits? For the following parts, suppose the Bertrand game is played for infinitely many times with discount factor for both firms δ ∈ [0, 1). 3. Let both players adopt the following strategy: start with collusion; maintain the collusive price as long as no one has ever deviated before; otherwise set the Bertrand price. What is the minimum value of δ for which this is a SPNE. 4. Suppose the policy maker has imposed a price floor p = 4, that is, neither firm is allowed to set a price below $4. How does your answer to part 3 change? Is it now…Consider a Cournot duopoly with the following inverse demand function: P = 100 - 2Q1 - 2Q2. The firms' marginal costs are identical and are given by MCi(Qi) = 2Qi. Based on this information, firm 1 and 2's reaction functions are: A. r1(Q2) = 24.5 - 0.5Q1 and r2(Q1) = 24.5 - 0.5Q2. B. r1(Q2) = 24.5 - 0.5Q2 and r2(Q1) = 24.5 - 0.5Q1. C. Q1 = 49 - 0.5Q2 and Q2 = 49 - 0.5Q1. D. Q1 = 49 - 0.25Q2 and Q2 = 49 - 0.25Q1. Please provide me with detail step by step process to get to the answer. coz no matter how many times I tried. my answer doesnt match the one in answer keySuppose Giocattolo of Italy and American Toy Company of the United States are the only two firms producing toys for sale in the U.S. market. Each firm realizes constant long-term costs so that the average total cost (ATC) equals the marginal cost (MC) at each level of output. Thus, MCo = ATCO is the long-term market supply schedule for toys. Suppose Giocattolo and American Toy Company operate as competitors, and the cost schedules of each company are MCo = ATCO = $10. On the following graph, use the grey point (star symbol) to identify the competitive market equilibrium. Then, use the green triangle (triangle symbols) to identify consumer surplus in this case. Note: Select and drag the point from the palette to the graph. Dashed drop lines will automatically extend to both axes. Then select and drag the shaded region from the palette to the graph. To resize the shaded region, select one of the points and move to the desired position. ? PRICE (Dollars per toy) 20 18 16 14 10 00 6 4 2 0…