Alex and Mitch are two farmers who grow vegetables on common land. Each farmer gets a benefit from the seeds that he plants, but the overall size and quality of the individual vegetables decreases as the number of seeds planted increases (since each vegetable has less room to grow and gets a smaller share of nutrients from the soil). If SA represents the total number of seeds planted by Alex and SM is the total number planted by Mitch, then the total benefit to Alex will be as follows: SA(60 - SA - SM), or (SA60 - SA² - SMSA). The marginal benefit to Alex from planting additional seeds is, therefore, equal to (60 - 2SA - SM). Assuming the marginal cost of planting is zero, the best-response function that gives the optimal number of seeds Alex should plant, as a function of the number of seeds Mitch chooses to plant, is represented by Use the blue line (circle symbols) to plot Alex's best response function (BRF) on the following graph, with the total number of seeds he plants on the vertical axis as a function of the total number Mitch plants (horizontal axis). Then, use the orange line (square symbols) to plot Mitch's best-response function (assuming his total benefit is given by SM(60 - SM - SA), and thus he responds to Alex in the same way Alex responds to him), with the total number he plants (horizontal axis) as a function of the total number Alex plants (vertical axis). Finally, place the black point (X symbol) on the graph to indicate the Nash equilibrium number each plants, given the other's equilibrium choice. Dashed drop lines will automatically extend to both axes.
Alex and Mitch are two farmers who grow vegetables on common land. Each farmer gets a benefit from the seeds that he plants, but the overall size and quality of the individual vegetables decreases as the number of seeds planted increases (since each vegetable has less room to grow and gets a smaller share of nutrients from the soil). If SA represents the total number of seeds planted by Alex and SM is the total number planted by Mitch, then the total benefit to Alex will be as follows: SA(60 - SA - SM), or (SA60 - SA² - SMSA). The marginal benefit to Alex from planting additional seeds is, therefore, equal to (60 - 2SA - SM). Assuming the marginal cost of planting is zero, the best-response function that gives the optimal number of seeds Alex should plant, as a function of the number of seeds Mitch chooses to plant, is represented by Use the blue line (circle symbols) to plot Alex's best response function (BRF) on the following graph, with the total number of seeds he plants on the vertical axis as a function of the total number Mitch plants (horizontal axis). Then, use the orange line (square symbols) to plot Mitch's best-response function (assuming his total benefit is given by SM(60 - SM - SA), and thus he responds to Alex in the same way Alex responds to him), with the total number he plants (horizontal axis) as a function of the total number Alex plants (vertical axis). Finally, place the black point (X symbol) on the graph to indicate the Nash equilibrium number each plants, given the other's equilibrium choice. Dashed drop lines will automatically extend to both axes.
Chapter1: Making Economics Decisions
Section: Chapter Questions
Problem 1QTC
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