Entries by Hannah Wangui

The private marginal benefit for commodity X is given by 9-X, where X is the number of units consumed. The private marginal cost of producing X is constant at $3. For each unit of X produced, an external damage of $1 is imposed on members of society. What type of externality is being described? In the absence of any government intervention, how much X is produced? What is the social efficient level of production of X? What is the gain to society involved in moving from the inefficient to the social efficient level of production? Please draw a graph that shows these two points of production as well as the deadweight loss. Suggest an approach that the government could take that could lead to the efficient level. How much would such an approach cost or benefit government in the form of increased government tax revenues or increased government costs? . The private marginal cost of producing X is constant at $3. For each unit of X produced, an external damage of $1 is imposed on members of society. What type of externality is being described? In the absence of any government intervention, how much X is produced? What is the social efficient level of production of X? What is the gain to society involved in moving from the inefficient to the social efficient level of production? Please draw a graph that shows these two points of production as well as the deadweight loss. Suggest an approach that the government could take that could lead to the efficient level. How much would such an approach cost or benefit government in the form of increased government tax revenues or increased government costs?

The private marginal benefit for commodity X is given by 9-X, where X is the number of units consumed. The private marginal cost of producing X is constant at $3. For each unit of X produced, an external damage of $1 is imposed on members of society. What type of externality is being described? In […]

 

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Chemical energy and mechanical energy (work) are interconvertable: a)If the free energy of ATP hydrolysis (ΔG`) under cellular conditions is –12 kcal/mol, how much ATP (in moles) would I need to burn to lift a 1 kg weight from the ground to my desk 1 meter high? Assume your muscles are 100% efficient in this case.BioE 201 2016 HW2 b)If I could harness the energy of light without any loss to perform this task, how many photons at 600 nm (47 kcal/mol) would I need to absorb? : a)If the free energy of ATP hydrolysis (ΔG`) under cellular conditions is –12 kcal/mol, how much ATP (in moles) would I need to burn to lift a 1 kg weight from the ground to my desk 1 meter high? Assume your muscles are 100% efficient in this case.BioE 201 2016 HW2 b)If I could harness the energy of light without any loss to perform this task, how many photons at 600 nm (47 kcal/mol) would I need to absorb?

Chemical energy and mechanical energy (work) are interconvertable:a)If the free energy of ATP hydrolysis (ΔG`) under cellular conditions is –12 kcal/mol, how much ATP (in moles) would I need to burn to lift a 1 kg weight from the ground to my desk 1 meter high? Assume your muscles are 100% efficient in this case.BioE 201 […]

 

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