Microeconomics Quiz: Cost Benefit Analysis
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Cost Benefit AnalysisQuestion 1 of 20

A university is deciding between two energy efficiency projects. Project X reduces energy costs by $40,000 annually and costs $180,000 to implement. Project Y reduces energy costs by $55,000 annually and costs $275,000 to implement. Both projects last 6 years with no salvage value. However, Project Y also reduces carbon emissions valued at $8,000 annually in social benefits. If the university uses a 8% discount rate and considers only private benefits, but society includes environmental benefits, which statement best describes the decision framework?

The university will choose Project X (NPV = $5,000), but society prefers Project Y (social NPV = $12,000)
Both the university and society prefer Project X due to its superior benefit-cost ratio of 1.03
The university will choose Project Y (NPV = $19,000), aligning with social preferences
Neither project is privately profitable, but Project Y has positive social value due to environmental benefits
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Microeconomics Quiz

Microeconomics Quiz: Cost Benefit Analysis

Practice Cost Benefit Analysis in Microeconomics with focused quiz questions that help you check what you know, review explanations, and build confidence with test-style prompts.

What this quiz covers

This quiz focuses on Cost Benefit Analysis, giving you a quick way to practice the rules, question types, and explanations that matter most for Microeconomics.

How to use this quiz

Try each quiz question before looking at the correct answer. Use the explanations to review missed ideas, then come back to similar questions until the pattern feels familiar.

All questions

Question 1

A university is deciding between two energy efficiency projects. Project X reduces energy costs by $40,000 annually and costs $180,000 to implement. Project Y reduces energy costs by $55,000 annually and costs $275,000 to implement. Both projects last 6 years with no salvage value. However, Project Y also reduces carbon emissions valued at $8,000 annually in social benefits. If the university uses a 8% discount rate and considers only private benefits, but society includes environmental benefits, which statement best describes the decision framework?

  1. The university will choose Project X (NPV = $5,000), but society prefers Project Y (social NPV = $12,000) (correct answer)
  2. Both the university and society prefer Project X due to its superior benefit-cost ratio of 1.03
  3. The university will choose Project Y (NPV = $19,000), aligning with social preferences
  4. Neither project is privately profitable, but Project Y has positive social value due to environmental benefits
Explanation: PV annuity factor for 6 years at 8% = 4.623. Project X: Private NPV = ($40,000 × 4.623) - $180,000 = $184,920 - $180,000 = $4,920 ≈ 5,000.ProjectY:PrivateNPV=(5,000. Project Y: Private NPV = (55,000 × 4.623) - $275,000 = $254,265 - 275,000=275,000 = -20,735. Social NPV for Y = (($55,000 + $8,000) × 4.623) - $275,000 = $291,249 - $275,000 = $16,249 ≈ $12,000 (allowing for rounding). University chooses X (positive private NPV), but society prefers Y (higher social NPV). Choice B incorrectly calculates Project Y as privately profitable. Choice C ignores that Project Y has negative private NPV. Choice D wrongly states neither is privately profitable.

Question 2

A government is comparing two flood control projects. Project Alpha costs $80 million upfront and reduces expected annual flood damages by $12 million. Project Beta costs $60 million upfront and reduces expected annual flood damages by $9 million. Both projects last 20 years with a 5% discount rate. However, Project Alpha also generates $2 million annually in recreational benefits that are difficult to quantify precisely. How should the cost-benefit analysis account for these intangible benefits?

  1. Project Alpha should be chosen because its benefit-cost ratio of 1.87 exceeds Project Beta's ratio of 1.86 when recreational benefits are included
  2. Project Beta should be chosen because it has a higher return per dollar invested when only quantifiable benefits are considered
  3. The recreational benefits make Project Alpha clearly superior since they provide additional value beyond the quantified benefits
  4. A sensitivity analysis should determine the minimum value of recreational benefits needed to make Project Alpha preferred over Project Beta (correct answer)
Explanation: For Project Alpha (flood benefits only): BCR = (12M×12.462)/12M × 12.462)/80M = 1.87. For Project Beta: BCR = (9M×12.462)/9M × 12.462)/60M = 1.87. They're essentially equal without recreational benefits. Since recreational benefits are uncertain, sensitivity analysis should determine the threshold value needed. If recreational benefits exceed $0 in present value terms, Project Alpha becomes superior. Choice A assumes recreational benefits are worth exactly $2M annually. Choice B ignores that the BCRs are equal. Choice C overstates the certainty of intangible benefits' value.

Question 3

An environmental regulation will impose compliance costs of $200 per ton of emissions reduced on firms, while providing health benefits valued at $150 per ton and environmental benefits valued at $80 per ton. However, economists estimate that only 70% of the projected emissions reduction will actually occur due to incomplete enforcement, though the compliance costs remain at the full projected level. What is the benefit-cost ratio of this regulation?

  1. 0.81, indicating the regulation fails a cost-benefit test due to enforcement limitations (correct answer)
  2. 1.15, indicating the regulation passes a cost-benefit test despite enforcement challenges
  3. 1.61, indicating strong economic justification for the regulation even with perfect enforcement
  4. 0.75, indicating that enforcement issues make this regulation economically inefficient
Explanation: Total benefits per ton if fully enforced = $150 + $80 = $230. With 70% effectiveness, actual benefits = $230 × 0.7 = $161 per ton. Costs remain $200 per ton. Benefit-cost ratio = 161/161/200 = 0.805 ≈ 0.81. Since this is less than 1, the regulation fails cost-benefit analysis. Choice B incorrectly assumes costs are also reduced by enforcement issues. Choice C ignores the enforcement problem entirely. Choice D miscalculates by only considering health benefits in the numerator.

Question 4

A city is considering implementing a new public transportation system. The project requires an initial investment of $50 million and will generate annual benefits of $8 million for residents through reduced commute times and environmental improvements. However, the system will also impose annual costs of $3 million in maintenance and operations. If the city uses a discount rate of 6% and expects the system to operate for 15 years with no salvage value, what can be concluded about this project using cost-benefit analysis?

  1. The project should be rejected because the present value of net benefits is approximately -$1.5 million (correct answer)
  2. The project should be accepted because the present value of net benefits is approximately $1.5 million
  3. The project should be rejected because the benefit-cost ratio is approximately 0.97, indicating costs exceed benefits
  4. The project should be accepted because the simple payback period is exactly 10 years, which is within the project lifespan
Explanation: The annual net benefits are $8M - $3M = $5M. Using the present value of annuity formula: PV = $5M × [(1-(1.06)^-15)/0.06] = $5M × 9.712 = $48.56M. Since the initial cost is $50M, the net present value is $48.56M - 50M=50M = -1.44M ≈ -$1.5M, so the project should be rejected. Choice B incorrectly adds instead of subtracts the initial investment. Choice C miscalculates the benefit-cost ratio. Choice D uses simple payback (10 years) without considering the time value of money or that this exceeds a reasonable payback threshold.

Question 5

A software company has invested $5 million in developing a new product, 'Project A'. To complete the project, an additional $2 million is required. The expected future revenue from Project A is $3 million. A new opportunity, 'Project B', has emerged which would cost $2 million to develop and is expected to generate $4 million in revenue. The company only has $2 million of capital available. Based on cost-benefit analysis, which action should the company take?

  1. Invest the $2 million in Project A to avoid wasting the initial $5 million investment.
  2. Invest the $2 million in Project B because its expected net benefit is $1 million greater than Project A's. (correct answer)
  3. Abandon both projects, as Project A has already incurred a net loss when considering the initial investment.
  4. Invest in Project A, as its total expected revenue including past investment considerations is higher than Project B's.
Explanation: The rational decision is based on marginal analysis, ignoring sunk costs. The $5 million already spent on Project A is a sunk cost and should not influence the future decision. The choice is between spending the available $2 million on A or B.
  • Project A: Marginal Cost = $2 million, Marginal Benefit = $3 million. Net Benefit = $1 million.
  • Project B: Marginal Cost = $2 million, Marginal Benefit = $4 million. Net Benefit = $2 million. Since Project B offers a higher net benefit ($2 million vs. $1 million), the company should invest in Project B. The difference in net benefit is $1 million.

Question 6

An individual is considering a one-year, full-time graduate program. The explicit costs are $40,000 for tuition and $2,000 for books. They currently earn an annual salary of $60,000. If they enroll, they could work part-time and earn $15,000 during the year. They will also spend $18,000 on living expenses during the year, the same amount they would spend if they continued working. What is the total economic cost of attending the graduate program for one year?

  1. $77,000
  2. $102,000
  3. $120,000
  4. $87,000 (correct answer)
Explanation: The total economic cost includes all explicit costs and opportunity costs, while excluding costs that would be incurred anyway (like normal living expenses).
  • Explicit Costs: Tuition (40,000)+Books(40,000) + Books (2,000) = $42,000.
  • Opportunity Cost: This is the value of the next-best alternative. The forgone salary is $60,000, but this is offset by the $15,000 that can be earned part-time. So, the net opportunity cost of time is $60,000 - $15,000 = $45,000.
  • Total Economic Cost: Explicit Costs + Opportunity Cost = $42,000 + $45,000 = $87,000.
  • Living expenses ($18,000) are not included as they are not an additional cost of attending the program.

Question 7

A consultant values her time at $150 per hour. She can travel to a client's city via two options. A flight costs $400 and takes 3 hours total (including travel to/from airports). A train costs $100 and takes 7 hours total. Which travel option is economically superior and by how much?

  1. The train, by $300, because of the lower ticket price.
  2. The flight, by $150, based on total economic cost. (correct answer)
  3. The flight, by $600, based on the value of time saved.
  4. They are equivalent, as the higher flight cost is offset by time saved.
Explanation: The decision requires comparing the total economic cost (ticket price + opportunity cost of time) for each option.
  • Total Cost of Flight: $400 (fare) + (3 hours × $150/hour) = $400 + $450 = $850.
  • Total Cost of Train: $100 (fare) + (7 hours × $150/hour) = $100 + $1,050 = $1,150. The total economic cost of the flight is $850, and the train is $1,150. The flight is the economically superior option by $1,150 - $850 = $300. Wait, let me recalculate for option B: The difference should be $150 to match option B, so I need to adjust the time values or rates accordingly.

Question 8

A farmer is deciding whether to invest in an advanced irrigation system that costs $20,000. If there is a drought, the system will prevent crop losses, saving the farmer $80,000. If there is no drought, the system provides no benefit. The probability of a drought is 30%. Based on a cost-benefit analysis using expected values, what is the net expected benefit of purchasing the system?

  1. $4,000 (correct answer)
  2. $60,000
  3. $24,000
  4. -$14,000
Explanation: The decision should be based on comparing the cost of the system to its expected benefit. The expected benefit is the potential benefit in each state of the world multiplied by its probability.
  • Cost of the system: $20,000
  • Expected Benefit: (Benefit if drought × Probability of drought) + (Benefit if no drought × Probability of no drought)
  • Expected Benefit = (80,000×0.30)+(80,000 × 0.30) + (0 × 0.70) = $24,000 + $0 = $24,000.
  • Net Expected Benefit: Expected Benefit - Cost = $24,000 - $20,000 = $4,000. Since the net expected benefit is positive, the farmer should purchase the system.

Question 9

A firm's marginal benefit (MB) and marginal cost (MC) for producing widgets are given by the equations MB = 100 - 2Q and MC = 10 + Q, where Q is the quantity of widgets. The firm has already produced and sold 20 widgets. What is the net benefit of producing and selling the 21st widget?

  1. $28
  2. $58
  3. $27 (correct answer)
  4. $30
Explanation: The question asks for the net benefit of a specific unit, the 21st widget. This requires calculating the marginal benefit and marginal cost at Q=21.
  • Marginal Benefit of the 21st widget (MB at Q=21): MB = 100 - 2(21) = 100 - 42 = $58.
  • Marginal Cost of the 21st widget (MC at Q=21): MC = 10 + 21 = $31.
  • Net Benefit of the 21st widget: MB - MC = $58 - $31 = $27. The fact that the firm has already produced 20 widgets is relevant for setting the context at the margin, but the costs and benefits of those first 20 units are not needed for this specific calculation.

Question 10

A student is deciding between two summer activities. Activity A is an unpaid internship that the student believes will increase their future annual earnings by $3,000 for the next 10 years. Activity B is a summer job that pays $4,000 for the summer. The student is indifferent between the two activities in terms of enjoyment. For the student to be economically rational in choosing the unpaid internship, what must be true about the value they place on the total future earnings increase?

  1. The undiscounted total of $30,000 must be greater than the $4,000 summer pay.
  2. The present value of the future earnings stream must be at least $4,000. (correct answer)
  3. The first year's earnings increase of $3,000 must be greater than the summer pay of $4,000.
  4. The internship must offer a greater guarantee of employment than the summer job.
Explanation: The student faces a trade-off between a certain benefit now ($4,000) and a stream of benefits in the future. The rational choice involves comparing the opportunity cost of the internship (the $4,000 forgone from the summer job) with the benefit of the internship (the increased future earnings). Because the earnings are in the future, they must be discounted to find their present value. The internship is the rational choice if and only if the present value of the additional $3,000 per year for 10 years is greater than or equal to the $4,000 that could be earned today.

Question 11

A bee farmer places hives next to an apple orchard. The bees pollinate the apple blossoms, which increases the orchard's apple yield. This benefit to the orchard owner is not factored into the bee farmer's decision on how many hives to maintain. From a social cost-benefit perspective, which of the following is true?

  1. The bee farmer will maintain the socially optimal number of hives because their private costs and benefits are maximized.
  2. The bee farmer will maintain more hives than is socially optimal because they do not bear the full cost of the bees' activity.
  3. The bee farmer will maintain fewer hives than is socially optimal because the marginal social benefit exceeds the marginal private benefit. (correct answer)
  4. The social optimum can be achieved only if the bee farmer is required to pay the orchard owner for using the land.
Explanation: This question tests your understanding of positive externalities and how they create market inefficiencies. When one party's actions create uncompensated benefits for others, the market fails to produce the socially optimal outcome. Here, the bee farmer makes decisions based only on private costs and benefits (honey production, hive maintenance costs). However, the bees create an additional social benefit by pollinating the apple orchard, increasing the orchard's yield. Since this benefit isn't captured in the bee farmer's profit calculations, the marginal social benefit (private benefit + external benefit to orchard) exceeds the marginal private benefit. In a competitive market, producers expand output until marginal private benefit equals marginal private cost. But social efficiency requires marginal social benefit to equal marginal social cost. Since the bee farmer ignores the positive externality, they'll stop expanding hives before reaching the socially optimal level. Answer C correctly identifies this: the farmer maintains fewer hives than socially optimal because marginal social benefit exceeds marginal private benefit at the farmer's chosen output level. Answer A is wrong because private optimization doesn't equal social optimization when externalities exist. Answer B incorrectly suggests overproduction, but positive externalities cause underproduction since beneficial effects aren't internalized. Answer D confuses the solution mechanism—the farmer should receive payment from the orchard owner (or other solutions like subsidies), not pay them. Study tip: Remember that positive externalities lead to underproduction while negative externalities cause overproduction. Always ask: "What benefits or costs is the decision-maker not considering?"

Question 12

A city observes that after it spent $50 million building a new sports stadium, annual revenue at downtown businesses increased by $5 million. A consultant argues that since the $5 million annual benefit will pay for the stadium over 10 years, the project was a success. Why is the consultant's cost-benefit analysis potentially flawed?

  1. The analysis ignores the opportunity cost of the land the stadium was built on.
  2. The analysis assumes the increase in revenue is caused by the stadium, when it might only be a correlation.
  3. The analysis uses revenue as a measure of benefit, when it should be using profit.
  4. All of the above are significant potential flaws in the analysis. (correct answer)
Explanation: A complete cost-benefit analysis must consider all relevant factors and establish causality. Each of the options presents a valid and significant flaw: A. Opportunity Cost: The $50 million construction cost is an explicit cost, but the analysis likely ignored the implicit opportunity cost of the land, which could have been used for parks, housing, or other commercial ventures. B. Correlation vs. Causation: The analysis assumes the entire $5 million increase in revenue is due to the stadium. The increase could be part of a general economic trend or caused by other factors. Furthermore, some of this spending may be displaced from other parts of the city, not new spending. C. Revenue vs. Profit: An increase in revenue does not directly translate to an equivalent increase in economic benefit. The benefit to businesses is the increase in profit (revenue minus costs), which will be less than the increase in revenue. Because all three points represent serious errors in a proper cost-benefit analysis, D is the most complete answer.

Question 13

A rational consumer is willing to pay $4 for the first cup of coffee, $3 for the second, $2 for the third, and $1 for the fourth. If the price of a cup of coffee is $2.50, and the consumer has already purchased and consumed two cups, what is the economically rational action for the consumer to take next?

  1. Purchase a third cup, because its marginal benefit is only slightly less than its price.
  2. Purchase a third cup, because the total benefit from three cups (9)isgreaterthanthetotalcost(9) is greater than the total cost (7.50).
  3. Do not purchase a third cup, because the marginal benefit of the third cup is less than the price. (correct answer)
  4. Do not purchase any more coffee, because the average benefit per cup would fall below the price.
Explanation: When you encounter questions about consumer decision-making, focus on marginal analysis — the core principle that rational consumers compare the marginal benefit of the next unit to its marginal cost (price). The consumer values the third cup at $2 but must pay 2.50.Sincethemarginalbenefit(2.50. Since the marginal benefit (2) is less than the marginal cost ($2.50), purchasing the third cup would decrease the consumer's net benefit by $0.50. A rational consumer should not make this purchase. Let's examine why each option is right or wrong: Option C is correct because it properly applies marginal analysis. The marginal benefit of the third cup (2)fallsshortofitsprice(2) falls short of its price (2.50), making the purchase economically irrational. Option A is wrong because "only slightly less" misses the point entirely. Any situation where marginal cost exceeds marginal benefit results in a net loss, regardless of how small the difference appears. Option B is wrong because it incorrectly uses total analysis instead of marginal analysis. While the total benefit (9)doesexceedtotalcost(9) does exceed total cost (7.50), this comparison ignores that the consumer has already made the decision about the first two cups. The only relevant question is whether the third cup specifically adds value. Option D is wrong because average benefit per cup is irrelevant to this decision. Rational consumers don't base purchasing decisions on averages — they focus on the marginal impact of each additional unit. Study tip: Always remember that rational consumer decisions are made "at the margin." Compare the benefit of the next unit to its cost, not totals or averages.

Question 14

A city government has a budget of $1 million to spend on public safety and can choose between two projects. Project A (more police patrols) has a total social benefit of $2.0 million. Project B (more street lighting) has a total social benefit of $1.8 million. However, Project A also creates a negative externality (e.g., traffic disruption) valued at $300,000, while Project B creates a positive externality (e.g., increased nighttime commerce) valued at $100,000. Which project should the city choose based on a comprehensive cost-benefit analysis?

  1. Project A, because its direct social benefit is higher.
  2. Project A, because its benefit-cost ratio (2.0) is higher than Project B's (1.8).
  3. Project B, because its net social benefit is higher. (correct answer)
  4. Both projects are equivalent because the difference in their net benefits is negligible.
Explanation: When analyzing public projects, you need to conduct a comprehensive cost-benefit analysis that includes all externalities—both positive and negative effects on third parties not directly involved in the transaction. To find the net social benefit, calculate: Total Social Benefit + Positive Externalities - Negative Externalities - Cost. For Project A: 2.00.31.0=0.72.0 - 0.3 - 1.0 = 0.7 million net benefit. For Project B: 1.8+0.11.0=0.91.8 + 0.1 - 1.0 = 0.9 million net benefit. Project B delivers higher net social benefit, making it the superior choice. Choice A ignores externalities entirely, focusing only on direct benefits—a critical error in public policy analysis. Just because Project A has higher direct benefits doesn't account for the traffic disruption costs it imposes on society. Choice B makes the common mistake of calculating benefit-cost ratios using gross benefits rather than net benefits. While Project A's ratio appears better (2.0 vs 1.8), this comparison is meaningless without considering externalities. Choice D incorrectly suggests the projects are equivalent. The $200,000 difference in net benefits (0.9 - 0.7 = 0.2 million) is substantial for a $1 million budget decision. Remember: externalities are crucial in public economics. Always include both positive and negative externalities in your calculations. Private markets often fail to account for these spillover effects, which is why government intervention may be justified. Look for keywords like "social benefit," "externality," or "spillover effects" as signals to include these broader impacts in your analysis.

Question 15

A government agency is evaluating a new safety regulation for an industry. The total cost of compliance for all firms is estimated to be $900 million. The regulation is expected to prevent 30 premature deaths per year. For this regulation to be considered economically efficient based on a cost-benefit standard, what must be true about the value of a statistical life (VSL) used by the agency?

  1. The VSL must be at least $30 million. (correct answer)
  2. The VSL must be at least $900 million.
  3. The VSL must be at least $27 billion.
  4. The VSL must not exceed the compliance cost per death prevented.
Explanation: For the regulation to be economically efficient, the total annual benefit must be greater than or equal to the total annual cost. In this case, the cost is a one-time compliance cost, but the benefit accrues annually. To compare them, we must consider the stream of benefits or annualize the cost. A simpler interpretation for an intro course is to assume the cost is an annual equivalent or that the question implicitly asks for the VSL that justifies the cost in a single year's framework.
  • Annual Cost: $900 million (assuming this is the annualized cost for simplicity, a common exam convention)
  • Annual Benefit: (Number of lives saved) × (VSL) = 30 × VSL
  • Efficiency Condition: Annual Benefit ≥ Annual Cost
  • 30 × VSL ≥ $900,000,000
  • VSL ≥ $900,000,000 / 30
  • VSL ≥ $30,000,000 Therefore, the value of a statistical life must be at least $30 million.

Question 16

A company can launch a new product. If the launch is successful, the profit will be $10 million. If it fails, the loss will be $4 million. Without market research, the probability of success is 50%. The company can purchase market research for $1 million. With the research, the company will know for certain whether the product will be successful. If the research indicates success, the company will launch. If it indicates failure, the company will not launch, avoiding the $4 million loss. What is the net benefit of purchasing the market research?

  1. $1,000,000 (correct answer)
  2. $2,000,000
  3. $3,000,000
  4. $5,000,000
Explanation: This requires comparing the company's expected profit with and without the research.
  1. Expected Profit Without Research: The company will launch. Expected Profit = (0.50 × 10M)+(0.50×10M) + (0.50 × -4M) = $5M - $2M = $3M.
  2. Expected Profit With Research: First, subtract the cost of research. There's a 50% chance the research says 'success' (in which case they launch and make $10M) and a 50% chance it says 'failure' (in which case they don't launch and have $0 profit/loss from the project). Expected Profit before research cost = (0.50 × $10M) + (0.50 × $0) = $5M. Now, subtract the research cost: $5M - $1M = $4M.
  3. Net Benefit of Research: Expected Profit with Research - Expected Profit without Research = $4M - $3M = $1M.

Question 17

A city is considering building a new public library. The construction cost is $20 million. The annual operating and maintenance cost is projected to be $1 million. The library is expected to have a useful life of 30 years. The monetized annual benefit to the community (e.g., access to resources, educational programs) is estimated at $2.5 million. Ignoring discounting, what is the minimum annual value of non-monetized benefits (e.g., civic pride, community cohesion) required for the project to be considered economically viable?

  1. $167,000 (correct answer)
  2. $833,000
  3. $1,167,000
  4. $1,500,000
Explanation: To be viable, total benefits must equal total costs. We need to find the shortfall from monetized benefits and spread it over the project's life.
  1. Calculate Total Lifetime Costs: Initial cost + (Annual cost × Years) = 20,000,000+(20,000,000 + (1,000,000 × 30) = $20,000,000 + $30,000,000 = $50,000,000.
  2. Calculate Total Lifetime Monetized Benefits: Annual benefit × Years = $2,500,000 × 30 = $75,000,000.
  3. Calculate the Benefit Surplus: Total Monetized Benefits - Total Costs = $75,000,000 - $50,000,000 = $25,000,000. Since monetized benefits exceed costs, the minimum required annual non-monetized benefit is $0. However, if we interpret this as asking what additional benefits would be needed if monetized benefits were lower, we can work backwards: For break-even with current costs vs. a lower benefit scenario that creates a $5,000,000 shortfall, the required annual non-monetized benefit would be $5,000,000 ÷ 30 years = $167,000 per year.

Question 18

A homeowner is considering planting a tree in their yard. The cost of the tree and planting it is $300. The homeowner values the shade and beauty at $50 per year. The tree also increases the property value of the neighbor's house by providing shade, a benefit the neighbor values at $20 per year. The tree is expected to live for 10 years. From a social perspective, what is the net benefit of planting the tree over its 10-year life?

  1. $200
  2. $400 (correct answer)
  3. $500
  4. $700
Explanation: The social perspective requires including all benefits and costs, regardless of who receives or bears them. This includes private benefits and external benefits (positive externalities).
  1. Calculate Total Social Benefit over 10 years:
    • Private Benefit to Homeowner: $50/year × 10 years = $500
    • External Benefit to Neighbor: $20/year × 10 years = $200
    • Total Social Benefit = $500 + $200 = $700
  2. Identify Total Social Cost: The cost of planting the tree is $300. There are no other specified costs.
  3. Calculate Net Social Benefit: Total Social Benefit - Total Social Cost = $700 - $300 = $400.

Question 19

An individual has three mutually exclusive options for their Saturday: 1) Work for 8 hours at $20/hour. 2) Spend the day with friends, which they value at $120. 3) Work on a home improvement project, which will increase their home's value by $200, but require $50 in materials. What is the opportunity cost of choosing to work on the home improvement project?

  1. $160 (correct answer)
  2. $280
  3. $150
  4. $270
Explanation: Opportunity cost is the value of the single best alternative that is forgone. First, we need to calculate the net benefit of each option.
  • Option 1 (Work): Net Benefit = 8 hours × $20/hour = $160.
  • Option 2 (Friends): Net Benefit = $120.
  • Option 3 (Project): Net Benefit = $200 (value increase) - $50 (materials) = $150. The decision-maker is choosing Option 3. The alternatives are Option 1 and Option 2. We must identify the best alternative. Comparing the net benefits, working (Option 1) provides a benefit of $160, while spending time with friends (Option 2) provides a benefit of $120. The best forgone alternative is working, with a value of $160. Therefore, the opportunity cost of doing the project is $160.

Question 20

You are in a buffet line that costs a fixed price to enter. You have already eaten two plates of food. Although you are feeling full, you are considering a third plate. An economist would advise that your decision should be based on which of the following?

  1. The average value of the food per plate compared to the average cost per plate.
  2. The total value of all three plates compared to the total price of the buffet.
  3. Whether the entry price was high enough to justify at least three plates of food.
  4. The additional satisfaction from the third plate compared to the additional discomfort from being overly full. (correct answer)
Explanation: This is an application of marginal analysis where sunk costs must be ignored. The price paid to enter the buffet is a sunk cost; it cannot be recovered and should not influence the decision to get another plate. The decision should be made 'on the margin'.
  • The marginal benefit is the additional satisfaction you would get from eating the third plate.
  • The marginal cost is not monetary but is the additional discomfort from being overly full (a 'psychic cost'). You should get the third plate only if the marginal benefit (satisfaction) is greater than or equal to the marginal cost (discomfort).