MGT 207

Microeconomics for Business

TU BBS · First Year · Four-year BBS curriculum

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required
Full marks
100
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Microeconomics for Business 2081 Board Question Paper

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Tribhuvan University

Faculty of Management

Office of the Dean

2081 BS / Regular Examination

Course: MGT 207 · Microeconomics for Business

Level: Bachelor of Business Studies (BBS) · First Year

Full Marks: 100

Time: 3 hrs.

Candidates are required to give their answers in their own words as far as practicable. The figures in the margin indicate full marks.

Section A

Attempt All question

[10*2=20]
  1. Business economics normative in character. Why?

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    Business economics is normative in character because:

    1. It does not merely describe or explain economic phenomena as they exist (positive economics), but prescribes “what ought to be done” to achieve organizational goals.
    2. It involves value judgments, managerial ethics, and optimization rules (e.g., how much output to produce, what pricing strategy to adopt, how to allocate scarce capital) to achieve profit maximization or cost minimization.
  2. How is price elasticity of supply computed by arc method?

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    Price elasticity of supply (ese_s) by the arc method measures responsiveness over a discrete segment of the supply curve using the average of initial and new prices and quantities:

    es=ΔQsΔP×P1+P2Q1+Q2=Q2Q1P2P1×P1+P2Q1+Q2e_s = \frac{\Delta Q_s}{\Delta P} \times \frac{P_1 + P_2}{Q_1 + Q_2} = \frac{Q_2 - Q_1}{P_2 - P_1} \times \frac{P_1 + P_2}{Q_1 + Q_2}

    Where Q1,Q2Q_1, Q_2 are the initial and new quantities supplied, and P1,P2P_1, P_2 are the initial and new prices. This yields a unique, symmetric elasticity measure independent of movement direction.

  3. Write any two examples of explicit costs.

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    Explicit costs (out-of-pocket accounting costs) are actual cash payments made to external suppliers of production inputs. Two examples are:

    1. Wages and salaries paid directly to hired employees and labor.
    2. Material expenses paid to vendors for raw materials and component parts.
  4. How is economies of scope measured?

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    Economies of scope exist when producing multiple distinct products jointly within a single enterprise is cheaper than producing them separately in specialized single-product firms. It is measured by the degree of economies of scope (SCSC):

    SC=C(Q1)+C(Q2)C(Q1,Q2)C(Q1,Q2)SC = \frac{C(Q_1) + C(Q_2) - C(Q_1, Q_2)}{C(Q_1, Q_2)}

    Where C(Q1)C(Q_1) and C(Q2)C(Q_2) are costs of producing goods 1 and 2 separately, and C(Q1,Q2)C(Q_1, Q_2) is joint production cost. If SC>0SC > 0, economies of scope exist.

  5. Write any four assumptions of indifference curve.

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    Four fundamental assumptions of indifference curve analysis:

    1. Rationality: The consumer is rational and seeks to maximize total utility subject to a budget constraint.
    2. Ordinal Utility: Utility is rank-ordered by preference bundles (ABA \succ B), not measured cardinally.
    3. Diminishing Marginal Rate of Substitution (MRSXYMRS_{XY}): As consumption of XX increases, the consumer sacrifices progressively less of YY to obtain an additional unit of XX.
    4. Transitivity and Consistency: Preferences are transitive (if ABA \succ B and BCB \succ C, then ACA \succ C) and non-satiated (more of a good is preferred to less).
  6. Let Q = 14L + 7L² - L³. Compute VMPL at P = Rs. 10 and L = 5 units.

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    Given:

    • Production function: Q=14L+7L2L3Q = 14L + 7L^2 - L^3
    • Price: P=Rs. 10P = \text{Rs. } 10
    • Labor: L=5L = 5 units

    Step 1: Calculate Marginal Product of Labor (MPLMP_L):

    MPL=dQdL=14+14L3L2MP_L = \frac{dQ}{dL} = 14 + 14L - 3L^2

    Step 2: Substitute L=5L = 5:

    MPL=14+14(5)3(52)=14+7075=9 unitsMP_L = 14 + 14(5) - 3(5^2) = 14 + 70 - 75 = 9 \text{ units}

    Step 3: Calculate Value of Marginal Product of Labor (VMPLVMP_L):

    VMPL=P×MPL=10×9=Rs. 90VMP_L = P \times MP_L = 10 \times 9 = \mathbf{\text{Rs. } 90}

  7. Prepare a list of uses of price elasticity of demand in taking business decisions.

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    Uses of price elasticity of demand in business decisions:

    1. Product Pricing: Setting premium prices for price-inelastic products and competitive prices for elastic products to maximize revenue.
    2. Sales Revenue Forecasting: Predicting changes in gross sales revenue following planned price revisions.
    3. Price Discrimination: Charging different prices in distinct consumer submarkets based on differing elasticities.
    4. Tax Shifting Strategy: Determining how much of an indirect sales tax/VAT can be passed forward to customers.
  8. What are the causes for the operation of law of increasing returns to scale?

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    Causes for the operation of the law of increasing returns to scale:

    1. Technical and Managerial Indivisibilities: Large, highly efficient machinery and specialized executive staff require a large scale of operations to be fully utilized.
    2. Specialization and Division of Labor: Large-scale operations allow workers and machines to specialize in narrow, highly repetitive tasks, boosting productivity.
    3. Dimensional Economies: Increasing dimensions of containers (vats, pipelines, cargo ships) expands storage volume at a faster rate than the surface area and material construction costs.
  9. Write the formula for pricing the product under cost - plus pricing.

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    Under cost-plus pricing (markup pricing), the selling price is determined by adding a predetermined profit markup percentage to average cost:

    P=AC+m=AC(1+r)P = AC + m = AC(1 + r)

    Where:

    • PP = Selling price per unit
    • ACAC = Average Total Cost (or Average Variable Cost AVCAVC)
    • mm = Absolute profit markup per unit
    • rr = Desired percentage markup on cost
  10. Let, eXY = 4 and eAB = -0.8. Describe the nature of goods X and Y and goods A and B.

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    Interpretation of Cross-Price Elasticity:

    1. For goods XX and YY (eXY=+4e_{XY} = +4): Since the cross elasticity of demand is positive (eXY>0e_{XY} > 0), goods XX and YY are substitutes. Because the magnitude is large (+4+4), they are close substitutes (e.g., Coke and Pepsi).
    2. For goods AA and BB (eAB=0.8e_{AB} = -0.8): Since the cross elasticity of demand is negative (eAB<0e_{AB} < 0), goods AA and BB are complementary goods (e.g., printers and ink cartridges).

Section B

Attempt any Five questions

[5*10=50]
  1. What is microeconomics? Explain its uses in solving operational problems faced by business firms.

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    1. Meaning of Microeconomics

    Microeconomics is the branch of economics that investigates the economic behavior and decision-making mechanisms of individual economic agents—such as individual consumers, workers, business firms, and individual product and factor markets. It studies price determination and resource allocation at the micro level (often called Price Theory).

    2. Uses of Microeconomics in Solving Operational Problems

    Managers confront daily operational issues within the firm. Microeconomic analytical tools provide actionable solutions across key operational domains:

    1. Pricing Decisions and Profit Optimization:
      • Using marginal analysis (MR=MCMR = MC) and price elasticity of demand, managers identify profit-maximizing pricing points and design price discrimination strategies across customer tiers.
    2. Production Planning and Input Combination:
      • Isoquant and isocost analysis enables production managers to determine the least-cost combination of labor and capital (MRTSLK=PL/PKMRTS_{LK} = P_L / P_K) for a given target output.
    3. Cost Control and Break-Even Analysis:
      • Short-run and long-run cost curves enable firms to compute break-even volume, shutdown price (P=minAVCP = \min AVC), and identify the minimum efficient scale (MESMES) of plant operations.
    4. Demand Forecasting and Inventory Management:
      • Estimating income, price, and advertising elasticities equips firms to anticipate fluctuations in market demand, optimizing production schedules and reducing carrying costs.
    5. Capital Budgeting and Investment Appraisal:
      • Marginal efficiency of investment and discounted cash flow techniques guide the allocation of scarce financial capital among competing expansion projects.
  2. Explain the economics tools that help to measure economic efficiency.

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    1. Concept of Economic Efficiency

    Economic efficiency refers to a state where scarce productive resources are allocated across society in a manner that maximizes total net social welfare. It encompasses productive efficiency (producing at the lowest possible per-unit average cost) and allocative efficiency (producing goods that society values most, where price equals marginal cost, P=MCP = MC).

    2. Major Economic Tools Used to Measure Efficiency

    1. Consumer Surplus (CS):
      • The monetary measure of consumer welfare—the difference between the maximum total amount consumers are willing to pay and the amount they actually pay (CS=P(Q)dQPQCS = \int P(Q) dQ - P^* \cdot Q^*).
      • Graphically, it is the triangular area beneath the market demand curve and above the equilibrium price line.
    2. Producer Surplus (PS):
      • The net gain realized by producers—the difference between total revenue received and the minimum revenue necessary to induce supply (PS=PQMC(Q)dQPS = P^* \cdot Q^* - \int MC(Q) dQ).
      • Graphically, it is the area above the market supply curve and below the equilibrium price line.
    3. Total Social Surplus (TS):
      • The sum of consumer and producer surplus: TS=CS+PSTS = CS + PS. Under a competitive market equilibrium (P,QP^*, Q^*), total social surplus is maximized, indicating optimal allocative efficiency.
    4. Deadweight Loss (DWL):
      • The loss in total economic welfare resulting from market distortions, monopoly power, price ceilings/floors, or excise taxes. A positive deadweight loss (DWL>0DWL > 0) quantifies the extent of economic inefficiency.
    5. Pareto Efficiency and Production Possibility Frontier (PPF):
      • An allocation is Pareto efficient if no individual can be made better off without making at least one individual worse off. Any point on the PPF boundary demonstrates full productive efficiency.
  3. Economic rent is the surplus of actual earnings over transfer earnings. Explain with suitable examples.

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    1. Modern Theory of Rent

    According to modern economists (Joan Robinson, Benham), Economic Rent is not restricted to land alone, but can be earned by any factor of production whose supply is less than perfectly elastic. It is defined as the surplus of actual earnings of a factor of production over its transfer earnings:

    Economic Rent=Actual EarningsTransfer Earnings\text{Economic Rent} = \text{Actual Earnings} - \text{Transfer Earnings}

    2. Transfer Earnings Defined

    Transfer earnings (opportunity cost) represent the minimum compensation required to retain a factor in its current employment, preventing it from transferring to its next-best alternative employment.

    3. Three Cases with Examples

    1. Case 1: Perfectly Inelastic Supply (Entire Earning is Rent):
      • When the supply of a factor is completely fixed (es=0e_s = 0), such as natural land or an exceptional celebrity, the factor has zero opportunity cost in alternative uses (Transfer=0Transfer = 0).
        Economic Rent=Actual Earnings0=Actual Earnings\text{Economic Rent} = \text{Actual Earnings} - 0 = \text{Actual Earnings}
    2. Case 2: Perfectly Elastic Supply (Zero Rent):
      • When factor supply is perfectly elastic (es=e_s = \infty), such as unskilled day laborers in a large city, actual earnings exactly equal transfer earnings. If wages fall even slightly, workers transfer elsewhere.
        Economic Rent=Actual EarningsTransfer Earnings=0\text{Economic Rent} = \text{Actual Earnings} - \text{Transfer Earnings} = 0
    3. Case 3: Moderately Elastic Supply (Part Rent, Part Transfer Earnings):
      • In standard labor and capital markets (0<es<0 < e_s < \infty), supply is upward-sloping.
      • Example: An executive earns Rs. 100,000/month at a corporate firm. The next best alternative job pays Rs. 70,000/month.
        Transfer Earnings=Rs. 70,000\text{Transfer Earnings} = \text{Rs. } 70,000
        Economic Rent=100,00070,000=Rs. 30,000\text{Economic Rent} = 100,000 - 70,000 = \mathbf{\text{Rs. } 30,000}
  4. Identify the factors that cause wage differentials and explain them.

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    1. Meaning of Wage Differentials

    Wage differentials refer to persistent differences in wage rates paid to different workers within the same industry, across different occupations, or across different geographic regions.

    2. Factors Causing Wage Differentials

    1. Differences in Human Capital (Education and Training):
      • Specialized professionals (surgeons, data scientists, chartered accountants) invest substantial time and money into advanced education, restricting labor supply and commanding higher salaries.
    2. Compensating Wage Differentials (Nature of Work):
      • Jobs involving extreme physical hazards, toxic environments, night shifts, or high danger (underground mining, high-altitude power line maintenance) require wage premiums to attract labor.
    3. Innate Talent and Rare Abilities:
      • Unique natural gifts (elite athletes, world-class vocalists, visionary executives) possess completely inelastic supply, earning high economic rent in their wages.
    4. Geographical Living Cost Disparities:
      • Wage levels in metropolitan capital cities (Kathmandu, Lalitpur) are systematically higher than rural regions to compensate for higher rents and cost of living.
    5. Trade Union Strength and Bargaining Power:
      • Powerful labor unions in organized corporate sectors secure higher wage settlements compared to unorganized, informal daily wage earners.
    6. Occupational and Spatial Immobility:
      • Reluctance to relocate due to language barriers, family ties, or relocation costs keeps wage disparities intact between regions.
    7. Market Imperfections and Institutional Barriers:
      • Persistent gender and demographic wage gaps driven by societal biases and labor market segmentation.
  5. Consider the following demand and supply schedule:

    PRICE (RS) QDX = 100-5PX QSX = 30+5PX
    5 - -
    6 - -
    7 - -
    8 - -
    9 - -
    10 - -

    a. Complete the table and determine equilibrium price and quantity. [3.5]

    b. What Will be effect on equilibrium price and quantity when demand and supply function increase to Qd’x=120-5Px and Q’sx = 40+5Px, respectively? [3.5]

    c. Compute price elasticity of demand at both equlibrium price and compare the results. [3]

    [10]
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    Part (a): Complete Table & Equilibrium Determination

    Given: Qdx=1005PxQ_{dx} = 100 - 5P_x and Qsx=30+5PxQ_{sx} = 30 + 5P_x.

    Price (PxP_x in Rs.) Qdx=1005PxQ_{dx} = 100 - 5P_x Qsx=30+5PxQ_{sx} = 30 + 5P_x Market Pressure
    5 75 55 Excess Demand (Qd>QsQ_d > Q_s)
    6 70 60 Excess Demand (Qd>QsQ_d > Q_s)
    7 65 65 Market Equilibrium (Qd=QsQ_d = Q_s)
    8 60 70 Excess Supply (Qs>QdQ_s > Q_d)
    9 55 75 Excess Supply (Qs>QdQ_s > Q_d)
    10 50 80 Excess Supply (Qs>QdQ_s > Q_d)

    Equilibrium Price (PP^*): Rs. 7 | Equilibrium Quantity (QQ^*): 65 units.

    Part (b): Effect of Demand and Supply Shifts

    New functions: Qdx=1205PxQ_{dx}' = 120 - 5P_x and Qsx=40+5PxQ_{sx}' = 40 + 5P_x. Setting Qdx=QsxQ_{dx}' = Q_{sx}':

    1205Px=40+5Px    10Px=80    Px=Rs. 8120 - 5P_x = 40 + 5P_x \implies 10P_x = 80 \implies P_x^{**} = \mathbf{\text{Rs. } 8}
    Q=1205(8)=80 unitsQ^{**} = 120 - 5(8) = \mathbf{80 \text{ units}}

    Effect: Equilibrium price rises by Rs. 1 (from Rs. 7 to Rs. 8), and equilibrium quantity rises by 15 units (from 65 to 80 units).

    Part (c): Price Elasticity of Demand at Both Equilibria

    Formula: ep=b×PQe_p = -b \times \frac{P}{Q} where b=5b = 5.

    • Initial Equilibrium (P=7,Q=65P = 7, Q = 65):
      ep=5×765=35650.54e_p = -5 \times \frac{7}{65} = -\frac{35}{65} \approx \mathbf{-0.54}
    • New Equilibrium (P=8,Q=80P = 8, Q = 80):
      ep=5×880=4080=0.50e_p' = -5 \times \frac{8}{80} = -\frac{40}{80} = \mathbf{-0.50}
    • Comparison: In both situations, demand is inelastic (ep<1|e_p| < 1). Price responsiveness was slightly higher at the initial equilibrium point (0.54>0.50|-0.54| > |-0.50|).
  6. Let a consumer selects two goods, i.e. x and y for consumption having prices of Rs. 1600 and Rs. 800 respectively and fixed income with Rs. 16,000.

    a. Derive budget line and determine equilibrium point when he allocates entire budget equally on two goods. [4]

    b. Let, price of x good falls to Rs. 800. Derive the two budget line and determine new equilibrium point when he spends Rs. 6,400 on x good and Rs. 9,600 on y good. [4]

    c. Derive price demand curve for x good. [2]

    [10]
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    Given Parameters:

    Income M=Rs. 16,000M = \text{Rs. } 16,000; Initial Prices: PX=Rs. 1600P_X = \text{Rs. } 1600, PY=Rs. 800P_Y = \text{Rs. } 800.

    Part (a): Initial Budget Line & Equilibrium

    Budget Equation: PXX+PYY=M    1600X+800Y=16,000P_X \cdot X + P_Y \cdot Y = M \implies 1600X + 800Y = 16,000.

    • Maximum XX (X-intercept): 16,0001600=10\frac{16,000}{1600} = 10 units.
    • Maximum YY (Y-intercept): 16,000800=20\frac{16,000}{800} = 20 units.
    • Allocating budget equally: Spends Rs. 8,000 on XX and Rs. 8,000 on YY.
      X=8,0001600=5 units;Y=8,000800=10 unitsX = \frac{8,000}{1600} = 5 \text{ units}; \quad Y = \frac{8,000}{800} = 10 \text{ units}
      Initial Equilibrium Bundle: E1(X=5,Y=10)E_1(X=5, Y=10).

    Part (b): Price of Good X Falls to Rs. 800

    New Price: PX=Rs. 800P_X' = \text{Rs. } 800, PY=Rs. 800P_Y = \text{Rs. } 800. New Budget Equation: 800X+800Y=16,000    X+Y=20800X + 800Y = 16,000 \implies X + Y = 20.

    • New X-intercept: 16,000800=20\frac{16,000}{800} = 20 units; Y-intercept remains 20 units.
    • Consumer spends Rs. 6,400 on XX and Rs. 9,600 on YY:
      X=6,400800=8 units;Y=9,600800=12 unitsX = \frac{6,400}{800} = 8 \text{ units}; \quad Y = \frac{9,600}{800} = 12 \text{ units}
      New Equilibrium Bundle: E2(X=8,Y=12)E_2(X=8, Y=12).

    Part (c): Derivation of Price Demand Curve for Good X

    Pairing the price and quantity demanded for Good XX:

    • At PX=Rs. 1,600    X=5 unitsP_X = \text{Rs. } 1,600 \implies X = 5 \text{ units}.
    • At PX=Rs. 800    X=8 unitsP_X = \text{Rs. } 800 \implies X = 8 \text{ units}.

    Plotting these coordinates produces a downward-sloping demand curve (DXD_X), confirming the Law of Demand (a 50% fall in price induces a 60% expansion in quantity demanded).

Section C

Attempt any Two questions

[2*15=30]
  1. Describe the characteristics of oligopoly. How are the price and the output determined under cartel? [5+10]

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    1. Characteristics of Oligopoly

    Oligopoly is a market structure dominated by a small number of large corporate sellers:

    1. Few Sellers and Many Buyers: A small cluster of large firms controls the vast majority of industry output.
    2. Mutual Interdependence: The core defining feature where any pricing, marketing, or production decision made by one firm directly influences its competitors’ payoffs, prompting immediate retaliatory strategies.
    3. High Barriers to Entry: High capital setup costs, patents, exclusive distribution networks, or economies of scale prevent new entrants.
    4. Non-Price Competition: Firms avoid ruinous price wars, competing through advertising, product styling, warranty periods, and branding.
    5. Indeterminate Demand Curve: Because rival reactions cannot be predicted with certainty, an individual oligopolist cannot forecast its demand curve reliably.

    2. Price and Output Determination Under Cartel

    A cartel is a formal collusive agreement among oligopolistic firms designed to eliminate competition, fix market prices, allocate sales quotas, and maximize collective industry profit (operating as a centralized multi-plant monopoly).

    3. Mechanism of Centralized Joint Profit Maximization

    1. Derivation of Industry Marginal Cost (MC\sum MC):
      • The central cartel governing body estimates the marginal cost curves of all member firms (MCA,MCBMC_A, MC_B) and aggregates them horizontally: MC=MCA+MCB\sum MC = MC_A + MC_B.
    2. Setting Industry Output and Price:
      • The cartel equates the industry marginal cost to industry marginal revenue:
        MR=MCMR = \sum MC
      • This determines total industry profit-maximizing output QQ^* and common cartel price PP^*.
    3. Quota Allocation Across Member Firms:
      • The common marginal cost level (MCMC^*) is projected back onto each member’s individual cost curve:
        • Firm A produces where MCA=MC    qAMC_A = MC^* \implies q_A^*
        • Firm B produces where MCB=MC    qBMC_B = MC^* \implies q_B^*
        • Such that qA+qB=Qq_A^* + q_B^* = Q^*.
      • Lower-cost firms are allotted larger production quotas to minimize overall production expenses.

    4. Sources of Cartel Instability

    • Incentive to Cheat: Since cartel price exceeds individual marginal cost (P>MCiP^* > MC_i), each firm has an immense economic incentive to offer secret discounts to gain market share.
    • Cost Asymmetries: Divergent production costs create severe disputes over quota division and profit pooling.
    • Legal Prohibitions: Cartels are illegal under anti-monopoly and competition laws in most countries.
  2. Using IQ map and Iso-cost line, explain the concept of least cost combination of two inputs under given total cost outlay. What will be the effect on output when total cost outlay changes? [10+5]

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    1. Concept of Least Cost Combination of Inputs

    The least cost combination of inputs (producer equilibrium) identifies the combination of labor (LL) and capital (KK) that produces the maximum possible output for a given total financial cost outlay, or minimizes the cost of producing a targeted level of output.

    2. Analytical Tools

    • Isoquant (IQ): Curve showing all combinations of labor and capital capable of producing an identical level of physical output.
      Slope of Isoquant=MRTSLK=MPLMPK\text{Slope of Isoquant} = -MRTS_{LK} = -\frac{MP_L}{MP_K}
    • Isocost Line: Locus of factor combinations a firm can purchase with a fixed budget CC: C=wL+rKC = wL + rK.
      Slope of Isocost=wr=PLPK\text{Slope of Isocost} = -\frac{w}{r} = -\frac{P_L}{P_K}

    3. Conditions for Producer Equilibrium

    Producer equilibrium requires two conditions:

    1. First-Order (Necessary) Condition: Tangency between the Isoquant and Isocost line:
      MRTSLK=wrMPLw=MPKrMRTS_{LK} = \frac{w}{r} \quad \Longleftrightarrow \quad \frac{MP_L}{w} = \frac{MP_K}{r}
      The marginal physical product per rupee spent must be equal across all inputs.
    2. Second-Order (Sufficient) Condition: The isoquant must be strictly convex to the origin at the tangency point (diminishing MRTSLKMRTS_{LK}).

    4. Effect of Changing Total Cost Outlay (Expansion Path)

    • If factor prices (w,rw, r) remain unchanged and the firm’s total capital budget (outlay) increases (C1C2C3C_1 \to C_2 \to C_3), the isocost line shifts parallelly outward (ABABABAB \to A'B' \to A''B'').
    • Each outward isocost line is tangent to a correspondingly higher isoquant (IQ1IQ2IQ3IQ_1 \to IQ_2 \to IQ_3) at equilibrium points E1,E2,E3E_1, E_2, E_3.
    • Connecting these successive least-cost tangency points yields the firm’s Expansion Path (scale line).
    • Conclusion: An expansion in total cost outlay enables the firm to achieve higher output levels while maintaining optimal, cost-minimizing input factor ratios throughout.
  3. Let Cost function TC = 50+6Q², Revenue function TR = 100Q - 4Q².

    a. Compute TFC, TVC, TC, TR and profit at output range of 0 to 10 units. [5]

    b. Using schedules, explain the behaviour of TFC, TVC and TC with proper reasons. [5]

    c. Graph TR, TC and profit, and explain TR- TC approach of firm equilibrium. [5]

    [15]
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    Given Functions:

    • Total Cost: TC=50+6Q2TC = 50 + 6Q^2
    • Total Revenue: TR=100Q4Q2TR = 100Q - 4Q^2
    • Components: TFC=50TFC = 50, TVC=6Q2TVC = 6Q^2
    • Profit: Π=TRTC=(100Q4Q2)(50+6Q2)=100Q10Q250\Pi = TR - TC = (100Q - 4Q^2) - (50 + 6Q^2) = 100Q - 10Q^2 - 50

    Part (a): Schedule from Q=0Q = 0 to 1010

    QQ TFCTFC TVC=6Q2TVC = 6Q^2 TC=50+6Q2TC = 50 + 6Q^2 TR=100Q4Q2TR = 100Q - 4Q^2 Π=TRTC\Pi = TR - TC
    0 50 0 50 0 -50
    1 50 6 56 96 +40
    2 50 24 74 184 +110
    3 50 54 104 264 +160
    4 50 96 146 336 +190
    5 50 150 200 400 +200 (Max)
    6 50 216 266 456 +190
    7 50 294 344 504 +160
    8 50 384 434 544 +110
    9 50 486 536 576 +40
    10 50 600 650 600 -50

    Part (b): Behavior of TFC, TVC, and TC Explained

    1. Total Fixed Cost (TFC): Remains constant at Rs. 50 regardless of output level because fixed plant overheads do not vary with production.
    2. Total Variable Cost (TVC): Starts at 0 when Q=0Q=0 and expands at an increasing rate (6Q26Q^2) due to the operation of diminishing marginal productivity.
    3. Total Cost (TC): Is the vertical sum of TFCTFC and TVCTVC. It starts at Rs. 50 at zero output and mirrors TVCTVC precisely at a constant vertical distance of Rs. 50.

    Part (c): Firm Equilibrium by TR-TC Approach

    • According to the TR-TC approach, a firm maximizes profit at the output level where the positive vertical distance between TRTR and TCTC is greatest (TR>TCTR > TC), and the tangent slopes to both curves are identical (MR=MCMR = MC).
    • In our schedule, maximum profit occurs at Q=5Q = 5 units with profit Π=Rs. 200\Pi = \text{Rs. } 200.
    • Calculus Confirmation:
      dΠdQ=10020Q=0    Q=5\frac{d\Pi}{dQ} = 100 - 20Q = 0 \implies Q^* = 5
      d2ΠdQ2=20<0(Confirmed Maximum)\frac{d^2\Pi}{dQ^2} = -20 < 0 \quad (\text{Confirmed Maximum})
    • At Q<5Q < 5, TRTR expands faster than TCTC, adding to net profit. Beyond Q=5Q = 5, TCTC grows faster than TRTR, eroding net profit.