Board paper

Financial Management 2024 Board Question Paper

FIN 207 · Marketing of Financial Services

Programme
BBA-F
Academic year
Semester 6
Exam year
2024 AD
Sitting
regular
Full marks
100
Duration
180 minutes

Tribhuvan University

Faculty of Management

Office of the Dean

2024 AD / Regular Examination

Course: FIN 207 · Marketing of Financial Services

Level: Bachelor of Business Administration in Finance (BBA-F) · Semester 6

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

Brief Answer Questions :

[10*2=20]
  1. What do you mean by social responsibility?

    [2]
    View model solution

    Meaning of Social Responsibility

    Corporate Social Responsibility (CSR) refers to a corporation’s voluntary commitment and ethical obligation to operate in an economically, socially, and environmentally sustainable manner while balancing the interests of all stakeholders—including employees, customers, suppliers, local communities, and the environment—rather than exclusively pursuing shareholder wealth maximization.

    • Core Dimensions:
      1. Environmental Stewardship: Reducing carbon footprint, adopting green energy, and minimizing pollution.
      2. Ethical Labor Practices: Providing fair wages, workplace safety, and gender equality.
      3. Community Development: Funding local education, healthcare, and infrastructure.
    • Nepalese Regulatory Context: Under the Industrial Enterprises Act, 2076 (2020) of Nepal, medium, large, and cottage industries with an annual turnover exceeding NPR 150 million are legally mandated to allocate at least 1% of their annual net profit to designated CSR activities.
  2. State causes of agency problem between shareholders and manager.

    [2]
    View model solution

    Causes of Agency Problem Between Shareholders and Managers

    The agency problem arises due to the separation of ownership (shareholders/principals) and management control (managers/agents) in modern corporations. The primary causes include:

    1. Divergence of Goals and Interests: Shareholders seek long-term maximization of the market value of common stock, whereas managers may prioritize personal wealth, job security, status, power, and prestige.
    2. Information Asymmetry: Managers possess deeper, real-time insider knowledge about company operations and investment risks, which they may withhold or manipulate to mask poor performance.
    3. Horizon Asymmetry (Short-Term Bias): Managers often focus on short-term quarterly accounting earnings to maximize annual bonuses, sacrificing value-creating long-term research and capital projects.
    4. Empire Building and Perquisite Consumption: Managers may pursue unprofitable mergers or lavish perquisites (e.g., luxury corporate jets, opulent executive offices) that increase corporate size and managerial perks at the expense of shareholder wealth.
    5. Differential Risk Tolerance: Managers hold concentrated firm-specific human capital risk and tend to be excessively risk-averse, avoiding positive NPV projects that carry career risk, while shareholders hold well-diversified portfolios.
  3. Write the meaning of financial plan.

    [2]
    View model solution

    Meaning of Financial Plan

    A financial plan is a formal, comprehensive operational statement detailing an enterprise’s future financial goals, capital requirements, financing strategy, and resource allocation policies over a defined planning horizon (typically 1 to 5 years).

    • Core Components:
      1. Pro-forma Financial Statements: Projected income statements, balance sheets, and cash flow statements derived from sales forecasts.
      2. Capital Expenditure Budget: Scheduled outlays for fixed assets and expansion projects.
      3. Financing Requirements (External Financing Needed): Exact debt and equity funding needed to support projected asset growth.
      4. Working Capital Policy: Target levels and financing of cash, receivables, and inventory.
    • Primary Objective: Ensuring adequate liquidity to meet maturing obligations while optimizing capital structure to minimize the firm’s Weighted Average Cost of Capital (WACC).
  4. Differentiate between payback period and discounted payback period.

    [2]
    View model solution

    Payback Period vs. Discounted Payback Period

    Dimension Payback Period (PBP) Discounted Payback Period (DPBP)
    Concept Measures the time required to recover the initial investment from nominal (undiscounted) net cash inflows. Measures the time required to recover the initial investment from discounted (present value) cash inflows.
    Time Value of Money (TVM) Completely ignores the time value of money, treating future cash flows as equal to present cash flows. Explicitly accounts for the time value of money by discounting cash flows at the project’s cost of capital (kk).
    Formula / Basis Cumulative Nominal Cash Flows =I0= I_0. Cumulative Discounted Cash Flows CFt(1+k)t=I0\sum \frac{CF_t}{(1+k)^t} = I_0.
    Conservatism & Length Always shorter than DPBP whenever discount rates are positive (k>0k > 0). Always longer than simple PBP because discounted cash flows are smaller than nominal cash flows.
    Decision Rule Accept if PBPPBP \le Maximum acceptable cutoff period. Accept if DPBPDPBP \le Project economic life / cutoff. Projects with DPBPLifeDPBP \le Life guarantee NPV0NPV \ge 0.
  5. Assume that the risk-free rate is 4 percent and the market risk premium is 6 percent. What is the required rate of return on stock X with its beta of 1.5?

    [2]
    View model solution

    Calculation of Required Rate of Return on Stock X

    1. Given Data:

    • Risk-free rate of return (RfR_f) = 4%=0.044\% = 0.04
    • Market risk premium (RmRfR_m - R_f) = 6%=0.066\% = 0.06
    • Systematic risk / Beta coefficient of Stock X (βX\beta_X) = 1.51.5

    2. Theoretical Formula:

    According to the Capital Asset Pricing Model (CAPM):

    E(RX)=Rf+βX(RmRf)E(R_X) = R_f + \beta_X \cdot (R_m - R_f)


    3. Step-by-Step Calculation:

    E(RX)=4%+1.5\imes6%E(R_X) = 4\% + 1.5 \imes 6\%
    E(RX)=4%+9.0%=13.0%E(R_X) = 4\% + 9.0\% = \mathbf{13.0\%}

    4. Financial Interpretation:

    Stock X carries 50%50\% more systematic market risk than the overall market (β=1.5>1.0\beta = 1.5 > 1.0). Therefore, rational investors demand a required return of 13.0%13.0\% (consisting of a 4%4\% baseline risk-free compensation plus a 9%9\% systematic risk premium) to hold Stock X.

  6. A firm has net income of Rs 15 million. Firm’s debt ratio is 40 percent. Firm has investment opportunity of Rs 20 million. What would be firm’s dividend amount if it uses residual dividend policy?

    [2]
    View model solution

    Dividend Calculation Under Residual Dividend Policy

    1. Given Data:

    • Net Income (NINI) = Rs 15,000,000 (Rs 15 million)
    • Target Debt Ratio (wdw_d) = 40%=0.4040\% = 0.40
    • Target Equity Ratio (wew_e) = 1wd=10.40=60%=0.601 - w_d = 1 - 0.40 = 60\% = 0.60
    • Total Capital Budget / Investment Opportunity (II) = Rs 20,000,000 (Rs 20 million)

    2. Mathematical Formula:

    Under the Residual Dividend Policy, dividends are paid only after all positive NPV capital budgeting projects are financed according to the target capital structure:

    \extEquityRequired=I\imeswe\ext{Equity Required} = I \imes w_e
    \extDividend=\extNetIncome\extEquityRequired\ext{Dividend} = \ext{Net Income} - \ext{Equity Required}
    (Subject to a non-negativity constraint; if Equity Required >NI> NI, Dividend =0= 0).


    3. Step-by-Step Calculation:

    1. Calculate Equity Capital Needed for Investment:
      \extEquityRequired=\extRs20,000,000\imes0.60=\extRs12,000,000\ext(Rs12million)\ext{Equity Required} = \ext{Rs } 20,000,000 \imes 0.60 = \mathbf{\ext{Rs } 12,000,000} \ext{ (Rs 12 million)}
    2. Calculate Residual Dividend Amount:
      \extDividend=\extRs15,000,000\extRs12,000,000=\extRs3,000,000\ext(Rs3million)\ext{Dividend} = \ext{Rs } 15,000,000 - \ext{Rs } 12,000,000 = \mathbf{\ext{Rs } 3,000,000} \ext{ (Rs 3 million)}

    4. Final Answer & Conclusion:

    The firm will distribute Rs 3 million as cash dividends to shareholders. The resulting dividend payout ratio is \extRs3\extM\extRs15\extM=20%\frac{\ext{Rs } 3\ext{M}}{\ext{Rs } 15\ext{M}} = 20\%, while Rs 12 million is retained for capital investment.

  7. What are the motives of holding cash?

    [2]
    View model solution

    Motives of Holding Cash

    According to John Maynard Keynes and modern corporate financial management, firms hold liquid cash and marketable securities for four primary motives:

    1. Transaction Motive: To meet routine, day-to-day synchronized cash disbursements (e.g., payment of wages, purchases of raw materials, trade taxes, interest, and utility bills) arising in the normal course of business.
    2. Precautionary Motive: To act as a financial safety cushion against unexpected contingencies, seasonal shocks, sudden supply chain disruptions, or customer default risks.
    3. Speculative Motive: To exploit unexpected lucrative, bargain investment opportunities, such as buying distress inventory at deep discounts or acquiring undervalued assets during market downturns.
    4. Compensating Balance Motive: To satisfy minimum non-interest-bearing deposit balances required by commercial banks in exchange for credit lines, loan syndications, and clearing facilities.
  8. Beta Company sells on credit terms of net 30. Its accounts are, on average, 40 days past due. If annual credit sales are Rs 18 million, what is the Beta’s amount of accounts receivable? Assume 360 days a year.

    [2]
    View model solution

    Calculation of Accounts Receivable for Beta Company

    1. Given Data:

    • Credit terms = Net 30 days
    • Accounts past due on average = 40 days
    • Annual credit sales (SS) = Rs 18,000,000 (Rs 18 million)
    • Days in a year (DD) = 360 days

    2. Step-by-Step Mathematical Derivation:

    1. Determine Days Sales Outstanding (DSO) / Average Collection Period (ACP):
      DSO=\extCreditTerms+\extAveragePastDueDaysDSO = \ext{Credit Terms} + \ext{Average Past Due Days}
      DSO=30+40=70\extdaysDSO = 30 + 40 = \mathbf{70 \ext{ days}}
    2. Calculate Average Daily Sales (ADS):
      ADS=\extAnnualCreditSalesD=\extRs18,000,000360=\extRs50,000\extperdayADS = \frac{\ext{Annual Credit Sales}}{D} = \frac{\ext{Rs } 18,000,000}{360} = \mathbf{\ext{Rs } 50,000 \ext{ per day}}
    3. Compute Accounts Receivable (ARAR):
      AR=ADS\imesDSO=\extRs50,000\imes70=\extRs3,500,000AR = ADS \imes DSO = \ext{Rs } 50,000 \imes 70 = \mathbf{\ext{Rs } 3,500,000}

    3. Final Answer:

    Beta Company’s balance of accounts receivable is Rs 3,500,000 (Rs 3.5 million).

  9. Write the meaning of stock repurchase.

    [2]
    View model solution

    Meaning of Stock Repurchase

    A stock repurchase (or share buyback) is a corporate financial transaction in which a company buys back its own outstanding common stock from open-market investors, through a tender offer, or via negotiated private transactions, utilizing available retained earnings or cash reserves.

    • Key Financial Impacts:
      1. Reduction in Outstanding Shares: Decreases the total share count, which mechanically increases Earnings Per Share (EPS) and Book Value Per Share (BVPS).
      2. Alternative to Cash Dividends: Distributes excess corporate liquidity to shareholders in a tax-efficient manner (benefiting from capital gains tax treatment).
      3. Market Signaling: Signals to the capital market that corporate management believes the company’s stock is undervalued.
  10. You can buy an Apple Laptop at Yen 160,000 in Japan. The same Laptop costs Nepalese Rs 120,000 in Nepal. What is the exchange rate between Nepalese Rupee and Japanese Yen as per purchasing power parity?

    [2]
    View model solution

    Exchange Rate Determination via Purchasing Power Parity (PPP)

    1. Given Data:

    • Price of Apple Laptop in Japan (P\extJapanP_{\ext{Japan}}) = ¥160,000\yen 160,000
    • Price of the same Apple Laptop in Nepal (P\extNepalP_{\ext{Nepal}}) = \extNPR120,000\ext{NPR } 120,000

    2. Theoretical Formula:

    Under the Absolute Purchasing Power Parity (Law of One Price):

    P\extNepal=S(\extNPR/¥)\imesP\extJapanP_{\ext{Nepal}} = S(\ext{NPR}/\yen) \imes P_{\ext{Japan}}
    S(\extNPR/¥)=P\extNepalP\extJapanS(\ext{NPR}/\yen) = \frac{P_{\ext{Nepal}}}{P_{\ext{Japan}}}


    3. Step-by-Step Calculation:

    S(\extNPR/¥)=\extNPR120,000¥160,000=0.75\extNPRperJapaneseYenS(\ext{NPR}/\yen) = \frac{\ext{NPR } 120,000}{\yen 160,000} = \mathbf{0.75 \ext{ NPR per Japanese Yen}}
    • Expressed per 10 Japanese Yen:
      \extNPR0.75\imes10=\extNPR7.50\extper10\extJPY\ext{NPR } 0.75 \imes 10 = \mathbf{\ext{NPR } 7.50 \ext{ per } 10 \ext{ JPY}}
    • Expressed in JPY per NPR:
      S(¥/\extNPR)=10.75=1.3333\extJPYperNPRS(\yen/\ext{NPR}) = \frac{1}{0.75} = \mathbf{1.3333 \ext{ JPY per NPR}}

    4. Final Answer:

    As per Purchasing Power Parity, the equilibrium exchange rate is NPR 0.75 per Japanese Yen (or NPR 75 per 100 Japanese Yen).

Section B

Short Answer Questions (Attempt any SIX Questions ) .

[6*5=30]
  1. Describe financial management decisions.

    [5]
    View model solution

    Comprehensive Overview of Financial Management Decisions

    In modern corporate finance, the financial manager makes three interrelated, value-maximizing decisions:

                              Financial Management Decisions
                                            │
             ┌──────────────────────────────┼──────────────────────────────┐
             ▼                              ▼                              ▼
     1. Investment Decision        2. Financing Decision         3. Dividend Decision
    (Capital Budgeting & CA)      (Capital Structure & WACC)    (Payout Policy & Retained Earn.)
    

    1. Investment Decisions (Capital Budgeting & Asset Allocation)

    • Long-Term Investment Decisions (Capital Budgeting): Involves committing funds into long-term capital projects, technological upgrades, plants, or M&A whose cash inflows will materialize over multiple future years. Techniques utilized include Net Present Value (NPVNPV), Internal Rate of Return (IRRIRR), and Profitability Index (PIPI).
    • Short-Term Investment Decisions (Working Capital Management): Involves managing the day-to-day composition of current assets (cash, receivables, inventories) to maintain adequate operational liquidity while avoiding idle capital.

    2. Financing Decisions (Capital Structure Selection)

    • Deals with determining the optimal financing mix between debt capital (bank loans, debentures) and equity capital (common stock, preferred stock, retained earnings).
    • Objective: Achieving an optimal capital structure that balances tax-shield benefits of debt against financial distress/bankruptcy costs, thereby minimizing the Weighted Average Cost of Capital (WACC) and maximizing firm value.

    3. Dividend Decisions (Profit Allocation)

    • Determines how corporate net earnings after tax should be distributed: paying out cash dividends to shareholders versus retaining earnings for internal reinvestment.
    • The financial manager must balance shareholder preferences for current dividend income against the firm’s growth opportunities and capital expenditure requirements.
  2. How does size of profit, liquidity position and investment opportunity affect dividend policy of a firm? Explain.

    [5]
    View model solution

    Impact of Profit Size, Liquidity Position, and Investment Opportunities on Dividend Policy

    A company’s dividend policy represents the strategic decision to divide net earnings between dividend payouts and internal retention. Three pivotal determinants govern this policy:


    1. Size and Stability of Profit

    • Baseline Determinant: Corporate law and prudence dictate that cash dividends can only be paid out of accumulated accounting earnings. Larger net profits expand the pool of funds available for distribution.
    • Earnings Stability: A corporation with stable, predictable annual earnings can safely commit to a high, regular dividend payout ratio (e.g., mature commercial banks like Nabil Bank). Conversely, firms with volatile, cyclical earnings maintain conservative baseline payouts to prevent costly dividend cuts.

    2. Liquidity Position of the Firm

    • Cash vs. Profit Disconnect: Accounting profit represents accrual revenue minus expenses; it does not equal liquid cash. A firm may exhibit high accounting net income while experiencing an acute cash shortage due to funds tied up in receivables and inventory.
    • Direct Impact: Because dividends are paid strictly in cash, a strong liquidity buffer (cash and marketable securities) is required to sustain cash distributions. A highly profitable but illiquid company must pay stock dividends (bonus shares) or conserve cash rather than paying cash dividends.

    3. Availability of Investment Opportunities

    • The Residual Dividend Framework: According to financial theory, if a firm possesses profitable investment opportunities with expected returns exceeding the cost of capital (r>kr > k), shareholder wealth is maximized by retaining earnings to finance these positive NPV projects.
    • Firm Life Cycle Impact:
      • Rapidly Growing Firms: Face extensive capital investment opportunities (e.g., Nepalese hydropower companies during construction); hence, they maintain low dividend payouts or zero dividends.
      • Mature / Saturated Firms: Have limited internal reinvestment avenues; hence, they distribute excess free cash flow as dividends.
  3. Describe features of optimal capital structure of a business corporation.

    [5]
    View model solution

    Features of an Optimal Capital Structure

    The optimal capital structure is that dynamic combination of debt, preferred stock, and common equity that minimizes the firm’s Weighted Average Cost of Capital (WACC) while simultaneously maximizing the market value of the firm (VV).


    Key Features and Principles:

    1. Minimization of Overall Cost of Capital (WACC):

      • Takes advantage of the lower cost of debt and the interest tax-shield benefit:
        kd(after-tax)=kd(1T)k_d(\text{after-tax}) = k_d(1 - T)
      • Optimizes the leverage ratio where the marginal benefit of tax shields exactly equals the marginal cost of expected financial distress (Static Trade-off Theory).
    2. Maintenance of Financial Solvency and Safety:

      • Excessive debt introduces fixed financial obligations. An optimal capital structure avoids excessive leverage, ensuring that the Times Interest Earned (TIE) and debt-service coverage ratios remain well above danger thresholds even during severe economic downturns.
    3. Adequate Financial Flexibility:

      • Preserves spare borrowing capacity so the firm can access external debt markets swiftly during unforeseen emergencies or attractive unexpected expansion opportunities without paying punitive yields.
    4. Profitability and EPS Enhancement (Favorable Leverage):

      • Employs debt trading on equity when Return on Investment exceeds the cost of debt (ROI>kdROI > k_d), boosting Return on Equity (ROE) and Earnings Per Share (EPS) for common stockholders.
    5. Protection of Managerial and Ownership Control:

      • Avoids issuing new common equity when doing so would dilute the voting control of existing majority shareholders or expose the company to hostile acquisition.
  4. Koshi Chemical Fertilizer Centre (KCFC) sells 3,380,000 bags of lawn fertilizer annually. The fixed costs of placing and receiving are Rs 480 per order. The cost price of fertilizer is Rs 600 per bag. The annual cost of carrying this inventory item is 20 percent of the cost price. KCFC maintains 15,000 bags of fertilizer as safety stocks. The fertilizer supplier requires 2 weeks of lead time from order to delivery of the fertilizer. a. What is the economic order quantity of fertilizer for KCFC? b. What is the total inventory cost of fertilizer for KCFC? c. What should be re-ordered point (level) of fertilizer for KCFC?

    [5]
    View model solution

    Comprehensive Inventory Management Analysis for KCFC

    1. Given Data:

    • Annual Demand (DD) = 3,380,0003,380,000 bags
    • Ordering cost per order (SS) = Rs 480
    • Purchase price per bag (CC) = Rs 600
    • Carrying cost percentage (II) = 20%=0.2020\% = 0.20
    • Annual carrying cost per bag (H=C×IH = C \times I) = Rs 600×0.20=Rs 120 per bag/year\text{Rs } 600 \times 0.20 = \mathbf{\text{Rs } 120 \text{ per bag/year}}
    • Safety stock (SSSS) = 15,00015,000 bags
    • Lead time (LL) = 22 weeks (out of 5252 weeks per year)

    Part a: Economic Order Quantity (EOQ)

    EOQ=2DSHEOQ = \sqrt{\frac{2 \cdot D \cdot S}{H}}
    EOQ=2×3,380,000×480120=3,244,800,000120=27,040,000=5,200 bagsEOQ = \sqrt{\frac{2 \times 3,380,000 \times 480}{120}} = \sqrt{\frac{3,244,800,000}{120}} = \sqrt{27,040,000} = \mathbf{5,200 \text{ bags}}

    Part b: Total Inventory Cost (TIC)

    Total inventory cost consists of annual ordering costs plus annual carrying costs of both cycle inventory and safety stock:

    1. Annual Ordering Cost:
      Ordering Cost=(DEOQ)×S=(3,380,0005,200)×480=650×480=Rs 312,000\text{Ordering Cost} = \left(\frac{D}{EOQ}\right) \times S = \left(\frac{3,380,000}{5,200}\right) \times 480 = 650 \times 480 = \mathbf{\text{Rs } 312,000}
    2. Annual Carrying Cost of Cycle Inventory:
      Carrying Costcycle=(EOQ2)×H=(5,2002)×120=2,600×120=Rs 312,000\text{Carrying Cost}_{\text{cycle}} = \left(\frac{EOQ}{2}\right) \times H = \left(\frac{5,200}{2}\right) \times 120 = 2,600 \times 120 = \mathbf{\text{Rs } 312,000}
    3. Annual Carrying Cost of Safety Stock:
      Carrying Costsafety=SS×H=15,000×120=Rs 1,800,000\text{Carrying Cost}_{\text{safety}} = SS \times H = 15,000 \times 120 = \mathbf{\text{Rs } 1,800,000}
    4. Total Inventory Management Cost:
      TIC=312,000+312,000+1,800,000=Rs 2,424,000TIC = 312,000 + 312,000 + 1,800,000 = \mathbf{\text{Rs } 2,424,000}
      (Note: Excluding safety stock carrying costs, basic TIC=312,000+312,000=Rs 624,000TIC = 312,000 + 312,000 = \text{Rs } 624,000).

    Part c: Re-Order Point (ROP)

    Weekly Demand (d)=D52=3,380,00052=65,000 bags per week\text{Weekly Demand } (d) = \frac{D}{52} = \frac{3,380,000}{52} = 65,000 \text{ bags per week}
    Lead Time Demand=d×L=65,000×2=130,000 bags\text{Lead Time Demand} = d \times L = 65,000 \times 2 = 130,000 \text{ bags}
    ROP=Lead Time Demand+Safety Stock=130,000+15,000=145,000 bagsROP = \text{Lead Time Demand} + \text{Safety Stock} = 130,000 + 15,000 = \mathbf{145,000 \text{ bags}}

    Summary of Final Answers:

    • EOQ: 5,200 bags (placing 650 orders per year).
    • Total Inventory Cost: Rs 2,424,000 per annum.
    • Re-order Level: 145,000 bags.
  5. Birat Trading Company (BTC) is considering changing its credit terms from ‘net 40’ to ‘net 50’, in order to increase sales. At present, average collection period is 45 days and it will be 60 days under proposed plan. The change will also affect in the present 2 percent level of bad debt to 2.5 percent on all credit sales. Due to change in credit terms, it is expected to increase in sales from Rs 6 million to Rs 7.2 million per year. The variable cost ratio is 70 percent, the cost of funds invested in accounts receivable is 10 percent, and the marginal corporate tax rate is 30 percent. Should BTC change its credit terms?

    [5]
    View model solution

    Evaluation of Proposed Credit Policy Change for Birat Trading Company (BTC)

    1. Given Financial Parameters:

    • Current Sales (S0S_0) = Rs 6,000,000; Proposed Sales (S1S_1) = Rs 7,200,000
    • Incremental Sales (ΔS\Delta S) = Rs 1,200,000
    • Variable cost ratio (vv) = 70%=0.7070\% = 0.70; Contribution margin ratio (1v1 - v) = 30%=0.3030\% = 0.30
    • Current Average Collection Period (ACP0ACP_0) = 4545 days; Proposed ACP1=60ACP_1 = 60 days
    • Current Bad Debt rate (b0b_0) = 2.0%2.0\%; Proposed Bad Debt rate (b1b_1) = 2.5%2.5\%
    • Opportunity cost of funds in receivables (kk) = 10%=0.1010\% = 0.10
    • Corporate tax rate (TT) = 30%=0.3030\% = 0.30; Days in year = 360360 days

    2. Incremental Cash Flow & Profit Analysis:

    Step 1: Incremental Contribution Margin

    ΔCM=ΔS×(1v)=Rs 1,200,000×0.30=+Rs 360,000\Delta CM = \Delta S \times (1 - v) = \text{Rs } 1,200,000 \times 0.30 = \mathbf{+\text{Rs } 360,000}

    Step 2: Incremental Bad Debt Losses

    • Current Bad Debts = S0×b0=Rs 6,000,000×0.02=Rs 120,000S_0 \times b_0 = \text{Rs } 6,000,000 \times 0.02 = \text{Rs } 120,000
    • Proposed Bad Debts = S1×b1=Rs 7,200,000×0.025=Rs 180,000S_1 \times b_1 = \text{Rs } 7,200,000 \times 0.025 = \text{Rs } 180,000ΔBad Debts=180,000120,000=+Rs 60,000\Delta \text{Bad Debts} = 180,000 - 120,000 = \mathbf{+\text{Rs } 60,000}$

    Step 3: Incremental Cost of Funds Invested in Accounts Receivable

    Using the standard variable cost basis:

    • Current AR Investment = (S0360×ACP0)×v=(6,000,000360×45)×0.70=750,000×0.70=Rs 525,000\left(\frac{S_0}{360} \times ACP_0\right) \times v = \left(\frac{6,000,000}{360} \times 45\right) \times 0.70 = 750,000 \times 0.70 = \text{Rs } 525,000
    • Proposed AR Investment = (S1360×ACP1)×v=(7,200,000360×60)×0.70=1,200,000×0.70=Rs 840,000\left(\frac{S_1}{360} \times ACP_1\right) \times v = \left(\frac{7,200,000}{360} \times 60\right) \times 0.70 = 1,200,000 \times 0.70 = \text{Rs } 840,000ΔInvestment in AR=840,000525,000=Rs 315,000\Delta \text{Investment in AR} = 840,000 - 525,000 = \text{Rs } 315,000$
      ΔCarrying Cost of AR=ΔInvestment×k=Rs 315,000×0.10=+Rs 31,500\Delta \text{Carrying Cost of AR} = \Delta \text{Investment} \times k = \text{Rs } 315,000 \times 0.10 = \mathbf{+\text{Rs } 31,500}
      (Note: If calculated on sales basis: ΔAR=1,200,000750,000=450,000\Delta AR = 1,200,000 - 750,000 = 450,000, Cost =450,000×0.10=Rs 45,000= 450,000 \times 0.10 = \text{Rs } 45,000).

    Step 4: Incremental Pre-Tax & After-Tax Profit

    ΔProfit Before Tax=ΔCMΔBad DebtsΔCarrying Cost\Delta \text{Profit Before Tax} = \Delta CM - \Delta \text{Bad Debts} - \Delta \text{Carrying Cost}
    ΔEBT=360,00060,00031,500=Rs 268,500\Delta EBT = 360,000 - 60,000 - 31,500 = \mathbf{\text{Rs } 268,500}
    ΔNet Profit After Tax=ΔEBT×(1T)=268,500×(10.30)=+Rs 187,950\Delta \text{Net Profit After Tax} = \Delta EBT \times (1 - T) = 268,500 \times (1 - 0.30) = \mathbf{+\text{Rs } 187,950}

    (On sales basis: ΔEAT=(360,00060,00045,000)×0.70=+Rs 178,500\Delta EAT = (360,000 - 60,000 - 45,000) \times 0.70 = \mathbf{+\text{Rs } 178,500}).


    3. Recommendation & Decision:

    BTC should change its credit terms from ‘net 40’ to ‘net 50’. Financial Justification: The additional contribution margin (Rs 360,000) substantially surpasses the combined incremental bad debt expenses (Rs 60,000) and opportunity carrying costs (Rs 31,500), generating a net positive after-tax benefit of Rs 187,950 annually.

  6. XYZ Company has 100,000 shares outstanding. The current market price of the company is Rs 300 per share. Par value of stock is Rs 100 per share. Assume no tax effect and no market signaling effect; calculate number of shares and market price per share. a. If XYZ declares a 10 percent stock dividend. b. If XYZ declares 2-for-1 stock split.

    [5]
    View model solution

    Comparative Analysis: Stock Dividend vs. Stock Split for XYZ Company

    1. Initial Position:

    • Existing shares outstanding (N0N_0) = 100,000100,000 shares
    • Current market price per share (P0P_0) = Rs 300
    • Par value per share = Rs 100
    • Total Initial Market Capitalization = 100,000×Rs 300=Rs 30,000,000100,000 \times \text{Rs } 300 = \mathbf{\text{Rs } 30,000,000}

    Part a: 10 Percent Stock Dividend

    1. New Number of Shares (N1N_1):
      N1=N0×(1+%SD)=100,000×(1+0.10)=110,000 sharesN_1 = N_0 \times (1 + \%SD) = 100,000 \times (1 + 0.10) = \mathbf{110,000 \text{ shares}}
      (New bonus shares issued = 10,00010,000 shares).
    2. New Market Price Per Share (P1P_1):
      P1=P01+%SD=Rs 3001.10=Rs 272.73 per shareP_1 = \frac{P_0}{1 + \%SD} = \frac{\text{Rs } 300}{1.10} = \mathbf{\text{Rs } 272.73 \text{ per share}}
      (Par value remains Rs 100 per share).
    3. Verification of Total Equity Value:
      V1=110,000×Rs 272.727=Rs 30,000,000(Total market value is conserved).V_1 = 110,000 \times \text{Rs } 272.727 = \text{Rs } 30,000,000 \quad \text{(Total market value is conserved)}.

    Part b: 2-for-1 Stock Split

    1. New Number of Shares (N2N_2):
      N2=N0×2=100,000×2=200,000 sharesN_2 = N_0 \times 2 = 100,000 \times 2 = \mathbf{200,000 \text{ shares}}
    2. New Market Price Per Share (P2P_2):
      P2=P02=Rs 3002=Rs 150.00 per shareP_2 = \frac{P_0}{2} = \frac{\text{Rs } 300}{2} = \mathbf{\text{Rs } 150.00 \text{ per share}}
    3. New Par Value Per Share:
      New Par Value=Old Par Value2=Rs 1002=Rs 50.00 per share\text{New Par Value} = \frac{\text{Old Par Value}}{2} = \frac{\text{Rs } 100}{2} = \mathbf{\text{Rs } 50.00 \text{ per share}}
    4. Verification of Total Equity Value:
      V2=200,000×Rs 150=Rs 30,000,000(Total market value is conserved).V_2 = 200,000 \times \text{Rs } 150 = \text{Rs } 30,000,000 \quad \text{(Total market value is conserved)}.

    Summary Table:

    Particulars Base Case After 10% Stock Dividend After 2-for-1 Stock Split
    Number of Shares 100,000 110,000 200,000
    Market Price per Share Rs 300.00 Rs 272.73 Rs 150.00
    Par Value per Share Rs 100.00 Rs 100.00 Rs 50.00
    Total Market Value Rs 30,000,000 Rs 30,000,000 Rs 30,000,000
  7. Suppose the exchange rate between US dollar and Indian Rupees (INR) is INR 83.22 per US dollar and the exchange rate between the Nepalese rupees (NPR) and Indian rupees (INR) is NPR 1.60 per INR. What is the cross exchange rate of NPR to US dollar? Also interpret the result.

    [5]
    View model solution

    Cross Exchange Rate Calculation and Financial Interpretation

    1. Given Currency Quotations:

    • Exchange rate between US Dollar and Indian Rupee:
      S(INR/USD)=INR 83.22 per USDS(\text{INR}/\text{USD}) = \text{INR } 83.22 \text{ per USD}
    • Exchange rate between Nepalese Rupee and Indian Rupee:
      S(NPR/INR)=NPR 1.60 per INRS(\text{NPR}/\text{INR}) = \text{NPR } 1.60 \text{ per INR}

    2. Mathematical Cross-Rate Formulation:

    Cross Rate S(NPR/USD)=S(NPR/INR)×S(INR/USD)\text{Cross Rate } S(\text{NPR}/\text{USD}) = S(\text{NPR}/\text{INR}) \times S(\text{INR}/\text{USD})

    3. Step-by-Step Calculation:

    S(NPR/USD)=1.60×83.22=NPR 133.152 per USDS(\text{NPR}/\text{USD}) = 1.60 \times 83.22 = \mathbf{\text{NPR } 133.152 \text{ per USD}}

    4. Financial Interpretation:

    1. Direct Rate: Exactly NPR 133.152 is required to purchase one US Dollar in the foreign exchange market.
    2. Institutional Pegging Mechanism in Nepal: The Nepalese Rupee is officially pegged to the Indian Rupee at a fixed parity of NPR 1.60 per INR (a fixed exchange rate regime maintained since 1993 by Nepal Rastra Bank). Consequently, the NPR does not float independently against the US Dollar; rather, the NPR/USD exchange rate fluctuates in exact lockstep with international movements between the US Dollar and the Indian Rupee.

Section C

Long Answer Question (Attempt any THREE Questions ) .

[3*10=30]
  1. What is multinational financial management? Differentiate between domestic financial management and multinational financial management.

    [10]
    View model solution

    Multinational Financial Management vs. Domestic Financial Management

    1. Meaning of Multinational Financial Management

    Multinational Financial Management (MNC/MNE Finance) involves the strategic planning, acquisition, allocation, and controlling of financial resources within multinational corporations operating across multiple sovereign national borders. It builds upon domestic financial principles but must navigate distinct political environments, multiple currencies, varied tax codes, and international capital markets.


    2. Key Differences Between Domestic and Multinational Financial Management

    Dimension Domestic Financial Management Multinational Financial Management
    1. Currency and Exchange Rate Risk Operates exclusively in a single home currency (e.g., NPR). Zero foreign exchange exposure. Operates in multiple currencies, exposed to transaction, translation (accounting), and economic/operating foreign exchange risk.
    2. Sovereign and Political Risk Sovereign risk is uniform; operations are bound by domestic laws and political stability. Exposed to severe host-government sovereign risks, including expropriation of assets, currency inconvertibility, and civil unrest.
    3. Legal and Regulatory Frameworks Operates under a single, unified legal system and domestic tax structure. Must comply with disparate legal jurisdictions, bilateral trade treaties, transfer pricing rules, and double tax avoidance agreements (DTAA).
    4. Cost of Capital & Financing Opportunities Constrained by the size, depth, and liquidity of the domestic financial system. Can access deep global capital markets (Eurocurrency markets, Yankee/Samurai bonds, GDRs) to lower the global WACC.
    5. Capital Budgeting Complexity Single-currency cash flows discounted at a uniform domestic hurdle rate. Must adjust for foreign withholding taxes, blocked funds, remittance restrictions, and parent vs. subsidiary cash flow valuation.
    6. Working Capital & Funds Transfer Funds move freely across domestic bank accounts without regulatory approval. Funds transfers across borders face central bank approvals, dividend repatriation ceilings, and custom tariffs.

    3. Relevance in the Nepalese Economy:

    Multinational firms operating in Nepal (e.g., Unilever Nepal, Standard Chartered Bank Nepal) face strict regulatory oversight by Nepal Rastra Bank regarding foreign currency repatriation under the Foreign Investment and Technology Transfer Act (FITTA), 2075.

  2. Consider the Balance Sheet of Hulas Metal Company (HMC) as on December 31,2023 given below:

    Assets Amounts (Rs) Liabilities & Equity Amount (Rs)
    Cash 50,000 Accounts payable 60,000
    Accounts receivable 70,000 Accruals 50,000
    Inventories 130,000 Notes payable 40,000
    Total current assets 250,000 Total current liabilities 150,000
    Net fixed assets 250,000 Common stock 200,000
    Retained earnings 150,000
    Total Assets 500,000 Total Liabilities & Equity 500,000

    Sales in 2023 were Rs 1,000,000 and which are expected to increase by 25 percent or to Rs 1,250,000 in 2024. All assets are utilized to full capacity. The profit margin of the HMC is 8 percent and the firm is expected to maintain a retention ratio of 40 percent. a. What is the additional fund needed (AFN) of the HMC? Use AFN equation to estimate additional fund needed. b. Prepare projected balance sheet of HMC for the year 2024 and verify the amount of AFN as calculated in part 'a.

    [10]
    View model solution

    Comprehensive Financial Forecasting and AFN Analysis — Hulas Metal Company (HMC)

    1. Given Financial Data (2023 Baseline):

    • Baseline Sales (S0S_0) = Rs 1,000,000
    • Projected Sales Growth (gg) = 25%=0.2525\% = 0.25
    • Projected 2024 Sales (S1S_1) = Rs 1,000,000×1.25=Rs 1,250,000\text{Rs } 1,000,000 \times 1.25 = \mathbf{\text{Rs } 1,250,000}
    • Sales Increase (ΔS\Delta S) = Rs 250,000\text{Rs } 250,000
    • Profit Margin on Sales (MM) = 8%=0.088\% = 0.08
    • Retention Ratio (RRRR) = 40%=0.4040\% = 0.40
    • All assets are operated at full capacity     \implies Spontaneous Assets (AA^*) = Total Assets = Rs 500,000
    • Spontaneous Liabilities (LL^*): Accounts payable (Rs 60,000) + Accruals (Rs 50,000) = Rs 110,000 (Notes payable is a negotiated financing source and does not increase spontaneously).

    Part a: Estimation of Additional Funds Needed (AFN) Using AFN Formula

    AFN=(AS0)ΔS(LS0)ΔSMS1RRAFN = \left(\frac{A^*}{S_0}\right)\Delta S - \left(\frac{L^*}{S_0}\right)\Delta S - M \cdot S_1 \cdot RR
    1. Required Increase in Assets:
      (AS0)ΔS=(Rs 500,000Rs 1,000,000)×Rs 250,000=0.50×250,000=Rs 125,000\left(\frac{A^*}{S_0}\right)\Delta S = \left(\frac{\text{Rs } 500,000}{\text{Rs } 1,000,000}\right) \times \text{Rs } 250,000 = 0.50 \times 250,000 = \mathbf{\text{Rs } 125,000}
    2. Spontaneous Increase in Current Liabilities:
      (LS0)ΔS=(Rs 110,000Rs 1,000,000)×Rs 250,000=0.11×250,000=Rs 27,500\left(\frac{L^*}{S_0}\right)\Delta S = \left(\frac{\text{Rs } 110,000}{\text{Rs } 1,000,000}\right) \times \text{Rs } 250,000 = 0.11 \times 250,000 = \mathbf{\text{Rs } 27,500}
    3. Internal Addition to Retained Earnings:
      ΔRE=M×S1×RR=0.08×Rs 1,250,000×0.40=Rs 100,000×0.40=Rs 40,000\Delta RE = M \times S_1 \times RR = 0.08 \times \text{Rs } 1,250,000 \times 0.40 = \text{Rs } 100,000 \times 0.40 = \mathbf{\text{Rs } 40,000}
    4. Calculated AFN:
      AFN=Rs 125,000Rs 27,500Rs 40,000=Rs 57,500AFN = \text{Rs } 125,000 - \text{Rs } 27,500 - \text{Rs } 40,000 = \mathbf{\text{Rs } 57,500}

    Part b: Projected Balance Sheet Method (Verification)

    Assets and spontaneous liabilities expand by 25%25\% in tandem with sales:

    Projected Assets (2024):

    • Cash: Rs 50,000×1.25=Rs 62,500\text{Rs } 50,000 \times 1.25 = \text{Rs } 62,500
    • Accounts Receivable: Rs 70,000×1.25=Rs 87,500\text{Rs } 70,000 \times 1.25 = \text{Rs } 87,500
    • Inventories: Rs 130,000×1.25=Rs 162,500\text{Rs } 130,000 \times 1.25 = \text{Rs } 162,500
    • Total Current Assets: Rs 312,500\mathbf{\text{Rs } 312,500}
    • Net Fixed Assets: Rs 250,000×1.25=Rs 312,500\text{Rs } 250,000 \times 1.25 = \mathbf{\text{Rs } 312,500}
    • Total Projected Assets: Rs 625,000\mathbf{\text{Rs } 625,000}

    Projected Liabilities & Equity (2024 Before AFN):

    • Accounts Payable: Rs 60,000×1.25=Rs 75,000\text{Rs } 60,000 \times 1.25 = \text{Rs } 75,000
    • Accruals: Rs 50,000×1.25=Rs 62,500\text{Rs } 50,000 \times 1.25 = \text{Rs } 62,500
    • Notes Payable (remains constant): Rs 40,000\text{Rs } 40,000
    • Total Current Liabilities: Rs 177,500\mathbf{\text{Rs } 177,500}
    • Common Stock (remains constant): Rs 200,000\mathbf{\text{Rs } 200,000}
    • Retained Earnings: Rs 150,000+Rs 40,000(ΔRE)=Rs 190,000\text{Rs } 150,000 + \text{Rs } 40,000 (\Delta RE) = \mathbf{\text{Rs } 190,000}
    • Total Liabilities & Equity Before External Financing:
      177,500+200,000+190,000=Rs 567,500177,500 + 200,000 + 190,000 = \mathbf{\text{Rs } 567,500}

    Verification of AFN:

    AFN=Total Projected AssetsTotal Liabilities & Equity Before AFNAFN = \text{Total Projected Assets} - \text{Total Liabilities \& Equity Before AFN}
    AFN=Rs 625,000Rs 567,500=Rs 57,500AFN = \text{Rs } 625,000 - \text{Rs } 567,500 = \mathbf{\text{Rs } 57,500}

    Pro-Forma Balance Sheet as on December 31, 2024:

    Assets 2023 (Rs) 2024 Proj. (Rs) Liabilities & Equity 2023 (Rs) 2024 Proj. (Rs)
    Cash 50,000 62,500 Accounts Payable 60,000 75,000
    Accounts Receivable 70,000 87,500 Accruals 50,000 62,500
    Inventories 130,000 162,500 Notes Payable 40,000 40,000
    Total Current Assets 250,000 312,500 Total Current Liab. 150,000 177,500
    Net Fixed Assets 250,000 312,500 Common Stock 200,000 200,000
    Retained Earnings 150,000 190,000
    AFN (External Fund) 57,500
    Total Assets 500,000 625,000 Total Liab. & Equity 500,000 625,000
  3. Consider the following probability distribution and returns of stock X and stock Y:

    Economic conditions Probability Return of stock X (%) Return of stock Y (%)
    First 0.30 10 30
    Second 0.40 15 20
    Third 0.30 20 10

    a. Calculate expected return of stock X and stock Y. b. Estimate standard deviations of stock X and stock Y. c. Compute the covariance and correlation between returns of stock X and stock Y. d. If you form a portfolio with investment of your 50 percent funds in stock X and rest in stock Y, calculate the expected return and risk of your portfolio.

    [10]
    View model solution

    Rigorous Statistical and Portfolio Analysis for Stock X and Stock Y

    1. Given Probability Distribution:

    Economic Condition (ii) Probability (PiP_i) Return of X (RXiR_{Xi} %) Return of Y (RYiR_{Yi} %)
    First 0.30 10 30
    Second 0.40 15 20
    Third 0.30 20 10

    Part a: Expected Rate of Return

    E(R)=i=1nPiRiE(R) = \sum_{i=1}^{n} P_i \cdot R_i
    • For Stock X:
      E(RX)=(0.30×10)+(0.40×15)+(0.30×20)=3.0+6.0+6.0=15.0%E(R_X) = (0.30 \times 10) + (0.40 \times 15) + (0.30 \times 20) = 3.0 + 6.0 + 6.0 = \mathbf{15.0\%}
    • For Stock Y:
      E(RY)=(0.30×30)+(0.40×20)+(0.30×10)=9.0+8.0+3.0=20.0%E(R_Y) = (0.30 \times 30) + (0.40 \times 20) + (0.30 \times 10) = 9.0 + 8.0 + 3.0 = \mathbf{20.0\%}

    Part b: Standard Deviation of Returns

    σ2=i=1nPi[RiE(R)]2,σ=σ2\sigma^2 = \sum_{i=1}^{n} P_i \cdot [R_i - E(R)]^2, \quad \sigma = \sqrt{\sigma^2}
    • For Stock X:

      σX2=0.30(1015)2+0.40(1515)2+0.30(2015)2\sigma_X^2 = 0.30(10 - 15)^2 + 0.40(15 - 15)^2 + 0.30(20 - 15)^2
      σX2=0.30(25)+0.40(0)+0.30(25)=7.5+0+7.5=15.0%2\sigma_X^2 = 0.30(25) + 0.40(0) + 0.30(25) = 7.5 + 0 + 7.5 = 15.0\%^2
      σX=15.0=3.87298%3.87%\sigma_X = \sqrt{15.0} = \mathbf{3.87298\%} \approx \mathbf{3.87\%}

    • For Stock Y:

      σY2=0.30(3020)2+0.40(2020)2+0.30(1020)2\sigma_Y^2 = 0.30(30 - 20)^2 + 0.40(20 - 20)^2 + 0.30(10 - 20)^2
      σY2=0.30(100)+0.40(0)+0.30(100)=30.0+0+30.0=60.0%2\sigma_Y^2 = 0.30(100) + 0.40(0) + 0.30(100) = 30.0 + 0 + 30.0 = 60.0\%^2
      σY=60.0=7.74597%7.75%\sigma_Y = \sqrt{60.0} = \mathbf{7.74597\%} \approx \mathbf{7.75\%}


    Part c: Covariance and Correlation Coefficient

    Cov(X,Y)=i=1nPi[RXiE(RX)][RYiE(RY)]\text{Cov}(X, Y) = \sum_{i=1}^{n} P_i \cdot [R_{Xi} - E(R_X)] \cdot [R_{Yi} - E(R_Y)]
    1. Condition 1: 0.30×(1015)×(3020)=0.30×(5)×(+10)=15.00.30 \times (10 - 15) \times (30 - 20) = 0.30 \times (-5) \times (+10) = -15.0
    2. Condition 2: 0.40×(1515)×(2020)=0.40×(0)×(0)=0.00.40 \times (15 - 15) \times (20 - 20) = 0.40 \times (0) \times (0) = 0.0
    3. Condition 3: 0.30×(2015)×(1020)=0.30×(+5)×(10)=15.00.30 \times (20 - 15) \times (10 - 20) = 0.30 \times (+5) \times (-10) = -15.0Cov(X,Y)=15.0+0.015.0=30.0%2(or 0.0030)\text{Cov}(X, Y) = -15.0 + 0.0 - 15.0 = \mathbf{-30.0\%^2} \quad (\text{or } -0.0030)$
    • Correlation Coefficient (rXYr_{XY}):
      rXY=Cov(X,Y)σXσY=30.015×60=30.0900=30.030.0=1.0r_{XY} = \frac{\text{Cov}(X, Y)}{\sigma_X \cdot \sigma_Y} = \frac{-30.0}{\sqrt{15} \times \sqrt{60}} = \frac{-30.0}{\sqrt{900}} = \frac{-30.0}{30.0} = \mathbf{-1.0}
      (Stock X and Stock Y exhibit perfect negative correlation).

    Part d: Portfolio Expected Return and Risk (50% in X, 50% in Y)

    Given weights: wX=0.50w_X = 0.50, wY=0.50w_Y = 0.50.

    1. Portfolio Expected Return (E(Rp)E(R_p)):

      E(Rp)=wXE(RX)+wYE(RY)=0.50(15%)+0.50(20%)=7.5%+10.0%=17.5%E(R_p) = w_X E(R_X) + w_Y E(R_Y) = 0.50(15\%) + 0.50(20\%) = 7.5\% + 10.0\% = \mathbf{17.5\%}

    2. Portfolio Variance (σp2\sigma_p^2):

      σp2=wX2σX2+wY2σY2+2wXwYCov(X,Y)\sigma_p^2 = w_X^2 \sigma_X^2 + w_Y^2 \sigma_Y^2 + 2 w_X w_Y \text{Cov}(X, Y)
      σp2=(0.50)2(15)+(0.50)2(60)+2(0.50)(0.50)(30)\sigma_p^2 = (0.50)^2 (15) + (0.50)^2 (60) + 2(0.50)(0.50)(-30)
      σp2=0.25(15)+0.25(60)+0.50(30)=3.75+15.0015.00=3.75%2\sigma_p^2 = 0.25(15) + 0.25(60) + 0.50(-30) = 3.75 + 15.00 - 15.00 = \mathbf{3.75\%^2}

    3. Portfolio Standard Deviation (σp\sigma_p):

      σp=3.75=1.9365%1.94%\sigma_p = \sqrt{3.75} = \mathbf{1.9365\%} \approx \mathbf{1.94\%}


    Key Financial Interpretation:

    Because the correlation is perfectly negative (r=1.0r = -1.0), diversification reduces total portfolio risk to 1.94%1.94\%, which is substantially lower than Stock X alone (3.87%3.87\%) and Stock Y alone (7.75%7.75\%), while generating an attractive expected return of 17.5%17.5\%.

  4. Consider the following income statement of Delta Manufacturing Company (DMC): Income Statement of DMC as on December 31, 2023

    Particulars Amount Rs
    Sales (10,000 units @ Rs 40 per unit) 400,000
    Less: Variable costs (10,000 units @ Rs 20 per unit) 200,000
    Contribution margin 200,000
    Less: Fixed costs 100,000
    Earnings before interest & Tax (EBIT) 100,000
    Less: Interest 20,000
    Earning before tax (EBT) 80,000
    Less: Tax @ 30 percent 24,000
    Earnings after tax or net income 56,000

    At present, DMC has total number of 10,000 shares outstanding. a. What is the earning per share of DMC? b. Calculate operating the break-even point for DMC. c. Calculate the degree of operating leverage, degree of financial leverage and the degree of combined (total) leverage. d. What would be percentage increase in net profit if DMC increases sales by 20 percent?

    [10]
    View model solution

    Comprehensive Leverage and Break-Even Analysis — Delta Manufacturing Company (DMC)

    1. Given Baseline Income Statement Data:

    • Sales Volume (QQ) = 10,00010,000 units
    • Selling Price per unit (PP) = Rs 40; Total Sales (SS) = Rs 400,000
    • Variable Cost per unit (VV) = Rs 20; Total Variable Cost (VCVC) = Rs 200,000
    • Unit Contribution Margin (PVP - V) = Rs 20; Total Contribution Margin (CMCM) = Rs 200,000
    • Fixed Operating Costs (FCFC) = Rs 100,000
    • Operating Income (EBITEBIT) = 200,000100,000=Rs 100,000200,000 - 100,000 = \text{Rs } 100,000
    • Interest Expense (II) = Rs 20,000
    • Earnings Before Tax (EBTEBT) = 100,00020,000=Rs 80,000100,000 - 20,000 = \text{Rs } 80,000
    • Tax Expense (T=30%T = 30\%) = Rs 24,000
    • Net Income (NINI) = Rs 56,000
    • Number of Common Shares Outstanding (NN) = 10,00010,000 shares

    Part a: Earnings Per Share (EPS)

    EPS=Net IncomeN=Rs 56,00010,000 shares=Rs 5.60 per shareEPS = \frac{\text{Net Income}}{N} = \frac{\text{Rs } 56,000}{10,000 \text{ shares}} = \mathbf{\text{Rs } 5.60 \text{ per share}}

    Part b: Operating Break-Even Point

    1. Break-Even Quantity in Units (QBEPQ_{BEP}):
      QBEP=FCPV=Rs 100,000Rs 40Rs 20=100,00020=5,000 unitsQ_{BEP} = \frac{FC}{P - V} = \frac{\text{Rs } 100,000}{\text{Rs } 40 - \text{Rs } 20} = \frac{100,000}{20} = \mathbf{5,000 \text{ units}}
    2. Break-Even Revenue in Rupees (SBEPS_{BEP}):
      SBEP=QBEP×P=5,000×Rs 40=Rs 200,000S_{BEP} = Q_{BEP} \times P = 5,000 \times \text{Rs } 40 = \mathbf{\text{Rs } 200,000}

    Part c: Degree of Operating, Financial, and Combined Leverage

    1. Degree of Operating Leverage (DOL at 10,000 units):
      DOL=Contribution MarginEBIT=Rs 200,000Rs 100,000=2.00DOL = \frac{\text{Contribution Margin}}{EBIT} = \frac{\text{Rs } 200,000}{\text{Rs } 100,000} = \mathbf{2.00}
    2. Degree of Financial Leverage (DFL at EBIT of Rs 100,000):
      DFL=EBITEBT=Rs 100,000Rs 80,000=1.25DFL = \frac{EBIT}{EBT} = \frac{\text{Rs } 100,000}{\text{Rs } 80,000} = \mathbf{1.25}
    3. Degree of Combined Leverage (DCL / DTL):
      DCL=DOL×DFL=2.00×1.25=2.50DCL = DOL \times DFL = 2.00 \times 1.25 = \mathbf{2.50}
      (Alternatively: DCL=CMEBT=200,00080,000=2.50DCL = \frac{CM}{EBT} = \frac{200,000}{80,000} = 2.50).

    Part d: Percentage Increase in Net Profit for a 20% Increase in Sales

    %ΔNI=DCL×%ΔSales\% \Delta NI = DCL \times \% \Delta \text{Sales}
    %ΔNI=2.50×20%=50.0%\% \Delta NI = 2.50 \times 20\% = \mathbf{50.0\%}

    Rigorous Verification:

    • New Sales (+20%+20\%) = 12,000 units×Rs 40=Rs 480,00012,000 \text{ units} \times \text{Rs } 40 = \text{Rs } 480,000
    • Less: Variable Costs (12,000×Rs 2012,000 \times \text{Rs } 20) = Rs 240,000\text{Rs } 240,000
    • New Contribution Margin = Rs 240,000\text{Rs } 240,000
    • Less: Fixed Costs = Rs 100,000\text{Rs } 100,000
    • New EBIT = Rs 140,000\text{Rs } 140,000 (+40%+40\%, matching DOL×20%DOL \times 20\%)
    • Less: Interest = Rs 20,000\text{Rs } 20,000
    • New EBT = Rs 120,000\text{Rs } 120,000
    • Less: Tax (30%30\%) = Rs 36,000\text{Rs } 36,000
    • New Net Income (NI1NI_1) = Rs 84,000\text{Rs } 84,000%ΔNI=Rs 84,000Rs 56,000Rs 56,000=28,00056,000=50.0%\% \Delta NI = \frac{\text{Rs } 84,000 - \text{Rs } 56,000}{\text{Rs } 56,000} = \frac{28,000}{56,000} = \mathbf{50.0\%}$

Section D

Comprehensive /Case / Situation Analysis Questions :

[20]
  1. Suppose you are BBA graduates from Tribhuvan University with finance specialization and have been appointed as financial manager of Gandaki Hydropower Company (GTC). As financial manager, you should make various financial decisions such as investment, financing, working capital and dividend decisions. At present, Chief Financial Officer of GTC has asked you to analyze two proposed projects: Project X and Project Y to make appropriate capital investment decision. The projected initial investment and expected net cash flows of projects are as follows:

    Year Cash Flows of Project X (Rs) Cash Flows of Project Y (Rs)
    0 (500,000) (500,000)
    1 200,000 300,000
    2 200,000 200,000
    3 200,000 200,000
    4 200,000 100,000

    Cost of capital of each project is 10 percent. You are asked to answer the following questions: a. What is payback period? Calculate payback period of each project. b. Calculate net present value of each project. c. Which project/projects should be accepted if they are independent projects? d. Which project should be chosen if they are mutually exclusive projects? Why? e. Calculate internal rate of return of each project.

    [20]
    View model solution

    Comprehensive Capital Budgeting Case Analysis — Gandaki Hydropower Company (GTC)

    1. Case Background & Projected Cash Flows:

    • Initial Capital Investment (I0I_0):
      Project X=Rs 500,000,Project Y=Rs 500,000\text{Project X} = -\text{Rs } 500,000, \quad \text{Project Y} = -\text{Rs } 500,000
    • Cost of Capital (kk) = 10%=0.1010\% = 0.10
    • Projected Net Cash Inflows (CFtCF_t):
      Year (tt) Project X (Rs) Project Y (Rs)
      1 200,000 300,000
      2 200,000 200,000
      3 200,000 200,000
      4 200,000 100,000

    Part a: Payback Period (PBP)

    • Concept: The payback period is the exact number of years required for an enterprise to recoup its original capital outlay from cumulative undiscounted net cash inflows.
    • Calculation for Project X (Equal Annual Inflows):
      PBPX=Initial OutlayAnnual Cash Inflow=Rs 500,000Rs 200,000=2.50 yearsPBP_X = \frac{\text{Initial Outlay}}{\text{Annual Cash Inflow}} = \frac{\text{Rs } 500,000}{\text{Rs } 200,000} = \mathbf{2.50 \text{ years}}
    • Calculation for Project Y (Unequal Cash Inflows):
      • Year 1: Cumulative Cash Flow = Rs 300,000
      • Year 2: Cumulative Cash Flow = 300,000+200,000=Rs 500,000300,000 + 200,000 = \text{Rs } 500,000 (Exactly reaches initial cost).
        PBPY=2.00 yearsPBP_Y = \mathbf{2.00 \text{ years}}

    Part b: Net Present Value (NPV at k = 10%)

    NPV=t=1nCFt(1+k)tI0NPV = \sum_{t=1}^{n} \frac{CF_t}{(1 + k)^t} - I_0
    • Present Value Factors at 10%10\%: PVIF10%,1=0.90909PVIF_{10\%, 1} = 0.90909, PVIF10%,2=0.82645PVIF_{10\%, 2} = 0.82645, PVIF10%,3=0.75131PVIF_{10\%, 3} = 0.75131, PVIF10%,4=0.68301PVIF_{10\%, 4} = 0.68301, PVIFA10%,4=3.16987PVIFA_{10\%, 4} = 3.16987.
    1. Project X (4-year annuity of Rs 200,000):

      PVX=Rs 200,000×PVIFA10%,4=200,000×3.169865=Rs 633,973PV_X = \text{Rs } 200,000 \times PVIFA_{10\%, 4} = 200,000 \times 3.169865 = \text{Rs } 633,973
      NPVX=Rs 633,973Rs 500,000=+Rs 133,973NPV_X = \text{Rs } 633,973 - \text{Rs } 500,000 = \mathbf{+\text{Rs } 133,973}

    2. Project Y (Year-by-year discounting):

      • Year 1: Rs 300,000×0.909091=Rs 272,727\text{Rs } 300,000 \times 0.909091 = \text{Rs } 272,727
      • Year 2: Rs 200,000×0.826446=Rs 165,289\text{Rs } 200,000 \times 0.826446 = \text{Rs } 165,289
      • Year 3: Rs 200,000×0.751315=Rs 150,263\text{Rs } 200,000 \times 0.751315 = \text{Rs } 150,263
      • Year 4: Rs 100,000×0.683013=Rs 68,301\text{Rs } 100,000 \times 0.683013 = \text{Rs } 68,301
      • Total Present Value (PVYPV_Y): 272,727+165,289+150,263+68,301=Rs 656,580272,727 + 165,289 + 150,263 + 68,301 = \text{Rs } 656,580NPVY=Rs 656,580Rs 500,000=+Rs 156,580NPV_Y = \text{Rs } 656,580 - \text{Rs } 500,000 = \mathbf{+\text{Rs } 156,580}$

    Part c: Decision Under Independent Projects

    • Decision Criterion: Accept all projects that add value (NPV>0NPV > 0 or IRR>kIRR > k).
    • Conclusion: Since NPVX=+Rs 133,973>0NPV_X = +\text{Rs } 133,973 > 0 and NPVY=+Rs 156,580>0NPV_Y = +\text{Rs } 156,580 > 0, both Project X and Project Y should be accepted (provided GTC has sufficient capital budget of Rs 1,000,000).

    Part d: Decision Under Mutually Exclusive Projects

    • Decision Criterion: Select the single project that maximizes absolute shareholder wealth (the highest positive NPV).
    • Comparison:
      NPVY(Rs 156,580)>NPVX(Rs 133,973)NPV_Y (\text{Rs } 156,580) > NPV_X (\text{Rs } 133,973)
    • Recommendation: Project Y must be chosen.
    • Managerial Justification:
      1. Project Y delivers an extra Rs 22,607 in net shareholder wealth compared to Project X.
      2. Project Y recovers initial capital faster (2.02.0 years vs 2.52.5 years), front-loading cash generation in Year 1 (Rs 300,000) and minimizing project liquidity risk.

    Part e: Internal Rate of Return (IRR)

    1. Project X:

    PVIFAIRR,4=I0CF=500,000200,000=2.5000PVIFA_{IRR, 4} = \frac{I_0}{CF} = \frac{500,000}{200,000} = 2.5000
    • At 21%21\%: PVIFA21%,4=2.5404PVIFA_{21\%, 4} = 2.5404
    • At 22%22\%: PVIFA22%,4=2.4937PVIFA_{22\%, 4} = 2.4937
    • Interpolation:
      IRRX=21%+(2.54042.50002.54042.4937)×(22%21%)=21%+(0.04040.0467)×1%=21.86%IRR_X = 21\% + \left(\frac{2.5404 - 2.5000}{2.5404 - 2.4937}\right) \times (22\% - 21\%) = 21\% + \left(\frac{0.0404}{0.0467}\right) \times 1\% = \mathbf{21.86\%}

    2. Project Y:

    • At k=25%k = 25\%:
      PV=300,0001.25+200,0001.252+200,0001.253+100,0001.254PV = \frac{300,000}{1.25} + \frac{200,000}{1.25^2} + \frac{200,000}{1.25^3} + \frac{100,000}{1.25^4}
      PV=240,000+128,000+102,400+40,960=Rs 511,360    NPV=+Rs 11,360PV = 240,000 + 128,000 + 102,400 + 40,960 = \text{Rs } 511,360 \implies NPV = +\text{Rs } 11,360
    • At k=27%k = 27\%:
      PV=300,0001.27+200,0001.272+200,0001.273+100,0001.274PV = \frac{300,000}{1.27} + \frac{200,000}{1.27^2} + \frac{200,000}{1.27^3} + \frac{100,000}{1.27^4}
      PV=236,220+124,000+97,640+38,440=Rs 496,300    NPV=Rs 3,700PV = 236,220 + 124,000 + 97,640 + 38,440 = \text{Rs } 496,300 \implies NPV = -\text{Rs } 3,700
    • Interpolation:
      IRRY=25%+(11,36011,360(3,700))×(27%25%)=25%+(11,36015,060)×2%=25%+1.51%=26.51%IRR_Y = 25\% + \left(\frac{11,360}{11,360 - (-3,700)}\right) \times (27\% - 25\%) = 25\% + \left(\frac{11,360}{15,060}\right) \times 2\% = 25\% + 1.51\% = \mathbf{26.51\%}

    Consolidated Master Comparison Table:

    Evaluation Technique Project X Project Y Best Choice (Mutually Exclusive)
    Initial Outlay Rs 500,000 Rs 500,000 Equal
    Payback Period (PBP) 2.50 Years 2.00 Years Project Y
    Net Present Value (NPV @ 10%) Rs 133,973 Rs 156,580 Project Y (+Rs 22,607)
    Internal Rate of Return (IRR) 21.86% 26.51% Project Y (+4.65%)