CBSE Class 12 Economics Chapter 6: Cost NCERT Solutions
CBSE Class 12 Economics Chapter 6, 'Cost,' introduces students to the fundamental concepts of production costs. This chapter explores the relationships between Total Fixed Cost (TFC), Total Variable Cost (TVC), and Total Cost (TC), explaining how they behave and are represented graphically. It also details the characteristics of Average Fixed Cost (AFC), Average Variable Cost (AVC), and Average Cost (AC), and their interconnectedness. A key focus is on the Short-Run Marginal Cost (SMC) and its crucial link with AVC and AC, explaining the U-shaped nature of these curves due to the law of variable proportions. The chapter also clarifies why fixed costs are absent in the long run. Understanding these cost principles is vital for comprehending production decisions and market dynamics, making these solutions an excellent resource for exam preparation.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 12 |
| Subject | Economics. |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | 6. Cost |
Chapter summary
Chapter 6 of the CBSE Class 12 Economics syllabus, focusing on 'Cost', provides solutions to textbook questions. It covers the definition and relationship between total costs (fixed, variable, total), average costs (AFC, AVC, AC), and marginal cost (SMC). The solutions explain the graphical shapes and behavior of these cost curves, particularly their U-shape and downward slopes, linking them to the law of variable proportions and the distinction between short-run and long-run costs.
Learning outcomes
- Understand the functional relationship between output and cost.
- Differentiate between total fixed cost, total variable cost, and total cost.
- Explain the concepts of average fixed cost, average variable cost, and average cost.
- Analyze the relationship between different cost components (TC, TFC, TVC; AC, AFC, AVC).
- Describe the shapes and behavior of short-run cost curves (AFC, AVC, AC, SMC).
- Explain the reason for the U-shape of SMC, AVC, and AC curves.
- Understand the concept of fixed costs in the short run versus the long run.
Topics covered
Paper topics
- Cost Function
- Total Fixed Cost (TFC)
- Total Variable Cost (TVC)
- Total Cost (TC)
- Average Fixed Cost (AFC)
- Average Variable Cost (AVC)
- Average Cost (AC)
- Short-Run Marginal Cost (SMC)
- Relationship between costs
- Shapes of cost curves
- Law of Variable Proportions
- Short-run vs. Long-run costs
Important topics
- Total Cost, Fixed Cost, Variable Cost and their relationships
- Average Cost, Average Fixed Cost, Average Variable Cost and their relationships
- Marginal Cost
- Shapes and behavior of short-run cost curves (AFC, AVC, AC, SMC)
- Intersection points of cost curves (SMC with AVC and AC)
- Absence of fixed costs in the long run
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Questions and Solutions
Question 1
Question 2
The costs incurred by a firm can be broadly classified into Total Fixed Cost (TFC) and Total Variable Cost (TVC). Their sum constitutes the Total Cost (TC).
- Total Fixed Cost (TFC): These are costs that do not change with the level of output in the short run. They are incurred even when production is zero. Examples include rent of the factory, salaries of permanent staff, etc. The TFC curve is a horizontal line parallel to the x-axis, indicating that it remains constant regardless of the output level.
- Total Variable Cost (TVC): These costs vary directly with the level of output. They are zero when production is zero and increase as more output is produced. Examples include costs of raw materials, wages of daily laborers, etc. The TVC curve typically starts from the origin and is inverse S-shaped due to the law of variable proportions.
- Total Cost (TC): This is the sum of Total Fixed Cost and Total Variable Cost. It represents the total expenditure incurred by the firm for producing a certain level of output. The relationship is expressed as: The TC curve starts from the level of TFC (when output is zero) and is also inverse S-shaped, reflecting the behavior of TVC.
Diagrammatic Representation:
In a single diagram, the TFC curve is a horizontal line. The TVC curve starts from the origin and rises. The TC curve starts from the TFC level on the vertical axis and rises parallel to the TVC curve after a certain output level. The vertical distance between the TC and TVC curves at any output level represents the TFC.
Note: The provided source did not contain an actual diagram, so a placeholder description is used.
Question 3
These are per-unit cost measures derived from total costs:
- Average Fixed Cost (AFC): This is the fixed cost per unit of output. It is calculated by dividing the Total Fixed Cost (TFC) by the quantity of output (Q). As output increases, AFC continuously falls because the constant TFC is spread over a larger quantity.
- Average Variable Cost (AVC): This is the variable cost per unit of output. It is calculated by dividing the Total Variable Cost (TVC) by the quantity of output (Q). AVC initially decreases due to increasing returns to variable factors but eventually starts increasing due to diminishing returns. Thus, the AVC curve is U-shaped.
- Average Cost (AC): This is the total cost per unit of output. It is calculated by dividing the Total Cost (TC) by the quantity of output (Q). Like AVC, the AC curve is also U-shaped because it is influenced by both falling AFC and eventually rising AVC.
Relationship between AC, AFC, and AVC:
The Average Cost (AC) is the sum of Average Fixed Cost (AFC) and Average Variable Cost (AVC). This relationship can be expressed as:
This means that the AC curve lies above the AVC curve, and the vertical distance between them is equal to the AFC, which decreases as output rises.
Question 4
Question 5
The Average Fixed Cost (AFC) curve has the shape of a downward-sloping rectangular hyperbola.
Reason for its shape:
AFC is calculated by dividing the Total Fixed Cost (TFC) by the quantity of output (Q): . In the short run, TFC remains constant regardless of the output level. As the firm increases its output (Q), this constant TFC is spread over an increasingly larger number of units. Consequently, the AFC per unit falls continuously. The curve approaches the x-axis but never touches it, as output cannot be infinite, and AFC cannot be zero (since TFC is positive). This characteristic shape is known as a rectangular hyperbola because the area under the curve at any point (representing TFC) remains constant.
Question 6
Question 7
- When AVC is falling: If the cost of producing one additional unit (SMC) is less than the current average variable cost (AVC), then producing that additional unit will pull the average down. Therefore, when AVC is falling, SMC < AVC.
- When AVC is rising: If the cost of producing one additional unit (SMC) is greater than the current average variable cost (AVC), then producing that additional unit will pull the average up. Therefore, when AVC is rising, SMC > AVC.
- At the minimum point of AVC: For the AVC to stop falling and start rising, there must be a point where it is neither falling nor rising. At this specific minimum point, the cost of the additional unit (SMC) must be exactly equal to the average variable cost (AVC).
Question 8
Reason: The relationship between marginal and average concepts dictates this intersection:
- When SAC is falling: If the cost of producing an additional unit (SMC) is less than the current average cost (SAC), then producing this extra unit will reduce the average cost. Hence, when SAC is falling, SMC < SAC.
- When SAC is rising: If the cost of producing an additional unit (SMC) is greater than the current average cost (SAC), then producing this extra unit will increase the average cost. Hence, when SAC is rising, SMC > SAC.
- At the minimum point of SAC: For the SAC to reach its lowest point before starting to rise, the cost of the marginal unit produced must be exactly equal to the average cost at that output level. Therefore, at the minimum point of SAC, SMC = SAC.
Question 9
Here's how this impacts SMC:
- Increasing Returns Phase: Initially, as variable inputs are added, productivity is high. Each additional unit of input contributes significantly to output, and the cost of producing an extra unit (marginal cost) tends to fall.
- Diminishing Returns Phase: As more variable inputs are added to the fixed factor, the efficiency of the variable inputs starts to decline (diseconomies of variable proportions set in). Producing each additional unit of output requires more and more of the variable input, thus increasing the marginal cost.
- Negative Returns Phase (possible): If excessive variable inputs are added, total product may even fall, leading to a sharp increase in marginal cost.
Therefore, the SMC curve first falls, reaches a minimum, and then rises, forming the characteristic U-shape.
Common mistakes
- Confusing short-run and long-run cost concepts.
- Incorrectly drawing or interpreting the shapes of cost curves.
- Not understanding the underlying reasons (law of variable proportions) for curve shapes.
- Errors in calculating or relating different cost measures (e.g., AC = AFC + AVC).
Revision tips
- Focus on understanding the definitions of each cost concept.
- Pay close attention to the graphical representation and behavior of each cost curve.
- Memorize and understand the key relationships: TC = TFC + TVC and AC = AFC + AVC.
- Grasp the implications of the law of variable proportions on short-run costs.
- Practice drawing the cost curves and explaining their shapes and intersections.
Practice MCQs
Q1. What does the cost function represent?
Explanation: The cost function, denoted as C = f(X), mathematically expresses the relationship between the quantity of output (X) and the minimum cost (C) required to produce that output.
Q2. Which cost remains constant irrespective of the level of output in the short run?
Explanation: Total Fixed Cost (TFC) represents costs incurred on fixed factors, which do not change with the level of output in the short run. It is also known as overhead cost.
Q3. The Average Fixed Cost (AFC) curve typically looks like:
Explanation: As output increases, the constant Total Fixed Cost is spread over a larger quantity, causing the Average Fixed Cost to continuously decrease, forming a downward-sloping rectangular hyperbola.
Q4. Why are Short-Run Marginal Cost (SMC), Average Variable Cost (AVC), and Average Cost (AC) curves U-shaped?
Explanation: The U-shape of these curves in the short run is primarily attributed to the law of variable proportions, which involves initial increasing returns, followed by diminishing returns to variable factors.
Q5. In the long run, what is the status of fixed costs?
Explanation: In the long run, a firm can adjust all its factors of production, meaning all costs become variable. Therefore, there are no fixed costs in the long run.
Q6. The SMC curve intersects the AVC curve at:
Explanation: The SMC curve intersects the AVC curve at its minimum point because when AVC is falling, SMC is below AVC, and when AVC is rising, SMC is above AVC. They are equal only at the minimum point of AVC.
Frequently asked questions
What is a cost function in economics?
A cost function represents the relationship between the quantity of output produced by a firm and the minimum cost incurred to produce that output. It is typically expressed as C = f(X), where C is cost and X is output.
What are the main components of Total Cost (TC)?
Total Cost (TC) is composed of Total Fixed Cost (TFC) and Total Variable Cost (TVC). The relationship is given by TC = TFC + TVC.
How do Average Fixed Cost (AFC) and Average Variable Cost (AVC) relate to Average Cost (AC)?
Average Cost (AC) is the sum of Average Fixed Cost (AFC) and Average Variable Cost (AVC). This relationship is expressed as AC = AFC + AVC.
Why are the short-run cost curves like AVC, AC, and SMC typically U-shaped?
These curves are U-shaped primarily due to the law of variable proportions. As output increases, initially returns to variable factors rise, then diminish, leading to changes in per-unit costs that create the U-shape.
Does fixed cost exist in the long run?
No, there are no fixed costs in the long run. In the long run, all factors of production are variable, allowing firms to adjust their scale of operations, thus eliminating fixed costs.
Where does the Short-Run Marginal Cost (SMC) curve intersect the Average Variable Cost (AVC) and Average Cost (AC) curves?
The SMC curve intersects both the AVC and AC curves at their respective minimum points. This occurs because SMC equals AVC and AC only when they are at their lowest levels.
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