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Continuity and Differentiation Notes for Class 12 & IIT JEE

These Continuity and Differentiability notes provide comprehensive revision material for Class 12 and JEE, covering a high-weightage calculus topic that forms the foundation for derivatives, integration, and differential equations while helping students prepare effectively for board and competitive exams.

Continuity and Differentiation Notes for Class 12 & IIT JEE

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Class 12 ›Continuity and Differentiation Notes for Class 12 & IIT JEE

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Why This Chapter Matters for Class 12 & JEE 

Continuity and Differentiability is one of the highest-weightage topics in both CBSE Class 12 Boards and JEE Main. According to NTA's official JEE Main paper analysis, questions from this chapter appear in every single session — typically 2–3 questions worth 8–12 marks. In CBSE Boards, the chapter contributes directly to Unit III (Calculus), which alone accounts for 35 marks out of 80.

Beyond the marks, this chapter is the foundation for everything that follows: Applications of Derivatives, Integrals, and Differential Equations all assume fluency here. Students who skip it or treat it superficially consistently struggle later.

Continuity and Differentiation Notes 

India's Best Exam Preparation for Class 12th - Download Now

 Continuity & Differentiability

India's Best Exam Preparation for Class 12th - Download Now

Continuity & DifferentiabilityContinuity & Differentiability

India's Best Exam Preparation for Class 12th - Download Now

Continuity & DifferentiabilityContinuity & Differentiability

India's Best Exam Preparation for Class 12th - Download Now

Continuity & DifferentiabilityContinuity & DifferentiabilityContinuity & Differentiability

India's Best Exam Preparation for Class 12th - Download Now

Continuity & DifferentiabilityContinuity & DifferentiabilityContinuity & DifferentiabilityContinuity & Differentiability

India's Best Exam Preparation for Class 12th - Download Now

Continuity & DifferentiabilityContinuity & Differentiability

India's Best Exam Preparation for Class 12th - Download Now

Frequently Asked Questions

Find answers to common questions.

What is the difference between continuity and differentiability?

Continuity means a function has no breaks, holes, or jumps at a point — the limit exists and equals the function value. Differentiability means the function has a well-defined tangent (slope) at that point. Every differentiable function is continuous, but a continuous function like |x| may fail to be differentiable at sharp corners.


How many marks does Continuity and Differentiability carry in JEE Main?

According to NTA's official JEE Main paper structure, Continuity and Differentiability typically accounts for 2–3 questions (8–12 marks) in every session. It is one of the most consistently tested topics in the Mathematics section, making it a high-priority chapter for any student targeting above 85 percentile.

Is f(x) = |x| continuous at x = 0?

Yes, |x| is continuous at x = 0. The LHL = 0, RHL = 0, and f(0) = 0 — all three match, so the continuity condition is satisfied. However, it is not differentiable at x = 0 because the left-hand derivative is −1 and the right-hand derivative is +1, and they are not equal.

What is logarithmic differentiation and when should I use it?

Logarithmic differentiation means taking the natural log of both sides of y = f(x) before differentiating. Use it whenever the function has the form [f(x)]^(g(x)) — a variable base raised to a variable exponent. Examples include y = xˢⁱⁿˣ or y = (tan x)^(ln x). Applying the standard chain rule directly to such functions is not possible.

What is the Rolle's Theorem and Mean Value Theorem connection to this chapter?

Both theorems appear at the end of NCERT Chapter 5. Rolle's Theorem states that if f is continuous on [a, b], differentiable on (a, b), and f(a) = f(b), then at least one c exists in (a, b) where f'(c) = 0. The Mean Value Theorem generalises this: f'(c) = [f(b) − f(a)]/(b − a) for some c in (a, b). Both are frequently tested in JEE Main.

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fnfOzvSR
March 30, 2026, 6:02 a.m.
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fnfOzvSR
March 30, 2026, 6:02 a.m.
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fnfOzvSR
March 30, 2026, 6 a.m.
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March 30, 2026, 6 a.m.
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Sikha
Feb. 26, 2025, 6:35 a.m.
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