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Understanding Continuity and Smoothness in Functions

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Created July 23, 2025

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Check out this video I made with revid.ai

https://www.revid.ai/view/understanding-continuity-and-smoothness-in-functions-QK8Wa2WBFVzPT6fZQgEL

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Video Transcript

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You know a function is continuous if you can draw its graph without ever lifting your pen.

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Think of a smooth, flowing line—no breaks, no jumps, no holes.

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That's a continuous function. But the second you have to lift your pen to get from

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one point to another, you've found a discontinuity. It's literally a break in the graph. But here’s the twist.

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A function can be perfectly continuous, with no gaps, yet still not be "smooth" everywhere.

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Imagine the sharp V-shape of the absolute value graph. You can draw it in one stroke,

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but that sharp point means it's not differentiable there.

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