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    • Area Bounded Between Two Curves
    • Inverse Functions: Derivatives of Inverse Functions (Theory)
    • Linearization: Why the Linearization Formula is Easier than you Think (Theory)
    • Riemann Sums: What Are They and Why Do They Work? (Theory)
    • Derivatives: Find the Equation of the Tangent Line (Theory + Worked Example)
    • Arc Length: What’s the Formula and Why Does It Make Sense? (Theory)
    • Derivatives: Find Horizontal Tangent Lines (Worked Example)
    • Derivatives: What is the Limit Definition of the Derivative and Why Does it Make Sense? (Theory)
    • Differential Equations: What Are They and How Do We Solve Them? (Theory + Worked Example)
    • How to Integrate Absolute Value Functions (Theory + Worked Example)

Derivatives: What is the Limit Definition of the Derivative and Why Does it Make Sense? (Theory)

Explore how the limit definition of the derivative captures the idea of instantaneous rate of change, laying the groundwork for understanding all derivative rules in calculus—with a helpful Desmos animation to visualize it clearly!


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  • Home
  • Services
  • Blog
  • Tools
    • Area Bounded Between Two Curves
    • Inverse Functions: Derivatives of Inverse Functions (Theory)
    • Linearization: Why the Linearization Formula is Easier than you Think (Theory)
    • Riemann Sums: What Are They and Why Do They Work? (Theory)
    • Derivatives: Find the Equation of the Tangent Line (Theory + Worked Example)
    • Arc Length: What’s the Formula and Why Does It Make Sense? (Theory)
    • Derivatives: Find Horizontal Tangent Lines (Worked Example)
    • Derivatives: What is the Limit Definition of the Derivative and Why Does it Make Sense? (Theory)
    • Differential Equations: What Are They and How Do We Solve Them? (Theory + Worked Example)
    • How to Integrate Absolute Value Functions (Theory + Worked Example)