2024/G1/2: Difference between revisions

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<math>{\frac{d}{dx}} [f(x)\pm g(x)] = {\frac{d}{dx}} [f(x)] \pm {\frac{d}{dx}} [g(x)] </math> <br>
<math>{\frac{d}{dx}} [f(x)\pm g(x)] = {\frac{d}{dx}} [f(x)] \pm {\frac{d}{dx}} [g(x)] </math> <br>
<math> {\frac{d}{dx}} [x^n] = n \cdot x^(n-1) </math> <br>
<math> {\frac{d}{dx}} [x^n] = n \cdot x^{(n-1)} </math> <br>
<math>{\frac{d}{dx}} [a^x] = \ln(a)a^x </math><br>
<math>{\frac{d}{dx}} [a^x] = \ln(a)a^x </math><br>
<math> {\frac{d}{dx}} [e^x] = e^x </math><br>
<math> {\frac{d}{dx}} [e^x] = e^x </math><br>

Revision as of 20:53, 30 March 2023

2.2 THE LIMIT OF A FUNCTION

Notes go here for 2.2... example:

2.3 CALCULATING LIMITS USING THE LIMIT LAWS

2.5 CONTINUITY

2.6 LIMITS AT INFINITY; HORIZONTAL ASYMPTOTES

2.7 DERIVATIVES AND RATES OF CHANGE

2.8 THE DERIVATIVE AS A FUNCTION