Calculus theory: Difference between revisions
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| * '''Functions''' | * '''Functions''' | ||
| <div style="width:100%; float:left; padding-bottom: | <div style="width:100%; float:left; padding-bottom:1.5em;"> | ||
| <div style="width: 50%; float:right;"> | <div style="width: 50%; float:right;"> | ||
| * [[Graphs of trigonometric functions]] | * [[Graphs of trigonometric functions]] | ||
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| * '''Limits and continuity''' | * '''Limits and continuity''' | ||
| <div style="width:100%; float:left; padding-bottom: | <div style="width:100%; float:left; padding-bottom:1.5em;"> | ||
| <div style="width: 50%; float:right;"> | <div style="width: 50%; float:right;"> | ||
| * [[Properties of limits]] | * [[Properties of limits]] | ||
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| * '''Differentiation and derivatives''' | * '''Differentiation and derivatives''' | ||
| <div style="width:100%; float:left; padding-bottom: | <div style="width:100%; float:left; padding-bottom:1.5em;"> | ||
| <div style="width: 50%; float:right;"> | <div style="width: 50%; float:right;"> | ||
| * [[Linear approximation for two variables]] | * [[Linear approximation for two variables]] | ||
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| * '''Applications of differentiation''' | * '''Applications of differentiation''' | ||
| <div style="width:100%; float:left; padding-bottom: | <div style="width:100%; float:left; padding-bottom:1.5em;"> | ||
| <div style="width: 50%; float:left;"> | <div style="width: 50%; float:left;"> | ||
| * [[Increasing and decreasing functions]] | * [[Increasing and decreasing functions]] | ||
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| * [[Finding extreme values of a multivariable function]] | * [[Finding extreme values of a multivariable function]] | ||
| * [[Finding critical points of a multivariable function]] | * [[Finding critical points of a multivariable function]] | ||
| * [[Lagrange | * [[Lagrange multipliers]] | ||
| </div> | </div> | ||
| </div> | </div> | ||
| * '''Integration and total change''' | * '''Integration and total change''' | ||
Latest revision as of 15:28, 1 September 2022
- Functions
- Limits and continuity
- Differentiation and derivatives
- Mistakes regarding derivatives
- Defining the derivative
- Partial derivatives and direction
- Defining the gradient
- Conditions for differentiability for a single variable
- Conditions for differentiability for many variables
- A sufficient condition for differentiability for many variables
- Linear approximation for one variable
- Applications of differentiation
- Integration and total change

