• Optimization Problems: Applications to Economics - Concept

Math›Calculus›Applications of the Derivative
How to use the optimization methods of calculus to optimize cost or revenue.
• Optimization Problems: Applications to Economics - Problem 3

Math›Calculus›Applications of the Derivative
How to use the optimization methods of calculus to optimize cost.
• Optimization Problems: Applications to Economics - Problem 1

Math›Calculus›Applications of the Derivative
How to use the optimization methods of calculus to optimize revenue.
• Optimization Problems: Applications to Economics - Problem 2

Math›Calculus›Applications of the Derivative
How to use the optimization methods of calculus to optimize cost or revenue.
• Optimization Using the Closed Interval Method - Concept

Math›Calculus›Applications of the Derivative
How to evaluate the limit of a function at points where it is not continuous.
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• Optimization Using the Closed Interval Method - Problem 1

Math›Calculus›Applications of the Derivative
How to evaluate the limit of a function at points where it is not continuous.
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• Optimization Using the First Derivative Test - Problem 1

Math›Calculus›Applications of the Derivative
How to determine the oblique asymptote of the graph of a rational function.
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• Optimization Using the First Derivative Test - Concept

Math›Calculus›Applications of the Derivative
How to evaluate the limit of a function as x goes to infinity (or minus infinity), and how to determine the horizontal asymptote of its graph.
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• Optimization Using the First Derivative Test - Problem 2

Math›Calculus›Applications of the Derivative
How to use the first derivative test to find the minimum value of some number a in a given function.
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• Optimization Using the Second Derivative Test - Problem 2

Math›Calculus›Applications of the Derivative
How to use the second derivative test to find the minimum surface area of a given volume.
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• Optimization Using the Closed Interval Method - Problem 2

Math›Calculus›Applications of the Derivative
How to optimize area using the closed interval method on a function.
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• Optimization Using the Second Derivative Test - Concept

Math›Calculus›Applications of the Derivative
How to compute the average velocity of an object moving in one dimension from a graph of its position vs. time.
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• Optimization Using the Second Derivative Test - Problem 3

Math›Calculus›Applications of the Derivative
How to compute the average rate of change of the amount of liquid in a tank over an interval of time, and how to represent this average rate on a graph.
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• Optimization Using the First Derivative Test - Problem 3

Math›Calculus›Applications of the Derivative
How to compute the average velocity of an object moving in one dimension and how to represent average velocity on a graph.
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None
• Optimization Using the Closed Interval Method - Problem 3

Math›Calculus›Applications of the Derivative
How to evaluate the limit of a function as x goes to infinity (or minus infinity), and how to determine the horizontal asymptote of its graph.
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None
• Optimization Using the Second Derivative Test - Problem 1

Math›Calculus›Applications of the Derivative
How to determine intervals of time when the average velocity is negative or positive, and how to determine whether average velocity over one interval of time is greater than average velocity over another.
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• Finding Maximum and Minimum Values - Concept

Math›Precalculus›Polynomial and Rational Functions
How we define optimization problems, and what it means to solve them.
• Finding the Maximum or Minimum of a Quadratic - Problem 2

How to find the maximum area of a fenced in field.