Maxima and Minima Problems
In this post we review the following notions:
Critical points in a function of three variables
Local extremum and the saddle point in a function of two variables
The purpose of this blog is to teach Math subjects : Calculus, Pre-calculus, Algebra and Basic Math. Now it focuses on Higher Math. You can also find posts on learning theories, study skills and web resources for learning.
Maxima and Minima Problems
In this post we review the following notions:
Critical points in a function of three variables
Local extremum and the saddle point in a function of two variables
Directional derivatives and the gradient
Review the following posts:
Directional derivatives of a function of two variables
Directional derivatives of a function of two variables (continued)
Maximum directional derivative
The next post will be about Critical points, local extremum, absolute maxima and minima
In this post, we are going to review the chain rule for the partial derivatives of z = f(x,y) where x and y are functions of two independent variables u and v. Then we will review the higher order partial derivatives.
Chain rule of a function of two variables x and y where x and y are function of two independent variablesPartial derivatives
Tangent plane and linear approximation
Objectives:
1) Review level curves and contour maps
2) Limit and continuity
Level curves and contour map
Given a function f(x,y) and a number c of its range, a level curve of the function with two variables f(x, y) for the value c is the set of points that satisfy the equation f(x, y) = c. A graph of the various level curves of a function with two variables is called a contour map.