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0:07:54
Rolle’s Theorem With example
0:32:06
Integrating rational functions parts 1 and 2 combined
0:11:06
Integrating rational functions part 2
0:17:48
Integrating rational functions, what to look for to decide which technique to use. Part 1
0:11:31
Trapezoidal Rule and Simpson's Rule, Numerical Integration Methods examples
0:14:45
Trapezoidal Rule and Simpson's Rule Error
0:18:37
Trapezoidal Rule and Simpson's Rule to approximate definite integral values
0:16:03
The Second Fundamental Theorem of Calculus. The definite integral as a function of x.
0:11:57
The Mean Value Theorem of Integrals and the average value of a function on [a,b], example 3
0:08:09
The average value of a function on a closed interval, two examples
0:15:30
The Mean Value Theorem for Integrals and the Average Value of a function
0:13:55
Finding definite integral values the easy way! The Fundamental Theorem of Calculus.
0:27:12
Finding definite integral values using the Fundamental Theorem of Calculus (FTC) part 2
0:07:18
The Extreme Value Theorem Example
0:05:30
The Extreme Value Theorem, an application of derivatives
0:23:19
Evaluating the definite integral using the limit definition
0:14:38
Using the properties of definite integrals with examples, part 2
0:07:41
Finding a definite integral from a graph using geometry formulas
0:16:56
Properties of definite integrals with examples, part 1
0:09:13
Approximating the area of a plane region enclosed by f(x)=x^2 + 1, the x-axis, on [1, 3] with n=4.
0:18:27
Approximating area of a plane region, explanation of the notation
0:24:59
Finding the area between a curve and the x-axis by the limit definition
0:21:22
Approximating area of a plane region caught between the curve and the x-axis over an interval.
0:04:02
How do you approximate area between a function, the x-axis, over an interval using the midpoints.
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