1
Limits Explained, Definition, Examples, Worksheet, Practice Problems - Calculus
19:54
2
Continuity of a Function, Definition, 3 Conditions, Discontinuities, Practice Examples - Calculus
16:54
3
Intermediate Value Theorem, Visual Proof, Application, Exercises - Calculus
2:12
4
Derivative of a Function, Definition, First Principles, Geometry, Examples - Calculus
8:24
5
Differentiability and Continuity of Function, Rates of Change, Visual Proof, Example - Calculus
3:47
6
Derivative Rules, Power Rule for Differentiation - Calculus
4:29
7
Derivatives of Elementary Functions, sin(x), cos(x), e^x, ln(x) - Calculus
5:16
8
Product Rule, Differentiation, Basic Proof, Examples - Calculus
2:33
9
Quotient Rule for Differentiation, Mnemonic, Examples - Calculus
1:24
10
Derivatives of Trig Functions, Basic Proofs, tan(x), cot(x), sec(x), cosec(x), Examples - Calculus
5:32
11
Chain Rule of Differentiation, Derivatives, Composite Functions, Examples - Calculus
2:56
12
Implicit Differentiation, vs Explicit, Chain Rule, Examples - Calculus
2:30
13
Derivatives of Inverse Functions, Basic Proof, Examples - Calculus
3:07
14
Derivatives of Inverse Trig Functions, Basic Proof, Examples - Calculus
3:40
15
Higher-Order Derivatives of Functions, Second Derivative, Examples - Calculus
2:24
16
Logarithmic Differentiation, Basic Proof, Exponential, Examples - Calculus
4:38
17
Derivatives in Context, Interpretation, Examples - Calculus
2:20
18
Straight Line Motion, Position, Displacement, Velocity, Acceleration, Speed, Distance - Calculus
9:54
19
Solving Related Rates Problems, Chain Rule, Derivatives - Calculus
3:02
20
Local Linearity and Error Approximation, Tangent Line, Examples - Calculus
5:01
21
L'Hospital's Rule, Limits, Indeterminate Forms, Examples - Calculus
7:46
22
Mean Value Theorem, Derivatives, Definition, Visual Proof, Examples - Calculus
2:07
23
Extreme Value Theorem, Visual Proof, Critical Points, Global and Local Extrema - Calculus
5:06
24
First Derivative Test, Local Extrema, Examples - Calculus
3:41
25
Candidates Test, Global Extrema, Example - Calculus
2:12
26
Second Derivative Test, Local Extrema, Visual Proof, Example - Calculus
3:59
27
Graphs of Functions and their Derivatives, Curve Sketching, Examples - Calculus
5:16
28
Connecting a Function and its Derivatives, Graphs, Position, Velocity, Acceleration - Calculus
1:37
29
Solving Optimisation Problems, Differentiation, Examples - Calculus
3:17
30
Behaviour of Implicit Relations, Derivatives, Examples - Calculus
3:48
31
Accumulation of Change, Derivative Formula, Meaning, Worksheet, Problems - Calculus
2:00
32
Riemann Sums, Formula, Using Calculator, Examples, Practice Problems - Calculus
8:51
33
Definite Integral, Definition from Riemann sum, Formula, Symbol, Example - Calculus
5:02
34
Fundamental Theorem of Calculus, Part 1, Visual Proof, Definite Integral - Calculus
1:45
Behaviour of Accumulation Functions, Area, Graphical, Numerical, Analytical - Calculus
1:31
36
Definite Integrals, Formula, Properties, Rules, Integration over Discontinuities - Calculus
2:50
37
Fundamental Theorem of Calculus, Part 2, Definite Integrals, Basic Proof - Calculus
1:05
38
Indefinite Integrals, Antiderivatives, Power Rule, Trig, Inverse, Log, Exp, Examples - Calculus
9:00
39
Integration by Substitution Method Explained, Definite integrals, Examples - Calculus
2:55
40
Integration, Polynomial Long Division Method, Example, Worksheet, Practice Questions - Calculus
2:25
41
Integration, Completing the Square, Examples, Worksheet, Practice Problems - Calculus
1:53
42
Integration by Parts, Formula, Rule, Example, Order - Calculus
2:08
43
Integration, Partial Fractions, Formula, Irreducible Quadratic Factors, Worksheet - Calculus
6:56
44
Improper Integrals, Type 1 and 2, Examples, Converge or Diverge, Practice Problems - Calculus
2:37
45
Selecting Integration Techniques Explained, List of Methods - Calculus
5:40
46
Intro to Differential Equations, Modelling - Calculus
2:18
47
Verifying Solutions to Differential Equations - Calculus
2:09
48
Sketching Slope Fields, Differential Equations - Calculus
2:20
49
Sketching Solution Curves, Slope Fields - Calculus
2:28
50
Euler's Method, Approximating Solutions to ODEs, Example - Calculus
3:10
51
Separation of Variables, General Solution, ODEs - Calculus
2:27
52
Separation of Variables, Particular Solution, Differential Equations, Examples - Calculus
5:24
53
Exponential Models, Growth, Decay, Differential Equations - Calculus
7:02
54
Logistic Growth Model, Differential Equations - Calculus
5:44
55
Mean Value Theorem, Integration, Average Value, Continuous Function - Calculus
2:01
56
Displacement Vs Distance, Speed Vs Velocity, Acceleration, Integration - Calculus
5:38
57
Definite Integrals, Applied Contexts, Accumulation Functions - Calculus
5:03
58
Definite Integrals, Area Between Curves, Functions of x - Calculus
2:36
59
Definite Integrals, Area Between Curves, Functions of y - Calculus
4:26
60
Definite Integrals, Area Between Two Curves, Intersection Points - Calculus
6:10
61
Volumes with Cross Sections, Squares and Rectangles, Examples - Calculus
4:07
62
Volumes with Cross Sections, Triangles and Semicircles, Examples - Calculus
12:47
63
Volume with the Disk Method, Revolved Solid Around x or y axis, Cone, Sphere - Calculus
5:57
64
Volume with the Disk Method, Revolving Around other Axes - Calculus
2:48
65
Washer Method to Find the Volume of a Revolved Solid - Calculus
5:34
66
Volume with the Washer Method, Revolved Solid Around Line - Calculus
4:58
67
Arc Length, Planar Curve, Distance, Definite Integral - Calculus
4:46
68
Volume of Revolved Solid, Cylindrical Shell Method, Integration - Calculus
4:52
69
Parametric Equations, Definition, Differentiation - Calculus
3:44
70
Parametric Equations, Second Derivative - Calculus
2:33
71
Parametric Curve, Arc Length, Distance - Calculus
3:08
72
Vector-Valued Functions, Differentiation, Examples - Calculus
7:50
73
Vector-Valued Function, Integration - Calculus
2:56
74
Vector-Valued Functions and Motion in 2D Space - Calculus
6:30
75
Polar Coordinates, Polar Curves, Differentiation - Calculus
13:47
76
Polar Curve, Area of Region, Integration - Calculus
3:03
77
Polar Curve, Area of Region between Two Curves, Examples - Calculus
5:51
78
Conics in Polar Coordinates, Derivatives, Example - Calculus
27:59
79
Infinite Sequence, Definition, Representations, Convergence - Calculus
7:25
80
Infinite Series, Definition, Partial Sum, Convergence - Calculus
5:35
81
Geometric Series, Sum, Convergence - Calculus
3:42
82
nth Term Test, Divergence, Infinite Series, Examples - Calculus
2:20
83
Integral Test, Convergence, Infinite Series, Example - Calculus
3:34
84
Harmonic Series, p-series, Alternating, Convergence, Examples - Calculus
6:22
85
Direct and Limit Comparison Tests, Infinite Series, Convergence - Calculus
13:25
86
Alternating Series Test, Infinite Series - AP Calculus BC
2:26
87
Ratio Test, Infinite Series, Convergence, Examples - Calculus
4:39
88
Absolute and Conditional Convergence, Infinite Series, Examples - Calculus
7:53
89
Alternating Series, Error Bound - Calculus
2:30
90
Taylor Polynomials, Approximating Functions - Calculus
3:22
91
Lagrange Error Bound, Taylor Polynomials - Calculus
8:33
92
Power Series, Convergence - Calculus
22:02
93
Taylor Series, Maclaurin Series - Calculus
11:07
94
Representing Functions as Power Series - Calculus
4:06
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Sum of Alternating Harmonic Series (-1)^(n+1)1/n = ln2 - Calculus
3:25

Behaviour of Accumulation Functions, Area, Graphical, Numerical, Analytical - Calculus

11 days ago
29

Accumulation functions represent the running total, or the cumulative area, under the graph of another function, often over a fixed interval starting at a constant point 'a' and extending to a variable point 'x'. For a given function f(t), the accumulation function F(x) = ∫[from a to x] f(t) dt measures this total accumulated quantity, such as distance traveled or total rainfall. The First Fundamental Theorem of Calculus shows that the accumulation function F(x) is an antiderivative of f(x), meaning its rate of change, F'(x), is equal to the original function f(x).

💡Key Characteristics
• Definition: An accumulation function F(x) is defined as a definite integral where the upper limit is a variable, such as F(x) = ∫[from a to x] f(t) dt.
• Meaning: It provides a cumulative measure of the quantity represented by f(t) over the interval from 'a' to 'x'.
• Relationship to the Original Function: According to the First Fundamental Theorem of Calculus, the derivative of an accumulation function F(x) is the original function f(x).
• Behavior:
◦ F(x) increases when f(x) is positive.
◦ F(x) decreases when f(x) is negative.
◦ F(x) has a maximum or minimum value when f(x) = 0, representing points where the area accumulation changes direction.
• Applications: Accumulation functions are used to model quantities that change over time or intervals, such as:
◦ Total distance traveled by a car.
◦ Total amount of water in a tank after a certain time.
◦ Total rainfall over a given period.

💡Example
Consider the function f(t) = 2t representing the velocity of an object at time t. The accumulation function for distance, D(x), would be:
D(x) = ∫[from 0 to x] 2t dt This function D(x) gives the total distance the object has traveled from time 0 to time x, and D'(x) = 2x, which is the original velocity function.

💡Worksheets are provided in PDF format to further improve your understanding:
• Questions Worksheet: https://drive.google.com/file/d/1nyZAxMFIv3phTs8a9uQiZ7WKvrQ4fBKt/view?usp=drive_link
• Answers: https://drive.google.com/file/d/16wbbNzLH-O0LGu6SEvM5Nq9gNQlpoR-H/view?usp=drive_link

💡Chapters:
00:00 Fundamental theorem of calculus, part 1, visual proof

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