This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Mia Botha
03/07/2026 22:39
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Alexandra Obey
03/07/2026 22:39
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Mabafokeng Mokuku
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
noura_med
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Quenn D
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Abimael_Adu
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Nadia Gyimah
03/07/2026 22:29
YES THE VIDEO STARTS MID-QUESTION - BEAR WITH IT PLS
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary point
Ndeshii
03/07/2026 22:29
YES THE VIDEO STARTS MID-QUESTION - BEAR WITH IT PLS
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary point
Hussein Chour
03/07/2026 22:29
YES THE VIDEO STARTS MID-QUESTION - BEAR WITH IT PLS
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary point
تقييمات المستخدمين
RugieBella❤️
03/07/2026 22:39
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Mia Botha
03/07/2026 22:39
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Alexandra Obey
03/07/2026 22:39
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Mabafokeng Mokuku
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
noura_med
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Quenn D
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Abimael_Adu
03/07/2026 22:29
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary points and determine their nature, and use information abou
Nadia Gyimah
03/07/2026 22:29
YES THE VIDEO STARTS MID-QUESTION - BEAR WITH IT PLS
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary point
Ndeshii
03/07/2026 22:29
YES THE VIDEO STARTS MID-QUESTION - BEAR WITH IT PLS
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary point
Hussein Chour
03/07/2026 22:29
YES THE VIDEO STARTS MID-QUESTION - BEAR WITH IT PLS
This is a 8 part series of DIFFERENTIATION which includes:
Video 1 : https://youtu.be/Lbj0pVYK-A8
Video 2 : https://youtu.be/zOofa2AGRZk
Video 3 : https://youtu.be/iuUfT-wtpjM
Video 4 : https://youtu.be/YQtwlqjr73E
Video 5 : https://youtu.be/y60PjgmL1_E
Video 6 : https://youtu.be/QCPhQo4DHmY
Video 7 : https://youtu.be/f2msawreWuQ
Video 8 : https://youtu.be/yVfOt5kjleQ
These videos explains how to:
1. Understand the gradient of a curve at a point as the limit of the gradients of a suitable
sequence of chords, and use the notations f′(x), f ″(x), dy/dx and d2y/dx2 for first
and second derivatives.
2. Use the derivative of xn (for any rational n), together with constant multiples, sums and
differences of functions, and of composite functions using the chain rule.
3. Apply differentiation to gradients, tangents and normals, increasing and decreasing
functions and rates of change.
4. Locate stationary point
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