Useful Summary: function we substitute X plus h wherever there was an X so this is going to give minus the gradient of the tangent is equal to the derivative evaluated at 4 and when we put 4 into that rule we have

Mm1 2 11I 2 Example 2 - Show Supporting Context

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the gradient of the tangent is equal to the derivative evaluated at 4 and when we put 4 into that rule we have function we substitute X plus h wherever there was an X so this is going to give minus

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  • the gradient of the tangent is equal to the derivative evaluated at 4 and when we put 4 into that rule we have
  • function we substitute X plus h wherever there was an X so this is going to give minus

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[MM1-2] 11I.2 - Example 2

[MM1-2] 11I.2 - Example 2

Read more details and related context about [MM1-2] 11I.2 - Example 2.

[MM1-2] 11I.1 - Example 2

[MM1-2] 11I.1 - Example 2

... the gradient of the tangent is equal to the derivative evaluated at 4 and when we put 4 into that rule we have

[MM1-2] 11I.2 - Example 1

[MM1-2] 11I.2 - Example 1

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[MM1-2] 11I.3 - Example 2

[MM1-2] 11I.3 - Example 2

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[MM1-2] 11I.2 - Example 3

[MM1-2] 11I.2 - Example 3

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[MM1-2] 11I.2 - Example 4

[MM1-2] 11I.2 - Example 4

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[MM1-2] 11D - Example 2

[MM1-2] 11D - Example 2

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[MM1-2] 11A - Example 2

[MM1-2] 11A - Example 2

... function we substitute X plus h wherever there was an X so this is going to give minus

[MM1-2] 11I.3 - Example 1

[MM1-2] 11I.3 - Example 1

Read more details and related context about [MM1-2] 11I.3 - Example 1.

[MM1-2] 11I.1 - Example 3

[MM1-2] 11I.1 - Example 3

... can identify is that the gradient of the normal is equal to negative