Media Summary: Derivatives of logarithmic functions and the technique of logarithmic differentiation. Computing the volume of a solid by the cylindrical shell method. Rates of change in the natural and social sciences.

Ecc Mth 121 3 6 - Detailed Analysis & Overview

Derivatives of logarithmic functions and the technique of logarithmic differentiation. Computing the volume of a solid by the cylindrical shell method. Rates of change in the natural and social sciences. Using derivative rules of trigonometric functions. Using the Product Rule and the Quotient Rule to find derivatives. Using Chain Rule to find the derivative of composite functions.

Computing volume with the disk/washer method. Average value of a function and the Mean Value Theorem for Integrals.

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ECC MTH 121 3.6
ECC MTH 121 6.3
ECC MTH 121 3.5
ECC MTH 121 2.6
ECC MTH 121 3.7
ECC MTH 121 3.3
ECC MTH 121 3.2
ECC MTH 121 3.10
ECC MTH 121 3.4
ECC MTH 121 6.1
ECC MTH 121 6.2
ECC MTH 121 6.5
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ECC MTH 121 3.6

ECC MTH 121 3.6

Derivatives of logarithmic functions and the technique of logarithmic differentiation.

ECC MTH 121 6.3

ECC MTH 121 6.3

Computing the volume of a solid by the cylindrical shell method.

ECC MTH 121 3.5

ECC MTH 121 3.5

Implicit differentiation.

ECC MTH 121 2.6

ECC MTH 121 2.6

Limits at infinity and asymptotes.

ECC MTH 121 3.7

ECC MTH 121 3.7

Rates of change in the natural and social sciences.

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ECC MTH 121 3.3

ECC MTH 121 3.3

Using derivative rules of trigonometric functions.

ECC MTH 121 3.2

ECC MTH 121 3.2

Using the Product Rule and the Quotient Rule to find derivatives.

ECC MTH 121 3.10

ECC MTH 121 3.10

Differentials and linear approximation.

ECC MTH 121 3.4

ECC MTH 121 3.4

Using Chain Rule to find the derivative of composite functions.

ECC MTH 121 6.1

ECC MTH 121 6.1

Computing area between curves.

ECC MTH 121 6.2

ECC MTH 121 6.2

Computing volume with the disk/washer method.

ECC MTH 121 6.5

ECC MTH 121 6.5

Average value of a function and the Mean Value Theorem for Integrals.

ECC MTH 121 2.3

ECC MTH 121 2.3

Limit Laws and the Squeeze Theorem.