f (x) = 0.5e -32" +2x-5) -3+2x-5) g. h. f -3-2x-5) (x) = 2 Example 5: Use the Second Form of the Chain Rule to find the derivative of each function. Verify that each function is a composite function by identifying the outside function g and the inside function h. Identify the Rate-of-Change Rule used in finding the derivative of the outside function. Use proper notation. a. f(x)= (-3x +2x-5)-2 f'(x) = f(x) = V -3x +2x -5 S'(x)= CoXt 2x 2 5 CoxtZx 131

Question

I need help with g. and h.

 

NOT THE REST OF THEM.

f (x) = 0.5e
-32" +2x-5)
-3+2x-5)
g.
h. f -3-2x-5)
(x) = 2
Expand
Transcribed Image Text

f (x) = 0.5e -32" +2x-5) -3+2x-5) g. h. f -3-2x-5) (x) = 2

Example 5:
Use the Second Form of the Chain Rule to find the derivative of each function. Verify that
each function is a composite function by identifying the outside function g and the inside
function h. Identify the Rate-of-Change Rule used in finding the derivative of the outside
function. Use proper notation.
a. f(x)= (-3x +2x-5)-2
f'(x) =
f(x) = V -3x +2x -5
S'(x)= CoXt 2x
2 5
CoxtZx
131
Expand
Transcribed Image Text

Example 5: Use the Second Form of the Chain Rule to find the derivative of each function. Verify that each function is a composite function by identifying the outside function g and the inside function h. Identify the Rate-of-Change Rule used in finding the derivative of the outside function. Use proper notation. a. f(x)= (-3x +2x-5)-2 f'(x) = f(x) = V -3x +2x -5 S'(x)= CoXt 2x 2 5 CoxtZx 131

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