2. Find the derivative for each of the following, be sure to use proper notation and simplify when needed (both, positive or negative exponents are permitted. V6n 1 b. у 3 4t5 (3) a. m = \6n (3) (3) (4t3 – 6t)5 C. v =

Trigonometry (MindTap Course List)
10th Edition
ISBN:9781337278461
Author:Ron Larson
Publisher:Ron Larson
Chapter6: Topics In Analytic Geometry
Section6.2: Introduction To Conics: parabolas
Problem 4ECP: Find an equation of the tangent line to the parabola y=3x2 at the point 1,3.
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(3) h. y = 3e4x5
(3)
i. y = sin* (x² + 1)
3x5
j. y =
(4)
(use quotient rule)
(5x+4)3
Transcribed Image Text:(3) h. y = 3e4x5 (3) i. y = sin* (x² + 1) 3x5 j. y = (4) (use quotient rule) (5x+4)3
2. Find the derivative for each of the following, be sure to use proper notation and
simplify when needed (both, positive or negative exponents are permitted.
1
(3)
a. m = \6n
(3)
b. y
4t5
(3)
(4t3 – 6t)5
C. v =
(3)
d. y = Vx3 –+ 300
|
Transcribed Image Text:2. Find the derivative for each of the following, be sure to use proper notation and simplify when needed (both, positive or negative exponents are permitted. 1 (3) a. m = \6n (3) b. y 4t5 (3) (4t3 – 6t)5 C. v = (3) d. y = Vx3 –+ 300 |
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