In exercises 1–24, differentiate each function. D f(x) = x*e* (2. f(x)= e2* cos 4.x %3D 3. f(t) =t+2' (4. )f(t) = 14*" 5. f(x)= 2e+x+1 6. f(x) = (1/e)* 7. h(x) = (1/3)*² 8. h(x) = 4-x² || 9. f(u) = e"²+4u 10. f(u) 3 Зечanи e4w 11. f(w) = 12, f(w) = ebw W 13. f(x)= In 2.x 14. f(x) = In /8x 15. f(t) = In (t³ + 3t) 16. F(t) = t³ In t 17. g(x) = In (cos x) 18. g(x)= cosx In(x² 19. (a) f(x) = sin (In x²) (b) g(t) = ln (sin t²) VIn x (20. (a) f (x) = In ſi (b) g(t) = 21. (a) h(x) = e* In x (b) ƒ(x) = elnx e* 22. (a) h(x) = 2ª* (b) f (x) = 2x Exna

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter4: Eigenvalues And Eigenvectors
Section4.6: Applications And The Perron-frobenius Theorem
Problem 17EQ
icon
Related questions
Question

I need the answers for 8-12-15 

6:55
ll 4G
A bartleby.com
kercises 1-24, differentiate each fun
88 Q W
mat113_Chapter2 v
at113_Chapt. O
Untitled (6)
Untitled (7)
x PHY103Lab_Simpl..
X PHY103-ForceTabl
In exercises 1–24, differentiate each function.
O sx) = x²e*
(2. F(x) = e2* cos 4.x
3. f(t)=t+2'
(A.
)f(t) =
143
5. f(x)= 2e4*+1
6. f(x)= (1/e)*
7. h(x) = (1/3)*²
8. h(x) = 4-x²
9. f(u) = e"²+4u
10. f(u)= 3etan u
e 4w
11. f(w) =
12, f(w) =
ebw
13. f(x)= In 2.x
14. f(x)= In /8r
15. f(t) = In (r³ + 3t)
16. f(1) = 1³ In t
17. g(x) = In (cos x)
18. g(x)= cos.x In(x² +
19. (a) ƒ (x) = sin (In x²)
(b) g(t) = In (sin r²)
VInx
In i
(b) g(t) =
t
X
(20. (a) f(x)
21. (a) h(x) = e* In x
(b) f(x) = elnx
22. (a) h(x) = 2ª*
(b) ƒ (x) =
2x
Exna
Transcribed Image Text:6:55 ll 4G A bartleby.com kercises 1-24, differentiate each fun 88 Q W mat113_Chapter2 v at113_Chapt. O Untitled (6) Untitled (7) x PHY103Lab_Simpl.. X PHY103-ForceTabl In exercises 1–24, differentiate each function. O sx) = x²e* (2. F(x) = e2* cos 4.x 3. f(t)=t+2' (A. )f(t) = 143 5. f(x)= 2e4*+1 6. f(x)= (1/e)* 7. h(x) = (1/3)*² 8. h(x) = 4-x² 9. f(u) = e"²+4u 10. f(u)= 3etan u e 4w 11. f(w) = 12, f(w) = ebw 13. f(x)= In 2.x 14. f(x)= In /8r 15. f(t) = In (r³ + 3t) 16. f(1) = 1³ In t 17. g(x) = In (cos x) 18. g(x)= cos.x In(x² + 19. (a) ƒ (x) = sin (In x²) (b) g(t) = In (sin r²) VInx In i (b) g(t) = t X (20. (a) f(x) 21. (a) h(x) = e* In x (b) f(x) = elnx 22. (a) h(x) = 2ª* (b) ƒ (x) = 2x Exna
Expert Solution
steps

Step by step

Solved in 2 steps with 1 images

Blurred answer
Recommended textbooks for you
Linear Algebra: A Modern Introduction
Linear Algebra: A Modern Introduction
Algebra
ISBN:
9781285463247
Author:
David Poole
Publisher:
Cengage Learning
Algebra & Trigonometry with Analytic Geometry
Algebra & Trigonometry with Analytic Geometry
Algebra
ISBN:
9781133382119
Author:
Swokowski
Publisher:
Cengage
College Algebra
College Algebra
Algebra
ISBN:
9781938168383
Author:
Jay Abramson
Publisher:
OpenStax