e) y(t) = 2cot(5t² + 3) f) y(x) = 0.54 cos(0.3x – 0.15) + 3.2 g) y(t) = (2cot(5t? + 3))((0.54 cos(0.3t – 0.15) + 3.2) )I

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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the full question is listed below however I've done a,b,c,d. so I only need solutions to E, F, G thanks 

8. Theoretical Stuff. Differentiation
Solve the following problems using the properties of differentiation (MANUAL calculations
only).
a) y(0) =+ 2 In(20) – 2 (cos50 + 3sin28) –
e30
2
b) y(t) = Vt3 ln(3t)e³tx
c) y(Ø) =
2sin20
Transcribed Image Text:8. Theoretical Stuff. Differentiation Solve the following problems using the properties of differentiation (MANUAL calculations only). a) y(0) =+ 2 In(20) – 2 (cos50 + 3sin28) – e30 2 b) y(t) = Vt3 ln(3t)e³tx c) y(Ø) = 2sin20
1
d) y(x) =
(x3–2x+1)5
e) y(t) = 2cot(5t2 + 3)
f) y(x) = 0.54 cos(0.3x – 0.15) + 3.2
g) y(t) = (2cot(5t? + 3))((0.54 cos(0.3t – 0.15) + 3.2) )I
Transcribed Image Text:1 d) y(x) = (x3–2x+1)5 e) y(t) = 2cot(5t2 + 3) f) y(x) = 0.54 cos(0.3x – 0.15) + 3.2 g) y(t) = (2cot(5t? + 3))((0.54 cos(0.3t – 0.15) + 3.2) )I
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