← + New ▶ LO (F ☆ 0 Screenshot (1907).png < My Drive Computers Shared with me Recent Starred Trash Storage GB of 15 GB used Buy storage Q Search in Drive Shared with me > 2011- Files Find the Wronskian of two the functions y₁ = cos41_g(t) = e' cos(t). ty" -t(t-2) + (t-6)y= α = XX Open with Screenshot (1908).png Screent NOTE: Use e as a constant. Solve the initial value problem y" + 5y' 14y = 0, y(0) = a, y'(0) = -70. Find a so that the solution approaches zero as t → ∞. 1907).png Q 3 + Find the Wronskian of the functi If the Wronskian W off and NOTE: Use e as an arbitrary const NOTE: Your answer must be simplified. W(f.g) (t) ・ 2+ O Screenshot (1906).png Name V 909).png + A Ⓡ :

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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Find the Wronskian of two the functions y₁
t²y" – t(t − 2)y' + (t− 6)y =
Open with
α =
Screenshot (1908).png
NOTE: Use c as a constant.
Solve the initial value problem
y" + 5y' — 14y = 0, y(0) = a, y'(0) :
-
Find a so that the solution approaches zero as t → ∞.
cos41
Screenshot (1907).png
+
|W(f,g)(t) = ||
==
- 70.
G
Find the Wronskian of the functi If the Wronskian W of f and
g(t) = e' cos(t).
NOTE: Use ce as an arbitrary const
NOTE: Your answer must be simplified.
Screenshot (1906).png
Name
+
1909).png
B
A :
+
>
Transcribed Image Text:← DDD + + New 1 Screenshot (1907).png < My Drive Computers Shared with me Recent Starred Trash Storage 8 GB of 15 GB used Buy storage Q Search in Drive Shared with me > 2011- Files Find the Wronskian of two the functions y₁ t²y" – t(t − 2)y' + (t− 6)y = Open with α = Screenshot (1908).png NOTE: Use c as a constant. Solve the initial value problem y" + 5y' — 14y = 0, y(0) = a, y'(0) : - Find a so that the solution approaches zero as t → ∞. cos41 Screenshot (1907).png + |W(f,g)(t) = || == - 70. G Find the Wronskian of the functi If the Wronskian W of f and g(t) = e' cos(t). NOTE: Use ce as an arbitrary const NOTE: Your answer must be simplified. Screenshot (1906).png Name + 1909).png B A : + >
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