1. The differential equation dy cos(r + y) %3D dx cos(r - y) may be classified as a. Homogeneous b. Exact c. Linear d. Exact and Homogeneous

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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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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4. The differential equation
cos(r + y)
cos(x – y)
dy
da
may be classified as
a. Homogeneous
b. Exact
c. Linear
d. Exact and Homogeneous
5. Consider the follow statement:
"The Euler method can be used to approrimate any ODE of the form F(x,y,y')=0"
and select only one option.
a. True for only linear functions F
b. Always true
c. Only true if we can solve for y' explicitly
d. Only true if F is linear in y
6. Consider the ODE system below
y = y? - 2, 2' = y +2.
Which of the following is true?
a. Solvable by trig substitution
b. Solvable using Euler method only if initial conditions are stated
c. RK 4 is not suitable for this system
d. Solvable using Euler method
7. Consider the ODE below
/ + ysinx = siny, y(1.5) = 1.25
One iteration of Euler method, with h 0.125, gives?
а. у(1.5) — 1
b. y(0.125) 1.27208
c. y(1.625) 1.27208
d. y(1.625) - 0.28217
Transcribed Image Text:4. The differential equation cos(r + y) cos(x – y) dy da may be classified as a. Homogeneous b. Exact c. Linear d. Exact and Homogeneous 5. Consider the follow statement: "The Euler method can be used to approrimate any ODE of the form F(x,y,y')=0" and select only one option. a. True for only linear functions F b. Always true c. Only true if we can solve for y' explicitly d. Only true if F is linear in y 6. Consider the ODE system below y = y? - 2, 2' = y +2. Which of the following is true? a. Solvable by trig substitution b. Solvable using Euler method only if initial conditions are stated c. RK 4 is not suitable for this system d. Solvable using Euler method 7. Consider the ODE below / + ysinx = siny, y(1.5) = 1.25 One iteration of Euler method, with h 0.125, gives? а. у(1.5) — 1 b. y(0.125) 1.27208 c. y(1.625) 1.27208 d. y(1.625) - 0.28217
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