5. What is the maximum number of real distinct roots that a quartic equation can have? a. infinitely many b. 4 6. An equation for the graph shown is 2 X C. 2 d. none of the above a. y = x²(x + 1)(x + 2)² C. y = −x²(x + 1)(x − 2)² b. y = x² (x + 2)² d. y = −x² (x + 2)²
5. What is the maximum number of real distinct roots that a quartic equation can have? a. infinitely many b. 4 6. An equation for the graph shown is 2 X C. 2 d. none of the above a. y = x²(x + 1)(x + 2)² C. y = −x²(x + 1)(x − 2)² b. y = x² (x + 2)² d. y = −x² (x + 2)²
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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
Transcribed Image Text:5. What is the maximum number of real distinct roots that a quartic equation can have?
a.
infinitely many
b.
4
6. An equation for the graph shown is
2 X
C.
2
d.
none of the above
a.
y = x²(x + 1)(x + 2)²
C.
y = −x²(x + 1)(x − 2)²
b.
y = x² (x + 2)²
d.
y = −x² (x + 2)²
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