Mathematics with Applications and Mylab Math with Pearson EText -- Title-Specific Access Card Package
12th Edition
ISBN: 9780134862668
Author: Lial, Margaret L.
Publisher: Pearson Education Canada
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Chapter 10.3, Problem 32E
To determine
To calculate: Mean and standard deviation of the traditional instruction scores.
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Consider the system of differential equations
Verify that
x'
x,
x(0)
=
x(t) = c1e5t
H
+ Cze³t
[]
is a solution to the system of differential equations for any choice of the constants C1 and C2. Find values of C1 and
C2 that solve the given initial value problem. (According to the uniqueness theorem, you have found the unique
solution of ' = Px, x(0) = 0).
H
e³t
(t) = ( \ ) · e³ {}] + () ·³ [1]
Book: Section 3.3 of Notes on Diffy Qs
help (numbers)
Find the most general real-valued solution to the linear system of differential equations
[5
-6
x
=
-10||
x(t)
[*] [B] • [8]
= C1
y(t)
In the phase plane, this system is best described as a
source/unstable node
O sink / stable node
saddle
center point / ellipses
spiral source
spiral sink
none of these
Book: Section 3.5 of Notes on Diffy Qs
help (formulas)
help (matrices)
Consider the system of higher order differential equations
y″ = t¯¹y' + 7y – tz + (sint)z' + e5t,
z" = y — 3z'.
Rewrite the given system of two second order differential equations as a system of four first order linear differential
equations of the form ÿ' = P(t)ÿ+ g(t). Use the following change of variables
y'
[Y]
Y1
Y2
Y3
LY4_
help (formulas) help (matrices)
Book: Section 3.3 of Notes on Diffy Qs
[y1(t)]
[ y(t)]
Y2(t)
y' (t)
ÿ(t) =
=
Y3(t)
z(t)
Y₁(t)]
[z'(t)]
Chapter 10 Solutions
Mathematics with Applications and Mylab Math with Pearson EText -- Title-Specific Access Card Package
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- Calculate the eigenvalues of this matrix: [21 12 A 24 -21 You'll probably want to use a calculator or computer to estimate the roots of the polynomial that defines the eigenvalues. The system has two real eigenvalues 1 and 2 where \1<\2 smaller eigenvalue \1 = help (numbers) associated eigenvector v1 larger eigenvalue 2 = = help (matrices) help (numbers) associated eigenvector v2 If x' = = B help (matrices) A is a differential equation, how do the solution curves behave? A. The solution curves diverge from different points on parallel paths. B. The solution curves would race towards zero and then veer away towards infinity. (saddle point) C. The solution curves converge to different points on parallel paths. D. All of the solution curves would run away from 0. (source / unstable node) E. All of the solutions curves would converge towards 0. (sink / stable node) Book: Section 3.5 of Notes on Diffy Qsarrow_forwardSuppose x = C1e2t [x(0)] Ly(0). Find C1 and C2. H == + C₂et [ - C1 = help (numbers) C₂ = help (numbers) 3 5 2 1 -3 -2 -1 2 3 -1 -2 -3 A 5 * x = Sketch the phase plane trajectory that satisfies the given initial condition. Which graph most closely resembles the graph you drew? Choose ✰ Is the solution curve headed toward or away from the origin as t increases? A. toward B. away C. neither toward nor away -3 N -1 3 2 1 -1 -2 -3 Book: Section 3.5 of Notes on Diffy Qs 0 3 5 2 1 -3 -2 -1 -1 -2 -3 - B 3 2 2 1 3 x * x * х 2 3 -3 -2 -1 2 3 -1 -2 -3 Darrow_forwardShow that 2et |x(t) = is a solution to the system of linear homogeneous differential equations x'₁ = 2x1 + x2 x3, x2 = x1 + x2 + 2x3, x3 = x = x1 + 2x2 x3. Find the value of each term in the equation x1 order given.) = 2x1 x2 x3 in terms of the variable t. (Enter the terms in the ☐ = 0 + 0 + ☐ help (formulas) Find the value of each term in the equation x 2 = x1 + x2+2x3 terms of the variable t. (Enter the terms in the order given.) ☐ = 0 + 0 + help (formulas) Find the value of each term in the equation x3 = x1 + 2x2 + x3 in terms of the variable t. (Enter the terms in the order given.) ☐ = 0 + 0 + ☐ help (formulas) Book: Section 3.3 of Notes on Diffy Qsarrow_forward
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