The amounts x, (t) and x2(t) of salt in two brine tanks satisfy the differential equations below, r for i = 1, 2. The volumes are V, Vi where k; = 40 (gal) and V, = 20 (gal). First solve for x4 (t) and x2(t) assuming that r= 6 (gal/min), x, (0) = 12 (Ib), and x2(0) = 0. Then construct a figure showing the graphs of x, (t) and x, (t). %3D dx, - k,x1 + k2X2, dx2 = kqx1 - k2x2 dt dt X1 (t) = X2 (t) = Choose the correct graph of x, (t) and x2(t) below. OA. В. С. D. Ax 12- 12- 12- 12- X1 X. 0- 04

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Chapter2: Second-order Linear Odes
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The amounts x1 (t) and x2(t) of salt in two brine tanks satisfy the differential equations below,
where k;
for i = 1, 2. The volumes are V, = 40 (gal) and V, = 20 (gal). First solve for
Vi
%3D
%3D
X4 (t) and x2(t) assuming that r= 6 (gal/min), x, (0) = 12 (Ib), and x2(0) = 0. Then construct a
figure showing the graphs of x, (t) and x2(t).
dx,
- k, x1 + k2X2,
dx2
= k,x1 - k2X2
dt
dt
X1 (t) =
X2 (t) =
Choose the correct graph of x, (t) and x2(t) below.
А.
В.
C.
D.
AX
12-
12-
12-
12-
X.
0-
0-
Transcribed Image Text:The amounts x1 (t) and x2(t) of salt in two brine tanks satisfy the differential equations below, where k; for i = 1, 2. The volumes are V, = 40 (gal) and V, = 20 (gal). First solve for Vi %3D %3D X4 (t) and x2(t) assuming that r= 6 (gal/min), x, (0) = 12 (Ib), and x2(0) = 0. Then construct a figure showing the graphs of x, (t) and x2(t). dx, - k, x1 + k2X2, dx2 = k,x1 - k2X2 dt dt X1 (t) = X2 (t) = Choose the correct graph of x, (t) and x2(t) below. А. В. C. D. AX 12- 12- 12- 12- X. 0- 0-
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