A polluted pool has an initial concentration of bacteria of 10* part/m³, while the acceptable level is only 5 × 103 part/m³. The concentration of the bacteria will reduce as fresh water enter the pool. The differential equation that governs the concentration C of the pollutant as a function of time (in weeks) is given by: dC =+ 0.05C = 0, dt C(0) = 104 Estimate the concentration of the pollutant after 15 weeks by taking a step size of 1 week. (i) (ii) Find the absolute error if the exact solution of Q3(a)(i) is C(t) = 10*e-0.05t %3D

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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A polluted pool has an initial concentration of bacteria of 10* part/m³, while the
acceptable level is only 5 x 103 part/m³. The concentration of the bacteria will
reduce as fresh water enter the pool. The differential equation that governs the
concentration C of the pollutant as a function of time (in weeks) is given by:
Q3
(a)
dC
+ 0.05C = 0,
dt
C(0) = 104
(i)
Estimate the concentration of the pollutant after 15 weeks by taking a step
size of 1 week.
(ii)
Find the absolute error if the exact solution of Q3(a)(i) is
C(t) = 10*e-0.05t
Activa vindows
Transcribed Image Text:A polluted pool has an initial concentration of bacteria of 10* part/m³, while the acceptable level is only 5 x 103 part/m³. The concentration of the bacteria will reduce as fresh water enter the pool. The differential equation that governs the concentration C of the pollutant as a function of time (in weeks) is given by: Q3 (a) dC + 0.05C = 0, dt C(0) = 104 (i) Estimate the concentration of the pollutant after 15 weeks by taking a step size of 1 week. (ii) Find the absolute error if the exact solution of Q3(a)(i) is C(t) = 10*e-0.05t Activa vindows
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