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An engineer has set up a reaction in a reactor. The initial reaction volume is 1 L . A stream continously flows into the reactor

An engineer has set up a reaction in a reactor. The initial reaction volume is 1L. A stream continously flows into the reactor
at the flow rate of 0.1Lh(Ff). Harvesting will start when the volume reaches 2L. The harvesting rate is also 0.1Lh(Fw). The
governing equations and other information are given below. Model the process until the steady state (your scipt should pro-
duce a plot to show how CA and CB changes over time until reaching a steady state).
Initial conditions:
At0h: CA=1M,CB=0,V=1L
Rate law:
rA=-kCA3,rB=-rA3
Parameters and constants:
Ff=0.1Lh,CfA=10M,CfB=0
IfV2L:Fw=0; else: Fw=0.1Lh
k=0.01M-2h-1An engineer has set up a reaction in a reactor. The initial reaction volume is 1 L. A stream continously flows into the reactor
at the flow rate of 0.1 L/h (Fs). Harvesting will start when the volume reaches 2 L. The harvesting rate is also 0.1 L/h (Fw). The
governing equations and other information are given below. Model the process until the steady state (your python scipt should pro-
duce a plot to show how CA and CB changes over time until reaching a steady state).
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