In the level tank shown in the figure, A1=A2=10ft^3, R1=0.1ft/cfm, R2=0.35ft/cfm. In the normal state, q is maintained at 20cfm. Now, at some point t=0, 10ft^3 of water was suddenly injected into the first tank. Find the maximum value of H2(t) and the time at this time. The effluent flows from the first and second tanks are given by q1 = h1/R1 and q2 = h2/R2, respectively.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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6.6 In the level tank shown in the figure, A1=A2=10ft^3, R1=0.1ft/cfm, R2=0.35ft/cfm. In the normal state, q is maintained at 20cfm. Now, at some point t=0, 10ft^3 of water was suddenly injected into the first tank. Find the maximum value of H2(t) and the time at this time. The effluent flows from the first and second tanks are given by q1 = h1/R1 and q2 = h2/R2, respectively.
0.E
10 ft3
9i
탱크 1
h
R1
91
R1
(단면적: A1)
탱크 2
h2
R2
h2
92
R2
(단면적: A2)
Transcribed Image Text:0.E 10 ft3 9i 탱크 1 h R1 91 R1 (단면적: A1) 탱크 2 h2 R2 h2 92 R2 (단면적: A2)
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