An electrically Heated stirred tank system of section 24.3 (page 23) of the Textbook is modeled by the following second
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An electrically Heated stirred tank system of section 24.3 (page 23) of the Textbook is modeled by the following second
An electrically Heated stirred tank system of section 24.3 (page 23) of the Textbook is modeled by the following second order differential equation: 92 Tit2.12 aTidt+T+T+0.050 where and T are inlet and outlet temperatures of the liquid streams and in the heat input rato. At steady state = 100°C, 360 °C, 35000 kcalimin (a) Obtain the transfer function (s)/Q (s) for this process Transfer function (6) Time constant and camping conficient in the transfer functionare au Zeta (0) ALTO. Qis suddenly changed from 5000 kcal/min to 6000 kcamin, calculate the exit temperature Taher 2 minutes. I.2minutes) d) Calculate the exit temperature after 3 minutes, IT-minutes For the toolbar, press ALT+F10 (PC) O ALTOFN F10 (Mac)
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