A heat transfer process has the following transfer func-tion between a temperatureT(in∘C) and an inlet flow rate q where the time constants have units of minutes:T′(s)/Q′(s)=3(1−s)/{s(2s+1)} If the flow rate varies sinusoidally with an amplitude of 2 L/min and a period of 0.5 min, what is the amplitude of the tempera-ture signal after the transients have died out?
A heat transfer process has the following transfer func-tion between a temperatureT(in∘C) and an inlet flow rate q where the time constants have units of minutes:T′(s)/Q′(s)=3(1−s)/{s(2s+1)} If the flow rate varies sinusoidally with an amplitude of 2 L/min and a period of 0.5 min, what is the amplitude of the tempera-ture signal after the transients have died out?
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter18: Resistive-inductive Parallel Circuits
Section: Chapter Questions
Problem 2PP: Assume that the current flow through the resistor, IR, is 15 A; the current flow through the...
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A heat transfer process has the following transfer func-tion between a temperatureT(in∘C) and an inlet flow rate q where the time constants have units of minutes:T′(s)/Q′(s)=3(1−s)/{s(2s+1)} If the flow rate varies sinusoidally with an amplitude of 2 L/min and a period of 0.5 min, what is the amplitude of the tempera-ture signal after the transients have died out?
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