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You have been assigned to collect thermodynamic data for a new liquid product your company is about to begin manufacturing. You decide to use a

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You have been assigned to collect thermodynamic data for a new liquid product your company is about to begin manufacturing. You decide to use a continuous-flow technique to generate a correlation of H^ versus T. You wrap an electrical heating tape around a pipe, cover the tape with a thick layer of insulation, pump the liquid through the pipe at the rate of 228g/min, and adjust the power input to the heating tape with a variable resistor. For each resistance setting, you record the power input and the temperature of the liquid at the pipe outlet. You multiply the power input by a correction factor of 0.94 to determine the rate of heat input to the liquid. The entering fluid temperature remains at 25C throughout the experiment. The following data are taken: 1. Generate a table of H^(J/g) versus T(C), taking 25C and 1 atm as the reference state. 2. Fit a line to the data (either graphically or by the method of least squares) to determine the coefficient b of an expression of the form H^=b(T25). 3. Estimate the heat input required to raise 350kg/min of the liquid from 20C to 70C. Why would you be concerned about the accuracy of your estimate? 4. The correction factor of 0.94 accounts for the fact that the rate of energy input to the heating tape is somewhat greater than the rate of energy input to the liquid. Where does the additional energy go? (There are several answers.)

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