A water cooler uses 50 lb/hr of melting ice to cool running water from 80°F to 42°F. Based on the inside coil area, Ui=110 Btu/hr-ft²-°F. Find the logarithmic mean temperature difference. A. 17.42°F B. 19.85°F C. 22.15°F D. 24.24°F From the data in the problem, calculate the inside area of the coil in ft² A. 1.410 B. 2.664 C. 22.15 D. 24.24°F From the data in the problem, calculate the gpm of water cooled. A. 0.285 B. 0.380 C. 0.431 D. 0.489
A water cooler uses 50 lb/hr of melting ice to cool running water from 80°F to 42°F. Based on the inside coil area, Ui=110 Btu/hr-ft²-°F. Find the logarithmic mean temperature difference. A. 17.42°F B. 19.85°F C. 22.15°F D. 24.24°F From the data in the problem, calculate the inside area of the coil in ft² A. 1.410 B. 2.664 C. 22.15 D. 24.24°F From the data in the problem, calculate the gpm of water cooled. A. 0.285 B. 0.380 C. 0.431 D. 0.489
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
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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A water cooler uses 50 lb/hr of melting ice to cool running water from 80°F to 42°F. Based on the inside coil area, Ui=110 Btu/hr-ft²-°F. Find the logarithmic mean temperature difference.
A. 17.42°F
B. 19.85°F
C. 22.15°F
D. 24.24°F
From the data in the problem, calculate the inside area of the coil in ft²
A. 1.410
B. 2.664
C. 22.15
D. 24.24°F
From the data in the problem, calculate the gpm of water cooled.
A. 0.285
B. 0.380
C. 0.431
D. 0.489
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