10. Hs = 2750 kJ/kg S= 4 kg F TE = 17°C Cp= 3.7 kJ/(kg K) B 25 °C Cp= 3.7 100 kg/min 30 °C R Cp = 3.5kJ/(kg K) 17°C Cp = 4.2.kJ/(kg K) From this Figure, determine the magnitude of: a. The feed stream F. b. The recycle stream R. c. The stream between stages 1 and 2, B.

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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part A, B, C 

10.
Hs = 2750 kJ/kg
S = 4 kg
TE = 17°C
Cp= 3.7 kJ/(kg K)
B
25 °C
Ср- 3.7
100 kg/min
30 °C
R
Cp = 3.5kJ/(kg K)
17°C
Cp = 4.2.kJ/(kg K)
From this Figure, determine the magnitude of:
а.
The feed stream F.
b. The recycle stream R.
The stream between stages 1 and 2, B.
с.
Transcribed Image Text:10. Hs = 2750 kJ/kg S = 4 kg TE = 17°C Cp= 3.7 kJ/(kg K) B 25 °C Ср- 3.7 100 kg/min 30 °C R Cp = 3.5kJ/(kg K) 17°C Cp = 4.2.kJ/(kg K) From this Figure, determine the magnitude of: а. The feed stream F. b. The recycle stream R. The stream between stages 1 and 2, B. с.
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