Steam is condensed at 100°C and the water is cooled to 0 °C and frozen to ice. What is the molar entropy change ( ) of the water? Consider that the specific heat of liquid \mole K. water is 4.2. The heat of vaporization at the boiling point and the heat of fusion at the g•K" freezing point are 2258.1 and 333.5 J/g, respectively.

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
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Chapter1: Introduction
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1) Steam is condensed at 100°C and the water is cooled to 0 °C and frozen to ice. What is
the molar entropy change ( ) of the water? Consider that the specific heat of liquid
mole·K,
water is 4.2. The heat of vaporization at the boiling point and the heat of fusion at the
g•K*
freezing point are 2258.1 and 333.5 J/g, respectively.
Transcribed Image Text:1) Steam is condensed at 100°C and the water is cooled to 0 °C and frozen to ice. What is the molar entropy change ( ) of the water? Consider that the specific heat of liquid mole·K, water is 4.2. The heat of vaporization at the boiling point and the heat of fusion at the g•K* freezing point are 2258.1 and 333.5 J/g, respectively.
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