Part A: In this process, the systems undergo which of following changes? A. Phase changes only B. Temperature changes only C. Both phase and temperature changes D. Neither phase nor temperature changes Part B: Determine which quantities are known and which are unknown: - initial mass of tea - initial mass of ice - initial volume of tea - initial volume of ice - initial temperature of tea - initial temperature of ice -final temperature of system

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Part A: In this process, the systems undergo which of following changes? A. Phase changes only B. Temperature changes only C. Both phase and temperature changes D. Neither phase nor temperature changes Part B: Determine which quantities are known and which are unknown: - initial mass of tea - initial mass of ice - initial volume of tea - initial volume of ice - initial temperature of tea - initial temperature of ice -final temperature of system
On a hot summer day, you decide to make some
iced tea. First, you brew 1.50L of hot tea and
leave it to steep until it has reached a temperature
of Thea = 75 0°C. You then add 0 975 kg of ice
taken from the freezer at a temperature of Tce - 0
°C By the time the mix reaches equilibrium, all of
the ice has melted. What is the final temperature
T of the mixture?
%3D
For the purposes of this problem, assume that the
tea has the same thermodynamic properties as
plain water.
The specific heat of water is
c = 4190 J/kg .° C
The heat of fusion of ice is
Lf = 3.33x105 J/kg
• The density of the tea is
= 1.00 kg/L
Ptea
Transcribed Image Text:On a hot summer day, you decide to make some iced tea. First, you brew 1.50L of hot tea and leave it to steep until it has reached a temperature of Thea = 75 0°C. You then add 0 975 kg of ice taken from the freezer at a temperature of Tce - 0 °C By the time the mix reaches equilibrium, all of the ice has melted. What is the final temperature T of the mixture? %3D For the purposes of this problem, assume that the tea has the same thermodynamic properties as plain water. The specific heat of water is c = 4190 J/kg .° C The heat of fusion of ice is Lf = 3.33x105 J/kg • The density of the tea is = 1.00 kg/L Ptea
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