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
Kinetic Theory of Gas
The Kinetic Theory of gases is a classical model of gases, according to which gases are composed of molecules/particles that are in random motion. While undergoing this random motion, kinetic energy in molecules can assume random velocity across all directions. It also says that the constituent particles/molecules undergo elastic collision, which means that the total kinetic energy remains constant before and after the collision. The average kinetic energy of the particles also determines the pressure of the gas.
P-V Diagram
A P-V diagram is a very important tool of the branch of physics known as thermodynamics, which is used to analyze the working and hence the efficiency of thermodynamic engines. As the name suggests, it is used to measure the changes in pressure (P) and volume (V) corresponding to the thermodynamic system under study. The P-V diagram is used as an indicator diagram to control the given thermodynamic 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](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7e76e1d2-318c-49ae-9a00-bb56fc056a57%2F5a8e326f-277c-4270-97c4-178d5e841081%2Fw2vc6kr_processed.jpeg&w=3840&q=75)
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