2. Two containers are connected with a stopcock. The first one contains oxygen gas at a pressure of 0.80 atm and has a volume of 2.7 L. The second contains hydrogen gas at a pressure of 1.55 atm and has a volume of 3.5 L and. The stopcock between the two containers is opened and the gases are allowed to mix. a. Find the resulting pressure of the gas mixture

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Question attached about Latent Heat and Thermodynamics, kindly show all working and formulas used to solve along with any explanation required at each step. Thank you. :)

2. Two containers are connected with a stopcock. The first one contains oxygen gas at a
pressure of 0.80 atm and has a volume of 2.7 L. The second contains hydrogen gas at a
pressure of 1.55 atm and has a volume of 3.5 L and. The stopcock between the two
containers is opened and the gases are allowed to mix.
a. Find the resulting pressure of the gas mixture
3. 1 kg of a gas at a temperature of 40° C and a pressure of 120 KPa occupies a volume of
0.25m³. If the Cy of the gas =743 J/Kg.K Find:
a. The characteristic gas constant
b. The modular mass and relative molecular mass
c. The specific heat capacity at constant pressure
d. The ratio of specific heats
Transcribed Image Text:2. Two containers are connected with a stopcock. The first one contains oxygen gas at a pressure of 0.80 atm and has a volume of 2.7 L. The second contains hydrogen gas at a pressure of 1.55 atm and has a volume of 3.5 L and. The stopcock between the two containers is opened and the gases are allowed to mix. a. Find the resulting pressure of the gas mixture 3. 1 kg of a gas at a temperature of 40° C and a pressure of 120 KPa occupies a volume of 0.25m³. If the Cy of the gas =743 J/Kg.K Find: a. The characteristic gas constant b. The modular mass and relative molecular mass c. The specific heat capacity at constant pressure d. The ratio of specific heats
3. A student added lumps of ice to cool a Lemonade. He discovers that 80g of ice at a
temperature of 0°C cools 0.25 kg of lemonade from 25°C to 6°C. The latent heat of fusion of
ice is 0.33 MJ/kg and the specific heat capacity of water is 4.2 kJ/kg K. Determine:
a. The energy gained by the ice in melting
b. The energy gained by the melted ice
c. The energy lost by the lemonade
d. A value for the specific heat capacity of the lemonade
Transcribed Image Text:3. A student added lumps of ice to cool a Lemonade. He discovers that 80g of ice at a temperature of 0°C cools 0.25 kg of lemonade from 25°C to 6°C. The latent heat of fusion of ice is 0.33 MJ/kg and the specific heat capacity of water is 4.2 kJ/kg K. Determine: a. The energy gained by the ice in melting b. The energy gained by the melted ice c. The energy lost by the lemonade d. A value for the specific heat capacity of the lemonade
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