3. A 2000 mL container holds 0.100 mol of He (g) at 300 °C. Treat He(g) as an ideal gas for the following problems. Report energies in units of Joules. Increasing Volume n₁ = 0.1 mol V₁ = 2000 mL T₁ = 300° C P₁ = A n = 0,1 mol V = 1000 mL T₂ = P₂= P₁ = C B n = 0.1 mol V = 2000 mL T3 = P₁ = 2.5 x P₁ = D n = 0.1 mol V = 1000 mL T4= P₁ = P3 Increasing Pressure a. Calculate all the missing values in the following diagram. Report pressures in units of atm and temperatures in units of degrees Celsius.

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Thermodynamics
3. A 2000 mL container holds 0.100 mol of He (g) at 300 °C. Treat He(g) as
an ideal gas for the following problems. Report energies in units of
Joules.
Increasing Volume
n₁ = 0.1 mol
V₁ = 2000 mL
T₁ = 300° C
P₁ =
n = 0.1 mol
V = 1000 mL
T₂ =
A
P₂= P₁ =
C
B
n = 0.1 mol
V = 2000 mL
T3 =
P3 = 2.5 x P₁ =
D
n = 0.1 mol
V = 1000 mL
T₁ =
P4 = P3=
Increasing Pressure
a. Calculate all the missing values in the following diagram. Report pressures in
units of atm and temperatures in units of degrees Celsius.
Transcribed Image Text:Thermodynamics 3. A 2000 mL container holds 0.100 mol of He (g) at 300 °C. Treat He(g) as an ideal gas for the following problems. Report energies in units of Joules. Increasing Volume n₁ = 0.1 mol V₁ = 2000 mL T₁ = 300° C P₁ = n = 0.1 mol V = 1000 mL T₂ = A P₂= P₁ = C B n = 0.1 mol V = 2000 mL T3 = P3 = 2.5 x P₁ = D n = 0.1 mol V = 1000 mL T₁ = P4 = P3= Increasing Pressure a. Calculate all the missing values in the following diagram. Report pressures in units of atm and temperatures in units of degrees Celsius.
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