As shown in figure Q3, two tanks connected with valve are containing air with the given condition as shown in the figure. Now the valve is opened and the air in the two tanks are allowed to mix and reach to equilibrium condition with the surrounding temperature of 20°C. Considering the necessary assumptions, determine (a) the volume of tank B, (b) the pressure of both tanks after the valve is opened. (c) Can we use ideal gas low for saturated water steam at atmospheric pressure? Discuss the reason.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q3.
As shown in figure Q3, two tanks connected with valve are containing air with the given condition
as shown in the figure. Now the valve is opened and the air in the two tanks are allowed to mix
and reach to equilibrium condition with the surrounding temperature of 20°C. Considering the
necessary assumptions, determine
(a) the volume of tank B,
(b) the pressure of both tanks after the valve is opened.
(c) Can we use ideal gas low for saturated water steam at atmospheric pressure? Discuss the
reason.
(The gas constant of air is R = 0.287 kPa.m³/kg.K.)
A
В
V = 1 m3
m = X m3
T= 17 °C
T= 35 °C
P = 450 kPa
P = 300 kPa
Figure Q3.
Transcribed Image Text:Q3. As shown in figure Q3, two tanks connected with valve are containing air with the given condition as shown in the figure. Now the valve is opened and the air in the two tanks are allowed to mix and reach to equilibrium condition with the surrounding temperature of 20°C. Considering the necessary assumptions, determine (a) the volume of tank B, (b) the pressure of both tanks after the valve is opened. (c) Can we use ideal gas low for saturated water steam at atmospheric pressure? Discuss the reason. (The gas constant of air is R = 0.287 kPa.m³/kg.K.) A В V = 1 m3 m = X m3 T= 17 °C T= 35 °C P = 450 kPa P = 300 kPa Figure Q3.
Q2.
Considering the givens in Ql and assuming variation of spring constant between 50 to 500 kN/m
with 50 kN/m interval, and considering 50 kg instead of 60 kg mass of water,
(a) calculate final pressure (P:) and boundary work output (Wou) against the spring constant.
(b) plot the graph of final pressure (vertical) vs. spring constant (horizontal) & boundary work
(vertical) vs spring constant (horizontal).
(c) Discuss the results based on your findings. What would be the final pressure and work
output if the spring resistance is removed.
Transcribed Image Text:Q2. Considering the givens in Ql and assuming variation of spring constant between 50 to 500 kN/m with 50 kN/m interval, and considering 50 kg instead of 60 kg mass of water, (a) calculate final pressure (P:) and boundary work output (Wou) against the spring constant. (b) plot the graph of final pressure (vertical) vs. spring constant (horizontal) & boundary work (vertical) vs spring constant (horizontal). (c) Discuss the results based on your findings. What would be the final pressure and work output if the spring resistance is removed.
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