
Elements of Electromagnetics
7th Edition
ISBN: 9780190698669
Author: Sadiku
Publisher: Oxford University Press
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Chapter MA, Problem 3.2MA
To determine
The value of
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Consider 0.65 kg of N2 at 300 K, 1 bar contained in a rigid tank connected by a valve to another rigid tank holding 0.3 kg of CO2 at 300
K, 1 bar. The valve is opened and gases are allowed to mix, achieving an equilibrium state at 290 K.
Determine:
(a) the volume of each tank, in m³.
(b) the final pressure, in bar.
(c) the magnitude of the heat transfer to or from the gases during the process, in kJ.
(d) the entropy change of each gas and of the overall system, in kJ/K.
1. For the following two-DOF system, determine the first natural frequency using
equation method: Raylieghs
m2=2 kg
k₂=
80 N/m
m₁ =1 kg
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k₁=
40 N/m
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Chapter MA Solutions
Elements of Electromagnetics
Ch. MA - Prob. 1.1MACh. MA - Prob. 1.2MACh. MA - Prob. 1.3MACh. MA - Prob. 1.4MACh. MA - Prob. 1.5MACh. MA - Prob. 1.6MACh. MA - Prob. 1.7MACh. MA - Prob. 1.8MACh. MA - Prob. 1.9MACh. MA - Prob. 1.10MA
Ch. MA - Prob. 1.11MACh. MA - Prob. 1.13MACh. MA - Prob. 1.14MACh. MA - Prob. 1.15MACh. MA - Prob. 2.1MACh. MA - Prob. 2.6MACh. MA - Prob. 2.7MACh. MA - Prob. 2.8MACh. MA - Prob. 3.1MACh. MA - Prob. 3.2MACh. MA - Prob. 3.4MACh. MA - Prob. 4.1MACh. MA - Prob. 4.2MACh. MA - Prob. 4.3MACh. MA - Prob. 4.4MACh. MA - Prob. 4.5MACh. MA - Prob. 4.6MACh. MA - Prob. 4.7MACh. MA - Prob. 4.8MACh. MA - Prob. 4.9MACh. MA - Prob. 4.10MACh. MA - Prob. 4.13MACh. MA - Prob. 4.14MACh. MA - Prob. 4.16MA
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