Determine the liquid inertance of 1.4189 m long pipe that has a cross sectional area A(x)= 0.0144 + 0.0123 *x*x m*m. The liquid density is 1000 kg/m³

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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QUESTION
Determine the liquid inertance of 1.4189 m long pipe that has a cross sectional area A(x)= 0.0144 +
0.0123 *x*x m*m. The liquid density is 1000 kg/m³
QUESTION 2
Consider 6 tanks with capacitances of 2 C, 9 C, 3 C, 9C.4 C and 4 C that are connected into parallel. The equivalent
capacitance Ceq C. Compute Ceq. (Just put a number without symbols)
QUESTIONS
Consider the heat conduction through a four-layers wall of thicknesses 0,1432 m, 0.1742 m. 0.1082 m and 0,1049 m. The layers cross sectional
area is 1.6333 m'm. The thermal conductivities of the layers are 25.3711, 29.0517, 25.8744 and 20.1476 Wimk. Compute the equivalent
thermal resistance.
QUESTION
Consider 5 tanks with capacitances of 4 C, 8 C, 4 C, 9 C and 4 C that are connected into series. The
equivalent capacitance Ceq* C. Compute Ceq. (Just put a number without symbols)
Transcribed Image Text:QUESTION Determine the liquid inertance of 1.4189 m long pipe that has a cross sectional area A(x)= 0.0144 + 0.0123 *x*x m*m. The liquid density is 1000 kg/m³ QUESTION 2 Consider 6 tanks with capacitances of 2 C, 9 C, 3 C, 9C.4 C and 4 C that are connected into parallel. The equivalent capacitance Ceq C. Compute Ceq. (Just put a number without symbols) QUESTIONS Consider the heat conduction through a four-layers wall of thicknesses 0,1432 m, 0.1742 m. 0.1082 m and 0,1049 m. The layers cross sectional area is 1.6333 m'm. The thermal conductivities of the layers are 25.3711, 29.0517, 25.8744 and 20.1476 Wimk. Compute the equivalent thermal resistance. QUESTION Consider 5 tanks with capacitances of 4 C, 8 C, 4 C, 9 C and 4 C that are connected into series. The equivalent capacitance Ceq* C. Compute Ceq. (Just put a number without symbols)
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