For the horizontal series-parallel system of the figure below, all pipes are 7 cm diameter asphalted cast iron (c = 0.12 mm) filled with water at 20°C (p=998 kg/m³,-0.001 kg/m.s). The total flow rate is Q=0.0269 m/s, the lengths of segments A and Care LA 250 m and Lc = 150 m, and velocity in segment A is VA= 2.04 m/s. Neglect all minor losses. P Determine: L = 250 m 150 m OF a. The length of segment B (LB). b. The total pressure drop (pi-P2). 2
For the horizontal series-parallel system of the figure below, all pipes are 7 cm diameter asphalted cast iron (c = 0.12 mm) filled with water at 20°C (p=998 kg/m³,-0.001 kg/m.s). The total flow rate is Q=0.0269 m/s, the lengths of segments A and Care LA 250 m and Lc = 150 m, and velocity in segment A is VA= 2.04 m/s. Neglect all minor losses. P Determine: L = 250 m 150 m OF a. The length of segment B (LB). b. The total pressure drop (pi-P2). 2
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![Question1
For the horizontal series-parallel system of the figure below, all pipes are 7 cm diameter
asphalted cast iron (r = 0.12 mm) filled with water at 20°C (p=998 kg/m³, μ = 0.001 kg/m.s).
The total flow rate is Q=0.0269 m³/s, the lengths of segments A and Care LA 250 m and Le
= 150 m, and velocity in segment A is VA = 2.04 m/s. Neglect all minor losses.
P
ő
Determine:
a. The length of segment B (LB).
b. The total pressure drop (pi-p:).
L = 250 m
150 m
с
2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe14847a5-1eac-4b20-a3ba-bf58107b4c65%2F734a0133-b447-4f6b-8f7b-9b4468fdf883%2Fj4iqt1n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Question1
For the horizontal series-parallel system of the figure below, all pipes are 7 cm diameter
asphalted cast iron (r = 0.12 mm) filled with water at 20°C (p=998 kg/m³, μ = 0.001 kg/m.s).
The total flow rate is Q=0.0269 m³/s, the lengths of segments A and Care LA 250 m and Le
= 150 m, and velocity in segment A is VA = 2.04 m/s. Neglect all minor losses.
P
ő
Determine:
a. The length of segment B (LB).
b. The total pressure drop (pi-p:).
L = 250 m
150 m
с
2
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