Required information The small turbine in given figure extracts 400 W of power from the water flow. Both pipes are wrought iron. For water, take p = 998 kg/m3 and u = 0.001 kg/m-s. For wrought iron, take ɛ = 0.046 mm. Water 20 m 20°C Turbine 10 m D = 6 cm 30 m D = 4 cm For the given two flow rates obtained are Q1 = 15.7 m3/hr and Q2 = 9 m3/hr. Both the solutions are valid, but the flow i Q1 is preferred over Q2. True or False True False
Required information The small turbine in given figure extracts 400 W of power from the water flow. Both pipes are wrought iron. For water, take p = 998 kg/m3 and u = 0.001 kg/m-s. For wrought iron, take ɛ = 0.046 mm. Water 20 m 20°C Turbine 10 m D = 6 cm 30 m D = 4 cm For the given two flow rates obtained are Q1 = 15.7 m3/hr and Q2 = 9 m3/hr. Both the solutions are valid, but the flow i Q1 is preferred over Q2. True or False True False
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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![Required information
The small turbine in given figure extracts 400 W of power from the water flow. Both pipes are wrought iron. For water, take
p = 998 kg/m3 and u = 0.001 kg/m-s. For wrought iron, take ɛ = 0.046 mm.
Water
20 m
20°C
Turbine
10 m
30 m
D = 6 cm
D = 4 cm
For the given flow, the two flow rates obtained are Q1 = 15.7 m3/hr and Q2 = 9 m3/hr. Both the solutions are valid, but the flow rate Q is preferred over Q2.
True or False
True
False](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9e05d2b6-8012-405f-a094-7d95f2ffbd8c%2F8db9ebe5-081d-4114-a9f5-acfea80578e9%2Fck7o8f_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Required information
The small turbine in given figure extracts 400 W of power from the water flow. Both pipes are wrought iron. For water, take
p = 998 kg/m3 and u = 0.001 kg/m-s. For wrought iron, take ɛ = 0.046 mm.
Water
20 m
20°C
Turbine
10 m
30 m
D = 6 cm
D = 4 cm
For the given flow, the two flow rates obtained are Q1 = 15.7 m3/hr and Q2 = 9 m3/hr. Both the solutions are valid, but the flow rate Q is preferred over Q2.
True or False
True
False
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