[B1] Use the problem statement below to answer questions 3-4 Glycerin at 20°C is to be pumped through a horizontal smooth pipe at 0.2 m³/s. Two conditions are desired (1) laminar flow, (2) the pressure drop is no more than 750 Pa/m. For Glycerin, consider Poil = 1260 kg/m³ and μ =1.49 kg/(m s). 3. What is the minimum pipe diameter allowable? Provide your answer in metres. 4. What is the resulting friction factor in the pipe? Question 3 What is the minimum pipe diameter allowable? Provide your answer in metres Question 4 What is the resulting friction factor in the pipe?

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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[B1] Use the problem statement below to answer questions 3-4
Glycerin at 20°C is to be pumped through a horizontal smooth pipe at
0.2 m³/s. Two conditions are desired (1) laminar flow, (2) the pressure
drop is no more than 750 Pa/m.
For Glycerin, consider Poil = 1260 kg/m³ and μ =1.49 kg/(m s).
3. What is the minimum pipe diameter allowable? Provide your answer
in metres.
4. What is the resulting friction factor in the pipe?
Question 3
What is the minimum pipe diameter allowable? Provide your answer in
metres
Question 4
What is the resulting friction factor in the pipe?
Transcribed Image Text:[B1] Use the problem statement below to answer questions 3-4 Glycerin at 20°C is to be pumped through a horizontal smooth pipe at 0.2 m³/s. Two conditions are desired (1) laminar flow, (2) the pressure drop is no more than 750 Pa/m. For Glycerin, consider Poil = 1260 kg/m³ and μ =1.49 kg/(m s). 3. What is the minimum pipe diameter allowable? Provide your answer in metres. 4. What is the resulting friction factor in the pipe? Question 3 What is the minimum pipe diameter allowable? Provide your answer in metres Question 4 What is the resulting friction factor in the pipe?
Assume the following standard values if not provided with the problem statement
• Air
o p = 1.2 kg/m³
μ = 1.8 x 10-5 kg/(m s)
• Water
o p = 1000 kg/m³
o μ = 0.001 kg/(m s)
Transcribed Image Text:Assume the following standard values if not provided with the problem statement • Air o p = 1.2 kg/m³ μ = 1.8 x 10-5 kg/(m s) • Water o p = 1000 kg/m³ o μ = 0.001 kg/(m s)
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