[A2] Use the problem statement below to answer questions 1-2 Oil flows through a smooth pipe of diameter D = 4 cm between points (1) and (2) that are 4 m apart at a flow rate Q = 4x 10³ m³/s. The pressure at the lower end is 300 kPa, and the pipe is inclined at 0 = 30 degrees. Consider dynamic viscosity μ = 0.40 kg/(ms) and density p= 900 kg/m³ for the oil. 1. Calculate the pressure P₁ in Pascals when the flow is upwards 2. Calculate the pressure P₁ in Pascals when the flow is downwards 2 Question 1 0 D 1

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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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)
[A2] Use the problem statement below to answer questions 1-2
Oil flows through a smooth pipe of diameter D = 4 cm between points
(1) and (2) that are 4 m apart at a flow rate Q = 4x 10-³ m³/s. The
pressure at the lower end is 300 kPa, and the pipe is inclined at 0 = 30
degrees. Consider dynamic viscosity μ = 0.40 kg/(m s) and density p =
900 kg/m³ for the oil.
1. Calculate the pressure P₁ in Pascals when the flow is upwards
2. Calculate the pressure P₁ in Pascals when the flow is downwards
2
Question 1
0
Question 2
D
1
Calculate the pressure P₁ in Pascals when the flow is upwards
Calculate the pressure P₁ in Pascals when the flow is downwards
Transcribed Image Text:[A2] Use the problem statement below to answer questions 1-2 Oil flows through a smooth pipe of diameter D = 4 cm between points (1) and (2) that are 4 m apart at a flow rate Q = 4x 10-³ m³/s. The pressure at the lower end is 300 kPa, and the pipe is inclined at 0 = 30 degrees. Consider dynamic viscosity μ = 0.40 kg/(m s) and density p = 900 kg/m³ for the oil. 1. Calculate the pressure P₁ in Pascals when the flow is upwards 2. Calculate the pressure P₁ in Pascals when the flow is downwards 2 Question 1 0 Question 2 D 1 Calculate the pressure P₁ in Pascals when the flow is upwards Calculate the pressure P₁ in Pascals when the flow is downwards
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