Water at 25∘C∘C is pumped into the galvanized iron pipe branch consisting of two 50-mmmm-diameter pipes ABD��� and ACD���, which are 8 mm and 12 mm long, respectively. The pressure drop from A� to D� is 75 kPakPa. Neglect minor losses. The pipe branch is in the horizontal plane. Determine the flow through the pipe A�. Express your answer using three significant figures. Determine the flow through the pipe B�. Express your answer using three significant figures. Determine the flow through the pipe C�.
Water at 25∘C∘C is pumped into the galvanized iron pipe branch consisting of two 50-mmmm-diameter pipes ABD��� and ACD���, which are 8 mm and 12 mm long, respectively. The pressure drop from A� to D� is 75 kPakPa. Neglect minor losses. The pipe branch is in the horizontal plane. Determine the flow through the pipe A�. Express your answer using three significant figures. Determine the flow through the pipe B�. Express your answer using three significant figures. Determine the flow through the pipe C�.
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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Question
Water at 25∘C∘C is pumped into the galvanized iron pipe branch consisting of two 50-mmmm-diameter pipes ABD��� and ACD���, which are 8 mm and 12 mm long, respectively. The pressure drop from A� to D� is 75 kPakPa. Neglect minor losses. The pipe branch is in the horizontal plane.
Determine the flow through the pipe A�.
Express your answer using three significant figures.
Determine the flow through the pipe B�.
Express your answer using three significant figures.
Determine the flow through the pipe C�.
Express your answer using three significant figures.
![### Problem Statement
Water at 25°C is pumped into the galvanized iron pipe branch consisting of two 50-mm-diameter pipes \(ABD\) and \(ACD\), which are 8 m and 12 m long, respectively. The pressure drop from \(A\) to \(D\) is 75 kPa. Neglect minor losses. The pipe branch is in the horizontal plane.
#### Diagram Explanation
The diagram shows a pipeline setup with the following details:
- The main pipe divides into two branches, \(ABD\) and \(ACD\).
- Both branches are made of galvanized iron and have a diameter of 50 mm.
- Pipe \(ABD\) has a length of 8 m.
- Pipe \(ACD\) has a length of 12 m.
- The pressure drop across the system, from point \(A\) to point \(D\), is 75 kPa.
- Pipe \(B\) and \(C\) are connected perpendicular to the main branches.
- The entire setup lies in a horizontal plane.
### Tasks
**Part A**
- Determine the flow through the pipe \(A\).
- Express your answer using three significant figures.
```
Q_A = __ m³/s
```
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**Part B**
- Determine the flow through the pipe \(B\).
- Express your answer using three significant figures.
```
Q_B = __ m³/s
```
[Submit button]
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**Part C**
- Determine the flow through the pipe \(C\).
- Express your answer using three significant figures.
```
Q_C = __ m³/s
```
[Submit button]
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Transcribed Image Text:### Problem Statement
Water at 25°C is pumped into the galvanized iron pipe branch consisting of two 50-mm-diameter pipes \(ABD\) and \(ACD\), which are 8 m and 12 m long, respectively. The pressure drop from \(A\) to \(D\) is 75 kPa. Neglect minor losses. The pipe branch is in the horizontal plane.
#### Diagram Explanation
The diagram shows a pipeline setup with the following details:
- The main pipe divides into two branches, \(ABD\) and \(ACD\).
- Both branches are made of galvanized iron and have a diameter of 50 mm.
- Pipe \(ABD\) has a length of 8 m.
- Pipe \(ACD\) has a length of 12 m.
- The pressure drop across the system, from point \(A\) to point \(D\), is 75 kPa.
- Pipe \(B\) and \(C\) are connected perpendicular to the main branches.
- The entire setup lies in a horizontal plane.
### Tasks
**Part A**
- Determine the flow through the pipe \(A\).
- Express your answer using three significant figures.
```
Q_A = __ m³/s
```
[Submit button]
[Request Answer link]
**Part B**
- Determine the flow through the pipe \(B\).
- Express your answer using three significant figures.
```
Q_B = __ m³/s
```
[Submit button]
[Request Answer link]
**Part C**
- Determine the flow through the pipe \(C\).
- Express your answer using three significant figures.
```
Q_C = __ m³/s
```
[Submit button]
[Request Answer link]
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