Open closed Problem-1 B- Air In figure shown , R= Pair = 1-5 Kpa (gage), determine Za and Zc in terms of meter. 8Gaseline = 6670 N. C-- Gasoline %3D %3D B. Glycen ne Saly Cerime = 12360 N/ , h,= 2.5m, he = 1.5m Note: Write one line manometer, ezuatión , NOCREDIT OTHERNISE 3 ) %3D %3D

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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**Problem 1**

**In the figure shown:**

- \( P_i = P_{air} = 1.5 \, \text{kPa (gage)} \)
- Determine \( Z_B \) and \( Z_C \) in terms of meters.

\(\gamma_{\text{Gasoline}} = 6670 \, \text{N/m}^3\)

\(\gamma_{\text{Glycerine}} = 12360 \, \text{N/m}^3\)

\( h_1 = 2.5 \, \text{m} \)

\( h_2 = 1.5 \, \text{m} \)

**Note:** Write one line manometer equation, *No credit otherwise.*

---

**Diagram Explanation:**

The diagram depicts a U-tube manometer configuration:

- The left side contains air above a column of gasoline.
- Below the gasoline, a section of glycerine is present.
- The right side of the U-tube is open to the air.
- \( h_1 \) is the height of the gasoline column.
- \( h_2 \) is the height of the glycerine column.
- \( Z_B \) and \( Z_C \) are vertical distances indicated on the right of the setup.

Chevron indicators illustrate fluid levels. The notation and setup are consistent with hydrostatic pressure calculations involving different fluid densities.
Transcribed Image Text:**Problem 1** **In the figure shown:** - \( P_i = P_{air} = 1.5 \, \text{kPa (gage)} \) - Determine \( Z_B \) and \( Z_C \) in terms of meters. \(\gamma_{\text{Gasoline}} = 6670 \, \text{N/m}^3\) \(\gamma_{\text{Glycerine}} = 12360 \, \text{N/m}^3\) \( h_1 = 2.5 \, \text{m} \) \( h_2 = 1.5 \, \text{m} \) **Note:** Write one line manometer equation, *No credit otherwise.* --- **Diagram Explanation:** The diagram depicts a U-tube manometer configuration: - The left side contains air above a column of gasoline. - Below the gasoline, a section of glycerine is present. - The right side of the U-tube is open to the air. - \( h_1 \) is the height of the gasoline column. - \( h_2 \) is the height of the glycerine column. - \( Z_B \) and \( Z_C \) are vertical distances indicated on the right of the setup. Chevron indicators illustrate fluid levels. The notation and setup are consistent with hydrostatic pressure calculations involving different fluid densities.
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