10. The mercury in the manometer has a difference in elevation of h = 0.15 m. Determine the volumetric discharge of gasoline through the pipe. Take Pgas 726 kg/m³. 75 mm 150 mm B

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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**Problem 10:**

The mercury in the manometer has a difference in elevation of \( h = 0.15 \, \text{m} \). Determine the volumetric discharge of gasoline through the pipe. Take \( \rho_{\text{gas}} = 726 \, \text{kg/m}^3 \).

**Diagram Explanation:**

The diagram illustrates a horizontal pipe with varying diameters connected to a U-tube manometer. The manometer measures the pressure difference between two points (A and B) in the flow, where:

- The left side of the pipe at point A has a diameter of 75 mm.
- The right side of the pipe at point B has a diameter of 150 mm.
- The manometer connected to the pipe shows a height difference \( h \).

This setup is used to calculate the volumetric discharge through the pipe based on the provided height difference of mercury in the manometer.
Transcribed Image Text:**Problem 10:** The mercury in the manometer has a difference in elevation of \( h = 0.15 \, \text{m} \). Determine the volumetric discharge of gasoline through the pipe. Take \( \rho_{\text{gas}} = 726 \, \text{kg/m}^3 \). **Diagram Explanation:** The diagram illustrates a horizontal pipe with varying diameters connected to a U-tube manometer. The manometer measures the pressure difference between two points (A and B) in the flow, where: - The left side of the pipe at point A has a diameter of 75 mm. - The right side of the pipe at point B has a diameter of 150 mm. - The manometer connected to the pipe shows a height difference \( h \). This setup is used to calculate the volumetric discharge through the pipe based on the provided height difference of mercury in the manometer.
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