In figure Shown, felocity at Section-1, is 1.7 and density of water slog is 1.94 Sa. Neglect losses, Calculate h.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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### Problem Description

In the figure shown, the velocity at Section 1 is 1.7 ft/s, and the density of water is 1.94 slug/ft³. Neglect losses. Calculate \( h \).

### Diagram Explanation

- The diagram is of a pipe system with water flow.
- The pipe system has sections with different diameters:
  - The first section has a 3-inch diameter.
  - The second section has a 1-inch diameter.
- Flow direction is indicated by an arrow.

- Dimensions and heights:
  - The horizontal distance for the first part of the system is 10 ft.
  - The vertical height from the bottom to the top pipe is 2 ft.
  - The pipe turns vertically and is connected to a U-tube containing mercury (Hg) with a specific gravity of 13.6.

### Calculation Requirement

Using the provided data, you are asked to calculate the height \( h \) in the U-tube. The fluid involved is water with the given properties, and any energy losses in the system are negligible.
Transcribed Image Text:### Problem Description In the figure shown, the velocity at Section 1 is 1.7 ft/s, and the density of water is 1.94 slug/ft³. Neglect losses. Calculate \( h \). ### Diagram Explanation - The diagram is of a pipe system with water flow. - The pipe system has sections with different diameters: - The first section has a 3-inch diameter. - The second section has a 1-inch diameter. - Flow direction is indicated by an arrow. - Dimensions and heights: - The horizontal distance for the first part of the system is 10 ft. - The vertical height from the bottom to the top pipe is 2 ft. - The pipe turns vertically and is connected to a U-tube containing mercury (Hg) with a specific gravity of 13.6. ### Calculation Requirement Using the provided data, you are asked to calculate the height \( h \) in the U-tube. The fluid involved is water with the given properties, and any energy losses in the system are negligible.
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