1. Consider the following diagram. The fluid flowing in the pipe is oil (SG = 0.830). The fluid in the manometer is water (SG = 1.00). Water, pw = 1000 kg/m³ 7 cm Oil, p = 830 kg/m³ a. Determine P₂ - P₁ in kPa. b. Determine the direction of flow. (Left to right, or right to left). Explain why this is the case. c. The height of oil between the manometer and the pipe is unknown. Explain how you can still solve the problem without knowing this height. Would this height ever matter? Hint: consider practical issues of design. Could the height be 0 cm? Could it be 1000 cm?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1. Consider the following diagram. The fluid flowing in the pipe is oil (SG = 0.830). The fluid in the
manometer is water (SG = 1.00).
Water, pw = 1000 kg/m³
7 cm
Oil, p = 830 kg/m³
a. Determine P₂ - P₁ in kPa.
b. Determine the direction of flow. (Left to right, or right to left). Explain why this is the
case.
c.
The height of oil between the manometer and the pipe is unknown. Explain how you
can still solve the problem without knowing this height. Would this height ever matter?
Hint: consider practical issues of design. Could the height be 0 cm? Could it be
1000 cm?
Transcribed Image Text:1. Consider the following diagram. The fluid flowing in the pipe is oil (SG = 0.830). The fluid in the manometer is water (SG = 1.00). Water, pw = 1000 kg/m³ 7 cm Oil, p = 830 kg/m³ a. Determine P₂ - P₁ in kPa. b. Determine the direction of flow. (Left to right, or right to left). Explain why this is the case. c. The height of oil between the manometer and the pipe is unknown. Explain how you can still solve the problem without knowing this height. Would this height ever matter? Hint: consider practical issues of design. Could the height be 0 cm? Could it be 1000 cm?
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