4- Water flows steadily through a splitter as shown in Fig. with Q1 = 0.08 m3/s, Q2 = 0.05 m3/s, D1 D2 = 12 cm, D3 = 10 cm. If the pressure readings at the inlet and outlets of the splitter are P1 = 100 kPa, P2 = 90 kPa and P3 = 80 kPa, determine external 13 30 P₂ force needed to hold the device fixed. Disregard the weight effects.
4- Water flows steadily through a splitter as shown in Fig. with Q1 = 0.08 m3/s, Q2 = 0.05 m3/s, D1 D2 = 12 cm, D3 = 10 cm. If the pressure readings at the inlet and outlets of the splitter are P1 = 100 kPa, P2 = 90 kPa and P3 = 80 kPa, determine external 13 30 P₂ force needed to hold the device fixed. Disregard the weight effects.
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![4- Water flows steadily through a splitter as
shown in Fig. with Q1 = 0.08 m3/s, Q2 =
0.05 m3/s, D1 D2 = 12 cm, D3 = 10 cm.
If the pressure readings at the inlet and
outlets of the splitter are P1 = 100 kPa, P2 =
90 kPa and P3 = 80 kPa, determine external
13
30
P₂
force needed to hold the device fixed. Disregard the weight effects.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F63e1cfc5-d743-4910-a579-2d48ed6c9d1a%2F18918022-d049-4513-95a0-4d6b1c570fb4%2F87rqdos_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4- Water flows steadily through a splitter as
shown in Fig. with Q1 = 0.08 m3/s, Q2 =
0.05 m3/s, D1 D2 = 12 cm, D3 = 10 cm.
If the pressure readings at the inlet and
outlets of the splitter are P1 = 100 kPa, P2 =
90 kPa and P3 = 80 kPa, determine external
13
30
P₂
force needed to hold the device fixed. Disregard the weight effects.
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