A steady air flows into a device through hole 1 and leaving the device through hole 2 and hole 3 as shown in Figure 4.31

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A steady air flows into a device through hole 1 and leaving the device through hole 2 and hole 3 as shown in Figure 4.31

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A Steady Air Flows Into A Device Through Hole 1 And Leaving The Device Through Hole 2 And Hole 3 As Shown In Figure 4 31 1
A Steady Air Flows Into A Device Through Hole 1 And Leaving The Device Through Hole 2 And Hole 3 As Shown In Figure 4 31 1 (55.96 KiB) Viewed 46 times
A steady air flows into a device through hole 1 and leaving the device through hole 2 and hole 3 as shown in Figure 4.31. By using Reynolds Transport Theorem, calculate the mass flow rate (in kg/s) at hole 2. Assume the value of R = 400 J/(kg:K). FIGURE 4.31 NOTE THAT: rat 1 = 30cm v at 1 = 10 m/s T at 1 = 40°C P at 1 = 100 kPa Mass flow rate at 2 = ?? rat 3 = 15cm volume flow rate at 3 = 5 m³/s
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