1. Water at 60 °F flows from the basement to the second floor through the 0.75-in. (0.0625- ft)-diameter copper pipe (a drawn tubing) at a rate of Q = 120gal/min and exits through a faucet of diameter 0.50 in. as shown: 12.0 gal/min K = 2 based on pipe velocity -10 IL-10 - (7)|(8) (6) 0.75-in.-diameter copper pipe 5 ft 10ft Wide open globe valve 0.50-in. diameter 10'ft (3) Threaded 90° elbows (1) 15 - Determine the pressure at point (1) if a. all losses are neglected, b. the only losses included are major losses, or c. all losses are included.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1. Water at 60 °F flows from the basement to the second floor through the 0.75-in. (0.0625-
ft)-diameter copper pipe (a drawn tubing) at a rate of Q = 120gal/min and exits through a
faucet of diameter 0.50 in. as shown:
0.75-in.-diameter
copper pipe
(4),
-10 10
(7)|(8)
K₁ = 2 based on
pipe
velocity
(6)
10 ft
Wide open
5 ft
globe valve
0.50-in.
diameter
יז
(5)
Q =
12.0
10 ft
g
gal/min
(3)
(1)
15 L
Threaded
90° elbows
Determine the pressure at point (1) if
a. all losses are neglected,
b. the only losses included are major losses, or
c. all losses are included.
2. Use scale analysis to find an expression for S/L and Nu, for flow over a flat plate with a
thin thermal boundary Layer. (8 >> ST)
3. Use scale analysis to find an expression for 8/L and Nu, for flow over a flat plate with
both boundary layers of equal thickness (8 = 8T)
Transcribed Image Text:1. Water at 60 °F flows from the basement to the second floor through the 0.75-in. (0.0625- ft)-diameter copper pipe (a drawn tubing) at a rate of Q = 120gal/min and exits through a faucet of diameter 0.50 in. as shown: 0.75-in.-diameter copper pipe (4), -10 10 (7)|(8) K₁ = 2 based on pipe velocity (6) 10 ft Wide open 5 ft globe valve 0.50-in. diameter יז (5) Q = 12.0 10 ft g gal/min (3) (1) 15 L Threaded 90° elbows Determine the pressure at point (1) if a. all losses are neglected, b. the only losses included are major losses, or c. all losses are included. 2. Use scale analysis to find an expression for S/L and Nu, for flow over a flat plate with a thin thermal boundary Layer. (8 >> ST) 3. Use scale analysis to find an expression for 8/L and Nu, for flow over a flat plate with both boundary layers of equal thickness (8 = 8T)
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