Question 12 The bathroom plumbing of a building consists of 1.5-cm-diameter copper pipes with threaded connectors, as shown in the figure below. (a) If the gage pressure at the inlet of the system is 200 kPa during a shower and the toilet reservoir is full (no flow in that branch), determine the flow rate of water through the shower head. (b) Determine the effect of flushing of the toilet on the flow rate through the shower head. Take the loss coefficients of the shower head and the reservoir to be 12 and 14, respectively. Shower head = 12 Toilet reservoir with float = 1 2 m lobe valve, 1 m Cold water fully open =1 = 2 m (2)

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 12
The bathroom plumbing of a building consists of 1.5-cm-diameter copper pipes with threaded connectors,
as shown in the figure below. (a) If the gage pressure at the inlet of the system is 200 kPa during a shower
and the toilet reservoir is full (no flow in that branch), determine the flow rate of water through the shower
head. (b) Determine the effect of flushing of the toilet on the flow rate through the shower head. Take the
loss coefficients of the shower head and the reservoir to be 12 and 14, respectively.
Shower head
= 12
Toilet reservoir
with float
= 1
2 m
lobe valve,
Cold
water
1 m
= 2
fully open
= 1
m
m
Transcribed Image Text:Question 12 The bathroom plumbing of a building consists of 1.5-cm-diameter copper pipes with threaded connectors, as shown in the figure below. (a) If the gage pressure at the inlet of the system is 200 kPa during a shower and the toilet reservoir is full (no flow in that branch), determine the flow rate of water through the shower head. (b) Determine the effect of flushing of the toilet on the flow rate through the shower head. Take the loss coefficients of the shower head and the reservoir to be 12 and 14, respectively. Shower head = 12 Toilet reservoir with float = 1 2 m lobe valve, Cold water 1 m = 2 fully open = 1 m m
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