Turpentine at 77 ° F is flowing from A to B in a 3 -in coated ductile iron pipe. Point B is 20 f t higher than point A and the total length of the pipe is 60 f t . Two 90 ° long-radius elbows are installed between A and B. Calculate the volume flow rate of turpentine if the pressure at A is 120 p s i g and the pressure at B is 105 p s i g .
Turpentine at 77 ° F is flowing from A to B in a 3 -in coated ductile iron pipe. Point B is 20 f t higher than point A and the total length of the pipe is 60 f t . Two 90 ° long-radius elbows are installed between A and B. Calculate the volume flow rate of turpentine if the pressure at A is 120 p s i g and the pressure at B is 105 p s i g .
Solution Summary: The author explains the maximum allowable volume flow rate for ductile iron pipe.
Turpentine at
77
°
F
is flowing from A to B in a
3
-in coated ductile iron pipe. Point B is
20
f
t
higher than point A and the total length of the pipe is
60
f
t
.
Two
90
°
long-radius elbows are installed between A and B. Calculate the volume flow rate of turpentine if the pressure at A is
120
p
s
i
g
and the pressure at B is
105
p
s
i
g
.
Q.1) Block A is connected to block B by a pulley
system as shown. The weights of blocks A and B
are 100 lbs and 70 lbs, respectively. Assume
negligible friction between the rope and all pulleys
as well as between block B and the incline and
neglect the mass of all pulleys and cables.
Determine the angle 0 required to keep the system
in equilibrium. (At least two FBDs must be drawn
for full credit)
B
Ꮎ
000
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