Water flowing through an 8-cm-diameter pipe enters a porous section, as in Fig. 3.10, which allows a uniform radial veloc- ity v, through the wall surfaces for a distance of 1.2 m. If the entrance average velocity V, is 12 m/s, find the exit velocity V, if (a) vw = 15 cm/s out of the pipe walls or (b) V, = 10 cm/s into the pipe. (c) What value of v, will make V2 = 9 m/s? V1- V2 D= 8 cm 1.2 m '3.10

Elements Of Electromagnetics
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Water flowing through an 8-cm-diameter pipe enters a porous
section, as in Fig. 3.10, which allows a uniform radial veloc-
ity v, through the wall surfaces for a distance of 1.2 m. If the
entrance average velocity V, is 12 m/s, find the exit velocity V,
if (a) vw = 15 cm/s out of the pipe walls or (b) V, = 10 cm/s
into the pipe. (c) What value of v, will make V2 = 9 m/s?
V1-
V2
D= 8 cm
1.2 m
'3.10
Transcribed Image Text:Water flowing through an 8-cm-diameter pipe enters a porous section, as in Fig. 3.10, which allows a uniform radial veloc- ity v, through the wall surfaces for a distance of 1.2 m. If the entrance average velocity V, is 12 m/s, find the exit velocity V, if (a) vw = 15 cm/s out of the pipe walls or (b) V, = 10 cm/s into the pipe. (c) What value of v, will make V2 = 9 m/s? V1- V2 D= 8 cm 1.2 m '3.10
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