3. A watershed of 544 ac with six rainfall gages can be divided into Thiessen polygons with the data listed in the accompanying table. Using the total storm rainfall depths listed; find the average rainfall over the watershed. Rainfall Area (ас) 101 83 Gage (in.) 2.20 3.22 C 0.71 0.88 2.49 21 111 191 F 6.72 37 (From Bedient et al., 2008)

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Thiessen polygons with the data. 1
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3. A watershed of 544 ac with six rainfall gages can be divided into Thiessen polygons with the
data listed in the accompanying table. Using the total storm rainfall depths listed; find the
average rainfall over the watershed.
Rainfall
(in.)
Gage
Area
(ас)
101
83
A
2.20
B
3.22
0.71
21
D
0.88
2.49
111
E
191
F
6.72
37
(From Bedient et al., 2008)
A watershed of 544 ac with six rainfall gages can
be divided into Thiessen polygons with the data
listed in the accompanying table. Using the total
storm rainfall depths listed; find the average
rainfall over the watershed. (From Bedient et al.,
2008)
Jan 13 2021 02:34 PM
II
Transcribed Image Text:Vo)) LTE transtutors Get Answers. Get Unstuck. Study Faster CIviI Engineering - Others » ? A watershed of 544 ac with six rainfall gages can be divided into Thiessen polygons with the data. 1 answer below » 3. A watershed of 544 ac with six rainfall gages can be divided into Thiessen polygons with the data listed in the accompanying table. Using the total storm rainfall depths listed; find the average rainfall over the watershed. Rainfall (in.) Gage Area (ас) 101 83 A 2.20 B 3.22 0.71 21 D 0.88 2.49 111 E 191 F 6.72 37 (From Bedient et al., 2008) A watershed of 544 ac with six rainfall gages can be divided into Thiessen polygons with the data listed in the accompanying table. Using the total storm rainfall depths listed; find the average rainfall over the watershed. (From Bedient et al., 2008) Jan 13 2021 02:34 PM II
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