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<body lang=3DEN-US link=3Dblue vlink=3Dpurple style=3D'tab-interval:.5in'>

<div class=3DSection1>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><a
name=3D"_Toc479668056"><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:16.0pt;mso-bidi-font-size:14.0pt'>Computing Actual
Evapotranspiration Using GIS <o:p></o:p></span></b></a></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span
style=3D'mso-bookmark:_Toc479668056'><b><span style=3D'font-size:13.0pt;mso=
-bidi-font-size:
12.0pt;mso-fareast-font-family:"Arial Unicode MS"'>GIS in Water Resources<o=
:p></o:p></span></b></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span
style=3D'mso-bookmark:_Toc479668056'><b><span style=3D'mso-fareast-font-fam=
ily:
"Arial Unicode MS"'>Fall 2008<o:p></o:p></span></b></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span
style=3D'mso-bookmark:_Toc479668056'><b><span style=3D'font-size:6.0pt;mso-=
bidi-font-size:
12.0pt;mso-fareast-font-family:"Arial Unicode MS"'><o:p>&nbsp;</o:p></span>=
</b></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span
style=3D'mso-bookmark:_Toc479668056'><b><span style=3D'mso-fareast-font-fam=
ily:
"Arial Unicode MS"'>Prepared by <span class=3DSpellE>Parikshit</span> Ranad=
e<sup>1</sup>
and Ayse Irmak<sup>2</sup><o:p></o:p></span></b></span></p>

<p align=3Dcenter style=3D'margin:0in;margin-bottom:.0001pt;text-align:cent=
er'><span
style=3D'mso-bookmark:_Toc479668056'><b><sup><span style=3D'font-family:"Ti=
mes New Roman","serif"'>1</span></sup></b></span><span
style=3D'mso-bookmark:_Toc479668056'><b><span style=3D'font-family:"Times N=
ew Roman","serif"'>:
Dept of Biological Systems Engineering<o:p></o:p></span></b></span></p>

<p align=3Dcenter style=3D'margin:0in;margin-bottom:.0001pt;text-align:cent=
er'><span
style=3D'mso-bookmark:_Toc479668056'><b><sup><span style=3D'font-family:"Ti=
mes New Roman","serif"'>2</span></sup></b></span><span
style=3D'mso-bookmark:_Toc479668056'><b><span style=3D'font-family:"Times N=
ew Roman","serif"'>:
Dept of Civil Engineering/School of Natural Resources </span></b></span><sp=
an
style=3D'mso-bookmark:_Toc479668056'><span style=3D'font-family:"Times New =
Roman","serif"'><o:p></o:p></span></span></p>

<p align=3Dcenter style=3D'margin:0in;margin-bottom:.0001pt;text-align:cent=
er'><span
style=3D'mso-bookmark:_Toc479668056'><st1:place w:st=3D"on"><st1:PlaceType =
w:st=3D"on"><b><span
  style=3D'font-family:"Times New Roman","serif"'>University</span></b></st=
1:PlaceType><b><span
 style=3D'font-family:"Times New Roman","serif"'> of <st1:PlaceName w:st=3D=
"on">Nebraska</st1:PlaceName></span></b></st1:place><b><span
style=3D'font-family:"Times New Roman","serif"'> &#8211; Lincoln<o:p></o:p>=
</span></b></span></p>

<div class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span
style=3D'mso-bookmark:_Toc479668056'>

<hr size=3D2 width=3D"100%" align=3Dcenter>

</span></div>

<p class=3DMsoHeading9 align=3Dleft style=3D'text-align:left'><span style=
=3D'mso-bookmark:
_Toc479668056'><span style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><=
o:p>&nbsp;</o:p></span></span></p>

<p class=3DMsoHeading9 align=3Dleft style=3D'text-align:left'><span style=
=3D'mso-bookmark:
_Toc479668056'><span style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>C=
ontents<o:p></o:p></span></span></p>

<p class=3DMsoNormal><span style=3D'mso-bookmark:_Toc479668056'><o:p>&nbsp;=
</o:p></span></p>

<p class=3DMsoToc3 style=3D'margin-left:27.0pt;text-indent:-.25in;mso-list:=
l1 level1 lfo4;
tab-stops:list 27.0pt right 517.9pt'><span style=3D'mso-bookmark:_Toc479668=
056'><![if !supportLists]><span
style=3D'font-size:12.0pt;font-family:Symbol;mso-fareast-font-family:Symbol;
mso-bidi-font-family:Symbol'><span style=3D'mso-list:Ignore'>&middot;<span
style=3D'font:7.0pt "Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;
</span></span></span><![endif]><span class=3DMsoHyperlink><span style=3D'fo=
nt-size:
12.0pt;color:windowtext;text-decoration:none;text-underline:none'>Purpose</=
span></span></span><span
style=3D'mso-bookmark:_Toc479668056'><span style=3D'font-size:12.0pt'><o:p>=
</o:p></span></span></p>

<p class=3DMsoToc3 style=3D'margin-left:27.0pt;text-indent:-.25in;mso-list:=
l1 level1 lfo4;
tab-stops:list 27.0pt right 517.9pt'><span style=3D'mso-bookmark:_Toc479668=
056'><![if !supportLists]><span
style=3D'font-size:12.0pt;font-family:Symbol;mso-fareast-font-family:Symbol;
mso-bidi-font-family:Symbol'><span style=3D'mso-list:Ignore'>&middot;<span
style=3D'font:7.0pt "Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;
</span></span></span><![endif]><span class=3DMsoHyperlink><span style=3D'fo=
nt-size:
12.0pt;color:windowtext;text-decoration:none;text-underline:none'>Data down=
load</span></span></span><span
style=3D'mso-bookmark:_Toc479668056'><span style=3D'font-size:12.0pt'><o:p>=
</o:p></span></span></p>

<p class=3DMsoToc3 style=3D'margin-left:27.0pt;text-indent:-.25in;mso-list:=
l1 level1 lfo4;
tab-stops:list 27.0pt right 517.9pt'><span style=3D'mso-bookmark:_Toc479668=
056'><![if !supportLists]><span
class=3DMsoHyperlink><span style=3D'font-size:12.0pt;font-family:Symbol;mso=
-fareast-font-family:
Symbol;mso-bidi-font-family:Symbol;color:windowtext;text-decoration:none;
text-underline:none'><span style=3D'mso-list:Ignore'>&middot;<span
style=3D'font:7.0pt "Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;
</span></span></span></span><![endif]><span class=3DMsoHyperlink><span
style=3D'font-size:12.0pt;color:windowtext;text-decoration:none;text-underl=
ine:
none'>Getting started<o:p></o:p></span></span></span></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Preparing land use layer</span></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Computing reference ET</span></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Estimation of fractional vegetation cover</s=
pan></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Computation of actual ET</span></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Exploring zonal statistics of evapotranspira=
tion
</span></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Adjusting <span
style=3D'mso-spacerun:yes'>&nbsp;</span>METRIC ET </span></p>

<p class=3DMsoNormal style=3D'margin-left:27.0pt;text-indent:-.25in;mso-lis=
t:l1 level1 lfo4;
tab-stops:list 27.0pt'><span style=3D'mso-bookmark:_Toc479668056'><![if !su=
pportLists]><span
style=3D'font-family:Symbol;mso-fareast-font-family:Symbol;mso-bidi-font-fa=
mily:
Symbol'><span style=3D'mso-list:Ignore'>&middot;<span style=3D'font:7.0pt "=
Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span></span></span><![endif]>Comparison of computed actual ET with METRIC=
 ET</span></p>

<p class=3DMsoToc3 style=3D'margin-left:27.0pt;text-indent:-.25in;mso-list:=
l1 level1 lfo4;
tab-stops:list 27.0pt right 517.9pt'><span style=3D'mso-bookmark:_Toc479668=
056'><![if !supportLists]><span
class=3DMsoHyperlink><span style=3D'font-size:12.0pt;font-family:Symbol;mso=
-fareast-font-family:
Symbol;mso-bidi-font-family:Symbol;color:windowtext;mso-bidi-font-weight:bo=
ld;
text-decoration:none;text-underline:none'><span style=3D'mso-list:Ignore'>&=
middot;<span
style=3D'font:7.0pt "Times New Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;
</span></span></span></span><![endif]><span class=3DMsoHyperlink><span
style=3D'font-size:12.0pt;color:windowtext;mso-bidi-font-weight:bold;text-d=
ecoration:
none;text-underline:none'>Summary of items to be turned in<o:p></o:p></span=
></span></span></p>

<p class=3DMsoNormal><span style=3D'mso-bookmark:_Toc479668056'><o:p>&nbsp;=
</o:p></span></p>

<p class=3DMsoToc5><span style=3D'mso-bookmark:_Toc479668056'><a
name=3D"_Toc116762649">Purpose</a></span></p>

<p class=3DMsoNormal><span style=3D'mso-bookmark:_Toc479668056'><o:p>&nbsp;=
</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span style=3D'mso-bookma=
rk:_Toc479668056'>The
purpose of this exercise is to illustrate, step-by-step, use of <span
class=3DSpellE>ArcGIS</span> to compute actual evapotranspiration (ET) and
compare it with a remote sensing approach. </span>In this exercise, students
will calculate actual evapotranspiration using a fraction of vegetation cov=
er
and reference evapotranspiration from weather station data. Remote sensing
based <span class=3DSpellE>evapotranspiration</span> is calculated using
algorithm in METRIC (Mapping <span class=3DSpellE>Evapotranspiration</span>=
 at
high Resolution using Internalized Calibration; Allen et al. 2007a, b) mode=
l. Students
will explore the actual evapotranspiration distribution over the study regi=
on
using <span class=3DSpellE>ArcGIS</span> tools. </p>

<p class=3DMsoNormal style=3D'text-align:justify'><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b style=3D'mso-bidi-font=
-weight:
normal'>Data Download<o:p></o:p></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b style=3D'mso-bidi-font=
-weight:
normal'><o:p>&nbsp;</o:p></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'>See <a
href=3D"http://www.ce.utexas.edu/prof/maidment/giswr2008/Ex6/Ex6.zip">http:=
//www.ce.utexas.edu/prof/maidment/giswr2008/Ex6/Ex6.zip</a>
<span style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b style=3D'mso-bidi-font=
-weight:
normal'><o:p>&nbsp;</o:p></b></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b style=3D'mso-bidi-font=
-weight:
normal'>Reference Evapotranspiration<o:p></o:p></b></p>

<p class=3DMsoNormal style=3D'margin-top:12.0pt;mso-layout-grid-align:none;
text-autospace:none'>Reference <span class=3DSpellE>evapotranspiration</spa=
n> (<span
style=3D'color:black'>alfalfa based referenced <span class=3DSpellE>ET<sub>=
<span
style=3D'color:windowtext'>r</span></sub></span></span>) data can be downlo=
aded
from high plains regional climatic data center (HPRCC) from <a
href=3D"http://www.hprcc.unl.edu/">http://www.hprcc.unl.edu/</a> . Select t=
he
state, station, select automatic weather data station network (AWDN). Select
daily data for required period of the time using the drop down menu. <span
style=3D'color:black'>The HPRCC uses a Penman-type combination equation tha=
t was
modified by Kincaid and <span class=3DSpellE>Heermann</span> (1974) for <st=
1:place
w:st=3D"on"><st1:City w:st=3D"on">Mitchell</st1:City>, <st1:State w:st=3D"o=
n">NE</st1:State></st1:place>,
climatic conditions by changing the wind function of the Penman (1948) equa=
tion
(Irmak and Irmak, 2008).<o:p></o:p></span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shapetype
 id=3D"_x0000_t75" coordsize=3D"21600,21600" o:spt=3D"75" o:preferrelative=
=3D"t"
 path=3D"m@4@5l@4@11@9@11@9@5xe" filled=3D"f" stroked=3D"f">
 <v:stroke joinstyle=3D"miter"/>
 <v:formulas>
  <v:f eqn=3D"if lineDrawn pixelLineWidth 0"/>
  <v:f eqn=3D"sum @0 1 0"/>
  <v:f eqn=3D"sum 0 0 @1"/>
  <v:f eqn=3D"prod @2 1 2"/>
  <v:f eqn=3D"prod @3 21600 pixelWidth"/>
  <v:f eqn=3D"prod @3 21600 pixelHeight"/>
  <v:f eqn=3D"sum @0 0 1"/>
  <v:f eqn=3D"prod @6 1 2"/>
  <v:f eqn=3D"prod @7 21600 pixelWidth"/>
  <v:f eqn=3D"sum @8 21600 0"/>
  <v:f eqn=3D"prod @7 21600 pixelHeight"/>
  <v:f eqn=3D"sum @10 21600 0"/>
 </v:formulas>
 <v:path o:extrusionok=3D"f" gradientshapeok=3D"t" o:connecttype=3D"rect"/>
 <o:lock v:ext=3D"edit" aspectratio=3D"t"/>
</v:shapetype><v:shape id=3D"_x0000_i1026" type=3D"#_x0000_t75" style=3D'wi=
dth:6in;
 height:261.75pt'>
 <v:imagedata src=3D"Ex62008_files/image003.emz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D576 height=3D349
src=3D"Ex62008_files/image004.gif" v:shapes=3D"_x0000_i1026"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><span class=3DGramE>The map showing location of automa=
tic
weather station on the study area.</span> The 8 digit HUC (<span class=3DSp=
ellE>subbasins</span>)
are Middle Republican, Upper Little Blue, West Fork Big Blue and <st1:count=
ry-region
w:st=3D"on"><st1:place w:st=3D"on">Turkey</st1:place></st1:country-region>.=
</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'>Land Use<o:p>=
</o:p></b></p>

<p class=3DMsoNormal>Land use data can be downloaded from UNL&#8217;s <span
class=3DGramE>CALMIT <span style=3D'mso-spacerun:yes'>&nbsp;</span>website<=
/span> (<a
href=3D"http://calmit.unl.edu/">http://calmit.unl.edu/</a>) for entire <st1=
:place
w:st=3D"on"><st1:State w:st=3D"on">Nebraska</st1:State></st1:place>. For th=
is
exercise, <span class=3DSpellE>landuse</span> data was clipped for the study
area.</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'>Hydrologic Un=
its<o:p></o:p></b></p>

<p class=3DMsoNormal>8 digit hydrologic unit data was downloaded from Natur=
al
Resource Conservation Service&#8217;s Geospatial Data Gateway. (<a
name=3D"OLE_LINK1"></a><a href=3D"http://datagateway.nrcs.usda.gov/"><span
style=3D'mso-bookmark:OLE_LINK1'>http://datagateway.nrcs.usda.gov/</span><s=
pan
style=3D'mso-bookmark:OLE_LINK1'></span></a><span style=3D'mso-bookmark:OLE=
_LINK1'></span>)
</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'>Satellite Ima=
ge <o:p></o:p></b></p>

<p class=3DMsoNormal><span class=3DSpellE><span style=3D'font-size:11.0pt'>=
Landsat</span></span><span
style=3D'font-size:11.0pt'> 5 (LS5) s<span style=3D'color:black;mso-bidi-fo=
nt-weight:
bold'>ystematic terrain-corrected (</span>Level 1T) satellite image was
obtained for Path 29, Row 32 </span><span lang=3DTR style=3D'font-size:11.0=
pt;
mso-ansi-language:TR;mso-fareast-language:TR'>for August 7, 2005 </span><sp=
an
style=3D'font-size:11.0pt'>from the Earth Explorer, USGS site (http://www.e=
dcsns17.cr.usgs.gov/)</span><span
lang=3DTR style=3D'font-size:11.0pt;mso-ansi-language:TR;mso-fareast-langua=
ge:TR'>.</span><span
lang=3DTR> </span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>NDVI can also be obtained from <span style=3D'color:bl=
ack'>Moderate
Resolution Imaging <span class=3DSpellE>Spectroradiometer</span> (</span><s=
pan
class=3DGramE>MODIS ,</span> (<a href=3D"http://modis.gsfc.nasa.gov/">http:=
//modis.gsfc.nasa.gov/</a>)
data.<span style=3D'mso-spacerun:yes'>&nbsp; </span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Getting Started <o:p><=
/o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></spa=
n></b></p>

<p class=3DMsoNormal>Download the folder <b style=3D'mso-bidi-font-weight:n=
ormal'>&#8220;Exercise
6&#8221; </b>and save on your computer. Folder contains all the files neede=
d to
complete the exercise. For this exercise user needs to enable <b
style=3D'mso-bidi-font-weight:normal'>Spatial Analyst Extension</b> to perf=
orm various
analysis. Check the Tools menu. Go to <b style=3D'mso-bidi-font-weight:norm=
al'>Extensions</b>
under <b style=3D'mso-bidi-font-weight:normal'>Tool</b> menu. Check the <b
style=3D'mso-bidi-font-weight:normal'>Spatial Analyst</b> option and close =
the
window. Your spatial analyst extension is now enabled. To display the Spati=
al
Analyst Toolbar, go to <b style=3D'mso-bidi-font-weight:normal'>View </b><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-family:Wingdings;
mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Times New Ro=
man";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> Toolbars </=
b><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-family:Wingdings;
mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Times New Ro=
man";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span><span
style=3D'mso-spacerun:yes'>&nbsp; </span>Spatial Analyst</b>. </p>

<p class=3DMsoNormal><span style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1027" type=
=3D"#_x0000_t75"
 style=3D'width:189.75pt;height:222.75pt'>
 <v:imagedata src=3D"Ex62008_files/image005.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D253 height=3D297
src=3D"Ex62008_files/image006.jpg" v:shapes=3D"_x0000_i1027"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1028" type=
=3D"#_x0000_t75"
 style=3D'width:234pt;height:297pt'>
 <v:imagedata src=3D"Ex62008_files/image007.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D312 height=3D396
src=3D"Ex62008_files/image008.jpg" v:shapes=3D"_x0000_i1028"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Preparing Land Use Lay=
er<o:p></o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></spa=
n></b></p>

<p class=3DMsoNormal>Add table for <span class=3DSpellE>landuse</span> of <=
st1:place
w:st=3D"on"><st1:State w:st=3D"on">Nebraska</st1:State></st1:place> (<span
class=3DSpellE><b style=3D'mso-bidi-font-weight:normal'>landuse</b></span><b
style=3D'mso-bidi-font-weight:normal'> <span class=3DSpellE>class_descripti=
on</span></b>)
to the map. Then add the Land Use raster for the study area (<span
class=3DSpellE><b style=3D'mso-bidi-font-weight:normal'>land_use</b></span>=
). We
will join the Land Use layer with <span class=3DSpellE><b style=3D'mso-bidi=
-font-weight:
normal'>landuse</b></span><b style=3D'mso-bidi-font-weight:normal'> <span
class=3DSpellE>class_description</span></b> table to get the class names of=
 land
use types. Right click on the Land Use layer. Select <b style=3D'mso-bidi-f=
ont-weight:
normal'>Joins and Relates</b> <b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-family:Wingdings;mso-ascii-font-family:"Times New Roman";
mso-hansi-font-family:"Times New Roman";mso-char-type:symbol;mso-symbol-fon=
t-family:
Wingdings'><span style=3D'mso-char-type:symbol;mso-symbol-font-family:Wingd=
ings'>&agrave;</span></span>
Joins. </b>Following screen will be displayed on your window. </p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1029" type=
=3D"#_x0000_t75"
 style=3D'width:3in;height:183.75pt'>
 <v:imagedata src=3D"Ex62008_files/image009.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D288 height=3D245
src=3D"Ex62008_files/image010.jpg" v:shapes=3D"_x0000_i1029"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Choose the field <b style=3D'mso-bidi-font-weight:norm=
al'>Value
</b>on which join will be based on. Check <b style=3D'mso-bidi-font-weight:=
normal'>&#8216;show
the attributes in this layers&#8217;</b> option. Choose &#8216;to join to t=
his
layer&#8217; as <b style=3D'mso-bidi-font-weight:normal'>2005_lc_nebr. </b>=
Chose
the <b style=3D'mso-bidi-font-weight:normal'>&#8216;field in table to base =
the
join on&#8217;</b> as<b style=3D'mso-bidi-font-weight:normal'> <span
class=3DSpellE>Rowid</span>. </b>Click <b style=3D'mso-bidi-font-weight:nor=
mal'>OK.
</b><span style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1030" type=
=3D"#_x0000_t75"
 style=3D'width:343.5pt;height:459.75pt'>
 <v:imagedata src=3D"Ex62008_files/image011.emz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D458 height=3D613
src=3D"Ex62008_files/image012.gif" v:shapes=3D"_x0000_i1030"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>To change the <span class=3DSpellE>symbology</span> of=
 Land
Use, right click and select <b style=3D'mso-bidi-font-weight:normal'>proper=
ties</b>
of the Land Use layer. Select <b style=3D'mso-bidi-font-weight:normal'>Uniq=
ue
Value</b> renderer and choose <b style=3D'mso-bidi-font-weight:normal'>2005=
_lc_neb.vet:CLASS_NAMES</b>
from drop down menu. Select the <b style=3D'mso-bidi-font-weight:normal'>co=
lor
scheme</b> of your choice. </p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1031" type=
=3D"#_x0000_t75"
 style=3D'width:6in;height:300.75pt'>
 <v:imagedata src=3D"Ex62008_files/image013.emz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D576 height=3D401
src=3D"Ex62008_files/image014.gif" v:shapes=3D"_x0000_i1031"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>After making aforementioned changes, the <span class=
=3DSpellE>symbology</span>
of Land Use raster will look similar to the following and <b style=3D'mso-b=
idi-font-weight:
normal'>Class names</b> of land use type will be displayed. </p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1032" type=
=3D"#_x0000_t75"
 style=3D'width:360.75pt;height:270.75pt'>
 <v:imagedata src=3D"Ex62008_files/image015.emz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D481 height=3D361
src=3D"Ex62008_files/image016.gif" v:shapes=3D"_x0000_i1032"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Q1) <span class=3DGramE>What</span> is the value for i=
rrigated
corn, <span class=3DSpellE>dryland</span> sunflower and wetlands? </p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></spa=
n></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Computing Spatial
Distribution of Reference ET<o:p></o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></spa=
n></b></p>

<p class=3DMsoNormal>Add <b style=3D'mso-bidi-font-weight:normal'><!--[if g=
te vml 1]><v:shape
 id=3D"_x0000_i1033" type=3D"#_x0000_t75" style=3D'width:10.5pt;height:12.7=
5pt'
 o:bullet=3D"t">
 <v:imagedata src=3D"Ex62008_files/image017.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D14 height=3D17
src=3D"Ex62008_files/image018.jpg" alt=3D"*" v:shapes=3D"_x0000_i1033"><![e=
ndif]><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;</span>Reference Evapotranspiration<=
/b> <span
class=3DSpellE>shapefile</span> (<span class=3DSpellE><b style=3D'mso-bidi-=
font-weight:
normal'>Ref_ET</b></span>) to the map. To create the reference evapotranspi=
ration
surface we are going to use <b style=3D'mso-bidi-font-weight:normal'>interp=
olate
to raster </b>tool. Click on <b style=3D'mso-bidi-font-weight:normal'>Spati=
al
Analyst</b> <b style=3D'mso-bidi-font-weight:normal'><span style=3D'font-fa=
mily:
Wingdings;mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Ti=
mes New Roman";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> Interpolate=
 to
raster </b><b style=3D'mso-bidi-font-weight:normal'><span style=3D'font-fam=
ily:
Wingdings;mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Ti=
mes New Roman";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> <span
class=3DSpellE>Spline</span> <o:p></o:p></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1034" type=
=3D"#_x0000_t75"
 style=3D'width:234pt;height:189.75pt'>
 <v:imagedata src=3D"Ex62008_files/image019.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D312 height=3D253
src=3D"Ex62008_files/image020.jpg" v:shapes=3D"_x0000_i1034"><![endif]></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;mso-bidi-font-size:12.=
0pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal>User can define <b style=3D'mso-bidi-font-weight:norma=
l'>interpolation
parameters</b> based on the input data. Select the<b style=3D'mso-bidi-font=
-weight:
normal'> <span class=3DSpellE>Ref<span style=3D'font-weight:normal'>_</span=
>ET</span></b>
<span class=3DSpellE>shapefile</span> layer as <b style=3D'mso-bidi-font-we=
ight:
normal'>input points</b>. Input point is point feature class used to create=
 the
interpolated surface. Select <b style=3D'mso-bidi-font-weight:normal'>Z val=
ue</b>
field as <b style=3D'mso-bidi-font-weight:normal'>Day 219. </b>Select<b
style=3D'mso-bidi-font-weight:normal'> <span class=3DSpellE>spline</span> s=
tyle </b>as
<b style=3D'mso-bidi-font-weight:normal'>Tension. </b>Select <b style=3D'ms=
o-bidi-font-weight:
normal'>weight</b> value <b style=3D'mso-bidi-font-weight:normal'>0.1</b>. =
We are
using commonly used power value 0.1. Selecting higher power will emphasis m=
ore
on nearest points. Specifying a lower value for power will provide a bit mo=
re
influence to surrounding points a little farther away. Higher power will le=
ad
to &#8220;Bull&#8217;s eye&#8221; effect, <span class=3DSpellE>i</span>. e.
higher values for the locations surrounding the sample points. Select <b
style=3D'mso-bidi-font-weight:normal'>number of points</b> as <b
style=3D'mso-bidi-font-weight:normal'>4</b> and<b style=3D'mso-bidi-font-we=
ight:
normal'> output cell size</b> as <b style=3D'mso-bidi-font-weight:normal'>2=
50. </b><span
class=3DSpellE>Kriging</span> is more sophisticated method of interpolation
available with spatial analyst. But selection of parameters is crucial and
critical for accuracy of interpolation. IDW method gives less smooth surface
than other methods. Rename output layer as <span class=3DSpellE><b
style=3D'mso-bidi-font-weight:normal'>ref_et_surf</b></span><b style=3D'mso=
-bidi-font-weight:
normal'>. </b></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;mso-bidi-font-size:12.=
0pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1035" type=
=3D"#_x0000_t75"
 style=3D'width:189pt;height:166.5pt'>
 <v:imagedata src=3D"Ex62008_files/image021.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D252 height=3D222
src=3D"Ex62008_files/image022.jpg" v:shapes=3D"_x0000_i1035"><![endif]></p>

<p class=3DMsoNormal><span style=3D'font-size:10.0pt;mso-bidi-font-size:12.=
0pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal>Q2). Which <span class=3DSpellE>subbasin</span> has the
highest reference ET for the most its part?</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></spa=
n></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Estimation of Fraction=
al
Vegetation Cover<o:p></o:p></span></b></p>

<p class=3DMsoNormal>Below is a map of NDVI for the study area.</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1036" type=3D"#_x0000_t75" style=3D'width:403.5pt;height:246=
.75pt'>
 <v:imagedata src=3D"Ex62008_files/image023.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D538 height=3D329
src=3D"Ex62008_files/image024.jpg" v:shapes=3D"_x0000_i1036"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1037" type=3D"#_x0000_t75" style=3D'width:125.25pt;height:60=
.75pt'>
 <v:imagedata src=3D"Ex62008_files/image025.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D167 height=3D81
src=3D"Ex62008_files/image026.jpg" v:shapes=3D"_x0000_i1037"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>The method proposed by <span class=3DSpellE>Brunsell</=
span>
and <span class=3DSpellE>Gillies</span> (2002) to obtain the fraction of
vegetation cover will be used. The method scales the NDVI to obtain the
fraction of vegetation cover and then scales the fraction between the
emissivity of bare soil and a full canopy.</p>

<p class=3DMsoNormal><span style=3D'font-size:6.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal>N* =3D (NDVI &#8211; NDVI<sub>0</sub>)<span class=3DGr=
amE>/(</span><span
class=3DSpellE>NDVI<sub>max</sub></span> &#8211; NDVI<sub>0</sub>)</p>

<p class=3DMsoNormal><span style=3D'font-size:7.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal>Where NDVI<sub>0</sub><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp; </span>is the bare soil NDVI value =
of the
scene and <span class=3DSpellE>NDVI<sub>max</sub></span> is the maximum NDV=
I of
the scene corresponding to full cover dense vegetation. The fraction of cov=
er
becomes</p>

<p class=3DMsoNormal><span style=3D'font-size:6.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal>Fr =3D N*2</p>

<p class=3DMsoNormal><span style=3D'font-size:7.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal>We will estimate fraction of vegetation cover using ra=
ster
calculator. Click on<b style=3D'mso-bidi-font-weight:normal'> Spatial analy=
st </b><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-family:Wingdings;
mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Times New Ro=
man";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> raster
calculator <o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:6.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1038" type=3D"#_x0000_t75" style=3D'width:124.5pt;height:197=
.25pt'>
 <v:imagedata src=3D"Ex62008_files/image027.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D166 height=3D263
src=3D"Ex62008_files/image028.jpg" v:shapes=3D"_x0000_i1038"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:9.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></b></p>

<p class=3DMsoNormal>Following screen will appear on your window. </p>

<p class=3DMsoNormal><span style=3D'font-size:8.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1039" type=3D"#_x0000_t75" style=3D'width:378pt;height:205.5=
pt'>
 <v:imagedata src=3D"Ex62008_files/image029.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D504 height=3D274
src=3D"Ex62008_files/image030.jpg" v:shapes=3D"_x0000_i1039"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><span class=3DGramE>Type following formula as an expre=
ssion in
the raster calculator to calculate the fraction of vegetation cover.</span>=
 </p>

<p class=3DMsoNormal><span style=3D'font-size:7.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><span class=3DSpellE><span class=3DGramE><b style=3D'm=
so-bidi-font-weight:
normal'>Sqr</b></span></span><span class=3DGramE><b style=3D'mso-bidi-font-=
weight:
normal'>(</b></span><b style=3D'mso-bidi-font-weight:normal'>([<span
class=3DSpellE>ndvi</span>] - 0.05) / (0.87 - 0.05))<o:p></o:p></b></p>

<p class=3DMsoNormal><span style=3D'font-size:7.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Here we have assumed NDVI for bare soil as (NDVI<sub>0=
</sub>)
as 0.05 and maximum NDVI (<span class=3DSpellE>NDVI<sub>max</sub></span><su=
b>&shy;</sub>)
is the value observed from NDVI map. <sub><o:p></o:p></sub></p>

<p class=3DMsoNormal>Your map will look like this.</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><!--[if mso & !supportInlineShapes & supportFields]><s=
pan
style=3D'mso-element:field-begin;mso-field-lock:yes'></span><span
style=3D'mso-spacerun:yes'>&nbsp;</span>SHAPE<span
style=3D'mso-spacerun:yes'>&nbsp; </span>\* MERGEFORMAT <span style=3D'mso-=
element:
field-separator'></span><![endif]--><!--[if gte vml 1]><v:group id=3D"_x000=
0_s1033"
 editas=3D"canvas" style=3D'width:6in;height:220.1pt;
 mso-position-horizontal-relative:char;mso-position-vertical-relative:line'
 coordorigin=3D"2525,4555" coordsize=3D"9781,5126">
 <o:lock v:ext=3D"edit" aspectratio=3D"t"/>
 <v:shape id=3D"_x0000_s1032" type=3D"#_x0000_t75" style=3D'position:absolu=
te;left:2525;
  top:4555;width:9781;height:5126' o:preferrelative=3D"f">
  <v:fill o:detectmouseclick=3D"t"/>
  <v:path o:extrusionok=3D"t" o:connecttype=3D"none"/>
  <o:lock v:ext=3D"edit" text=3D"t"/>
 </v:shape><v:shape id=3D"_x0000_s1030" type=3D"#_x0000_t75" style=3D'posit=
ion:absolute;
  left:4025;top:4555;width:8281;height:5126' fillcolor=3D"#bbe0e3">
  <v:imagedata src=3D"Ex62008_files/image031.png" o:title=3D""/>
 </v:shape><v:shape id=3D"_x0000_s1031" type=3D"#_x0000_t75" style=3D'posit=
ion:absolute;
  left:2525;top:8155;width:2125;height:1016' fillcolor=3D"#bbe0e3">
  <v:imagedata src=3D"Ex62008_files/image032.png" o:title=3D""/>
 </v:shape><w:wrap type=3D"none"/>
 <w:anchorlock/>
</v:group><![endif]--><![if !vml]><img width=3D576 height=3D293
src=3D"Ex62008_files/image033.gif" v:shapes=3D"_x0000_s1033 _x0000_s1032 _x=
0000_s1030 _x0000_s1031"><![endif]><!--[if mso & !supportInlineShapes & sup=
portFields]><v:shape
 id=3D"_x0000_i1040" type=3D"#_x0000_t75" style=3D'width:6in;height:220.1pt=
'>
 <v:imagedata croptop=3D"-65520f" cropbottom=3D"65520f"/>
</v:shape><span style=3D'mso-element:field-end'></span><![endif]--></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Q 3) <span class=3DGramE>Which</span> <span class=3DSp=
ellE>subbasin</span>
has highest value for fraction of vegetation cover and which <span
class=3DSpellE>subbasin</span> has lowest value for fraction of vegetation =
cover</p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Computation of actual =
ET<o:p></o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Calculate the actual ET by multiplying fraction of
vegetation cover to reference evapotranspiration. Click on<b style=3D'mso-b=
idi-font-weight:
normal'> Spatial analyst </b><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-family:Wingdings;mso-ascii-font-family:"Times New Roman";
mso-hansi-font-family:"Times New Roman";mso-char-type:symbol;mso-symbol-fon=
t-family:
Wingdings'><span style=3D'mso-char-type:symbol;mso-symbol-font-family:Wingd=
ings'>&agrave;</span></span>
raster calculator <o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:8.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1041" type=3D"#_x0000_t75" style=3D'width:125.25pt;height:19=
8pt'>
 <v:imagedata src=3D"Ex62008_files/image027.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D167 height=3D264
src=3D"Ex62008_files/image034.jpg" v:shapes=3D"_x0000_i1041"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><sub><span
style=3D'font-size:8.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></sub></b></p>

<p class=3DMsoNormal>Following screen will appear on your window. </p>

<p class=3DMsoNormal><span style=3D'font-size:9.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><sub><!--[if =
gte vml 1]><v:shape
 id=3D"_x0000_i1042" type=3D"#_x0000_t75" style=3D'width:378pt;height:204pt=
'>
 <v:imagedata src=3D"Ex62008_files/image035.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D504 height=3D272
src=3D"Ex62008_files/image036.jpg" v:shapes=3D"_x0000_i1042"><![endif]><o:p=
></o:p></sub></b></p>

<p class=3DMsoNormal><span class=3DGramE>Type following formula as an expre=
ssion in
the raster calculator to calculate the actual evapotranspiration.</span> Cl=
ick
OK and then actual ET layer will be added to the <span class=3DSpellE>map.R=
ename</span>
it as <b style=3D'mso-bidi-font-weight:normal'>ET.</b></p>

<p class=3DMsoNormal><span style=3D'font-size:6.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'>[<span class=
=3DSpellE>fract_of_cov</span>]
* [<span class=3DSpellE>ref_et_surf</span>]<o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Your map should look like this. </p>

<p class=3DMsoNormal><!--[if mso & !supportInlineShapes & supportFields]><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'mso-element:field-begi=
n;
mso-field-lock:yes'></span><span
style=3D'mso-spacerun:yes'>&nbsp;</span>SHAPE<span
style=3D'mso-spacerun:yes'>&nbsp; </span>\* MERGEFORMAT <span style=3D'mso-=
element:
field-separator'></span></b><![endif]--><b style=3D'mso-bidi-font-weight:no=
rmal'><!--[if gte vml 1]><v:group
 id=3D"_x0000_s1042" editas=3D"canvas" style=3D'width:6in;height:297.35pt;
 mso-position-horizontal-relative:char;mso-position-vertical-relative:line'
 coordorigin=3D"2525,11595" coordsize=3D"10100,7150">
 <o:lock v:ext=3D"edit" aspectratio=3D"t"/>
 <v:shape id=3D"_x0000_s1041" type=3D"#_x0000_t75" style=3D'position:absolu=
te;left:2525;
  top:11595;width:10100;height:7150' o:preferrelative=3D"f">
  <v:fill o:detectmouseclick=3D"t"/>
  <v:path o:extrusionok=3D"t" o:connecttype=3D"none"/>
  <o:lock v:ext=3D"edit" text=3D"t"/>
 </v:shape><v:shape id=3D"_x0000_s1039" type=3D"#_x0000_t75" style=3D'posit=
ion:absolute;
  left:2525;top:11595;width:10100;height:7150' fillcolor=3D"#bbe0e3">
  <v:imagedata src=3D"Ex62008_files/image037.png" o:title=3D""/>
 </v:shape><v:shape id=3D"_x0000_s1040" type=3D"#_x0000_t75" style=3D'posit=
ion:absolute;
  left:2538;top:12810;width:3300;height:1501' fillcolor=3D"#bbe0e3">
  <v:imagedata src=3D"Ex62008_files/image038.png" o:title=3D""/>
 </v:shape><w:wrap type=3D"none"/>
 <w:anchorlock/>
</v:group><![endif]--><![if !vml]><img width=3D576 height=3D396
src=3D"Ex62008_files/image039.jpg" v:shapes=3D"_x0000_s1042 _x0000_s1041 _x=
0000_s1039 _x0000_s1040"><![endif]></b><!--[if mso & !supportInlineShapes &=
 supportFields]><b
style=3D'mso-bidi-font-weight:normal'><v:shape id=3D"_x0000_i1043" type=3D"=
#_x0000_t75"
 style=3D'width:6in;height:297.35pt'>
 <v:imagedata croptop=3D"-65520f" cropbottom=3D"65520f"/>
</v:shape><span style=3D'mso-element:field-end'></span></b><![endif]--><b
style=3D'mso-bidi-font-weight:normal'><o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Q 4)<b style=3D'mso-bidi-font-weight:normal'> </b><span
class=3DGramE>Which</span> <span class=3DSpellE>subbasin</span> has highest=
 ET
cover and which <span class=3DSpellE>subbasin</span> has lowest ET? Does any
relation occur between ET and fraction of vegetation cover?<span
style=3D'mso-spacerun:yes'>&nbsp; </span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Exploring zonal statis=
tics
of Evapotranspiration <o:p></o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>By calculating zonal statistics, the statistics for ea=
ch
zone of a zone dataset can be calculated based on the information in a value
raster. We will calculate ET statistics of each HUC 8 <span class=3DSpellE>=
subbasin</span>.
To calculate zonal statistics click on <b style=3D'mso-bidi-font-weight:nor=
mal'>Spatial
Analyst</b> <b style=3D'mso-bidi-font-weight:normal'><span style=3D'font-fa=
mily:
Wingdings;mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Ti=
mes New Roman";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> Zonal
Statistics<span style=3D'mso-spacerun:yes'>&nbsp; </span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1044" type=
=3D"#_x0000_t75"
 style=3D'width:127.5pt;height:190.5pt'>
 <v:imagedata src=3D"Ex62008_files/image040.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D170 height=3D254
src=3D"Ex62008_files/image041.jpg" v:shapes=3D"_x0000_i1044"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Following screen will appear on your window.</p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><!--[if gte vml 1]><v:shape id=3D"_x0000_i1045" type=
=3D"#_x0000_t75"
 style=3D'width:207pt;height:180.75pt'>
 <v:imagedata src=3D"Ex62008_files/image042.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D276 height=3D241
src=3D"Ex62008_files/image043.jpg" v:shapes=3D"_x0000_i1045"><![endif]></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Select <b style=3D'mso-bidi-font-weight:normal'>HUC 8<=
/b> as <b
style=3D'mso-bidi-font-weight:normal'>Zone dataset</b>. Values of the input
raster will be categorized based on this layer. Select <b style=3D'mso-bidi=
-font-weight:
normal'>Zonal filed</b> as <span class=3DSpellE><b style=3D'mso-bidi-font-w=
eight:
normal'>Subbasin</b></span><b style=3D'mso-bidi-font-weight:normal'> </b>Se=
lect <b
style=3D'mso-bidi-font-weight:normal'>value raster</b> as <b style=3D'mso-b=
idi-font-weight:
normal'>ET. </b>Check<b style=3D'mso-bidi-font-weight:normal'> </b>&#8216;<b
style=3D'mso-bidi-font-weight:normal'>Ignore <span class=3DSpellE>NoData</s=
pan> in
calculations&#8217;. </b>Since<b style=3D'mso-bidi-font-weight:normal'> </b=
>we
don&#8217;t have data for some <span class=3DSpellE>subbasins</span> it is
important to select this option. Select <b style=3D'mso-bidi-font-weight:no=
rmal'>Chart
Statistics</b> as <b style=3D'mso-bidi-font-weight:normal'>Mean. </b>Save<b
style=3D'mso-bidi-font-weight:normal'> </b>the output table on your compute=
r. Following
zonal statistics graph will be <span class=3DGramE>appear</span> on the scr=
een. <span
style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1046" type=3D"#_x0000_t75" style=3D'width:333pt;height:189.7=
5pt'>
 <v:imagedata src=3D"Ex62008_files/image044.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D444 height=3D253
src=3D"Ex62008_files/image045.jpg" v:shapes=3D"_x0000_i1046"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Q 5) <span class=3DGramE>Which</span> zone (<span
class=3DSpellE>subbasin</span>) has highest range of ET and highest standard
deviation for ET? </p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Adjusting METRIC ET <o=
:p></o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Add<b style=3D'mso-bidi-font-weight:normal'> METRIC ET=
</b>
raster (<span class=3DSpellE><b style=3D'mso-bidi-font-weight:normal'>metri=
c_et</b></span>)
to <span class=3DSpellE>ArcMap</span>. This is actual ET computed using <b
style=3D'mso-bidi-font-weight:normal'>METRIC</b> (<strong><span style=3D'ms=
o-bidi-font-size:
10.0pt;font-weight:normal;mso-bidi-font-weight:bold'>M</span></strong><span
style=3D'mso-bidi-font-size:10.0pt'>apping <span class=3DSpellE><strong><sp=
an
style=3D'font-weight:normal;mso-bidi-font-weight:bold'>E</span></strong>vap=
o<strong><span
style=3D'font-weight:normal;mso-bidi-font-weight:bold'>T</span></strong>ran=
spiration</span>
with High <strong><span style=3D'font-weight:normal;mso-bidi-font-weight:bo=
ld'>R</span></strong>esolution
and <strong><span style=3D'font-weight:normal;mso-bidi-font-weight:bold'>I<=
/span></strong>nternalized
<strong><span style=3D'font-weight:normal;mso-bidi-font-weight:bold'>C</spa=
n></strong>alibration)
</span>program for the August 7, 2005. There are some negative ET values. We
will adjust negative values to zero using raster <span class=3DGramE>calcul=
ator</span>.
Click<b style=3D'mso-bidi-font-weight:normal'> <span class=3DGramE>Spatial<=
/span>
analyst </b><b style=3D'mso-bidi-font-weight:normal'><span style=3D'font-fa=
mily:
Wingdings;mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Ti=
mes New Roman";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> raster
calculator <o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:8.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1047" type=3D"#_x0000_t75" style=3D'width:129.75pt;height:20=
5.5pt'>
 <v:imagedata src=3D"Ex62008_files/image027.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D173 height=3D274
src=3D"Ex62008_files/image046.jpg" v:shapes=3D"_x0000_i1047"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><sub><span
style=3D'font-size:8.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></sub></b></p>

<p class=3DMsoNormal>Following screen will appear on your window. </p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><span style=3D'font-size:9.0pt;mso-bidi-font-size:12.0=
pt'><!--[if gte vml 1]><v:shape
 id=3D"_x0000_i1048" type=3D"#_x0000_t75" style=3D'width:369pt;height:201.7=
5pt'>
 <v:imagedata src=3D"Ex62008_files/image047.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D492 height=3D269
src=3D"Ex62008_files/image048.jpg" v:shapes=3D"_x0000_i1048"><![endif]><o:p=
></o:p></span></p>

<p class=3DMsoNormal><span style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><span class=3DGramE>Type following formula in raster
calculator to adjust negative values to zero.</span> </p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><span class=3DGramE><b style=3D'mso-bidi-font-weight:n=
ormal'>con</b></span><b
style=3D'mso-bidi-font-weight:normal'> ([<span class=3DSpellE>metric_et</sp=
an>]
&lt; 0, 0, [<span class=3DSpellE>metric_et</span>])<o:p></o:p></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Rename output file as <span class=3DSpellE><b
style=3D'mso-bidi-font-weight:normal'>Adj_METRIC_ET</b></span><b
style=3D'mso-bidi-font-weight:normal'>. <o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Q6) State the few types of land uses for which you fou=
nd METRIC
ET values near higher end and lower end of METRIC ET range. <span
style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'>Comparison of Computed
Actual ET with METRIC ET<o:p></o:p></span></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Calculate the difference between computed actual ET wi=
th
METRIC ET. Click on<b style=3D'mso-bidi-font-weight:normal'> Spatial analys=
t </b><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-family:Wingdings;
mso-ascii-font-family:"Times New Roman";mso-hansi-font-family:"Times New Ro=
man";
mso-char-type:symbol;mso-symbol-font-family:Wingdings'><span style=3D'mso-c=
har-type:
symbol;mso-symbol-font-family:Wingdings'>&agrave;</span></span> raster
calculator <o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:8.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><!--[if gte v=
ml 1]><v:shape
 id=3D"_x0000_i1049" type=3D"#_x0000_t75" style=3D'width:125.25pt;height:19=
8pt'>
 <v:imagedata src=3D"Ex62008_files/image027.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D167 height=3D264
src=3D"Ex62008_files/image034.jpg" v:shapes=3D"_x0000_i1049"><![endif]><o:p=
></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><sub><span
style=3D'font-size:8.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></span=
></sub></b></p>

<p class=3DMsoNormal>Following screen will appear on your window. </p>

<p class=3DMsoNormal><span style=3D'font-size:9.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><sub><!--[if =
gte vml 1]><v:shape
 id=3D"_x0000_i1050" type=3D"#_x0000_t75" style=3D'width:369pt;height:199.5=
pt'>
 <v:imagedata src=3D"Ex62008_files/image049.png" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img border=3D0 width=3D492 height=3D266
src=3D"Ex62008_files/image050.jpg" v:shapes=3D"_x0000_i1050"><![endif]><o:p=
></o:p></sub></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>Type following formula as an expression in the raster
calculator to compare computed actual ET with METRIC ET</p>

<p class=3DMsoNormal><span style=3D'font-size:6.0pt;mso-bidi-font-size:12.0=
pt'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'>[ET] - [<span
class=3DSpellE>Adj_METRIC_ET</span>]<o:p></o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal>Rename output raster as <b style=3D'mso-bidi-font-weig=
ht:normal'>&#8216;<span
class=3DSpellE>Diff_ET</span>&#8217;</b>. <span
style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><span class=3DGramE>Q 7.</span> Perform zonal statisti=
cs for
METRIC ET using <span class=3DSpellE>subbasins</span> as zones. Show the ou=
tput
table and compare the statistics with computed ET.</p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal><span class=3DMsoHyperlink><b><span style=3D'font-size=
:14.0pt;
mso-bidi-font-size:12.0pt;color:windowtext;text-decoration:none;text-underl=
ine:
none'>Summary of Items to be <span class=3DGramE>Turned</span> in<o:p></o:p=
></span></b></span></p>

<p class=3DMsoNormal><span class=3DMsoHyperlink><b><span style=3D'font-size=
:14.0pt;
mso-bidi-font-size:12.0pt;color:windowtext;text-decoration:none;text-underl=
ine:
none'><o:p>&nbsp;</o:p></span></b></span></p>

<p class=3DMsoNormal><span class=3DGramE>Q 1.</span> What is the value for
irrigated corn, <span class=3DSpellE>dryland</span> sunflower and wetlands?=
 </p>

<p class=3DMsoNormal><span class=3DGramE>Q 2.</span> Which <span class=3DSp=
ellE>subbasin</span>
has the highest reference ET for the most its part?<span class=3DMsoHyperli=
nk><b><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt;color:windowtext;text-d=
ecoration:
none;text-underline:none'><o:p></o:p></span></b></span></p>

<p class=3DMsoNormal><span class=3DGramE>Q 3.</span> Which <span class=3DSp=
ellE>subbasin</span>
has highest value for fraction of vegetation cover and which <span
class=3DSpellE>subbasin</span> has lowest value for fraction of vegetation =
cover</p>

<p class=3DMsoNormal><span class=3DGramE>Q 4.</span> Which <span class=3DSp=
ellE>subbasin</span>
has highest ET cover and which <span class=3DSpellE>subbasin</span> has low=
est
ET? Does any relation occur between ET and fraction of vegetation cover? </=
p>

<p class=3DMsoNormal><span class=3DGramE>Q 5.</span> Which zone (<span
class=3DSpellE>subbasin</span>) has highest range of ET and highest standard
deviation for ET? </p>

<p class=3DMsoNormal><span class=3DGramE>Q 6.</span> State the few types of=
 land
uses for which you found METRIC ET values near higher end and lower end of
METRIC ET range? </p>

<p class=3DMsoNormal><span class=3DGramE>Q 7.</span> Perform zonal statisti=
cs for
METRIC ET using <span class=3DSpellE>subbasins</span> as zones. Show the ou=
tput
table and compare the statistics with computed ET.</p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span
style=3D'font-size:14.0pt;mso-bidi-font-size:12.0pt'><o:p>&nbsp;</o:p></spa=
n></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><span style=3D'mso-spacerun:yes'>&nbsp;</span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><o:p>&nbsp;</=
o:p></b></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal>REFERENCES </p>

<p class=3DMsoNormal style=3D'margin-left:.5in;text-indent:-.5in'><span
class=3DGramE><span style=3D'font-size:11.0pt'>Allen, R. G., <span class=3D=
SpellE>Tasumi</span>,
M., Morse, A., <span class=3DSpellE>Trezza</span>, R., Wright, J. L., <span
class=3DSpellE>Bastiaanssen</span>, W., <span class=3DSpellE>Kramber</span>=
, W., <span
class=3DSpellE>Lorite</span>, <st1:place w:st=3D"on">I.</st1:place>, and Ro=
bison,
C. W. (2007).</span></span><span style=3D'font-size:11.0pt'>
&quot;Satellite-based energy balance for mapping <span class=3DSpellE>evapo=
transpiration</span>
with internalized calibration (METRIC): Applications.&quot; <span class=3DS=
pellE><span
class=3DGramE><i>J.Irrig.Drain.Eng</i></span></span><span class=3DGramE><i>=
.,</i></span><i>
</i>133(4), 395. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:.5in;text-indent:-.5in'><span
class=3DGramE><span style=3D'font-size:11.0pt'>Allen, R. G., <span class=3D=
SpellE>Tasumi</span>,
M., and <span class=3DSpellE>Trezza</span>, R. (2007).</span></span><span
style=3D'font-size:11.0pt'> &quot;Satellite-Based Energy Balance for Mappin=
g <span
class=3DSpellE>Evapotranspiration</span> with Internalized Calibration
(METRIC)&#8212;Model.&quot; <span class=3DSpellE><span class=3DGramE><i>J.I=
rrig.Drain.Eng</i></span></span><span
class=3DGramE><i>.,</i></span><i> </i>133 380. <o:p></o:p></span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

<p class=3DMsoNormal style=3D'margin-left:.5in;text-indent:-.5in'><span
class=3DGramE><span style=3D'font-size:11.0pt'>Irmak, A. and S. Irmak.</spa=
n></span><span
style=3D'font-size:11.0pt'> (2008). Reference and crop <span class=3DSpellE=
>evapotranspiration</span>
in south central <st1:place w:st=3D"on"><st1:State w:st=3D"on">Nebraska</st=
1:State></st1:place>:
II. <span class=3DGramE>Measurement and estimation of actual <span class=3D=
SpellE>evapotranspiration</span>
for corn.</span> 2008. <i style=3D'mso-bidi-font-style:normal'>J. <span
class=3DSpellE>Irrig</span>. <span class=3DGramE>and</span> Drain. <st1:cou=
ntry-region
w:st=3D"on"><st1:place w:st=3D"on">Eng<span style=3D'font-style:normal'>.</=
span></st1:place></st1:country-region></i><o:p></o:p></span></p>

<p class=3DMsoNormal><o:p>&nbsp;</o:p></p>

</div>

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