<?xml version="1.0" encoding="UTF-8" standalone="no"?>
<metadata>
<idinfo>
<citation>
<citeinfo>
<origin>Florida Geological Survey</origin>
<pubdate>Unknown</pubdate>
<title>Floridan Aquifer System Contamination Potential </title>
<geoform Sync="TRUE">SDE raster digital data</geoform>
<serinfo>
<sername>Florida Aquifer Vulnerability Assessment: Contamination potential of Florida's principal aquifer systems</sername>
<issue>FGS Bulletin 67</issue>
</serinfo>
<onlink Sync="FALSE">withheld</onlink>
<ftname Sync="FALSE">FAS_RESPONSE</ftname>
</citeinfo>
</citation>
<descript>
<abstract>The Floridan Aquifer System Response theme grid is the relative vulnerability map for the Floridan Aquifer System. It was calculated using the ArcSDM extension and applying the weights of evidence and logistical regression method. The total number of unique conditions, number of training points per unique condition, evidential theme generalizations and posterior probability are contained in the table. A relative vulnerability class field is also in the table so that the grid can be symbolized based on FAVA vulnerability zones.</abstract>
<purpose>Development of a relative vulnerability map for the Floridan Aquifer System</purpose>
<langdata Sync="TRUE">en</langdata>
</descript>
<timeperd>
<timeinfo>
<sngdate>
<caldate>unknown</caldate>
</sngdate>
</timeinfo>
<current>publication date</current>
</timeperd>
<status>
<progress>Complete</progress>
<update>As needed</update>
</status>
<spdom>
<bounding>
<westbc Sync="TRUE">-87.639226</westbc>
<eastbc Sync="TRUE">-79.872480</eastbc>
<northbc Sync="TRUE">31.042857</northbc>
<southbc Sync="TRUE">25.090983</southbc>
</bounding>
<lboundng>
<leftbc Sync="TRUE">52668.027344</leftbc>
<rightbc Sync="TRUE">793968.027344</rightbc>
<bottombc Sync="TRUE">127156.671875</bottombc>
<topbc Sync="TRUE">781606.671875</topbc>
</lboundng>
</spdom>
<keywords>
<theme>
<themekt>ISO 19115 Topic Category</themekt>
<themekey>Geoscientific Information</themekey>
<themekey>Vulnerability</themekey>
<themekey>Environmental Monitoring and Modeling</themekey>
<themekey>Geology and Geophysics</themekey>
</theme>
<place>
<placekey>Florida</placekey>
<placekey>Floridan Aquifer System</placekey>
</place>
</keywords>
<accconst>none</accconst>
<useconst>DISCLAIMER:
This geologic data was developed by the Florida Department of Environmental Protection (FDEP) - Florida Geological Survey (FGS) to carry out agency responsibilities related to management, protection, and development of Florida's natural resources. Although efforts have been made to make the information accurate and useful, the FDEP/FGS assumes no responsibility for errors in the information and does not guarantee that the data are free from errors or inaccuracies. Similarly FDEP/FGS assumes no responsibility for the consequences of inappropriate uses or interpretations of the data. As such, these digital data are distributed on "as is" basis and the user assumes all risk as to their quality, the results obtained from their use, and the performance of the data. FDEP/FGS bears no responsibility to inform users of any subsequent changes made to this data. Anyone using this data is advised that precision implied by the data may far exceed actual precision. Comments on this data are invited and FDEP/FGS would appreciate that documented errors be brought to staff attention. The development of these data sets represents a major investment of staff time and effort. As a professional responsibility, we expect that the FDEP/FGS will receive proper credit when you utilize these data sets. Further, since part of this data was developed and collected with U.S. Government or State of Florida funding, no proprietary rights may be attached to it in whole or in part, nor may it be sold to the U.S. Government or the Florida State Government as part of any procurement of products or services.</useconst>
<ptcontac>
<cntinfo>
<cntorgp>
<cntorg>Florida Geological Survey</cntorg>
</cntorgp>
<cntpos>Geographic Information Systems</cntpos>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>Gunter Building MS #720</address>
<address>903 W. Tennessee St.</address>
<city>Tallahassee</city>
<state>FL</state>
<postal>32304-7700</postal>
<country>USA</country>
</cntaddr>
<cntvoice>850-488-4191</cntvoice>
<cntfax>850-488-8086</cntfax>
</cntinfo>
</ptcontac>
<datacred>Florida Geological Survey</datacred>
<native Sync="FALSE">ESRI ArcCatalog 9.3.1.4000</native>
<natvform Sync="FALSE">Raster Dataset</natvform>
</idinfo>
<dataqual>
<lineage>
<procstep>
<procdesc>The Floridan Aquifer Response theme grid is the relative vulnerability map for the Floridan Aquifer System. It was calculated using the ArcSDM extension and applying the weights of evidence and logistic regression methods. An analysis extent (study area), training point theme (fas_training_pts.shp), and modeling method (weights of evidence, logistic regression) are selected in the set analysis parameters. Weights are then calculated on each evidential theme and then the themes are generalized (into binary patterens, ias_thk is the exception with three classes). A generalization of 1 represents "more vulnerable" areas, 2 represents "less vulnerable areas and -99 represents missing data. A response theme is then calculated based on the association between training points and evidential themes. The total number of unique conditions, number of training points per unique condition, evidential theme generalizations and logistic regression posterior probability are contained in the table. A relative vulnerability class field is also in the table so that the grid can be symbolized based on FAVA vulnerability zones.</procdesc>
<procdate>Unknown</procdate>
<proccont>
<cntinfo>
<cntorgp>
<cntorg>Florida Geological Survey</cntorg>
</cntorgp>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>Gunter Building MS #720</address>
<address>903 W. Tennessee St.</address>
<city>Tallahassee</city>
<state>FL</state>
<postal>32304-7700</postal>
<country>USA</country>
</cntaddr>
<cntvoice>850-488-4191</cntvoice>
<cntfax>850-488-8086</cntfax>
</cntinfo>
</proccont>
</procstep>
<procstep>
<procdesc>Raster data added to ArcSDE 9.3 and published in DataMiner.</procdesc>
<procdate>20081215</procdate>
</procstep>
</lineage>
</dataqual>
<spdoinfo>
<direct Sync="TRUE">Raster</direct>
<rastinfo>
<rasttype Sync="TRUE">Pixel</rasttype>
<rowcount Sync="TRUE">21815</rowcount>
<colcount Sync="TRUE">24710</colcount>
<vrtcount Sync="TRUE">1</vrtcount>
<rastxsz Sync="TRUE">30.000000</rastxsz>
<rastysz Sync="TRUE">30.000000</rastysz>
<rastbpp Sync="TRUE">16</rastbpp>
<rastorig Sync="TRUE">Upper Left</rastorig>
<rastcmap Sync="TRUE">FALSE</rastcmap>
<rastcomp Sync="TRUE">LZ77</rastcomp>
<rastband Sync="TRUE">1</rastband>
<rastdtyp Sync="TRUE">pixel codes</rastdtyp>
<rastifor Sync="TRUE">SDR</rastifor>
<rastplyr Sync="TRUE">TRUE</rastplyr>
</rastinfo>
</spdoinfo>
<spref>
<horizsys>
<planar>
<planci>
<plance Sync="TRUE">row and column</plance>
<coordrep>
<absres Sync="TRUE">30.000000</absres>
<ordres Sync="TRUE">30.000000</ordres>
</coordrep>
<plandu Sync="TRUE">meters</plandu>
</planci>
</planar>
<geodetic>
<horizdn Sync="TRUE">D_North_American_1983_HARN</horizdn>
<ellips Sync="TRUE">Geodetic Reference System 80</ellips>
<semiaxis Sync="TRUE">6378137.000000</semiaxis>
<denflat Sync="TRUE">298.257222</denflat>
</geodetic>
<cordsysn>
<geogcsn Sync="TRUE">GCS_North_American_1983_HARN</geogcsn>
<projcsn Sync="TRUE">NAD_1983_HARN_Albers</projcsn>
</cordsysn>
</horizsys>
<vertdef>
<altsys>
<altres>1.000000</altres>
<altenc>Explicit elevation coordinate included with horizontal coordinates</altenc>
</altsys>
</vertdef>
</spref>
<eainfo>
<detailed Name="SDE_VAT_21">
<enttyp>
<enttypl Sync="FALSE">SDE_VAT_21</enttypl>
<enttypt Sync="TRUE">Table</enttypt>
<enttypc Sync="TRUE">77</enttypc>
</enttyp>
<attr>
<attrlabl Sync="TRUE">OBJECTID</attrlabl>
<attalias Sync="TRUE">OBJECTID</attalias>
<attrtype Sync="TRUE">OID</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="TRUE">Internal feature number.</attrdef>
<attrdefs Sync="TRUE">Esri</attrdefs>
<attrdomv>
<udom Sync="TRUE">Sequential unique whole numbers that are automatically generated.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>AREA_SQM</attrlabl>
<attalias Sync="TRUE">AREA_SQM</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
<attrdef Sync="FALSE">Area (sq meters)</attrdef>
<attrdefs Sync="TRUE">ESRI</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>TRNGPOINTS</attrlabl>
<attalias Sync="TRUE">TRNGPOINTS</attalias>
<attrtype Sync="TRUE">Integer</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="FALSE">Number of training points per unique condition</attrdef>
<attrdefs Sync="TRUE">
</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>VUL_INT</attrlabl>
<attalias Sync="TRUE">VUL_INT</attalias>
<attrtype Sync="TRUE">Integer</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="FALSE">Logistic regression standard deviation</attrdef>
<attrdefs Sync="TRUE">
</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>VUL_CLASS2</attrlabl>
<attalias Sync="TRUE">VUL_CLASS2</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">16</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="FALSE">Vulnerability class</attrdef>
<attrdefs Sync="TRUE">
</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>SOIL_PERM</attrlabl>
<attalias Sync="TRUE">SOIL_PERM</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
<attrdef Sync="FALSE">Generalization of soil permeability evidential theme</attrdef>
<attrdefs Sync="TRUE">
</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>IAS_THK</attrlabl>
<attalias Sync="TRUE">IAS_THK</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
<attrdef Sync="FALSE">Generalization of IAS thickness evidential theme</attrdef>
<attrdefs Sync="TRUE">
</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>K_BUFF60M</attrlabl>
<attrdef>Generalization of proximity to effective karst evidential theme</attrdef>
<attrdomv>
<udom>Sequential unique whole numbers that are automatically generated.</udom>
</attrdomv>
<attalias Sync="TRUE">K_BUFF60M</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
</attr>
<attr>
<attrlabl>HEAD_DIFF</attrlabl>
<attrdef>Generalization of hydraulic head difference evidential theme</attrdef>
<attalias Sync="TRUE">HEAD_DIFF</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
</attr>
<attr>
<attrlabl>LRPOST_PROB</attrlabl>
<attrdef>Logistic regression posterior probability - The probability that a unit cell contains a training point after considering the evidential themes.</attrdef>
<attrdomv>
<udom>.</udom>
</attrdomv>
<attalias Sync="TRUE">LRPOST_PROB</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
</attr>
<attr>
<attrlabl>VALUE</attrlabl>
<attalias Sync="TRUE">VALUE</attalias>
<attrtype Sync="TRUE">Integer</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="FALSE">Number of unique conditions</attrdef>
<attrdefs Sync="TRUE">ESRI</attrdefs>
<attrdomv>
<udom Sync="TRUE">
</udom>
</attrdomv>
</attr>
<attr>
<attrlabl>COUNT</attrlabl>
<attrdef>Number of cells per unique condition</attrdef>
<attalias Sync="TRUE">COUNT</attalias>
<attrtype Sync="TRUE">Integer</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>LR_STD_DEV</attrlabl>
<attalias Sync="TRUE">LR_STD_DEV</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">38</atprecis>
<attscale Sync="TRUE">8</attscale>
</attr>
</detailed>
</eainfo>
<distinfo>
<distrib>
<cntinfo>
<cntorgp>
<cntorg>Florida Geological Survey</cntorg>
</cntorgp>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<address>Gunter Building MS #720</address>
<address>903 W. Tennessee St.</address>
<city>Tallahassee</city>
<state>FL</state>
<postal>32304-7700</postal>
<country>USA</country>
</cntaddr>
<cntvoice>850-488-4191</cntvoice>
<cntfax>850-488-8086</cntfax>
</cntinfo>
</distrib>
<resdesc>Downloadable Data</resdesc>
<stdorder>
<digform>
<digtinfo>
<transize>17.594</transize>
</digtinfo>
</digform>
</stdorder>
</distinfo>
<metainfo>
<metd Sync="TRUE">20130130</metd>
<metc>
<cntinfo>
<cntorgp>
<cntorg>Florida Department of Environmental Protection (FDEP) OTIS/GIS Section</cntorg>
</cntorgp>
<cntaddr>
<addrtype>mailing and physical address</addrtype>
<city>Tallahassee</city>
<state>FL</state>
<postal>32399-2400</postal>
<country>USA</country>
<address>2600 Blair Stone Rd</address>
<address>MS 6520</address>
</cntaddr>
<cntemail>GIS.Librarian@dep.state.fl.us</cntemail>
</cntinfo>
</metc>
<metstdn Sync="TRUE">FGDC Content Standards for Digital Geospatial Metadata</metstdn>
<metstdv Sync="TRUE">FGDC-STD-001-1998</metstdv>
<mettc Sync="TRUE">local time</mettc>
<langmeta Sync="TRUE">en</langmeta>
</metainfo>
<Esri>
<MetaID>{096B2789-BA0D-4FDD-A2F7-CEE73F9E6874}</MetaID>
<CreaDate>20101215</CreaDate>
<CreaTime>10331500</CreaTime>
<SyncOnce>FALSE</SyncOnce>
<SyncDate>20190322</SyncDate>
<SyncTime>13571000</SyncTime>
<ModDate>20190322</ModDate>
<ModTime>13571000</ModTime>
<ArcGISProfile>FGDC</ArcGISProfile>
<DataProperties>
<itemProps>
<itemName Sync="FALSE">FAS_RESPONSE</itemName>
<nativeExtBox>
<westBL Sync="TRUE">52668.027344</westBL>
<eastBL Sync="TRUE">793968.027344</eastBL>
<southBL Sync="TRUE">127156.671875</southBL>
<northBL Sync="TRUE">781606.671875</northBL>
<exTypeCode Sync="TRUE">1</exTypeCode>
</nativeExtBox>
<imsContentType export="False">002</imsContentType>
</itemProps>
<coordRef>
<type Sync="TRUE">Projected</type>
<geogcsn Sync="TRUE">GCS_North_American_1983_HARN</geogcsn>
<csUnits Sync="TRUE">Linear Unit: Meter (1.000000)</csUnits>
<projcsn Sync="TRUE">NAD_1983_HARN_Albers</projcsn>
<peXml Sync="TRUE">&lt;ProjectedCoordinateSystem xsi:type='typens:ProjectedCoordinateSystem' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xmlns:xs='http://www.w3.org/2001/XMLSchema' xmlns:typens='http://www.esri.com/schemas/ArcGIS/10.6'&gt;&lt;WKT&gt;PROJCS[&amp;quot;NAD_1983_HARN_Albers&amp;quot;,GEOGCS[&amp;quot;GCS_North_American_1983_HARN&amp;quot;,DATUM[&amp;quot;D_North_American_1983_HARN&amp;quot;,SPHEROID[&amp;quot;GRS_1980&amp;quot;,6378137.0,298.257222101]],PRIMEM[&amp;quot;Greenwich&amp;quot;,0.0],UNIT[&amp;quot;Degree&amp;quot;,0.0174532925199433]],PROJECTION[&amp;quot;Albers&amp;quot;],PARAMETER[&amp;quot;False_Easting&amp;quot;,400000.0],PARAMETER[&amp;quot;False_Northing&amp;quot;,0.0],PARAMETER[&amp;quot;Central_Meridian&amp;quot;,-84.0],PARAMETER[&amp;quot;Standard_Parallel_1&amp;quot;,24.0],PARAMETER[&amp;quot;Standard_Parallel_2&amp;quot;,31.5],PARAMETER[&amp;quot;Latitude_Of_Origin&amp;quot;,24.0],UNIT[&amp;quot;Meter&amp;quot;,1.0]]&lt;/WKT&gt;&lt;XOrigin&gt;-19550100&lt;/XOrigin&gt;&lt;YOrigin&gt;-7526400&lt;/YOrigin&gt;&lt;XYScale&gt;225743210.67916927&lt;/XYScale&gt;&lt;ZOrigin&gt;0&lt;/ZOrigin&gt;&lt;ZScale&gt;1&lt;/ZScale&gt;&lt;MOrigin&gt;0&lt;/MOrigin&gt;&lt;MScale&gt;1&lt;/MScale&gt;&lt;XYTolerance&gt;0.001&lt;/XYTolerance&gt;&lt;ZTolerance&gt;2&lt;/ZTolerance&gt;&lt;MTolerance&gt;2&lt;/MTolerance&gt;&lt;HighPrecision&gt;true&lt;/HighPrecision&gt;&lt;/ProjectedCoordinateSystem&gt;</peXml>
</coordRef>
</DataProperties>
<ArcGISFormat>1.0</ArcGISFormat>
<scaleRange>
<minScale>150000000</minScale>
<maxScale>5000</maxScale>
</scaleRange>
</Esri>
<Binary>
<Thumbnail>
<Data EsriPropertyType="PictureX">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</Data>
</Thumbnail>
<Enclosure>
<Descript>original metadata</Descript>
<Data EsriPropertyType="Base64" OriginalFileName="source_metadata.xml" SourceMetadata="yes" SourceMetadataDigest="c402bf0da9b6393bc49c098ea42aae1b" SourceMetadataSchema="fgdc">PD94bWwgdmVyc2lvbj0iMS4wIiBlbmNvZGluZz0idXRmLTgiPz4NCjxtZXRhZGF0YT4NCiAgPGlk
aW5mbz4NCiAgICA8Y2l0YXRpb24+DQogICAgICA8Y2l0ZWluZm8+DQogICAgICAgIDxvcmlnaW4+
RmxvcmlkYSBHZW9sb2dpY2FsIFN1cnZleTwvb3JpZ2luPg0KICAgICAgICA8cHViZGF0ZT5Vbmtu
b3duPC9wdWJkYXRlPg0KICAgICAgICA8dGl0bGU+RmxvcmlkYW4gQXF1aWZlciBTeXN0ZW0gQ29u
dGFtaW5hdGlvbiBQb3RlbnRpYWwgPC90aXRsZT4NCiAgICAgICAgPHNlcmluZm8+DQogICAgICAg
ICAgPHNlcm5hbWU+RmxvcmlkYSBBcXVpZmVyIFZ1bG5lcmFiaWxpdHkgQXNzZXNzbWVudDogQ29u
dGFtaW5hdGlvbiBwb3RlbnRpYWwgb2YgRmxvcmlkYSdzIHByaW5jaXBhbCBhcXVpZmVyIHN5c3Rl
bXM8L3Nlcm5hbWU+DQogICAgICAgICAgPGlzc3VlPkZHUyBCdWxsZXRpbiA2NzwvaXNzdWU+DQog
ICAgICAgIDwvc2VyaW5mbz4NCiAgICAgIDwvY2l0ZWluZm8+DQogICAgPC9jaXRhdGlvbj4NCiAg
ICA8ZGVzY3JpcHQ+DQogICAgICA8YWJzdHJhY3Q+VGhlIEZsb3JpZGFuIEFxdWlmZXIgU3lzdGVt
IFJlc3BvbnNlIHRoZW1lIGdyaWQgaXMgdGhlIHJlbGF0aXZlIHZ1bG5lcmFiaWxpdHkgbWFwIGZv
ciB0aGUgRmxvcmlkYW4gQXF1aWZlciBTeXN0ZW0uIEl0IHdhcyBjYWxjdWxhdGVkIHVzaW5nIHRo
ZSBBcmNTRE0gZXh0ZW5zaW9uIGFuZCBhcHBseWluZyB0aGUgd2VpZ2h0cyBvZiBldmlkZW5jZSBh
bmQgbG9naXN0aWNhbCByZWdyZXNzaW9uIG1ldGhvZC4gVGhlIHRvdGFsIG51bWJlciBvZiB1bmlx
dWUgY29uZGl0aW9ucywgbnVtYmVyIG9mIHRyYWluaW5nIHBvaW50cyBwZXIgdW5pcXVlIGNvbmRp
dGlvbiwgZXZpZGVudGlhbCB0aGVtZSBnZW5lcmFsaXphdGlvbnMgYW5kIHBvc3RlcmlvciBwcm9i
YWJpbGl0eSBhcmUgY29udGFpbmVkIGluIHRoZSB0YWJsZS4gQSByZWxhdGl2ZSB2dWxuZXJhYmls
aXR5IGNsYXNzIGZpZWxkIGlzIGFsc28gaW4gdGhlIHRhYmxlIHNvIHRoYXQgdGhlIGdyaWQgY2Fu
IGJlIHN5bWJvbGl6ZWQgYmFzZWQgb24gRkFWQSB2dWxuZXJhYmlsaXR5IHpvbmVzLjwvYWJzdHJh
Y3Q+DQogICAgICA8cHVycG9zZT5EZXZlbG9wbWVudCBvZiBhIHJlbGF0aXZlIHZ1bG5lcmFiaWxp
dHkgbWFwIGZvciB0aGUgRmxvcmlkYW4gQXF1aWZlciBTeXN0ZW08L3B1cnBvc2U+DQogICAgPC9k
ZXNjcmlwdD4NCiAgICA8dGltZXBlcmQ+DQogICAgICA8dGltZWluZm8+DQogICAgICAgIDxzbmdk
YXRlPg0KICAgICAgICAgIDxjYWxkYXRlPnVua25vd248L2NhbGRhdGU+DQogICAgICAgIDwvc25n
ZGF0ZT4NCiAgICAgIDwvdGltZWluZm8+DQogICAgICA8Y3VycmVudD5wdWJsaWNhdGlvbiBkYXRl
PC9jdXJyZW50Pg0KICAgIDwvdGltZXBlcmQ+DQogICAgPHN0YXR1cz4NCiAgICAgIDxwcm9ncmVz
cz5Db21wbGV0ZTwvcHJvZ3Jlc3M+DQogICAgICA8dXBkYXRlPkFzIG5lZWRlZDwvdXBkYXRlPg0K
ICAgIDwvc3RhdHVzPg0KICAgIDxrZXl3b3Jkcz4NCiAgICAgIDx0aGVtZT4NCiAgICAgICAgPHRo
ZW1la3Q+SVNPIDE5MTE1IFRvcGljIENhdGVnb3J5PC90aGVtZWt0Pg0KICAgICAgICA8dGhlbWVr
ZXk+R2Vvc2NpZW50aWZpYyBJbmZvcm1hdGlvbjwvdGhlbWVrZXk+DQogICAgICAgIDx0aGVtZWtl
eT5WdWxuZXJhYmlsaXR5PC90aGVtZWtleT4NCiAgICAgICAgPHRoZW1la2V5PkVudmlyb25tZW50
YWwgTW9uaXRvcmluZyBhbmQgTW9kZWxpbmc8L3RoZW1la2V5Pg0KICAgICAgICA8dGhlbWVrZXk+
R2VvbG9neSBhbmQgR2VvcGh5c2ljczwvdGhlbWVrZXk+DQogICAgICA8L3RoZW1lPg0KICAgICAg
PHBsYWNlPg0KICAgICAgICA8cGxhY2VrZXk+RmxvcmlkYTwvcGxhY2VrZXk+DQogICAgICAgIDxw
bGFjZWtleT5GbG9yaWRhbiBBcXVpZmVyIFN5c3RlbTwvcGxhY2VrZXk+DQogICAgICA8L3BsYWNl
Pg0KICAgIDwva2V5d29yZHM+DQogICAgPGFjY2NvbnN0Pm5vbmU8L2FjY2NvbnN0Pg0KICAgIDx1
c2Vjb25zdD5ESVNDTEFJTUVSOg0KVGhpcyBnZW9sb2dpYyBkYXRhIHdhcyBkZXZlbG9wZWQgYnkg
dGhlIEZsb3JpZGEgRGVwYXJ0bWVudCBvZiBFbnZpcm9ubWVudGFsIFByb3RlY3Rpb24gKEZERVAp
IC0gRmxvcmlkYSBHZW9sb2dpY2FsIFN1cnZleSAoRkdTKSB0byBjYXJyeSBvdXQgYWdlbmN5IHJl
c3BvbnNpYmlsaXRpZXMgcmVsYXRlZCB0byBtYW5hZ2VtZW50LCBwcm90ZWN0aW9uLCBhbmQgZGV2
ZWxvcG1lbnQgb2YgRmxvcmlkYSdzIG5hdHVyYWwgcmVzb3VyY2VzLiBBbHRob3VnaCBlZmZvcnRz
IGhhdmUgYmVlbiBtYWRlIHRvIG1ha2UgdGhlIGluZm9ybWF0aW9uIGFjY3VyYXRlIGFuZCB1c2Vm
dWwsIHRoZSBGREVQL0ZHUyBhc3N1bWVzIG5vIHJlc3BvbnNpYmlsaXR5IGZvciBlcnJvcnMgaW4g
dGhlIGluZm9ybWF0aW9uIGFuZCBkb2VzIG5vdCBndWFyYW50ZWUgdGhhdCB0aGUgZGF0YSBhcmUg
ZnJlZSBmcm9tIGVycm9ycyBvciBpbmFjY3VyYWNpZXMuIFNpbWlsYXJseSBGREVQL0ZHUyBhc3N1
bWVzIG5vIHJlc3BvbnNpYmlsaXR5IGZvciB0aGUgY29uc2VxdWVuY2VzIG9mIGluYXBwcm9wcmlh
dGUgdXNlcyBvciBpbnRlcnByZXRhdGlvbnMgb2YgdGhlIGRhdGEuIEFzIHN1Y2gsIHRoZXNlIGRp
Z2l0YWwgZGF0YSBhcmUgZGlzdHJpYnV0ZWQgb24gImFzIGlzIiBiYXNpcyBhbmQgdGhlIHVzZXIg
YXNzdW1lcyBhbGwgcmlzayBhcyB0byB0aGVpciBxdWFsaXR5LCB0aGUgcmVzdWx0cyBvYnRhaW5l
ZCBmcm9tIHRoZWlyIHVzZSwgYW5kIHRoZSBwZXJmb3JtYW5jZSBvZiB0aGUgZGF0YS4gRkRFUC9G
R1MgYmVhcnMgbm8gcmVzcG9uc2liaWxpdHkgdG8gaW5mb3JtIHVzZXJzIG9mIGFueSBzdWJzZXF1
ZW50IGNoYW5nZXMgbWFkZSB0byB0aGlzIGRhdGEuIEFueW9uZSB1c2luZyB0aGlzIGRhdGEgaXMg
YWR2aXNlZCB0aGF0IHByZWNpc2lvbiBpbXBsaWVkIGJ5IHRoZSBkYXRhIG1heSBmYXIgZXhjZWVk
IGFjdHVhbCBwcmVjaXNpb24uIENvbW1lbnRzIG9uIHRoaXMgZGF0YSBhcmUgaW52aXRlZCBhbmQg
RkRFUC9GR1Mgd291bGQgYXBwcmVjaWF0ZSB0aGF0IGRvY3VtZW50ZWQgZXJyb3JzIGJlIGJyb3Vn
aHQgdG8gc3RhZmYgYXR0ZW50aW9uLiBUaGUgZGV2ZWxvcG1lbnQgb2YgdGhlc2UgZGF0YSBzZXRz
IHJlcHJlc2VudHMgYSBtYWpvciBpbnZlc3RtZW50IG9mIHN0YWZmIHRpbWUgYW5kIGVmZm9ydC4g
QXMgYSBwcm9mZXNzaW9uYWwgcmVzcG9uc2liaWxpdHksIHdlIGV4cGVjdCB0aGF0IHRoZSBGREVQ
L0ZHUyB3aWxsIHJlY2VpdmUgcHJvcGVyIGNyZWRpdCB3aGVuIHlvdSB1dGlsaXplIHRoZXNlIGRh
dGEgc2V0cy4gRnVydGhlciwgc2luY2UgcGFydCBvZiB0aGlzIGRhdGEgd2FzIGRldmVsb3BlZCBh
bmQgY29sbGVjdGVkIHdpdGggVS5TLiBHb3Zlcm5tZW50IG9yIFN0YXRlIG9mIEZsb3JpZGEgZnVu
ZGluZywgbm8gcHJvcHJpZXRhcnkgcmlnaHRzIG1heSBiZSBhdHRhY2hlZCB0byBpdCBpbiB3aG9s
ZSBvciBpbiBwYXJ0LCBub3IgbWF5IGl0IGJlIHNvbGQgdG8gdGhlIFUuUy4gR292ZXJubWVudCBv
ciB0aGUgRmxvcmlkYSBTdGF0ZSBHb3Zlcm5tZW50IGFzIHBhcnQgb2YgYW55IHByb2N1cmVtZW50
IG9mIHByb2R1Y3RzIG9yIHNlcnZpY2VzLjwvdXNlY29uc3Q+DQogICAgPHB0Y29udGFjPg0KICAg
ICAgPGNudGluZm8+DQogICAgICAgIDxjbnRvcmdwPg0KICAgICAgICAgIDxjbnRvcmc+Rmxvcmlk
YSBHZW9sb2dpY2FsIFN1cnZleTwvY250b3JnPg0KICAgICAgICA8L2NudG9yZ3A+DQogICAgICAg
IDxjbnRwb3M+R2VvZ3JhcGhpYyBJbmZvcm1hdGlvbiBTeXN0ZW1zPC9jbnRwb3M+DQogICAgICAg
IDxjbnRhZGRyPg0KICAgICAgICAgIDxhZGRydHlwZT5tYWlsaW5nIGFuZCBwaHlzaWNhbCBhZGRy
ZXNzPC9hZGRydHlwZT4NCiAgICAgICAgICA8YWRkcmVzcz5HdW50ZXIgQnVpbGRpbmcgTVMgIzcy
MDwvYWRkcmVzcz4NCiAgICAgICAgICA8YWRkcmVzcz45MDMgVy4gVGVubmVzc2VlIFN0LjwvYWRk
cmVzcz4NCiAgICAgICAgICA8Y2l0eT5UYWxsYWhhc3NlZTwvY2l0eT4NCiAgICAgICAgICA8c3Rh
dGU+Rkw8L3N0YXRlPg0KICAgICAgICAgIDxwb3N0YWw+MzIzMDQtNzcwMDwvcG9zdGFsPg0KICAg
ICAgICAgIDxjb3VudHJ5PlVTQTwvY291bnRyeT4NCiAgICAgICAgPC9jbnRhZGRyPg0KICAgICAg
ICA8Y250dm9pY2U+ODUwLTQ4OC00MTkxPC9jbnR2b2ljZT4NCiAgICAgICAgPGNudGZheD44NTAt
NDg4LTgwODY8L2NudGZheD4NCiAgICAgIDwvY250aW5mbz4NCiAgICA8L3B0Y29udGFjPg0KICAg
IDxkYXRhY3JlZD5GbG9yaWRhIEdlb2xvZ2ljYWwgU3VydmV5PC9kYXRhY3JlZD4NCiAgPC9pZGlu
Zm8+DQogIDxkYXRhcXVhbD4NCiAgICA8bGluZWFnZT4NCiAgICAgIDxwcm9jc3RlcD4NCiAgICAg
ICAgPHByb2NkZXNjPlRoZSBGbG9yaWRhbiBBcXVpZmVyIFJlc3BvbnNlIHRoZW1lIGdyaWQgaXMg
dGhlIHJlbGF0aXZlIHZ1bG5lcmFiaWxpdHkgbWFwIGZvciB0aGUgRmxvcmlkYW4gQXF1aWZlciBT
eXN0ZW0uICBJdCB3YXMgY2FsY3VsYXRlZCB1c2luZyB0aGUgQXJjU0RNIGV4dGVuc2lvbiBhbmQg
YXBwbHlpbmcgdGhlIHdlaWdodHMgb2YgZXZpZGVuY2UgYW5kIGxvZ2lzdGljIHJlZ3Jlc3Npb24g
bWV0aG9kcy4gIEFuIGFuYWx5c2lzIGV4dGVudCAoc3R1ZHkgYXJlYSksIHRyYWluaW5nIHBvaW50
IHRoZW1lIChmYXNfdHJhaW5pbmdfcHRzLnNocCksIGFuZCBtb2RlbGluZyBtZXRob2QgKHdlaWdo
dHMgb2YgZXZpZGVuY2UsIGxvZ2lzdGljIHJlZ3Jlc3Npb24pIGFyZSBzZWxlY3RlZCBpbiB0aGUg
c2V0IGFuYWx5c2lzIHBhcmFtZXRlcnMuICBXZWlnaHRzIGFyZSB0aGVuIGNhbGN1bGF0ZWQgb24g
ZWFjaCBldmlkZW50aWFsIHRoZW1lIGFuZCB0aGVuIHRoZSB0aGVtZXMgYXJlIGdlbmVyYWxpemVk
IChpbnRvIGJpbmFyeSBwYXR0ZXJlbnMsIGlhc190aGsgaXMgdGhlIGV4Y2VwdGlvbiB3aXRoIHRo
cmVlIGNsYXNzZXMpLiBBIGdlbmVyYWxpemF0aW9uIG9mIDEgcmVwcmVzZW50cyAibW9yZSB2dWxu
ZXJhYmxlIiBhcmVhcywgMiByZXByZXNlbnRzICJsZXNzIHZ1bG5lcmFibGUgYXJlYXMgYW5kIC05
OSByZXByZXNlbnRzIG1pc3NpbmcgZGF0YS4gICBBIHJlc3BvbnNlIHRoZW1lIGlzIHRoZW4gY2Fs
Y3VsYXRlZCBiYXNlZCBvbiB0aGUgYXNzb2NpYXRpb24gYmV0d2VlbiB0cmFpbmluZyBwb2ludHMg
YW5kIGV2aWRlbnRpYWwgdGhlbWVzLiANCg0KVGhlIHRvdGFsIG51bWJlciBvZiB1bmlxdWUgY29u
ZGl0aW9ucywgbnVtYmVyIG9mIHRyYWluaW5nIHBvaW50cyBwZXIgdW5pcXVlIGNvbmRpdGlvbiwg
ZXZpZGVudGlhbCB0aGVtZSBnZW5lcmFsaXphdGlvbnMgYW5kIGxvZ2lzdGljIHJlZ3Jlc3Npb24g
cG9zdGVyaW9yIHByb2JhYmlsaXR5IGFyZSBjb250YWluZWQgaW4gdGhlIHRhYmxlLiAgQSByZWxh
dGl2ZSB2dWxuZXJhYmlsaXR5IGNsYXNzIGZpZWxkIGlzIGFsc28gaW4gdGhlIHRhYmxlIHNvIHRo
YXQgdGhlIGdyaWQgY2FuIGJlIHN5bWJvbGl6ZWQgYmFzZWQgb24gRkFWQSB2dWxuZXJhYmlsaXR5
IHpvbmVzLjwvcHJvY2Rlc2M+DQogICAgICAgIDxwcm9jZGF0ZT5Vbmtub3duPC9wcm9jZGF0ZT4N
CiAgICAgICAgPHByb2Njb250Pg0KICAgICAgICAgIDxjbnRpbmZvPg0KICAgICAgICAgICAgPGNu
dG9yZ3A+DQogICAgICAgICAgICAgIDxjbnRvcmc+RmxvcmlkYSBHZW9sb2dpY2FsIFN1cnZleTwv
Y250b3JnPg0KICAgICAgICAgICAgPC9jbnRvcmdwPg0KICAgICAgICAgICAgPGNudGFkZHI+DQog
ICAgICAgICAgICAgIDxhZGRydHlwZT5tYWlsaW5nIGFuZCBwaHlzaWNhbCBhZGRyZXNzPC9hZGRy
dHlwZT4NCiAgICAgICAgICAgICAgPGFkZHJlc3M+R3VudGVyIEJ1aWxkaW5nIE1TICM3MjA8L2Fk
ZHJlc3M+DQogICAgICAgICAgICAgIDxhZGRyZXNzPjkwMyBXLiBUZW5uZXNzZWUgU3QuPC9hZGRy
ZXNzPg0KICAgICAgICAgICAgICA8Y2l0eT5UYWxsYWhhc3NlZTwvY2l0eT4NCiAgICAgICAgICAg
ICAgPHN0YXRlPkZMPC9zdGF0ZT4NCiAgICAgICAgICAgICAgPHBvc3RhbD4zMjMwNC03NzAwPC9w
b3N0YWw+DQogICAgICAgICAgICAgIDxjb3VudHJ5PlVTQTwvY291bnRyeT4NCiAgICAgICAgICAg
IDwvY250YWRkcj4NCiAgICAgICAgICAgIDxjbnR2b2ljZT44NTAtNDg4LTQxOTE8L2NudHZvaWNl
Pg0KICAgICAgICAgICAgPGNudGZheD44NTAtNDg4LTgwODY8L2NudGZheD4NCiAgICAgICAgICA8
L2NudGluZm8+DQogICAgICAgIDwvcHJvY2NvbnQ+DQogICAgICA8L3Byb2NzdGVwPg0KICAgICAg
PHByb2NzdGVwPg0KICAgICAgICA8cHJvY2Rlc2M+UmFzdGVyIGRhdGEgYWRkZWQgdG8gQXJjU0RF
IDkuMyBhbmQgcHVibGlzaGVkIGluIERhdGFNaW5lci48L3Byb2NkZXNjPg0KICAgICAgICA8cHJv
Y2RhdGU+MjAwODEyMTU8L3Byb2NkYXRlPg0KICAgICAgPC9wcm9jc3RlcD4NCiAgICA8L2xpbmVh
Z2U+DQogIDwvZGF0YXF1YWw+DQogIDxzcHJlZj4NCiAgICA8dmVydGRlZj4NCiAgICAgIDxhbHRz
eXM+DQogICAgICAgIDxhbHRyZXM+MS4wMDAwMDA8L2FsdHJlcz4NCiAgICAgICAgPGFsdGVuYz5F
eHBsaWNpdCBlbGV2YXRpb24gY29vcmRpbmF0ZSBpbmNsdWRlZCB3aXRoIGhvcml6b250YWwgY29v
cmRpbmF0ZXM8L2FsdGVuYz4NCiAgICAgIDwvYWx0c3lzPg0KICAgIDwvdmVydGRlZj4NCiAgPC9z
cHJlZj4NCiAgPGVhaW5mbz4NCiAgICA8ZGV0YWlsZWQgTmFtZT0iQkFTRS5TREVfVkFUXzIxMSI+
DQogICAgICA8ZW50dHlwPg0KICAgICAgICA8ZW50dHlwbCBTeW5jPSJUUlVFIj5CQVNFLlNERV9W
QVRfMjExPC9lbnR0eXBsPg0KICAgICAgICA8ZW50dHlwdCBTeW5jPSJUUlVFIj5UYWJsZTwvZW50
dHlwdD4NCiAgICAgICAgPGVudHR5cGMgU3luYz0iVFJVRSI+Nzc8L2VudHR5cGM+DQogICAgICA8
L2VudHR5cD4NCiAgICAgIDxhdHRyPg0KICAgICAgICA8YXR0cmxhYmw+VlVMX0lOVDwvYXR0cmxh
Ymw+DQogICAgICAgIDxhdHRhbGlhcyBTeW5jPSJUUlVFIj5PQkpFQ1RJRDwvYXR0YWxpYXM+DQog
ICAgICAgIDxhdHRydHlwZSBTeW5jPSJUUlVFIj5PSUQ8L2F0dHJ0eXBlPg0KICAgICAgICA8YXR0
d2lkdGggU3luYz0iVFJVRSI+NDwvYXR0d2lkdGg+DQogICAgICAgIDxhdHByZWNpcyBTeW5jPSJU
UlVFIj4xMDwvYXRwcmVjaXM+DQogICAgICAgIDxhdHRzY2FsZSBTeW5jPSJUUlVFIj4wPC9hdHRz
Y2FsZT4NCiAgICAgICAgPGF0dHJkZWYgU3luYz0iVFJVRSI+SW50ZXJuYWwgZmVhdHVyZSBudW1i
ZXIuPC9hdHRyZGVmPg0KICAgICAgICA8YXR0cmRlZnMgU3luYz0iVFJVRSI+RVNSSTwvYXR0cmRl
ZnM+DQogICAgICAgIDxhdHRyZG9tdj4NCiAgICAgICAgICA8dWRvbSBTeW5jPSJUUlVFIj5TZXF1
ZW50aWFsIHVuaXF1ZSB3aG9sZSBudW1iZXJzIHRoYXQgYXJlIGF1dG9tYXRpY2FsbHkgZ2VuZXJh
dGVkLjwvdWRvbT4NCiAgICAgICAgPC9hdHRyZG9tdj4NCiAgICAgIDwvYXR0cj4NCiAgICAgIDxh
dHRyPg0KICAgICAgICA8YXR0cmxhYmw+VlVMX0NMQVNTMjwvYXR0cmxhYmw+DQogICAgICAgIDxh
dHRhbGlhcyBTeW5jPSJUUlVFIj5WQUxVRTwvYXR0YWxpYXM+DQogICAgICAgIDxhdHRydHlwZSBT
eW5jPSJUUlVFIj5JbnRlZ2VyPC9hdHRydHlwZT4NCiAgICAgICAgPGF0dHdpZHRoIFN5bmM9IlRS
VUUiPjQ8L2F0dHdpZHRoPg0KICAgICAgICA8YXRwcmVjaXMgU3luYz0iVFJVRSI+MTA8L2F0cHJl
Y2lzPg0KICAgICAgICA8YXR0c2NhbGUgU3luYz0iVFJVRSI+MDwvYXR0c2NhbGU+DQogICAgICAg
IDxhdHRyZGVmIFN5bmM9IlRSVUUiPkludGVybmFsIGZlYXR1cmUgbnVtYmVyLjwvYXR0cmRlZj4N
CiAgICAgICAgPGF0dHJkZWZzIFN5bmM9IlRSVUUiPkVTUkk8L2F0dHJkZWZzPg0KICAgICAgICA8
YXR0cmRvbXY+DQogICAgICAgICAgPHVkb20gU3luYz0iVFJVRSI+U2VxdWVudGlhbCB1bmlxdWUg
d2hvbGUgbnVtYmVycyB0aGF0IGFyZSBhdXRvbWF0aWNhbGx5IGdlbmVyYXRlZC48L3Vkb20+DQog
ICAgICAgIDwvYXR0cmRvbXY+DQogICAgICA8L2F0dHI+DQogICAgICA8YXR0cj4NCiAgICAgICAg
PGF0dHJsYWJsPlNPSUxfUEVSTTwvYXR0cmxhYmw+DQogICAgICAgIDxhdHRhbGlhcyBTeW5jPSJU
UlVFIj5DT1VOVDwvYXR0YWxpYXM+DQogICAgICAgIDxhdHRydHlwZSBTeW5jPSJUUlVFIj5JbnRl
Z2VyPC9hdHRydHlwZT4NCiAgICAgICAgPGF0dHdpZHRoIFN5bmM9IlRSVUUiPjQ8L2F0dHdpZHRo
Pg0KICAgICAgICA8YXRwcmVjaXMgU3luYz0iVFJVRSI+MTA8L2F0cHJlY2lzPg0KICAgICAgICA8
YXR0c2NhbGUgU3luYz0iVFJVRSI+MDwvYXR0c2NhbGU+DQogICAgICAgIDxhdHRyZGVmIFN5bmM9
IlRSVUUiPkludGVybmFsIGZlYXR1cmUgbnVtYmVyLjwvYXR0cmRlZj4NCiAgICAgICAgPGF0dHJk
ZWZzIFN5bmM9IlRSVUUiPkVTUkk8L2F0dHJkZWZzPg0KICAgICAgICA8YXR0cmRvbXY+DQogICAg
ICAgICAgPHVkb20gU3luYz0iVFJVRSI+U2VxdWVudGlhbCB1bmlxdWUgd2hvbGUgbnVtYmVycyB0
aGF0IGFyZSBhdXRvbWF0aWNhbGx5IGdlbmVyYXRlZC48L3Vkb20+DQogICAgICAgIDwvYXR0cmRv
bXY+DQogICAgICA8L2F0dHI+DQogICAgICA8YXR0cj4NCiAgICAgICAgPGF0dHJsYWJsPklBU19U
SEs8L2F0dHJsYWJsPg0KICAgICAgICA8YXR0YWxpYXMgU3luYz0iVFJVRSI+QVJFQV9TUU08L2F0
dGFsaWFzPg0KICAgICAgICA8YXR0cnR5cGUgU3luYz0iVFJVRSI+RG91YmxlPC9hdHRydHlwZT4N
CiAgICAgICAgPGF0dHdpZHRoIFN5bmM9IlRSVUUiPjg8L2F0dHdpZHRoPg0KICAgICAgICA8YXRw
cmVjaXMgU3luYz0iVFJVRSI+Mzg8L2F0cHJlY2lzPg0KICAgICAgICA8YXR0c2NhbGUgU3luYz0i
VFJVRSI+ODwvYXR0c2NhbGU+DQogICAgICAgIDxhdHRyZGVmIFN5bmM9IlRSVUUiPkludGVybmFs
IGZlYXR1cmUgbnVtYmVyLjwvYXR0cmRlZj4NCiAgICAgICAgPGF0dHJkZWZzIFN5bmM9IlRSVUUi
PkVTUkk8L2F0dHJkZWZzPg0KICAgICAgICA8YXR0cmRvbXY+DQogICAgICAgICAgPHVkb20gU3lu
Yz0iVFJVRSI+U2VxdWVudGlhbCB1bmlxdWUgd2hvbGUgbnVtYmVycyB0aGF0IGFyZSBhdXRvbWF0
aWNhbGx5IGdlbmVyYXRlZC48L3Vkb20+DQogICAgICAgIDwvYXR0cmRvbXY+DQogICAgICA8L2F0
dHI+DQogICAgICA8YXR0cj4NCiAgICAgICAgPGF0dHJsYWJsPkxyX3N0ZF9kZXY8L2F0dHJsYWJs
Pg0KICAgICAgICA8YXR0YWxpYXMgU3luYz0iVFJVRSI+VFJOR1BPSU5UUzwvYXR0YWxpYXM+DQog
ICAgICAgIDxhdHRydHlwZSBTeW5jPSJUUlVFIj5JbnRlZ2VyPC9hdHRydHlwZT4NCiAgICAgICAg
PGF0dHdpZHRoIFN5bmM9IlRSVUUiPjQ8L2F0dHdpZHRoPg0KICAgICAgICA8YXRwcmVjaXMgU3lu
Yz0iVFJVRSI+MTA8L2F0cHJlY2lzPg0KICAgICAgICA8YXR0c2NhbGUgU3luYz0iVFJVRSI+MDwv
YXR0c2NhbGU+DQogICAgICAgIDxhdHRyZGVmIFN5bmM9IlRSVUUiPkludGVybmFsIGZlYXR1cmUg
bnVtYmVyLjwvYXR0cmRlZj4NCiAgICAgICAgPGF0dHJkZWZzIFN5bmM9IlRSVUUiPkVTUkk8L2F0
dHJkZWZzPg0KICAgICAgICA8YXR0cmRvbXY+DQogICAgICAgICAgPHVkb20gU3luYz0iVFJVRSI+
U2VxdWVudGlhbCB1bmlxdWUgd2hvbGUgbnVtYmVycyB0aGF0IGFyZSBhdXRvbWF0aWNhbGx5IGdl
bmVyYXRlZC48L3Vkb20+DQogICAgICAgIDwvYXR0cmRvbXY+DQogICAgICA8L2F0dHI+DQogICAg
ICA8YXR0cj4NCiAgICAgICAgPGF0dHJsYWJsPktfQlVGRjYwTTwvYXR0cmxhYmw+DQogICAgICAg
IDxhdHRyZGVmPkludGVybmFsIGZlYXR1cmUgbnVtYmVyLjwvYXR0cmRlZj4NCiAgICAgICAgPGF0
dHJkZWZzPkVTUkk8L2F0dHJkZWZzPg0KICAgICAgICA8YXR0cmRvbXY+DQogICAgICAgICAgPHVk
b20+U2VxdWVudGlhbCB1bmlxdWUgd2hvbGUgbnVtYmVycyB0aGF0IGFyZSBhdXRvbWF0aWNhbGx5
IGdlbmVyYXRlZC48L3Vkb20+DQogICAgICAgIDwvYXR0cmRvbXY+DQogICAgICAgIDxhdHRhbGlh
cyBTeW5jPSJUUlVFIj5WVUxfSU5UPC9hdHRhbGlhcz4NCiAgICAgICAgPGF0dHJ0eXBlIFN5bmM9
IlRSVUUiPkludGVnZXI8L2F0dHJ0eXBlPg0KICAgICAgICA8YXR0d2lkdGggU3luYz0iVFJVRSI+
NDwvYXR0d2lkdGg+DQogICAgICAgIDxhdHByZWNpcyBTeW5jPSJUUlVFIj4xMDwvYXRwcmVjaXM+
DQogICAgICAgIDxhdHRzY2FsZSBTeW5jPSJUUlVFIj4wPC9hdHRzY2FsZT4NCiAgICAgIDwvYXR0
cj4NCiAgICAgIDxhdHRyPg0KICAgICAgICA8YXR0cmxhYmw+SEVBRF9ESUZGPC9hdHRybGFibD4N
CiAgICAgICAgPGF0dHJkZWY+SW50ZXJuYWwgZmVhdHVyZSBudW1iZXIuPC9hdHRyZGVmPg0KICAg
ICAgICA8YXR0cmRlZnM+RVNSSTwvYXR0cmRlZnM+DQogICAgICAgIDxhdHRyZG9tdj4NCiAgICAg
ICAgICA8dWRvbT5TZXF1ZW50aWFsIHVuaXF1ZSB3aG9sZSBudW1iZXJzIHRoYXQgYXJlIGF1dG9t
YXRpY2FsbHkgZ2VuZXJhdGVkLjwvdWRvbT4NCiAgICAgICAgPC9hdHRyZG9tdj4NCiAgICAgICAg
PGF0dGFsaWFzIFN5bmM9IlRSVUUiPlZVTF9DTEFTUzI8L2F0dGFsaWFzPg0KICAgICAgICA8YXR0
cnR5cGUgU3luYz0iVFJVRSI+U3RyaW5nPC9hdHRydHlwZT4NCiAgICAgICAgPGF0dHdpZHRoIFN5
bmM9IlRSVUUiPjE2PC9hdHR3aWR0aD4NCiAgICAgICAgPGF0cHJlY2lzIFN5bmM9IlRSVUUiPjA8
L2F0cHJlY2lzPg0KICAgICAgICA8YXR0c2NhbGUgU3luYz0iVFJVRSI+MDwvYXR0c2NhbGU+DQog
ICAgICA8L2F0dHI+DQogICAgICA8YXR0cj4NCiAgICAgICAgPGF0dHJsYWJsPkxSUE9TVF9QUk9C
PC9hdHRybGFibD4NCiAgICAgICAgPGF0dHJkZWY+SW50ZXJuYWwgZmVhdHVyZSBudW1iZXIuPC9h
dHRyZGVmPg0KICAgICAgICA8YXR0cmRlZnM+RVNSSTwvYXR0cmRlZnM+DQogICAgICAgIDxhdHRy
ZG9tdj4NCiAgICAgICAgICA8dWRvbT5TZXF1ZW50aWFsIHVuaXF1ZSB3aG9sZSBudW1iZXJzIHRo
YXQgYXJlIGF1dG9tYXRpY2FsbHkgZ2VuZXJhdGVkLjwvdWRvbT4NCiAgICAgICAgPC9hdHRyZG9t
dj4NCiAgICAgICAgPGF0dGFsaWFzIFN5bmM9IlRSVUUiPlNPSUxfUEVSTTwvYXR0YWxpYXM+DQog
ICAgICAgIDxhdHRydHlwZSBTeW5jPSJUUlVFIj5Eb3VibGU8L2F0dHJ0eXBlPg0KICAgICAgICA8
YXR0d2lkdGggU3luYz0iVFJVRSI+ODwvYXR0d2lkdGg+DQogICAgICAgIDxhdHByZWNpcyBTeW5j
PSJUUlVFIj4zODwvYXRwcmVjaXM+DQogICAgICAgIDxhdHRzY2FsZSBTeW5jPSJUUlVFIj44PC9h
dHRzY2FsZT4NCiAgICAgIDwvYXR0cj4NCiAgICAgIDxhdHRyPg0KICAgICAgICA8YXR0cmxhYmw+
VmFsdWU8L2F0dHJsYWJsPg0KICAgICAgICA8YXR0cmRlZj5OdW1iZXIgb2YgdW5pcXVlIGNvbmRp
dGlvbnM8L2F0dHJkZWY+DQogICAgICAgIDxhdHRyZGVmcz5FU1JJPC9hdHRyZGVmcz4NCiAgICAg
ICAgPGF0dHJkb212Pg0KICAgICAgICAgIDx1ZG9tPlNlcXVlbnRpYWwgdW5pcXVlIHdob2xlIG51
bWJlcnMgdGhhdCBhcmUgYXV0b21hdGljYWxseSBnZW5lcmF0ZWQuPC91ZG9tPg0KICAgICAgICA8
L2F0dHJkb212Pg0KICAgICAgICA8YXR0YWxpYXMgU3luYz0iVFJVRSI+SUFTX1RISzwvYXR0YWxp
YXM+DQogICAgICAgIDxhdHRydHlwZSBTeW5jPSJUUlVFIj5Eb3VibGU8L2F0dHJ0eXBlPg0KICAg
ICAgICA8YXR0d2lkdGggU3luYz0iVFJVRSI+ODwvYXR0d2lkdGg+DQogICAgICAgIDxhdHByZWNp
cyBTeW5jPSJUUlVFIj4zODwvYXRwcmVjaXM+DQogICAgICAgIDxhdHRzY2FsZSBTeW5jPSJUUlVF
Ij44PC9hdHRzY2FsZT4NCiAgICAgIDwvYXR0cj4NCiAgICAgIDxhdHRyPg0KICAgICAgICA8YXR0
cmxhYmw+VkFMVUU8L2F0dHJsYWJsPg0KICAgICAgICA8YXR0YWxpYXMgU3luYz0iVFJVRSI+S19C
VUZGNjBNPC9hdHRhbGlhcz4NCiAgICAgICAgPGF0dHJ0eXBlIFN5bmM9IlRSVUUiPkRvdWJsZTwv
YXR0cnR5cGU+DQogICAgICAgIDxhdHR3aWR0aCBTeW5jPSJUUlVFIj44PC9hdHR3aWR0aD4NCiAg
ICAgICAgPGF0cHJlY2lzIFN5bmM9IlRSVUUiPjM4PC9hdHByZWNpcz4NCiAgICAgICAgPGF0dHNj
YWxlIFN5bmM9IlRSVUUiPjg8L2F0dHNjYWxlPg0KICAgICAgICA8YXR0cmRlZiBTeW5jPSJUUlVF
Ij5JbnRlcm5hbCBmZWF0dXJlIG51bWJlci48L2F0dHJkZWY+DQogICAgICAgIDxhdHRyZGVmcyBT
eW5jPSJUUlVFIj5FU1JJPC9hdHRyZGVmcz4NCiAgICAgICAgPGF0dHJkb212Pg0KICAgICAgICAg
IDx1ZG9tIFN5bmM9IlRSVUUiPlNlcXVlbnRpYWwgdW5pcXVlIHdob2xlIG51bWJlcnMgdGhhdCBh
cmUgYXV0b21hdGljYWxseSBnZW5lcmF0ZWQuPC91ZG9tPg0KICAgICAgICA8L2F0dHJkb212Pg0K
ICAgICAgPC9hdHRyPg0KICAgICAgPGF0dHI+DQogICAgICAgIDxhdHRybGFibD5DT1VOVDwvYXR0
cmxhYmw+DQogICAgICAgIDxhdHRhbGlhcyBTeW5jPSJUUlVFIj5IRUFEX0RJRkY8L2F0dGFsaWFz
Pg0KICAgICAgICA8YXR0cnR5cGUgU3luYz0iVFJVRSI+RG91YmxlPC9hdHRydHlwZT4NCiAgICAg
ICAgPGF0dHdpZHRoIFN5bmM9IlRSVUUiPjg8L2F0dHdpZHRoPg0KICAgICAgICA8YXRwcmVjaXMg
U3luYz0iVFJVRSI+Mzg8L2F0cHJlY2lzPg0KICAgICAgICA8YXR0c2NhbGUgU3luYz0iVFJVRSI+
ODwvYXR0c2NhbGU+DQogICAgICAgIDxhdHRyZGVmIFN5bmM9IlRSVUUiPkludGVybmFsIGZlYXR1
cmUgbnVtYmVyLjwvYXR0cmRlZj4NCiAgICAgICAgPGF0dHJkZWZzIFN5bmM9IlRSVUUiPkVTUkk8
L2F0dHJkZWZzPg0KICAgICAgICA8YXR0cmRvbXY+DQogICAgICAgICAgPHVkb20gU3luYz0iVFJV
RSI+U2VxdWVudGlhbCB1bmlxdWUgd2hvbGUgbnVtYmVycyB0aGF0IGFyZSBhdXRvbWF0aWNhbGx5
IGdlbmVyYXRlZC48L3Vkb20+DQogICAgICAgIDwvYXR0cmRvbXY+DQogICAgICA8L2F0dHI+DQog
ICAgICA8YXR0cj4NCiAgICAgICAgPGF0dHJsYWJsPkFSRUFfU1FNPC9hdHRybGFibD4NCiAgICAg
ICAgPGF0dGFsaWFzIFN5bmM9IlRSVUUiPkxSUE9TVF9QUk9CPC9hdHRhbGlhcz4NCiAgICAgICAg
PGF0dHJ0eXBlIFN5bmM9IlRSVUUiPkRvdWJsZTwvYXR0cnR5cGU+DQogICAgICAgIDxhdHR3aWR0
aCBTeW5jPSJUUlVFIj44PC9hdHR3aWR0aD4NCiAgICAgICAgPGF0cHJlY2lzIFN5bmM9IlRSVUUi
PjM4PC9hdHByZWNpcz4NCiAgICAgICAgPGF0dHNjYWxlIFN5bmM9IlRSVUUiPjg8L2F0dHNjYWxl
Pg0KICAgICAgICA8YXR0cmRlZiBTeW5jPSJUUlVFIj5JbnRlcm5hbCBmZWF0dXJlIG51bWJlci48
L2F0dHJkZWY+DQogICAgICAgIDxhdHRyZGVmcyBTeW5jPSJUUlVFIj5FU1JJPC9hdHRyZGVmcz4N
CiAgICAgICAgPGF0dHJkb212Pg0KICAgICAgICAgIDx1ZG9tIFN5bmM9IlRSVUUiPlNlcXVlbnRp
YWwgdW5pcXVlIHdob2xlIG51bWJlcnMgdGhhdCBhcmUgYXV0b21hdGljYWxseSBnZW5lcmF0ZWQu
PC91ZG9tPg0KICAgICAgICA8L2F0dHJkb212Pg0KICAgICAgPC9hdHRyPg0KICAgICAgPGF0dHI+
DQogICAgICAgIDxhdHRybGFibD5UUk5HUE9JTlRTPC9hdHRybGFibD4NCiAgICAgICAgPGF0dGFs
aWFzIFN5bmM9IlRSVUUiPkxSX1NURF9ERVY8L2F0dGFsaWFzPg0KICAgICAgICA8YXR0cnR5cGUg
U3luYz0iVFJVRSI+RG91YmxlPC9hdHRydHlwZT4NCiAgICAgICAgPGF0dHdpZHRoIFN5bmM9IlRS
VUUiPjg8L2F0dHdpZHRoPg0KICAgICAgICA8YXRwcmVjaXMgU3luYz0iVFJVRSI+Mzg8L2F0cHJl
Y2lzPg0KICAgICAgICA8YXR0c2NhbGUgU3luYz0iVFJVRSI+ODwvYXR0c2NhbGU+DQogICAgICAg
IDxhdHRyZGVmIFN5bmM9IlRSVUUiPkludGVybmFsIGZlYXR1cmUgbnVtYmVyLjwvYXR0cmRlZj4N
CiAgICAgICAgPGF0dHJkZWZzIFN5bmM9IlRSVUUiPkVTUkk8L2F0dHJkZWZzPg0KICAgICAgICA8
YXR0cmRvbXY+DQogICAgICAgICAgPHVkb20gU3luYz0iVFJVRSI+U2VxdWVudGlhbCB1bmlxdWUg
d2hvbGUgbnVtYmVycyB0aGF0IGFyZSBhdXRvbWF0aWNhbGx5IGdlbmVyYXRlZC48L3Vkb20+DQog
ICAgICAgIDwvYXR0cmRvbXY+DQogICAgICA8L2F0dHI+DQogICAgICA8YXR0cj4NCiAgICAgICAg
PGF0dHJsYWJsPkNvdW50PC9hdHRybGFibD4NCiAgICAgICAgPGF0dHJkZWY+TnVtYmVyIG9mIGNl
bGxzIHBlciB1bmlxdWUgY29uZGl0aW9uPC9hdHRyZGVmPg0KICAgICAgPC9hdHRyPg0KICAgICAg
PGF0dHI+DQogICAgICAgIDxhdHRybGFibD5BcmVhX3NxbTwvYXR0cmxhYmw+DQogICAgICAgIDxh
dHRyZGVmPkFyZWEgKHNxIG1ldGVycyk8L2F0dHJkZWY+DQogICAgICA8L2F0dHI+DQogICAgICA8
YXR0cj4NCiAgICAgICAgPGF0dHJsYWJsPlRybmdwb2ludHM8L2F0dHJsYWJsPg0KICAgICAgICA8
YXR0cmRlZj5OdW1iZXIgb2YgdHJhaW5pbmcgcG9pbnRzIHBlciB1bmlxdWUgY29uZGl0aW9uPC9h
dHRyZGVmPg0KICAgICAgPC9hdHRyPg0KICAgICAgPGF0dHI+DQogICAgICAgIDxhdHRybGFibD5W
dWxfaW50PC9hdHRybGFibD4NCiAgICAgICAgPGF0dHJkZWY+TG9naXN0aWMgcmVncmVzc2lvbiBz
dGFuZGFyZCBkZXZpYXRpb248L2F0dHJkZWY+DQogICAgICA8L2F0dHI+DQogICAgICA8YXR0cj4N
CiAgICAgICAgPGF0dHJsYWJsPlZ1bF9jbGFzczI8L2F0dHJsYWJsPg0KICAgICAgICA8YXR0cmRl
Zj5WdWxuZXJhYmlsaXR5IGNsYXNzPC9hdHRyZGVmPg0KICAgICAgPC9hdHRyPg0KICAgICAgPGF0
dHI+DQogICAgICAgIDxhdHRybGFibD5Tb2lsX3Blcm08L2F0dHJsYWJsPg0KICAgICAgICA8YXR0
cmRlZj5HZW5lcmFsaXphdGlvbiBvZiBzb2lsIHBlcm1lYWJpbGl0eSBldmlkZW50aWFsIHRoZW1l
PC9hdHRyZGVmPg0KICAgICAgPC9hdHRyPg0KICAgICAgPGF0dHI+DQogICAgICAgIDxhdHRybGFi
bD5JYXNfdGhrPC9hdHRybGFibD4NCiAgICAgICAgPGF0dHJkZWY+R2VuZXJhbGl6YXRpb24gb2Yg
SUFTIHRoaWNrbmVzcyBldmlkZW50aWFsIHRoZW1lPC9hdHRyZGVmPg0KICAgICAgPC9hdHRyPg0K
ICAgICAgPGF0dHI+DQogICAgICAgIDxhdHRybGFibD5LX2J1ZmY2MG08L2F0dHJsYWJsPg0KICAg
ICAgICA8YXR0cmRlZj5HZW5lcmFsaXphdGlvbiBvZiBwcm94aW1pdHkgdG8gZWZmZWN0aXZlIGth
cnN0IGV2aWRlbnRpYWwgdGhlbWU8L2F0dHJkZWY+DQogICAgICA8L2F0dHI+DQogICAgICA8YXR0
cj4NCiAgICAgICAgPGF0dHJsYWJsPkhlYWRfZGlmZjwvYXR0cmxhYmw+DQogICAgICAgIDxhdHRy
ZGVmPkdlbmVyYWxpemF0aW9uIG9mIGh5ZHJhdWxpYyBoZWFkIGRpZmZlcmVuY2UgZXZpZGVudGlh
bCB0aGVtZTwvYXR0cmRlZj4NCiAgICAgIDwvYXR0cj4NCiAgICAgIDxhdHRyPg0KICAgICAgICA8
YXR0cmxhYmw+THJwb3N0X3Byb2I8L2F0dHJsYWJsPg0KICAgICAgICA8YXR0cmRlZj5Mb2dpc3Rp
YyByZWdyZXNzaW9uIHBvc3RlcmlvciBwcm9iYWJpbGl0eSAtIFRoZSBwcm9iYWJpbGl0eSB0aGF0
IGEgdW5pdCBjZWxsIGNvbnRhaW5zIGEgdHJhaW5pbmcgcG9pbnQgYWZ0ZXIgY29uc2lkZXJpbmcg
dGhlIGV2aWRlbnRpYWwgdGhlbWVzLjwvYXR0cmRlZj4NCiAgICAgIDwvYXR0cj4NCiAgICAgIDxh
dHRyPg0KICAgICAgICA8YXR0cmxhYmw+TFJfU1REX0RFVjwvYXR0cmxhYmw+DQogICAgICA8L2F0
dHI+DQogICAgPC9kZXRhaWxlZD4NCiAgPC9lYWluZm8+DQogIDxkaXN0aW5mbz4NCiAgICA8ZGlz
dHJpYj4NCiAgICAgIDxjbnRpbmZvPg0KICAgICAgICA8Y250b3JncD4NCiAgICAgICAgICA8Y250
b3JnPkZsb3JpZGEgR2VvbG9naWNhbCBTdXJ2ZXk8L2NudG9yZz4NCiAgICAgICAgPC9jbnRvcmdw
Pg0KICAgICAgICA8Y250YWRkcj4NCiAgICAgICAgICA8YWRkcnR5cGU+bWFpbGluZyBhbmQgcGh5
c2ljYWwgYWRkcmVzczwvYWRkcnR5cGU+DQogICAgICAgICAgPGFkZHJlc3M+R3VudGVyIEJ1aWxk
aW5nIE1TICM3MjA8L2FkZHJlc3M+DQogICAgICAgICAgPGFkZHJlc3M+OTAzIFcuIFRlbm5lc3Nl
ZSBTdC48L2FkZHJlc3M+DQogICAgICAgICAgPGNpdHk+VGFsbGFoYXNzZWU8L2NpdHk+DQogICAg
ICAgICAgPHN0YXRlPkZMPC9zdGF0ZT4NCiAgICAgICAgICA8cG9zdGFsPjMyMzA0LTc3MDA8L3Bv
c3RhbD4NCiAgICAgICAgICA8Y291bnRyeT5VU0E8L2NvdW50cnk+DQogICAgICAgIDwvY250YWRk
cj4NCiAgICAgICAgPGNudHZvaWNlPjg1MC00ODgtNDE5MTwvY250dm9pY2U+DQogICAgICAgIDxj
bnRmYXg+ODUwLTQ4OC04MDg2PC9jbnRmYXg+DQogICAgICA8L2NudGluZm8+DQogICAgPC9kaXN0
cmliPg0KICAgIDxyZXNkZXNjPkRvd25sb2FkYWJsZSBEYXRhPC9yZXNkZXNjPg0KICAgIDxzdGRv
cmRlcj4NCiAgICAgIDxkaWdmb3JtPg0KICAgICAgICA8ZGlndGluZm8+DQogICAgICAgICAgPHRy
YW5zaXplPjE3LjU5NDwvdHJhbnNpemU+DQogICAgICAgIDwvZGlndGluZm8+DQogICAgICA8L2Rp
Z2Zvcm0+DQogICAgPC9zdGRvcmRlcj4NCiAgPC9kaXN0aW5mbz4NCiAgPG1ldGFpbmZvPg0KICAg
IDxtZXRjPg0KICAgICAgPGNudGluZm8+DQogICAgICAgIDxjbnRvcmdwPg0KICAgICAgICAgIDxj
bnRvcmc+RmxvcmlkYSBEZXBhcnRtZW50IG9mIEVudmlyb25tZW50YWwgUHJvdGVjdGlvbiAoRkRF
UCkgT1RJUy9HSVMgU2VjdGlvbjwvY250b3JnPg0KICAgICAgICA8L2NudG9yZ3A+DQogICAgICAg
IDxjbnRhZGRyPg0KICAgICAgICAgIDxhZGRydHlwZT5tYWlsaW5nIGFuZCBwaHlzaWNhbCBhZGRy
ZXNzPC9hZGRydHlwZT4NCiAgICAgICAgICA8Y2l0eT5UYWxsYWhhc3NlZTwvY2l0eT4NCiAgICAg
ICAgICA8c3RhdGU+Rkw8L3N0YXRlPg0KICAgICAgICAgIDxwb3N0YWw+MzIzOTktMjQwMDwvcG9z
dGFsPg0KICAgICAgICAgIDxjb3VudHJ5PlVTQTwvY291bnRyeT4NCiAgICAgICAgICA8YWRkcmVz
cz4yNjAwIEJsYWlyIFN0b25lIFJkPC9hZGRyZXNzPg0KICAgICAgICAgIDxhZGRyZXNzPk1TIDY1
MjA8L2FkZHJlc3M+DQogICAgICAgIDwvY250YWRkcj4NCiAgICAgICAgPGNudGVtYWlsPkdJUy5M
aWJyYXJpYW5AZGVwLnN0YXRlLmZsLnVzPC9jbnRlbWFpbD4NCiAgICAgIDwvY250aW5mbz4NCiAg
ICA8L21ldGM+DQogIDwvbWV0YWluZm8+DQogIDxFc3JpPg0KICAgIDxNZXRhSUQ+ezA5NkIyNzg5
LUJBMEQtNEZERC1BMkY3LUNFRTczRjlFNjg3NH08L01ldGFJRD4NCiAgICA8Q3JlYURhdGU+MjAx
MDEyMTU8L0NyZWFEYXRlPg0KICAgIDxDcmVhVGltZT4xMDMzMTUwMDwvQ3JlYVRpbWU+DQogICAg
PFN5bmNPbmNlPkZBTFNFPC9TeW5jT25jZT4NCiAgICA8U3luY0RhdGU+MjAxNDA0MjE8L1N5bmNE
YXRlPg0KICAgIDxTeW5jVGltZT4xMDI1MjIwMDwvU3luY1RpbWU+DQogICAgPE1vZERhdGU+MjAx
NDA0MjE8L01vZERhdGU+DQogICAgPE1vZFRpbWU+MTAyNTIyMDA8L01vZFRpbWU+DQogICAgPEFy
Y0dJU1Byb2ZpbGU+RkdEQzwvQXJjR0lTUHJvZmlsZT4NCiAgICA8RGF0YVByb3BlcnRpZXM+DQog
ICAgICA8bGluZWFnZT4NCiAgICAgICAgPFByb2Nlc3MgVG9vbFNvdXJjZT0iQzpcUHJvZ3JhbSBG
aWxlcyAoeDg2KVxBcmNHSVNcRGVza3RvcDEwLjBcQXJjVG9vbGJveFxUb29sYm94ZXNcRGF0YSBN
YW5hZ2VtZW50IFRvb2xzLnRieFxDb3B5UmFzdGVyIiBEYXRlPSIyMDE0MDEyMSIgVGltZT0iMTUw
MDM0Ij5Db3B5UmFzdGVyICJEYXRhYmFzZSBDb25uZWN0aW9uc1xiYXNlX2dpc3NkZUA1MTUxLnNk
ZVxCQVNFLkZBU19SRVNQT05TRSIgXFwxNzIuMjAuMzQuNThcUmFzdGVyRGF0YVxGTkFJX0ZXQ19y
YXN0ZXIuZ2RiXEZBU19SRVNQT05TRSAjICMgIyBOT05FIE5PTkUgIzwvUHJvY2Vzcz4NCiAgICAg
IDwvbGluZWFnZT4NCiAgICA8L0RhdGFQcm9wZXJ0aWVzPg0KICA8L0Vzcmk+DQogIDxkYXRhSWRJ
bmZvPg0KICAgIDxpZENpdGF0aW9uPg0KICAgICAgPHJlc1RpdGxlIFN5bmM9IkZBTFNFIj5GbG9y
aWRhbiBBcXVpZmVyIFN5c3RlbSBDb250YW1pbmF0aW9uIFBvdGVudGlhbCA8L3Jlc1RpdGxlPg0K
ICAgIDwvaWRDaXRhdGlvbj4NCiAgICA8aWRQdXJwPkRldmVsb3BtZW50IG9mIGEgcmVsYXRpdmUg
dnVsbmVyYWJpbGl0eSBtYXAgZm9yIHRoZSBGbG9yaWRhbiBBcXVpZmVyIFN5c3RlbTwvaWRQdXJw
Pg0KICAgIDxpZEFicz4mbHQ7RElWIFNUWUxFPSJ0ZXh0LWFsaWduOkxlZnQ7IiZndDsmbHQ7RElW
Jmd0OyZsdDtQJmd0OyZsdDtTUEFOJmd0O1RoZSBGbG9yaWRhbiBBcXVpZmVyIFN5c3RlbSBSZXNw
b25zZSB0aGVtZSBncmlkIGlzIHRoZSByZWxhdGl2ZSB2dWxuZXJhYmlsaXR5IG1hcCBmb3IgdGhl
IEZsb3JpZGFuIEFxdWlmZXIgU3lzdGVtLiBJdCB3YXMgY2FsY3VsYXRlZCB1c2luZyB0aGUgQXJj
U0RNIGV4dGVuc2lvbiBhbmQgYXBwbHlpbmcgdGhlIHdlaWdodHMgb2YgZXZpZGVuY2UgYW5kIGxv
Z2lzdGljYWwgcmVncmVzc2lvbiBtZXRob2QuIFRoZSB0b3RhbCBudW1iZXIgb2YgdW5pcXVlIGNv
bmRpdGlvbnMsIG51bWJlciBvZiB0cmFpbmluZyBwb2ludHMgcGVyIHVuaXF1ZSBjb25kaXRpb24s
IGV2aWRlbnRpYWwgdGhlbWUgZ2VuZXJhbGl6YXRpb25zIGFuZCBwb3N0ZXJpb3IgcHJvYmFiaWxp
dHkgYXJlIGNvbnRhaW5lZCBpbiB0aGUgdGFibGUuIEEgcmVsYXRpdmUgdnVsbmVyYWJpbGl0eSBj
bGFzcyBmaWVsZCBpcyBhbHNvIGluIHRoZSB0YWJsZSBzbyB0aGF0IHRoZSBncmlkIGNhbiBiZSBz
eW1ib2xpemVkIGJhc2VkIG9uIEZBVkEgdnVsbmVyYWJpbGl0eSB6b25lcy4mbHQ7L1NQQU4mZ3Q7
Jmx0Oy9QJmd0OyZsdDsvRElWJmd0OyZsdDsvRElWJmd0OzwvaWRBYnM+DQogICAgPGlkQ3JlZGl0
PkZsb3JpZGEgR2VvbG9naWNhbCBTdXJ2ZXk8L2lkQ3JlZGl0Pg0KICAgIDxzZWFyY2hLZXlzPg0K
ICAgICAgPGtleXdvcmQ+R2Vvc2NpZW50aWZpYyBJbmZvcm1hdGlvbjwva2V5d29yZD4NCiAgICAg
IDxrZXl3b3JkPlZ1bG5lcmFiaWxpdHk8L2tleXdvcmQ+DQogICAgICA8a2V5d29yZD5FbnZpcm9u
bWVudGFsIE1vbml0b3JpbmcgYW5kIE1vZGVsaW5nPC9rZXl3b3JkPg0KICAgICAgPGtleXdvcmQ+
R2VvbG9neSBhbmQgR2VvcGh5c2ljczwva2V5d29yZD4NCiAgICA8L3NlYXJjaEtleXM+DQogICAg
PHJlc0NvbnN0Pg0KICAgICAgPENvbnN0cz4NCiAgICAgICAgPHVzZUxpbWl0PkRJU0NMQUlNRVI6
DQpUaGlzIGdlb2xvZ2ljIGRhdGEgd2FzIGRldmVsb3BlZCBieSB0aGUgRmxvcmlkYSBEZXBhcnRt
ZW50IG9mIEVudmlyb25tZW50YWwgUHJvdGVjdGlvbiAoRkRFUCkgLSBGbG9yaWRhIEdlb2xvZ2lj
YWwgU3VydmV5IChGR1MpIHRvIGNhcnJ5IG91dCBhZ2VuY3kgcmVzcG9uc2liaWxpdGllcyByZWxh
dGVkIHRvIG1hbmFnZW1lbnQsIHByb3RlY3Rpb24sIGFuZCBkZXZlbG9wbWVudCBvZiBGbG9yaWRh
J3MgbmF0dXJhbCByZXNvdXJjZXMuIEFsdGhvdWdoIGVmZm9ydHMgaGF2ZSBiZWVuIG1hZGUgdG8g
bWFrZSB0aGUgaW5mb3JtYXRpb24gYWNjdXJhdGUgYW5kIHVzZWZ1bCwgdGhlIEZERVAvRkdTIGFz
c3VtZXMgbm8gcmVzcG9uc2liaWxpdHkgZm9yIGVycm9ycyBpbiB0aGUgaW5mb3JtYXRpb24gYW5k
IGRvZXMgbm90IGd1YXJhbnRlZSB0aGF0IHRoZSBkYXRhIGFyZSBmcmVlIGZyb20gZXJyb3JzIG9y
IGluYWNjdXJhY2llcy4gU2ltaWxhcmx5IEZERVAvRkdTIGFzc3VtZXMgbm8gcmVzcG9uc2liaWxp
dHkgZm9yIHRoZSBjb25zZXF1ZW5jZXMgb2YgaW5hcHByb3ByaWF0ZSB1c2VzIG9yIGludGVycHJl
dGF0aW9ucyBvZiB0aGUgZGF0YS4gQXMgc3VjaCwgdGhlc2UgZGlnaXRhbCBkYXRhIGFyZSBkaXN0
cmlidXRlZCBvbiAiYXMgaXMiIGJhc2lzIGFuZCB0aGUgdXNlciBhc3N1bWVzIGFsbCByaXNrIGFz
IHRvIHRoZWlyIHF1YWxpdHksIHRoZSByZXN1bHRzIG9idGFpbmVkIGZyb20gdGhlaXIgdXNlLCBh
bmQgdGhlIHBlcmZvcm1hbmNlIG9mIHRoZSBkYXRhLiBGREVQL0ZHUyBiZWFycyBubyByZXNwb25z
aWJpbGl0eSB0byBpbmZvcm0gdXNlcnMgb2YgYW55IHN1YnNlcXVlbnQgY2hhbmdlcyBtYWRlIHRv
IHRoaXMgZGF0YS4gQW55b25lIHVzaW5nIHRoaXMgZGF0YSBpcyBhZHZpc2VkIHRoYXQgcHJlY2lz
aW9uIGltcGxpZWQgYnkgdGhlIGRhdGEgbWF5IGZhciBleGNlZWQgYWN0dWFsIHByZWNpc2lvbi4g
Q29tbWVudHMgb24gdGhpcyBkYXRhIGFyZSBpbnZpdGVkIGFuZCBGREVQL0ZHUyB3b3VsZCBhcHBy
ZWNpYXRlIHRoYXQgZG9jdW1lbnRlZCBlcnJvcnMgYmUgYnJvdWdodCB0byBzdGFmZiBhdHRlbnRp
b24uIFRoZSBkZXZlbG9wbWVudCBvZiB0aGVzZSBkYXRhIHNldHMgcmVwcmVzZW50cyBhIG1ham9y
IGludmVzdG1lbnQgb2Ygc3RhZmYgdGltZSBhbmQgZWZmb3J0LiBBcyBhIHByb2Zlc3Npb25hbCBy
ZXNwb25zaWJpbGl0eSwgd2UgZXhwZWN0IHRoYXQgdGhlIEZERVAvRkdTIHdpbGwgcmVjZWl2ZSBw
cm9wZXIgY3JlZGl0IHdoZW4geW91IHV0aWxpemUgdGhlc2UgZGF0YSBzZXRzLiBGdXJ0aGVyLCBz
aW5jZSBwYXJ0IG9mIHRoaXMgZGF0YSB3YXMgZGV2ZWxvcGVkIGFuZCBjb2xsZWN0ZWQgd2l0aCBV
LlMuIEdvdmVybm1lbnQgb3IgU3RhdGUgb2YgRmxvcmlkYSBmdW5kaW5nLCBubyBwcm9wcmlldGFy
eSByaWdodHMgbWF5IGJlIGF0dGFjaGVkIHRvIGl0IGluIHdob2xlIG9yIGluIHBhcnQsIG5vciBt
YXkgaXQgYmUgc29sZCB0byB0aGUgVS5TLiBHb3Zlcm5tZW50IG9yIHRoZSBGbG9yaWRhIFN0YXRl
IEdvdmVybm1lbnQgYXMgcGFydCBvZiBhbnkgcHJvY3VyZW1lbnQgb2YgcHJvZHVjdHMgb3Igc2Vy
dmljZXMuPC91c2VMaW1pdD4NCiAgICAgIDwvQ29uc3RzPg0KICAgIDwvcmVzQ29uc3Q+DQogIDwv
ZGF0YUlkSW5mbz4NCiAgPEJpbmFyeT4NCiAgICA8VGh1bWJuYWlsPg0KICAgICAgPERhdGEgRXNy
aVByb3BlcnR5VHlwZT0iUGljdHVyZVgiPi85ai80QUFRU2taSlJnQUJBUUVBWUFCZ0FBRC8yd0JE
QUFNQ0FnTUNBZ01EQXdNRUF3TUVCUWdGQlFRRUJRb0hCd1lJREFvTURBc0sNCkN3c05EaElRRFE0
UkRnc0xFQllRRVJNVUZSVVZEQThYR0JZVUdCSVVGUlQvMndCREFRTUVCQVVFQlFrRkJRa1VEUXNO
RkJRVUZCUVUNCkZCUVVGQlFVRkJRVUZCUVVGQlFVRkJRVUZCUVVGQlFVRkJRVUZCUVVGQlFVRkJR
VUZCUVVGQlFVRkJUL3dBQVJDQUR3QVBBREFTSUENCkFoRUJBeEVCLzhRQUh3QUFBUVVCQVFFQkFR
RUFBQUFBQUFBQUFBRUNBd1FGQmdjSUNRb0wvOFFBdFJBQUFnRURBd0lFQXdVRkJBUUENCkFBRjlB
UUlEQUFRUkJSSWhNVUVHRTFGaEJ5SnhGREtCa2FFSUkwS3h3UlZTMGZBa00ySnlnZ2tLRmhjWUdS
b2xKaWNvS1NvME5UWTMNCk9EazZRMFJGUmtkSVNVcFRWRlZXVjFoWldtTmtaV1puYUdscWMzUjFk
bmQ0ZVhxRGhJV0doNGlKaXBLVGxKV1dsNWlabXFLanBLV20NCnA2aXBxckt6dExXMnQ3aTV1c0xE
eE1YR3g4akp5dExUMU5YVzE5aloydUhpNCtUbDV1Zm82ZXJ4OHZQMDlmYjMrUG42LzhRQUh3RUEN
CkF3RUJBUUVCQVFFQkFRQUFBQUFBQUFFQ0F3UUZCZ2NJQ1FvTC84UUF0UkVBQWdFQ0JBUURCQWNG
QkFRQUFRSjNBQUVDQXhFRUJTRXgNCkJoSkJVUWRoY1JNaU1vRUlGRUtSb2JIQkNTTXpVdkFWWW5M
UkNoWWtOT0VsOFJjWUdSb21KeWdwS2pVMk56ZzVPa05FUlVaSFNFbEsNClUxUlZWbGRZV1ZwalpH
Vm1aMmhwYW5OMGRYWjNlSGw2Z29PRWhZYUhpSW1La3BPVWxaYVhtSm1hb3FPa3BhYW5xS21xc3JP
MHRiYTMNCnVMbTZ3c1BFeGNiSHlNbkswdFBVMWRiWDJObmE0dVBrNWVibjZPbnE4dlAwOWZiMytQ
bjYvOW9BREFNQkFBSVJBeEVBUHdEVC9hZCsNCk1lcGE1OFZ2RnJybG04T1RUeHpXMDRJSzJzUmxS
Tmk0RzRGZ0pDUWNjbm5KQXJqbTFTODFIeEJwdHZEc2lhMzMzRjZqS1Q1Y2JLd2kNClhjRHRKUFVn
RWtZOUs1RDlxN3hVcmZ0RCtPYlBXdFJ1L0RPalcxN3FOZzkwMW9KYmk3OHg0bmFLUEFiWWhVb3lr
ODdUa1lEWVhudEINCnRmRi9pYXcxRnZEMWxMcGRscWNVYXZxdXYzRE5kdW0wQldSRUFRYlFDQU9Q
dlpQV3ZTeEdRZXh3OE1SV3RUY2szZVczdldXc25aU2ENClRsSzBPYVM5MVBaMythcVJmTTJ6MEx3
ejRyYUx3MjJ0NndZYlg3VzBzMXZFVytkb1F6TXJFa0E1S2JlUDkzdWNWbS9HR3l1L0ZuaEgNClQ0
TkgwNlhVN21lNFdTT1NBWjhqYXJaSk9lUFRuanIzeFcxNFQwQTZIZXBhVDZ2QmZUMmRvbHZGYXhR
Q01Rd0QyTE0yU2R1U1R5RlgNCmp2WFZXYzhja1N5V3JyNVFKQU1mVElPRGpIdURYd09aK3dkYVVx
QzBidW1ycFdleVNhVDBYWHJxZG1YWTZXV1l5bmpJUlRjSGRKM3QNCmZ6dFoyL1BZOEkwMTd6d2Zx
K2orR0pGdk5ZYTBacm1hQ3htS2hwY2Jrakc0NHdxakpYdVNPdmZ2dmlTTEhSN0xScnU4MW0rMHZU
WWwNClpCQWpPVGN1Y3NNbGNIRzhNeDllZWMxcDY3NGJ0WXRlczlXaHRrZTludkVOeE5OS01ZS0ZT
K0g0M1k0NHdUbm5OV1BGbHhZeld5SFUNCnJtMHNvcmZjSXA1cHdoUWc4bnB6L0VOdnJ0NTRyeDFv
ZmRWTTNoamNYaGNUVFVrMm56dU51WnpkK2F5OTVMVis2MHVaTFhkSzNrUGoNCkdIVnI3d1pwM2li
VEpyM1RVY0h6NFJlUy9NRkxCWkFDeHhrREpHVDIvSGU4RWVLSjlkK0hGL3BGeDRtV3p1bTgwdE1i
dGhKZ2JXM0UNClpHQmdZenovQUVxMjF0WmVLdmlGbzUxSmJtNXNXdHpKWlF5UnEwRWhRWVl1bzNL
Vk9RUTN5OGpHSzg1czlCMDN3WDR5K3plSjdiVUkNCkhTNEx4U3dxb2praUp3Q1FSbGxPUjkzc1Rp
bnpNKzlvMWxtT0JlRXFTYXEwN1ZvSkxtbGJtbGFLNW43L0FDV3MzOHJPdy80UC9HZngNCkY4TC9B
SXArSGZGRnZmWFY4Mm5YaXlQYXlYTDdKNHpsWFRuc3lNdzZkNi9kNktRU3hvNDZNQVJYNEpXZmcw
V0dzNmk5OTl2YUd5a2sNCml0THF5c3hPdHhjTEp0UUVNMjBnbkdWeVQyd2VhL1FMNFA4QTdkSGpX
LzhBQ3RwRjRoMGJUTlR2YkpGdHJpOGlMd3RjU3FPV09Ncm4NCmxRMjBBYnc0QUFBcjJNQmk0VUZK
VkhvOWpIanI2dlhwVXNkUWF0SFJ2cTcyYSs2N3YydWZkdEZmTEZ0KzIzTXFZdVBCOGJ0bjcwV28N
CmxSajZHSTgvalc5bzM3WWxsckY4TGNlR3BJUnRaekpKcVVVYWdBWjZ5QlYvWFBwbXZaV1B3OHRw
ZmcvOGo4Y1dLb3ZyK1o5RTBWOHgNCmVMdjIrZkIzZ1ZyZisxL0QydW1DV2NReVhWa3NNME1HY1lM
dDVnNHlTT0FlaHBzZi9CUkg0WEh3NURyczFuNGx0dExsbGFJVHlhY3ANCndRY0FrTElUdEo0QjZk
dXRXc1poMzl0SHNVY0ZpY1JUaFdwUWJqTjhxYTZ2WFQxMGVtNTlQMFY4dzJQL0FBVWcrQmQya1Jr
OFJYOW0NClhPQ3MrbFhCS2M0eWRxc1Bmak5kUkIrM044QzV3cEh4QnNrRHhpUlRMYTNNWUtra2Z4
UkRuSU9SMUhmRmFMRTBYdE5mZWpzbmt1WjANCjNhV0duLzRETC9JOTJvcnpXeS9hVitGVi9ZV2w3
SDhRZkQwZHBka0xETmNYOGNLdTJNN2N1Umh2OWs4NTR4bXVtZytKWGhHNWpNa1gNCmluUlpFSFZr
MUNFZ2YrUFZvcXNIdEpmZWVUVWhLbHBVVnQxcnBxdDE4dXAwbEZVb05jMDY2azJRNmhheXZqTzJP
WldPUHdOWEVkWkYNCkRLd1pUM0J5SzBUdVpwM0ZybHg4VWZDSC9DWVMrRlQ0bDB0ZkVrVUF1WDB0
N3BGbkVSQ2tQc0p5UmgwNUg5NGV0YjJxTGN0cDF5TFQNCkgyb3h0NVFadG9MYlRqbkJ4empuQito
NlYrREg3VHZnT2J3dkJvZDNJOTFOZEswMW5xTXM2dXVicGNiMlpYWWxYWXEyUWMvZDZuRmUNCjlr
MkJ3K1pZdUdEclZIQnp1b3RLNnVrM3J0MnNsdTcrUmhWcmV6YVZ0ejk4YUsvQlA0Uy90MC9IRDRY
eTJkdHBQalM4MVRUTFluT24NCmF5RnU0U3BZa2d0SUN5REo2aGhqNlYrcGY3RW43UjNpUDlvU3cx
VzYxZDFsc2JUVGRQbmpua3N4Qks5MU0xeUxoUVZJVmtRd3FxL0kNCnB4M2I3eDlqT09FOFprOU9W
ZXBLTW9McXIzMWR0cmZxRUs4WnV5UHFHaWlpdmlUb0NpaWlnQW9vb29BK0R2OEFncEQ4REovaUJx
ZmcNCi9WdkIyaTZ6ZmVPclM0M3hqVDdlMk5pVWJDNzV6S3licENZNGtIek44cVlLNEFyNWltK0Qz
N1UrcFI2VkZwWHd0dU5IaWdVTThjY2wNCnVrY3Z6WkdkMGdDamJ0RzNQOTdQWEEvWTBLQWZ4ejlL
Tm94am9QYXZwcVdjd2pRcFVLK0doVjluZmxjMDNhOTlMSnBXMTBUdmJkYW4NCkxQRFFxUzVtZmxO
b243RlBqQzQwU2Z4RjhRUGlKcXZoWFhkWnNFajArQ3kwUytaYldRNElGNUpDaW9nQmxsQVE4ZzdT
SEtobGIxTHcNCmg4Q3ZoZFlXYWVDN0w0eTZiNGg4WjJGdERhdnVaWTQ4ckdqS01CMkNnaHhnZ2tF
amFTV3I5QndvWG9BUHBYT2VOUGh0NFcrSWxnOW4NCjRtOFA2ZHJsdTY3TnQ3YnJJVkdRY0t4R1Y1
QVBCSElyaHpMSHJNNkRvMUthU1d5aW94U3RvbHBGTnBMcGZmVUk0YW1tcjZlZlg4MGYNCmxWNDQ4
TzYxb25pcnhEcFdvYXBicFpTWEtXODhqengvWjdLTkdJWlJrbmM3Z0RnTGpuSlBGZVJlT05NdXZF
T3BQNG9odEpVZ3U1V0UNCkd4Rm1WZ29CM2xUa0VGUTVKR2NrWUFQM3EvU0R4eC93VDA4RXVKYnZ3
YlpXMm4zQkpjMmVwcDlwaVk0T0FzajVkTWRPZHcrbkpyNS8NCjhmOEF3aS9zancvcjJrTmJhcDRS
OGRXVnRIZTZqZVhPa3JkYWJxTm9KbmhNRnZna3U0Um9jWlpWSlk4aFZZajRYRDVOWHhGYjJhbEcN
ClBtM1pmbGY4TDliV1Bzc0J4QlR5YXRHcFFnNU5LMTJsRzZzazlGSnE3VVZyL2QydktVajVlOEg2
emNlSGRVUy9zWlB0U3BjQVhVRnQNCmJzaUxBTUxLMjNJSEpaQ0JqQUxEQUhRNjN4SzhRK0hmR21w
Mk54WTNWM2I2dGEzQ1czNzVXalJZeTMrdHdRY1lKR0R3ZW1SMHJxSi8NCkR0OTRmOE82QlBaYUJI
TGNXQ21HZUtXRlpaNWd6QmczeXUyd2cvTGdNNHdpdDh1U0I1azdhdjRxOFcyOW41cGJWYjZkbGll
M0JNMXENCkhiWjVjbUFQbEhmR2NkUjZIeHE5SjBhc3FYTXBXZHJwM1Q4MCtxUHQ4dnI0Yk84WC9h
OVAzWEJTVitaSjIxMG5GUmQxYlg1NmN6T3INCjBheG0xdlhmRXF5eXhRLzJNcjZkcDF5RmJ5Vm5t
bVpRN2NINTkwbjNoMHpuSFFqMmpUL3MrbTJjTm1YdG9udDRGTHhRNFJVVURHUXUNCmVGNE9LODE4
ZWFyRjhJOUdzTFMzYUc0dkx5N04vY3hUUXN3dUN1M2tFOEFrNGJKNUcxVDNyaU5RK0pGaDRyOFN2
cUY1L29WcTd4MncNCnRRV0pranpuekpmNFdBWURLOFpVc005Nnc4ajVyRVpQak9KYWNNUlNpMWgx
ZmxhVjIydVdMOTNSKzlMbmwyVjNlMnA5S2FJTFBYTkYNCmoxU0xVYmVPMW1HWU4yNHZMaGlwTzBB
bFJ3U0N3QUl3UmtITmZQTmg4Zk5XOE1ONHFzNTdXSy91THk2VjRaWldsQ3c3Q1ZNZXdzTUoNCnRK
T01aM0FaSkZlaFh0OWJlQ3ZCVnRDdmlTM3RwcmU2U0s2dnZKRTVra0pMU0t5cm5ERVo1NjRIWHZY
elZydDJsN3JXb1R3elNUd3oNClhEeUxKS01NNExFZ2taNjROVmUyeDZIQldRWVBGenhmdHFmUFJi
U2k1S1Y3UmxmZmxTMTBkazcyM1NPNTFuNHhhOTQ0MDBhRk5hYWUNCm92WkJHV1ZHR1NTTnYzbU9N
SG5OSHhwdVYwKy8wZnc1YnlicmJTYkdPSmlwd0djZ0VrZ2NaSUNuOGE4NEFBSTU2OWNkcVZ4dHdN
Z2oNCnJVbjZ6aCtIOEpnOFRTcVlXS2hDSE0rVkxlVWtselh2MGltclc2NzZJNmJ3ajRVMC93QVIy
V296Nmg0bjAzUTJ0WXlJTGE3V1ZwYm0NClFobVZVMnJ0QXlNRm1ZQWJnYTVobTNZNEF3TWNVbFNG
RUVhNVlpUWtncVJnS09NSFBmT1R4N1UyN3JZK2pTY1pOdDN2c3UzOWVaTSsNCnEzY21teDZlMXhJ
YktPUXlyQm41QTVHQzJQWEhldm92NFJlUGJHNThJV1duUGZTWG1vMmtKRWtKUUs2SUcycW95Zm1B
QlVaR2VCemkNCnZtMmRQTG5rVUFxRllqQjV4elhyUGg3NFlXMnVmQ3A5WWlVMnV0UUdhV0s0Z2xa
L05SQ1R0S3FUejFBd004RHJTUHovQUl6d2VYWWoNCkEwcWVNazRLVlJXYVNmdlNUMWt0SGJ2WjN2
WjYyUGN2RE56TmU2YzBzMXl0Mkdta01jNFJWRFJsaVZHRlpoa0FoZUNmdTlUVzNCZTMNCkZzVjht
ZVdMYWNqWTVHRDZqRmVSZnMrTHJJOFBYajNyR1RUSkpTOXF6dnViZmtpVEhzVHoxNjV4MU5ldHlR
cWtFVWdtamRuem1OYzcNCmt4NjhZNTlpZWxNL212UHNFc3Z6T3Zob3lVbEdXOGR2UzNSclpybzAw
ZmMzN01maWFmeEQ4SjdScnFSSnA3U2VTMjNyeTdBSEtsK1QNCjgyRDE5TVYrVVA3UTh0djhUUEQv
QUlsMUx3L2FXdXNYRW1yWEdwMzBsdk1wbHNtYVFzU3lqNWk3SXhEam5sV09lT2ZkWGtra3M1clUN
CnlTQzNtVmxraVZ5RllFRlRuSHFDUlhEZWI0YzhMMjBuaGZUb0liUzNpdEpKcGhHcUdHTkVDYmxt
Wmp3V1Zoa3R5UTJjaml2dWNsemQNCjRhZE9wU2c1VmFjb3kvdTJqZTdsWjM5RnRmZTYwZm1Ucisw
akdOdGo0eitIdWsrSTlXMXlFZUdaeEJxa1I4Mk1pOGp0bURCV3dWTHMNCm9MY2tBREpKWUtPWEFQ
NmRmOEUyL0VuaWJ3bjhRZGU4RStLanBFVTkvWUdhS0czbEJ1WUh0blhGdDVZT0kxUVhFcEtZNExL
UGxPUTMNCndocFBoZlFydjRCL0VYeFBwMXMybmFqcHVzV2tkdHFsNEZMWFZyY0NXSnJHSkJ3c21D
WkdkUVJ0aEl5b1lBOVYvd0FFN3ZpTEQ0RC8NCkFHci9BQVUxekkvbGF2ZG5TbWJmdzNueFNSeGdq
SEo4MW9mcGcrdkg5TzU1UmVhNWRpZVZmQ25vMTcxMGxMZS9wcFk2cUxjWkpuN3ENClVVVVYvTlI2
NFVVVVVBRkZGRkFCUlJSUUFVVVVVQUlWRERrQS9Xcy9WdEJ0TlpWUFBUOTVGdjhBTGxUaDQ5eTdX
d2VveUQvbkFyUm8NCm8zRTFmYy9PNzlzUDRDWG53OTA4YS9Zdk5CWVc5d2JoTmR0Ukk4a1lZN0o0
YmkxUTRjR045OFR4TEhpU0xEWTNCMS9PK3crTHZpNmINClVvTFMyMUc0dVk3UU9ndXJTMjJYVXFC
bVBtTTRCZFRnNUpEQSt1U1NUL1E1Y1c4VThFa2NzU3l4T0NHalpRUXdJNUJIZXZ6aS9hLysNCkNz
SHcyMWx0WDhHNlJaMjl6ZmFjMDBPbnd4TEZGZ2tlYkNPQ2R1UnVVREJHN2FNQTE5WmwyZFlUQ1Vs
UXhlRmhWZDBveWxaY3U2VjINCjA5RTN2cGJmcGM4MnZCMFU1UjJaOFpXZWplTGZHM2dqVlBFUGlQ
VXpjSlp6UlJ3QzZqSWxCVmRzaUFCY2pMTWd4M1pUMjVNWGhmd1cNCmZFUGlEUzdTNHVYdGpLb3pG
cU1VaWJ5Z3lVUWpxdU1Zd1FlZW5UUHVQdzMwTzh1L2hQUHAzbVFhNXFGaGN5SzAxbmNxOGR5Nnkr
Y3INCkpLNEpBS3VoK1pReThoZ3JvUUZ1L0JueEc4Y2ZGTFM5RThQK0ZyaFBGbWxydnVMUXR2dDdT
Q2FOVHV1WGJhc0xBSE9DQ1RrZGNBSDgNCjY0amxLdm0rSTVhYWlsTGxTaXJLeTBWa3U2Vi9POXo5
UTRUempHeHkrZUFvV1hMeis4NVJYSmVQdTNUVGZLNWJ5MlJ3bmkzd2o0bTANClhVMm4wdURmcHI2
aERLOGNyS3drblZWVlpKQ0RuYkl4eVFjWUo1NDVQdG43TEg3QTdmR2JUcjNYL0hWN3FHaG1LOWxn
bTB1T0pZcmcNCmd4N2tsK2JPMzUyREFGQ3JMMFBQSDB0OEhmMkR2REduV1dzUi9FVGQ0dnY3MjdX
OWtpalI3V3dpZkxiVlRhd2VaZ09TemZMeUJqZzUNCitoZmh6OEh2RGZ3b3VkV2J3emJTNmZhNmsw
YnlXSW1kb0kyVGQ4MGFNU0VKM25PT0RnY1Z6WVhMcEpxVlphZHY2L3pONThTMWNMaEoNClllbFVY
dFZaYzhZMjVra3VyYmQ5OWJhMlI4NFIvd0RCTHY0V1BjWFU5emY2N003NUVVVWR3a2NTYzV5UUVM
TTNYSjNBYzhLdUJYd3QNCjhjLzJMdmlSOEV0WHVSSm8xejRnOFBydWVIVzlOZ0x4T2dYSk1pRExS
RWRDRzR5RGdtdjJ1cGswS1R4dkhJaXVqamF5c0FRUjZHdlENCnJaZlJxeHRGY3I4amh5L2kvTk1E
TnluUDJpYXRhWDZQby96NjlEK2QxNWQwU0pzUWJDZm1BNU9mV21xcGM0QUpPQ2NEMEZmY2YvQlIN
CnY5bGJSL2hsZVdIeEM4SjIxdnBXaTZuY3JaNmhwMFh5cEZjc3JNc2thQVlDc3FOdUE3aklISng4
UTJjc01OeWpUdy9hSVJuZEdHS2sNCmpIWWpvZTlmTFY2TXFFM0NSKytaWm1WTE04SEhGNGRPenZw
MVQ2cjd5UGNyRVpBVWNaSTUvclczbzNqYlhmRHB0MHN0VHVZcmVDUloNClZ0bG1ieWlRYzRLZzR3
ZTQ3NTVxcHBFbW13elhMWDl2TmNEeVdOdkhHNEE4M2pidnh5VjljRUdxam9pV2taL2RzN3NUbFNk
eWdjWUkNCjZlNHJBN0t0T2xpK2FqWHA4MFZiZEpwMzdlbi9BQXgybWpmRi9XN1B4UDhBMnRmM04x
ZnhrczMyR081TVVPU01BYmNFWUdlbVBUbXYNCnB6d0w0cHQvRlBoQzAxTXd3UXpUdDVnQWNUR0lx
RDhoeHdRVHQ0STQ3anJYeFJYcjNnR2JWSlBDVWtmZ3dYcDFJelFtOWltbWo4dUkNCkJYQWFNTmpo
MkdXNy9MamtVMHo4czQwNFl3VmZEVTYySGpHbE5PTWVaNlFVZHJTMXRGYTZPMTI3SytxUG9XdkJm
MmlmQ01yU1dGN3ANClVKc212R05qZTNhTkVGZEpwRUcwcTJHZGkyRHgwQWIxcjZIdEd2TDZ3TmhD
anpGV000aGlVRWtoRHVJQUc1amdjRDY4YzE0ZDRqK0oNCjlsY2VLTEcxMUhUQUxDR2ZQbFhiYlpW
SmgybG1EcUZNWjNrZ0hCNVhKNHhYMEdSWmxMSjhkREdKWFN2ZGRIbzlQOHIzdHZaN0g0TmwNCmVT
WS9ObFVsZ29jM0lydlZMN3I3N0dXZkRIaXJXL2hOcjN3M2U5MDIvd0RGTTEzWVhHajJGOUdsczgx
cEJIY0xjTFlFNFVTczdCbkINCjJ0SW1EOHhZclhtSDdPM3czMS9XUEZXamVMTEJiZUswMGZVRW1T
V2VjeGw1b3lycUJnSCtMYVNTTWZYcFgwM2VUMk54NHQ4QlhsbEUNCkwrUFQ5WFJwSnJTZFEwVnVZ
MlNmWkpuSWtFYkZsMm5jR1ZXL2h6WEdmRlg0WXdmcy93Q2sySGgrdzFpNG5oMDNXUzAxekN3UG5x
eEwNCkIzQ25HUXFxTWV1UWNITmZyTXVQS2xESk9hbHkrM3FOWFZ0TGFwdXlhU3VsR3k3dDJ1dHRN
dHdWVE1NWFN3YmZKS1R0cW05azJ0UE4NCnF4K3ptblhpNmpwOXRkSUdDVHhMSUEyTWdFQTRPT00x
WXJ5MzltanhuRjQ2K0VPazZuRGR3M3NUTklxU1FEQ3FtNHNxQWR0b1lMai8NCkFHYTlTcjRTbk5W
SUthNm5WWnJTU3N3b29vcXdDaWlpZ0Fvb29vQUtLS0tBQ2lpaWdBSXlQVDNyenZ4eDhEOUIrSWR4
YlQ2eTkxTkoNClpveVdvU1FJc2FuSkNrS0FTQWNkd2VCejF6NkpSVVRoR29yVFYwVEtLbXJTUjVW
NEUrRHVrK0VMbU9lNjBIVDVkV3Q1cEd0YnZUSVcNCmlqRVI0VVB1YzViL0FIczlSak9DYTczUzlG
YTNHNlZZTFpYa053MXJacHNUeldPNW1adXJuY1NjNEFPZVJXeFJTaFRqVFZvb2NFcWENCnRFS0tL
SzBHRkZGRkFHUDR1OEg2TDQ4OFBYbWgrSWRNdHRYMG03VUxOYVhjWWRId1FRY0h1Q0FRUnlDQVJY
NDcvdHVmcysrSC93Qm4NCkw0cDZmb1hoeVRVYmpUTlEwd2FpR3Y1VmN4dTA4eWVXaENENVZWRTY1
UHpkYS9hQ3ZEdjJuLzJVdkRYN1NuaHdwZUJOTjhUMnNXelQNCnRhVlN6UThrN0hVRWI0eVNlT3hP
UlhuNDNEZldLZnVyM2xzZlk4TVoxL1pHTVh0cFAyVXZpUzJ2MGR2THkxUHhQdkxvM2t3a01jY1cN
CkVSQXNTNEdGVUtEOVRqSlBjazBYVVFnYUlCaTRNYXR5ZlhrakhiblAxNjk2OUQrTlB3SjFyNEtm
RkxVUEJ1cHNiajdQKzloMUVRbU8NCk80dDltOHlxQ2V3emtaT0NwSE5lZTNUbTd1LzNZa2JPMk5G
ZmxzQUJWSEFIWUN2a0pSY0c0eTNSL1IySHIwYTlPRTZFcndhdW41ZEINCmtkdk5jUnpTUnhPNlFx
R2taRkpDTGtLQzJPZ3lRTW51UjYxMkh3NDhiNjVvRjliNmRwbC9iVzhWMWNvREhmc2lRWk9SbDVI
SUVhOU0NCm5JOWUxWmZpSFRkWThLdEhwZC9LYmZaRUpZNDR6OHJyS29MWVlERGYzVDFIQkFQRllr
RjVQYlJ5cEZOSkVrb0FrVkhJRDRJSXlCMXcNClFEOVJVNkk1NnRIQzV0aGVXcEdOU25QVlgxVFhS
L3FldVJlUFp0UDhRNlRkNkhxL2lLMHY0b0h1L0VGNXAxeUhqaXVET3hTUzNDT0UNClZWUXdKdlk0
M1o2Y1o0dS8wY2Ezcm8wM1NMZGIrNWxWSTBsa3ZGa2Q1Y0RjUTN5cTNDOEFad0d3Y210L1NQalJQ
b2Z3czFEd3RaVzgNCnR2cVYrR3RKOVVXVlJ2c1N5djhBWjJVSmw4T0dZTVRsZDdZNmpISDZCNHMx
anc1SGNTNlBxRjdwbDRXU1JydXh1SGlrQUJPUVdVZzgNCmxsNzlWSGZGYXljYkpKbm40ZkJUd3Nh
anc4RkNXeXZzK3pkck95dlpLK3lTVmo2ZStIZml5MThHejZkYVhGeDRmdDlDczdOTFg3VE0NCkF6
dmV5UkUvdVdLbGNnaFdKUFppTWd2WEhmdER0ZGFsb3RucU9zUERGcnhMelR4elNibWxMN1JJQVdB
TEVNNnQwN0U4WXFqNEE4Q2UNCk1QaXpOZmVEN1RTNE5XOFJxMXZyOXJORGRLVE1kd0VvZVdMS1pi
emcyNTNVcVZ4MWJqdU5mdTlPK01IZ3JTUENuamk1YXgrSS9oZWENClhTSjJLcWs5NUJFY1J1cDJn
TnNWREcyUVdPeFNTY2NVNE5RdS93Q3YrQ2ZrZFhMS2VTWTZsbVZTZC9aeXZVNWZlZkswL2Z0Mmsy
K2ENCitxNkhyLzhBd1MvK05WbEZOcWZ3L3V2S3RKSmY5SXN3Wkd6TXdVbHVHT004TVR0QTZyd2Uz
NksxK0ZXbTY5SDhGdmp2cG1xYVBGTloNClJhUmVReUlaMnljWUFad2NuSU9TUjdjRURwWDdlK0Qv
QUJOYmVNdkMrbWEzWnNqMjk5QXN5bU53NmdrY2dNT0RnNUdSd2NWOUJsZGINCm5wdW0rbjVIa2NV
WUtGUEVReCtIVDlsaUVwcS9SdlZyZDY5ZCtwc1VVVVY3UjhXRkZGRkFCUlJSUUFVVVVVQUZGRkZB
QlJSUlFBVVUNClVVQUZGRkZBQlJSUlFBVVVVVUFmUFA3YXZ3UnRmaXI4SHZFRnpaNmJOZStKN1Mw
VTJmMmVVSXpoWkEyMGxodDJqNWljNCtvcjgxZFkNCi9ZaCtNZmgvVHBiMjk4SXp4UXhGWGFaTGlG
NDBpMmxtbFoxYzdWVUFaejB5ZW1LL2E5bERxUVFDRHdRZTlWOVJzSU5Vc1o3UzVReVcNCjg2R0tS
QVN1NVNNRVpISS9Ddk94R0JwNGlYTzNabjEyVThUNHpKc084UGg0eGFidnFtK2lWdDEyUHdBOFNh
bC9hV25hV0pwMXVMdTANClY3WHpVT1JKQ3JmdTI2WjdzT2NIQ3I2MWd5eFBCSzhjaU5ISWhLc2pq
QlVqcUNQV3ZjUDJxZmhkYmZDTDlvRHhScE9vYWRlUWFNOG4NCjJuUzQ3VlZnV1czWUR5d3JrTU1M
eXBJVTVaQ09NNXJ4elZMcTN2N3htdExhUzJnQStTSnBQTlpRRkE1WWdFOVB3RmZKVGc0U2NaYm8N
Ci9vWEs2c0ttRnB6b3IzWkxtNldYTnJicHRlMjF0T214UXJ1ZEk4RzZ6TG9zVnhwdGtab0x5MWtl
VzRNcUpsTWxXT0NRU2k3V0hIOFkNCkdlZ0ZjTzZHTjJWaGhsT0NEMk5kcG9Hdlc2K0VQN0x0NTlY
ajhRVDNzY0VDcE1QN08renNIRW5tUjRKWnl6UkFBREdBU2NuQXBRU3YNCnFWbU1hN3B4bFFhMGFi
NWsycmRkbXR0MDlWNU0xLzJkZmpEcUh3SytMbWllS3JXVzRObmF5N2RSdGJlUWdYVnFlSkl5TTRi
amxjOGINCmxVOWhYcTN4cDhhYXQ4WS9pNXFueEY4RmFSUHBtaVMyWkNYZmtlWkpJR1JvNXltVXlY
KzkwSHk0eUR5TStDWG5nclV2RDZXOTFyZHANCmUyR24zY2tzU1RKYm45OEV3R01ZSlVPQXhYSXlN
Ymw5YTdENGYvRUR4ZG90NG5oU0srSTAvWEVNY2xxSng1YStjQmx4c2JBUENsbFANCkdSeUFSa2FL
Y2xEMmJlbDcvTStZenZCUnhEV2FZUGtsTlJhZk0vZGNQdGVyU3VsZDJWOVU5TGVaMzl6TlBMRVpa
L3RJampWSTNJUEMNCmdjTHlCbkhJL0QwcjlLditDVy94cWJYUEN1dGZEM1Vya05kYVk0dTlQRHNT
elF2bmVnei9BSFNBUUIySjRyODF0VnR4WjMxeGFLN3kNCkxiU3ZFcnlEYVNvWWdmTGs0UFU0QlBY
OGE3RDRkZVB0WStDdnhEMHZXdE91OXM5bTBNeE1aRG95a0srTVp3Mk4zcnp6MHpXbUZyZlYNCjZx
bjA2bnE1NWx0UE5zdmxoSVdVbXVhUHl0K2Q3Zk0vZXlpdVorRy9qdXkrSlBndlMvRUZpVkVkNUNy
dkVOMlluS2dsVHVBYnZrWkENCkpCQndNMTAxZmJKcVN1aitYNXdsVGs0VFZtZ29vb3BrQlJSUlFB
VVVVVUFGRkZGQUJSUlJRQVVVVVVBRkZGRkFCUlJSUUFVVVVVQUYNCkl5aGhnZ0VlaHBhS0FQaGYv
Z3BSb3Q5ZGVGSkp2T0VzYUl0eEZpT0l0RWlobGVQcHUydGxueVR3VjR5UUsvTWV4dTNzWnhNdktq
NVgNCmozc29rVWpES2RwQndSa0hCNzErcUgvQlV2eEUra2ZCVFJiR09kWTMxUFV4QzBlY0Y0MVF1
Vzl3Q0FNWVAzZ2UxZmwwMzJHNTBpMlcNCktGazFLTjJTVWsvdTNqSitWeWMvS1FUajA2VjhmbUM1
Y1F6OTQ0RVZXbGxrblVWNHlxTzNrcks3ZmxlNjhuNUY2emk4UHZhM1ExQ1cNCjVpdlI1L2xHMkll
SW55bWFMcU1rZVlBcE9lQTJlZHBCNm40RmFyNGYwWDRoNkZxMnROYTI4R21UQ2R4ZldjOTVESzJU
dFpraFpYQVINCmloNDlQNHZ1bnpkQW1HM2xzZ2ZLRkhVKy9vUDgrOVdMV0ROM2FvcUc4TXBVZVJE
bmMyVGpZT1B2SDJCNml1QlNzMDdINkppY0tzUlINCm5SbEpwU1ZuYTIzVzEwMXF0UDhBZzZuMFA4
WlpQQStoZUhydnc5cHV0eGF0YVhFemVJTkgxKzNzeVgxS1dTSVJTcE81Y1N3QkpFa0MNClI3Q01q
NW1PSzRYNFU2ckRwbmhqVkw2R1BTRzFQVFBNdUl6ZkptYmJzQkd3NTdrTU9QVVp6bXU5L1puOFQ2
RjhEUGlmcG10K0p0TnMNCmZFdmgrOTBpNkwyOTE5bm5hMmRaTnc4Z3RKc0VwVklqOCt4dHNweUFN
TWZLUEYxb1BGWGpuWHJ6US9DMDJoNk5kTzk5YTZOYmJ2M04NCnUzekpzWnR4SUtqZHh3ZWk4QUN1
aXF1WktlejdIeU5YQlJ4TkNlWFZKTlUxYVhPN1dkbTA0dGFkRnIwMTZLeVBjSlBDOXA4VGZoYmMN
CmEzclBnVFJOQTA3UzRaTHBkVzBHNlJkUTFTWm1MaENuekJnY24rSDVSeHhYbGZ4VStHMEdtNkI0
UzE3UllycTh0TDNSNHJyVVJESEkNClliQ1RjUjVPNStkeXJ0TEhwbHdlaDV6WkxmeEY0RWlqOHl4
bHRkT3ZoNXNNaGlLTmF1eUdQNW1IS1B0T0NDZStldlQybjRWZkVDejgNClNhZmRhTXR5OTk5bHQ0
blF6c3pnczZLc21kd0djRUVFa2M0VDByRnlUM1BqTVZpOGZrRjhmaHBlMm9SbDBsSnhVZmhhMWxL
enZiZDcNCnB1MXJuMnIreERxMzloL0JQd1pEY2VJYlcvMDNWWUdiUzdlWmxqdW9ZMVovTmdJLzVh
ZVZLSkFIR01vZVFwUWJ2cU92ekQrSHZoclMNCmRWK0EzaWJRdFIxTFVvZGE4RzYycmFXZEp1VEFz
TnJkRlo0c2pKWlFKVW5HUVJ5UU1ucVB2TDRFNjVxTng0UHRkRTE2K2l2UEVPbDINCnRyOXFLbjU5
c2tLdWhZZGlmbS9JZGVwK3B3ZUk1a3FiWFJXL3I1TS9PczFsU2xqS3RTRTc4MHJyUzE0eVNsR1hx
MDlldDllcDZWUlINClJYcUhraFJSUlFBVVVVVUFGRkZGQUJSUlJRQVVVVVVBRkZGRkFCUlJSUUFV
VVVVQUZGRk1sTGlOakdBemdIQVk0QlBhbUIrWVAvQlYNCkg0b1I2MThUUEQzZ3UzVldHZzJodXA1
Y3NDczA1VWhldzRTTkRubi9BRmg3amo0aWplTzNtRTBMTTNsTWpCSEJVdDNKSlU4RElIZlANCkly
MEQ5b0hYdGQ4Wi9FdlVmRS9pS1JHMVBXSGtta1dOV0NRK1hMSkFJbHpuaGZKQzlUOWE4NENGaEd1
TUZ1aGJBQkdmOGM4LzRWOEwNCmlhanExWlRmOWRqK3FzaXdVY0JsdEhEcDdMWDFidS94dVB1UXJ5
R1NOQkhHN0hhaXNTRjc0NTU0eUJ6VWFPMFRxNk1VZFNDR1U0SVANCnJYUXdhVHBlbWFSUGNhamVS
VDZqTEJtMXNJV0oyN3NnTzdLQ0FSOTRMbjB5UjBybjFoZG9ua0F5aUVBblBRbk9QNUd1WTlhamlJ
MSsNCmJrVHNuYTdWay9TKzY4OXV6WnN6ZUx0VnZkTGpzYm05bnVyYUNXU2EydDVISml0M2NEekpJ
MDZJemJFeVFCbmJ6a2dZN1NPVDRnNk4NCkpvOXpaYWZjaG4yVzl1YldOcG11RnlYVlc1Wm1CTHRn
SEh0akhITFhQZ0MvZ1NGMWxobWpsczB2Rk1RZVFqZW05WWlFVTRjcnlBZU8NCkRrakJ4OVJmQXky
bjhGRDRmNnZxVHpUZllCL2FiUXk1Qm5nZnpGOHZhZVR6dUFKQkc2TG5GYXBOdEtSOFB4VG05SEs4
UFRrNFFuQ2INCmFsR1NidXJOK2kxc25kUGU1NXI0b204ZDY3OE9ORjFYeFpBOXJZZUtWdUJwVi9I
Y1FidFNsU1JWY3lxMlNpSWNBc1RHZm55TitNQlANCkRYZ1R5ZmhNOXpvbW95UWVKb2hMYytkYmIw
WVhDYnNXei8zbDRHUTN5a25Qb2E3YTgrQ0xhRjRsMVJXMU80WFJMMEI5TlRWTFJrbnQNCjdlZHQ3
eVJwR3dqUU9ueW5ad1EvQTR5T244YzZoRGF0cWQzcDlpc0MzY3IrUUxaRWdWbndxeGpia0FFZ0lN
RDM5YTdzUFZXR3J3clINCnMzRnJSN1B2ZnlmYnFuWS9MT0lzM3l5dGw4Y3R5bHBjOCtacUVYR1Br
cFg5VjEzV3lWa3V1OEU2RGFSZU1GamgxUXpSZUliQ0d3dmINCmVTRXhpTmttV1pBZVJrN2xLZzdt
WEQ1SUJ6WDM1NFAwQ0hUanFPb1NXdXpWTCs2a054Y1Nvdm15S2pGSWdTb0h5aEZYQTk4OGtrbjgN
CjQ3WFVUY1dKdjd5ZWUwdW9yZUo0WEQ1OHQxS2ZLVzdCVURZSVA4SXI3ci9aeCtKdGo4Vi9oK05j
c0xrWEVVczc3aHQydEZJRHNsUmcNClFDTVNwTGpQTzBvZWhGZWpsYWMxS1hMb3JhOUZ2YjBlOXZt
Zm5XSHJTcVBscU83aXJMMFI2cFJSUlh2SG9CUlJSUUFVVVVVQUZGRkYNCkFCUlJSUUFVVVVVQUZG
RkZBQlJSUlFBVVVVVUFGY244Vi9HRnQ0QStIV3YrSXJ5NSt5V3VtMmozRWt1TWtLdk9CMzNIb3Z1
UndlbGQNClpXSDQzOEZhUDhSZkN1bytITmZzMHY4QVNOUWo4cTR0M0pHNWNnamtZSUlJQkI5UlNr
bTR0TGMxb3VtcWtYVnZ5M1Y3YjI2Mjg3SDUNCm0vc2hmQlR3TiswYjRCOFcyZmlyeEZhWEhqbTh2
M3U3ZTFjTjlxdFFTcGtreTJOd2ticnRKd0JrbkpJSGd2akg5bXp4VjRHOEsrSWQNCmYxTkxXWFJ0
STFhZlIxdW9DMGpUU1JTTWpNb1g1VlRjQUR2SVBQQUlyN1IrRjM3RzJ1L0RuOXNlMjErM2kzK0NW
RTh5VDI3SGRBeUkNCnBqam00d1dZbEd6M3lUd1FhdC90ZmZFcndiNGUweWY0YytIRXNoWmFucWpY
WGlIN05LenRISTRZc0kwQlBsdVpVUXVSZ1lEQVpabXINCjUyT0NkU2szS05wUnYzMXNybjZiWDRu
bGx1UGRYQ1Q1NlZia2x5L3kvd0EwVXRFblpXODlMMzNQZ0x3QjhQTHp4aGNOZDN0dk5QYVcNCjl4
RGJTcTA1amtLOEJnTXFjaFVBNHl2R0FEWHFldGVCb2ZDRnBiUzZFTHBOSnRwRmZVcksza3kxNm9r
amZZN0VIcDVhdGdqYndPbWMNCjEzUGg0YVBiZWJZNlUwTFIyaDJTSkFkM2xzVGhnVzUrYjVlVjY4
YzlhNldhVlo0aWtXZGlKdTJxb1FESkdSM0xBSEdNK21hOFNVSlUNCjNhU3N6NHpNK05zWGpjY3E5
TzZwSjZRdTdOV3RxcnRKMnZaclZONlBSSGl2eFkxQStIZGExcTg4TXphby9oZTRlU0d5dkxTVVJG
VmsNCmpTTkZtakNBU0tZMENsYzRCWTlDZHB1ZkIvNHMyVS9qUFE3TFVFYTF0MnNKZE8xSzZuRWw1
YnZBekI0bWp0a1hjdTBqQkNuTzRxd0sNCmxlT3g4T3lXK3N4K0lMZTcweUs0MHg3eWVCSWJoc3Ev
QTN0aEd5cEV1OWhuMEJ4aml1YjhIYXpvdWxmRWpUTlYwMi90ZEE4UWFXODINCmoydHBQYVFQQzBT
MjdRYjJjdWNNTnlTQjVZUU15eVpkaEVkdmU2YnA0aFFrOW12WFd6K1Q2ZXVoOUJsMmNVTTV5ZXZo
Y1RSYm5SZysNClZxNyt6WlhTMXZkYTZjdWwzWjZudm1xZUE3RzE4TTIycTJtdld0MWNxWTRwOU1r
bWpMMmthTjVjc214U3hNS3U4Q2h4MUVvK1VkVzgNCmIvYUIwWFd0SDhLVzkvNUk4K3luanZvWERo
NHlvSnc2bFNWYmFXQnh5UGF0SzkxSXllSGIzVk5CMU5iVm1pYVEzTUV3RVU0UUVHT1kNCmc0ZE9D
cERIanFNRUFqSzhhYXhjWG53OG4xUFE3ZE5SKzBRUnpKREpGNWl5d3RndGxlL3lFOFZlTWhHVUkx
VkZ4YTkyUzJ0SmQvWDcNCjdwM1B6UEpxM3M4enc4NEpYNW9xemRrN3V6dStpYWVwbnA0bEZwOERE
cWloWnpiNk94QWtYNzdySHR3ZlVaWDE5Zld2cC84QVk0OFcNCmp3UnJrV2cycXgyMm5hM0o5b2Ez
dW5LN1poR29Zb2VUdktLTXIzTVNBWXlUWDUvZkVEeFpKYmVCN3l5djU3bnczWTZqbzZ6YVZwR24N
CjJhR0dlNkYycXlwS3hYZXNiUXM4ZyticUIxeU0rdGZBblZuMWY0VitHdFErMzNsdmQyTW5uTGVH
NHpLa3NNeFpIM2tkbVZXQVBUQUINCnlCejlkTEtLK1daRlF6WG5UalVuYXl2cW5HNlQyMVRqSmFY
cyt1ZzhiR05ETXFybDdzZWVWOW0wdVo5bloyOG5ZL1l5aXZJUDJYUGoNClN2eHcrR1IxZC9LTjNa
WHMybnp0QzI1SFpDTU1weWNqQkF6azUyazk2OWZxNnRLZEdiaE5XYU9xTWxKSm9LS0tLeUtDaWlp
Z0Fvb28NCm9BS0tLS0FDaWlpZ0Fvb29vQUtLS0tBQ2lpaWdBb29vb0E4Sy9hVS9hRDBmNEQrR3Ix
N3Q3alR0WTFWWlk5UHZKMUJ0aEw1YUJXM2sNCjdVeVNBQWNEY3BZakFKUDQvd0JuUGY2cDR3MEsy
Z2p0OVExR0xWdFBudUxpM3RXdWpCc01ydjVyUEh0bGJjemwyWm0zQk1IT0dBL2MNCkw0cGZEUFFQ
aVo0ZWxzZGU4UDJYaVMzQ25OaGZvcnh5aklKQTNjSzR4OGo4RlQwSUJiUDRTYWJyc1h3VCtMMnVy
TEJjNmxwbWtYbHoNCnB2RTVqTTBrY2pJc3BVL3hFWjR4L0dmVTErbThQUWhYeS9FTEMwK2F2RlhT
YldyK3phN1gzUFIrbDBlYmlrMVpuMk9GZ2psbFNDQzMNCnRFTWp0OW50bzFqampKWWtoVVhoVnlU
Z0RnZEJ4VWQ2STJzcmhaaXdnYU5oSnNKQjI0NTZjL2x6WGttbS9GNC9FZnhGYTJPaFMyK24NCjZi
YVJXMm8zZDVkVEFGc3NwK3o0QjRQT0NjbmtFZlgwRHhkcXRtdWpYdHBOcUVkcEhMWnp2Sk5ra3d4
YlBta3dwQjR5T2hISkdEWDQNCmppOG94ZUR4TUtXS1RqVWxxMXE1THJkMjZ0YTIzKzg4WnBwbmpk
bjRxdHg0QzhjMldrWEY3S2RSdlpFME8yZHBGbW1TUkl6bUx6QUcNClpjc3h3UG13ZmNWN2g0YzhK
YVZybmhhNmsxYlNyQzF2NUxSWlpZblFCMkxZUjAzSGxtMnRnOXlGSkJ3TUh6LzRTK0U1ZkRQZzYx
MWoNClVocTJwNmpCQkpGYjJ0eHRMd1FDUWhGaWo0Q2xrVkNSbko0SFlDdEx3NzhmZEZ1UGpIRDRO
bElzcmVWL3NwMVNRcklobEpHUUZBYmoNCmFUZzlkd0FBelgxR2EwS21ZMTYxSEs2Ym1xTGxPVTA3
djNWR0xmUzY5MVN2YTdiYldodkNwT04xQnRYMzF0ZGVaNUxvL3dBUTdid0gNCjhMZFhzOUQxU1d3
OFMyMnFoTDJLYjk2MGUrVW9mSURjTUFxL3pKd1RYdG53dDFUd3pMNE4wZXc4TzZqRGQyMEZzTnFs
d0pqeVN6T20NCmNxeEpKSXhqSnJtZjJ0ZkhlbCtBdmdyWmZCaVRRemQ2aU5ZZlhMWFZaNGtpYTBn
WlFSeW1HbWxacEoxSms2Smo3eEtsUGpHT2Q0aU4NCnNqSzBmM0czWXhrOC93QS8wcjlUandqUTRv
eTM2elRxeXB1cE56dTBwYzJpU3ZzN1JkMUZOKzdlUzEzZHlwSnJjK3QvMnAvQjl4cjMNCmdxSFZv
SkpHT2tPWkhnUkFkeU9Rck5ucU51QWZUR1NlbkhrWHdFK0tlbmVCYmkvdGRmdWIxZExsVlpJWTRX
WXBIS0dHVHNIUHpBQUUNCjV4aFNDQ0R4aDZKOGUvRm1pK0c3M1JHdkUxSzJ1SXpFRzFCVEs4UUl3
UUNUeUNNakRaQTdZNXo1MmpZNHgrSHAvbitwcjZQSk9GY1INClJ5ZXRrZWF0U3BLVjRTaTdPejk3
cXRHcFg3N3RiYmtiSmNrdGo5Z2YrQ2ZueHYwVFhQR1BpandscGNuMnFKaEJkbTdqd3Njc2p4SDcN
CnE0eUF2bEVIMGFYSFBiN3ZyK2ZyOWp2NG02aDhKdmo5NGIxcXlqdjU3S1Ivc3VvdzZkQzBzcldy
a2IyQ2hUdTJFTExnanJHSy9mWFENCk5aaDhRNk5hYWhic2hqblFNUWpod2pEaGt5TzZzQ3A5d2Ev
TitLTWpqa2xlblRwTnVEaWxkNzNTdHI5M1RROWJEUDNPWHNhRkZGRmYNCkZIV0ZGRkZBQlJSUlFB
VVVVVUFGRkZGQUJSUlJRQVVVVVVBRkZGRkFCUlJSUUFFWnI4aFArQ3VQd2QvNFJINHc2TDQrdGdF
dGZGTnQNCjVVNnBIOHEzVnVGVWxtNEh6UnRGZ2NrN0hOZnIzWG1uN1Ezd0kwRDlvbjRYYXA0TzEr
RmZMdUI1MXJkaGN5V2x5b0lqbVRweU54SFgNCmtFZzVCSVAwdkR1YXJLTXdoaUovQnRMMGYrVHMv
a1kxWU9jYkxjL25kbGszdTVmQUxuY1ZWY0Q4aGpGWGROMXE5MHFPNlMwdVpJVXUNCjdjMnN3WG84
WklZcWV2R1FLK2l2Z2IrejFiK0pmMmdMWDRMZkVDMWw4T2FoTmN5cGJhZ1lOa3IrVS9tUEd3UFZa
WTRKUWpjRU02a0YNCmxPRHdYN1VQZ2pUL0FJUi9GWFcvaDlwMmhEU0l0Q24yR2E3dkJlWGx6dmpS
MWVTVlFxWUtsU3FvaTdkeERaT2NmMGhISFlmRTEvcWQNCnVadEtYUnB4dm8vdjdiUGUyaDVUVW9x
N1J5R29lTy9FV3BXdDNxYzNpNjkrMlhNNVNhd2p1SmtabEtjdmhRSTl2RzBBSDA0eFdkNEsNCmt0
SXZGZWtYV28zYTJGakJkeFN6WEdHWW9GTzRrS0FUbjVTT0IxSXJBQTNISEhPQjA1b0I3NXdUMkg4
NjZWZ0tOT2pPaFNYS3BLMmkNClNzcldWcksyblM2WmltMXNlNC90UStQOUQ4ZDZob0V1ajZpdXB2
RERLMDBvM2NCaXUxVGtBaHZsUEhVZTFlTGFmcDl6cWwvYldOamINCnkzbDNjeUxEQmJ3SVdrbGRp
QXFxb0dXSkp3QnlUbnBVQUpCQlBIYzUrcHI5ZmY4QWdtVkg4SGJ2OW43UXBmc25oaC9pRHA5M2NQ
cVUNCnR6YlJmMmxITDU4alF1Q3czbGZLMmJTbnlqQkgzZzFmTDFKVStDOG1wMGNQQ1ZXTUcwcjc2
dHl1Mmx0ZlRicWpTbFQ5cEsxN0UvN0oNCi93Q3dkcEVQN05sNzRiK0tuZ1hUWTlZMTVEZFMzcnNz
dXBXc2pNNnFGZlorNUtSaUZsQ3UzelBJR0E1RGZsdDhkZmhGcVh3SytMSGkNClh3TnF6Q2E1MG02
OHVPNUNiQmNRc044VW9HVGpjaksyTThad2M0citqWWpJd2VRZTFmazMvd0FGSi9nOTQvOEFqZCsw
VXVxZUNQaDkNCjRqMXpTdE4wYTMwMmJVN1hUSkRCY1RySk5JeGpmR0hDaVZVSkhSa0k3VjhQd3B4
QlhyWm5XZUttbENwZVR1N1JpOUxXdTlPMXZUc2QNCnVJcEpRWEwwUHo2MCsvdU5PdVZudFpXaG5Y
Y0E2L2VBSUlQNkVpdjEzLzRKVS90STMzeE84Q2ExNEM4Ulh6M3V0K0hCSFBaVFROdWUNCld4SUVZ
VW5IUGxzb0dTU1NISHBYNUc2M29PcGVHZFd1Tk0xalQ3clM5UnRtMnoyZDdDME0wUjQ0WkdBS25u
b1JYMGwvd1RtK0pHcGUNCkFQMnEvQ0VGcElxV091U3RwZDlFeXFETEhJalkrYnI4cmhIeG5rcDB6
aXYwTGlqTDZlWlpWVmFTY29ybWkvVFhmelYxOHpudzgzR1YNCmo5MHFLS0svbDg5Z0tLS0tBQ2lp
aWdBb29vb0FLS0tLQUNpaWlnQW9vb29BS0tLS0FDaWlpZ0Fvb29vQThpK0xtb2VIZkFqNmg0MDEN
CmJ3WGVhN2Q2SWtGMURkMk52RVp6R1hQbWlOc3FXOG9JMHJLeHpoaUJuT0svR1A4QWFrbTEvd0NN
djdYSGp5VFRyS1RWYi9VTlg4bXgNClN5WVRDVzJYWkZheUJnekx0YUpZVzNaMjRicUJYN3JlUERi
eGVIYjZTNDBtODFtR1dCN1dhM3NZMWtsOG1UaVFoR0kzREdDVkdXSUgNCnloamdIODJ2aVIreUw0
aHNmaDliK052aGRva25pM3haSFlyb0U5NUlibTFrdDBqdGtzakxaV2p3UktkMFFZbHl4Q083bGM3
UVYvVCsNCkVjd280T2NxbFRTVFhJbTNwclo2M2RrcnE3NnUrbXh4WWlEZHJINTIrSmRHcy9EK3B6
V0VPcFFhMDhHMFNYV251VGJoOEhjaU95L3YNCkFDUU40d3BJTzNjcERHOTRBK0gzaVg0bytLYlR3
OTRSME84OFFhMWN0aU8xdFk5NUF5QVdiakNJTWpjekVLQnlTQlh1L3dBSWYrQ2UNClh4aStLSGo2
ZlFiM3czZWVEOU9zSnpGZTYxcmxySkhiS3F1VkpneUI5b0p3U29UNVR3U3lnZzEreWZ3VCtBM2cz
OW4vQU1IV3ZoN3cNCmhwRUZsRkdnRTk2WTArMVhqNUozelNCUVhiSk9NOEFZQUFBQXI3N08rTE1M
bE5OVTZEVldxMTMwWG03Zmt0L0xjNWFkQ1ZSOWtmbHQNCjRTLzRKRGZGN1Y3U080MWZYUEMvaC9l
bTQyelhVdHhQR2VDRllSeGxQWGtPZW5ldnFYd24vd0FFcWZDT28zTnJxM3hTOFo2LzhRTmINCmpW
SW5XT1FXZHEwU0FLa1pBM1NuQ2dBc0pGeWVjWkp6OXpVVitUWXZpL044WC95ODVmOEFDa245Ky80
bmZHaENKVzB6VG9OSTArM3MNCnJZT3R2Ym9JNDFra2FSZ29HQUN6RWs4ZXBxeVJrWU5GRmZHTnR1
N09nNUR4OThJZkJYeFV0VnR2R0hoVFIvRWtNZk1mOXBXYVROR2UNCjVWbUJLbjNCSFUxdy93QVBQ
Mk52Z3g4Sy9FaWEvd0NHZkFHbVdPc1JOdmh1NVdsdUdnYkdNeCthN0NNKzZnR3ZaNks2NmVNeE5L
bTYNClZPckpSZTZUYVQrVjdFdU1XN3RCUlJSWEdVRkZGRkFCUlJSUUFVVVVVQUZGRkZBQlJSUlFB
VVVVVUFGRkZGQUJSUlJRQVVVVVVBQkcNClJpZ0RBd0JnRHNLS0tBRVVCUmdVdEZGQUJSUlJRQVVV
VVVBRkZGRkFCUlJSUUFVVVVVQUZGRkZBQlJSUlFBVVVVVUFGRkZGQUJSUlINClFBVVVVVUFGRkZG
QUJSUlJRQVVVVVVBRkZGRkFCUlJSUUFVVVVVQUZGRkZBQlJSUlFBVVVVVUFGRkZGQUJSUlJRQVVV
VVVBRkZGRkENCkJSUlJRQVVVVVVBRkZGRkFCUlJSUUFVVVVVQUZGRkZBQlJSUlFBVVVVVUFGRkZG
QUJSV0wvd0FKUEYvenhmOEFNVWY4SlBGL3p4ZjgNCnhXZnRJOXl1Vm0xUldML3drOFgvQUR4Zjh4
Ui93azhYL1BGL3pGSHRJOXc1V2JWRll2OEF3azhYL1BGL3pGSC9BQWs4WC9QRi93QXgNClI3U1Bj
T1ZtMVJXTC93QUpQRi96eGY4QU1VZjhKUEYvenhmOHhSN1NQY09WbTFSV0wvd2s4WC9QRi96Rkgv
Q1R4ZjhBUEYvekZIdEkNCjl3NVdiVkZZdi9DVHhmOEFQRi96RkgvQ1R4Zjg4WC9NVWUwajNEbFp0
VVZpL3dEQ1R4Zjg4WC9NVWY4QUNUeGY4OFgvQURGSHRJOXcNCjVXYlZGWXYvQUFrOFgvUEYvd0F4
Ui93azhYL1BGL3pGSHRJOXc1V2JWRll2L0NUeGY4OFgvTVVmOEpQRi93QThYL01VZTBqM0RsWnQN
ClVWaS84SlBGL3dBOFgvTVVmOEpQRi96eGY4eFI3U1BjT1ZtMVJXTC9BTUpQRi96eGY4eFIvd0FK
UEYvenhmOEFNVWUwajNEbFp0VVYNCmkvOEFDVHhmODhYL0FERkgvQ1R4Zjg4WC9NVWUwajNEbFp0
VVZpLzhKUEYvenhmOHhSL3drOFgvQUR4Zjh4UjdTUGNPVm0xUldML3cNCms4WC9BRHhmOHhSL3dr
OFgvUEYvekZIdEk5dzVXYlZGWXY4QXdrOFgvUEYvekZIL0FBazhYL1BGL3dBeFI3U1BjT1ZuLzlr
PTwvRGF0YT4NCiAgICA8L1RodW1ibmFpbD4NCiAgPC9CaW5hcnk+DQo8L21ldGFkYXRhPg==</Data>
</Enclosure>
</Binary>
<mdLang>
<languageCode value="eng">
</languageCode>
<countryCode Sync="TRUE" value="USA">
</countryCode>
</mdLang>
<mdChar>
<CharSetCd value="004">
</CharSetCd>
</mdChar>
<mdHrLv>
<ScopeCd value="005">
</ScopeCd>
</mdHrLv>
<mdContact>
<rpOrgName>Florida Department of Environmental Protection (FDEP) OTIS/GIS Section</rpOrgName>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>MS 6520</delPoint>
<delPoint>2600 Blair Stone Rd</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32399-2400</postCode>
<country>US</country>
<eMailAdd>GIS.Librarian@dep.state.fl.us</eMailAdd>
</cntAddress>
</rpCntInfo>
<role>
<RoleCd value="010">
</RoleCd>
</role>
</mdContact>
<mdStanName>ArcGIS Metadata</mdStanName>
<mdStanVer>1.0</mdStanVer>
<distInfo>
<distFormat>
<formatName Sync="FALSE">Raster Dataset</formatName>
<formatVer>10.2</formatVer>
</distFormat>
<distTranOps>
<onLineSrc>
<linkage>http://publicfiles.dep.state.fl.us/OTIS/GIS/data/FAS_RESPONSE.zip</linkage>
<orName>File Geodatabase</orName>
<orFunct>
<OnFunctCd value="001">
</OnFunctCd>
</orFunct>
</onLineSrc>
<onLineSrc>
<linkage>http://publicfiles.dep.state.fl.us/OTIS/GIS/data/fas_response_tiff.zip</linkage>
<orName>Source TiFF</orName>
<orFunct>
<OnFunctCd value="001">
</OnFunctCd>
</orFunct>
</onLineSrc>
</distTranOps>
</distInfo>
<dataIdInfo>
<idCitation>
<resTitle>Floridan Aquifer System Contamination Potential</resTitle>
<date>
<pubDate date="unknown">2008-12-15T00:00:00</pubDate>
</date>
<datasetSeries>
<seriesName>Florida Aquifer Vulnerability Assessment: Contamination potential of Florida's principal aquifer systems</seriesName>
<issId>FGS Bulletin 67</issId>
</datasetSeries>
<presForm>
<PresFormCd Sync="TRUE" value="011">
</PresFormCd>
<fgdcGeoform>raster digital data</fgdcGeoform>
</presForm>
<citRespParty>
<editorSource>external</editorSource>
<editorDigest>3c804d5139e2967f4cf5726da9844bb</editorDigest>
<rpIndName>Alan Baker</rpIndName>
<rpOrgName>Florida Geological Survey</rpOrgName>
<rpPosName>Professional Geologist Administrator</rpPosName>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>3000 Commonwealth Blvd., Suite 1</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32303</postCode>
<eMailAdd>Alan.Baker@dep.state.fl.us</eMailAdd>
<country>US</country>
</cntAddress>
<cntPhone>
<voiceNum tddtty="">850-617-0337</voiceNum>
</cntPhone>
</rpCntInfo>
<displayName>Alan Baker</displayName>
<editorSave>True</editorSave>
<displayName>Alan Baker</displayName>
<role>
<RoleCd value="006">
</RoleCd>
</role>
</citRespParty>
</idCitation>
<idAbs>&lt;div style='text-align:Left;'&gt;&lt;div&gt;&lt;div&gt;&lt;p&gt;&lt;span&gt;The Floridan Aquifer System Response theme grid is the relative vulnerability map for the Floridan Aquifer System. It was calculated using the ArcSDM extension and applying the weights of evidence and logistical regression method. The total number of unique conditions, number of training points per unique condition, evidential theme generalizations and posterior probability are contained in the table. A relative vulnerability class field is also in the table so that the grid can be symbolized based on FAVA vulnerability zones.&lt;/span&gt;&lt;/p&gt;&lt;/div&gt;&lt;/div&gt;&lt;/div&gt;</idAbs>
<idPurp>Development of a relative vulnerability map for the Floridan Aquifer System</idPurp>
<idCredit>Florida Geological Survey</idCredit>
<idStatus>
<ProgCd value="001">
</ProgCd>
</idStatus>
<resMaint>
<maintFreq>
<MaintFreqCd value="009">
</MaintFreqCd>
</maintFreq>
</resMaint>
<placeKeys>
<keyword>Floridan Aquifer System</keyword>
<keyword>Florida</keyword>
</placeKeys>
<themeKeys>
<thesaName>
<resTitle>ISO 19115 Topic Category</resTitle>
</thesaName>
<keyword>Geoscientific Information</keyword>
<keyword>Environmental Monitoring and Modeling</keyword>
<keyword>Vulnerability</keyword>
<keyword>Geology and Geophysics</keyword>
</themeKeys>
<searchKeys>
<keyword>Floridan Aquifer System</keyword>
<keyword>Florida</keyword>
<keyword>Geoscientific Information</keyword>
<keyword>Environmental Monitoring and Modeling</keyword>
<keyword>Vulnerability</keyword>
<keyword>Geology and Geophysics</keyword>
</searchKeys>
<resConst>
<Consts>
<useLimit>&lt;div style='text-align:Left;'&gt;&lt;div&gt;&lt;div&gt;&lt;p&gt;&lt;span&gt;DISCLAIMER: This geologic data was developed by the Florida Department of Environmental Protection (FDEP) - Florida Geological Survey (FGS) to carry out agency responsibilities related to management, protection, and development of Florida's natural resources. Although efforts have been made to make the information accurate and useful, the FDEP/FGS assumes no responsibility for errors in the information and does not guarantee that the data are free from errors or inaccuracies. Similarly FDEP/FGS assumes no responsibility for the consequences of inappropriate uses or interpretations of the data. As such, these digital data are distributed on "as is" basis and the user assumes all risk as to their quality, the results obtained from their use, and the performance of the data. FDEP/FGS bears no responsibility to inform users of any subsequent changes made to this data. Anyone using this data is advised that precision implied by the data may far exceed actual precision. Comments on this data are invited and FDEP/FGS would appreciate that documented errors be brought to staff attention. The development of these data sets represents a major investment of staff time and effort. As a professional responsibility, we expect that the FDEP/FGS will receive proper credit when you utilize these data sets. Further, since part of this data was developed and collected with U.S. Government or State of Florida funding, no proprietary rights may be attached to it in whole or in part, nor may it be sold to the U.S. Government or the Florida State Government as part of any procurement of products or services.&lt;/span&gt;&lt;/p&gt;&lt;/div&gt;&lt;/div&gt;&lt;/div&gt;</useLimit>
</Consts>
</resConst>
<dataLang>
<languageCode value="eng">
</languageCode>
<countryCode Sync="TRUE" value="USA">
</countryCode>
</dataLang>
<dataExt>
<exDesc>publication date</exDesc>
<tempEle>
<TempExtent>
<exTemp>
<TM_Instant>
<tmPosition date="unknown">2008-12-15T00:00:00</tmPosition>
</TM_Instant>
</exTemp>
</TempExtent>
</tempEle>
</dataExt>
<envirDesc Sync="TRUE"> Version 6.2 (Build 9200) ; Esri ArcGIS 10.6.1.9270</envirDesc>
<spatRpType>
<SpatRepTypCd Sync="TRUE" value="002">
</SpatRepTypCd>
</spatRpType>
<dataExt>
<geoEle>
<GeoBndBox esriExtentType="search">
<exTypeCode Sync="TRUE">1</exTypeCode>
<westBL Sync="TRUE">-87.639226</westBL>
<eastBL Sync="TRUE">-79.872480</eastBL>
<northBL Sync="TRUE">31.042857</northBL>
<southBL Sync="TRUE">25.090983</southBL>
</GeoBndBox>
</geoEle>
</dataExt>
<resConst>
<LegConsts>
<accessConsts>
<RestrictCd value="007">
</RestrictCd>
</accessConsts>
<useConsts>
<RestrictCd value="007">
</RestrictCd>
</useConsts>
<useLimit>This geologic data was developed by the Florida Department of Environmental Protection (FDEP) - Florida Geological Survey (FGS) to carry out agency responsibilities related to management, protection, and development of Florida's natural resources. Although efforts have been made to make the information accurate and useful, the FDEP/FGS assumes no responsibility for errors in the information and does not guarantee that the data are free from errors or inaccuracies. Similarly FDEP/FGS assumes no responsibility for the consequences of inappropriate uses or interpretations of the data. As such, these digital data are distributed on "as is" basis and the user assumes all risk as to their quality, the results obtained from their use, and the performance of the data. FDEP/FGS bears no responsibility to inform users of any subsequent changes made to this data. Anyone using this data is advised that precision implied by the data may far exceed actual precision. Comments on this data are invited and FDEP/FGS would appreciate that documented errors be brought to staff attention. The development of these data sets represents a major investment of staff time and effort. As a professional responsibility, we expect that the FDEP/FGS will receive proper credit when you utilize these data sets. Further, since part of this data was developed and collected with U.S. Government or State of Florida funding, no proprietary rights may be attached to it in whole or in part, nor may it be sold to the U.S. Government or the Florida State Government as part of any procurement of products or services.
</useLimit>
</LegConsts>
</resConst>
<idPoC>
<editorSource>external</editorSource>
<editorDigest>3c804d5139e2967f4cf5726da9844bb</editorDigest>
<rpIndName>Alan Baker</rpIndName>
<rpOrgName>Florida Geological Survey</rpOrgName>
<rpPosName>Professional Geologist Administrator</rpPosName>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>3000 Commonwealth Blvd., Suite 1</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32303</postCode>
<eMailAdd>Alan.Baker@dep.state.fl.us</eMailAdd>
<country>US</country>
</cntAddress>
<cntPhone>
<voiceNum tddtty="">850-617-0337</voiceNum>
</cntPhone>
</rpCntInfo>
<displayName>Alan Baker</displayName>
<editorSave>True</editorSave>
<displayName>Alan Baker</displayName>
<role>
<RoleCd value="007">
</RoleCd>
</role>
</idPoC>
<tpCat>
<TopicCatCd value="008">
</TopicCatCd>
</tpCat>
<tpCat>
<TopicCatCd value="007">
</TopicCatCd>
</tpCat>
</dataIdInfo>
<dqInfo>
<dqScope>
<scpLvl>
<ScopeCd value="005">
</ScopeCd>
</scpLvl>
</dqScope>
<dataLineage>
<prcStep>
<stepDesc>The Floridan Aquifer Response theme grid is the relative vulnerability map for the Floridan Aquifer System. It was calculated using the ArcSDM extension and applying the weights of evidence and logistic regression methods. An analysis extent (study area), training point theme (fas_training_pts.shp), and modeling method (weights of evidence, logistic regression) are selected in the set analysis parameters. Weights are then calculated on each evidential theme and then the themes are generalized (into binary patterens, ias_thk is the exception with three classes). A generalization of 1 represents "more vulnerable" areas, 2 represents "less vulnerable areas and -99 represents missing data. A response theme is then calculated based on the association between training points and evidential themes. The total number of unique conditions, number of training points per unique condition, evidential theme generalizations and logistic regression posterior probability are contained in the table. A relative vulnerability class field is also in the table so that the grid can be symbolized based on FAVA vulnerability zones.</stepDesc>
<stepDateTm date="unknown">
</stepDateTm>
<stepProc>
<rpOrgName>Florida Geological Survey</rpOrgName>
<rpCntInfo>
<cntPhone>
<voiceNum>850-488-4191</voiceNum>
<faxNum>850-488-8086</faxNum>
</cntPhone>
<cntAddress addressType="both">
<delPoint>Gunter Building MS #720</delPoint>
<delPoint>903 W. Tennessee St.</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32304-7700</postCode>
<country>US</country>
</cntAddress>
</rpCntInfo>
<role>
<RoleCd value="009">
</RoleCd>
</role>
</stepProc>
</prcStep>
<prcStep>
<stepDesc>Raster data added to ArcSDE 9.3 and published in DataMiner.</stepDesc>
<stepDateTm>2008-12-15</stepDateTm>
</prcStep>
</dataLineage>
</dqInfo>
<mdHrLvName Sync="TRUE">dataset</mdHrLvName>
<refSysInfo>
<RefSystem>
<refSysID>
<identCode Sync="TRUE" code="0">
</identCode>
</refSysID>
</RefSystem>
</refSysInfo>
<mdDateSt Sync="TRUE">20190322</mdDateSt>
</metadata>
