<?xml version="1.0" encoding="UTF-8" standalone="no"?>
<metadata xml:lang="en">
<Esri>
<CreaDate>20220502</CreaDate>
<CreaTime>20484200</CreaTime>
<ArcGISFormat>1.0</ArcGISFormat>
<SyncOnce>TRUE</SyncOnce>
</Esri>
<dataIdInfo>
<idCitation>
<resTitle>biodiversidad</resTitle>
</idCitation>
<searchKeys>
<keyword>Biodiversidad</keyword>
<keyword>Ambiente</keyword>
<keyword>Colombia</keyword>
<keyword>Fauna</keyword>
<keyword>Flora</keyword>
<keyword>Biomas</keyword>
<keyword>Hidrografía</keyword>
</searchKeys>
<idPurp>La biodiversidad es un resultado del proceso evolutivo que se manifiesta en la existencia de diferentes modos de ser para la vida. La mutación y la selección...</idPurp>
<idAbs>&lt;DIV STYLE="text-align:Left;font-size:12pt"&gt;&lt;P&gt;&lt;SPAN&gt;La biodiversidad es un resultado del proceso evolutivo que se manifiesta en la existencia de diferentes modos de ser para la vida. La mutación y la selección determinan las características y la cantidad de diversidad que existe en un lugar y momento dados. La diversidad biológica abarca toda la escala de organización de los seres vivos. Cuando se hace referencia a la biodiversidad geográfica, se alude a la diversidad de ecosistemas en una región determinada. La posición geoestratégica privilegiada de Colombia, le confiere extraordinarias ventajas en cuanto a sus condiciones biofísicas, que lo posicionan en el séptimo lugar del mundo con riqueza hídrica, además de contar con importantes reservorios y reguladores de esta riqueza en las áreas de páramo (FAO, 2011). Asimismo, ocupa el segundo lugar en el mundo con mayor biodiversidad en riqueza biológica y ecosistémica. &lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;</idAbs>
<idCredit>IGAC; IAvH</idCredit>
<resConst>
<Consts>
<useLimit/>
</Consts>
</resConst>
</dataIdInfo>
<Binary>
<Thumbnail>
<Data EsriPropertyType="PictureX">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</Data>
</Thumbnail>
</Binary>
</metadata>
