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739 results for “Uruguay”

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zenodo36/100

CUADRO 1 in UN NUEVO GEKKONIDAE DEL URUGUAY

<p>CUADRO 1</p><table><tbody><tr><th>VARIACION DE LOS CARACTERES METRICOS</th></tr></tbody><tbody><tr><th><i>Magnitud</i></th><td><i>N</i></td><td><i>Rango</i></td><td><i>Media</i></td><td><i>D. S.</i></td><td><i>C. V.</i></td></tr><tr><th>Largo cabeza*</th><td>33</td><td>23 - 27</td><td>25,1</td><td>1,02</td><td>0,04</td></tr><tr><th>Ancho cabeza *</th><td>33</td><td>18 - 22</td><td>20,2</td><td>0,91</td><td>0,04</td></tr><tr><th>Hocico**</th><td>20</td><td>27 -42</td><td>35,1</td><td>2,35</td><td>0,09</td></tr><tr><th>Ojo-o&iacute;do **</th><td>18</td><td>29 - 42</td><td>33,8</td><td>2,87</td><td>0,08</td></tr><tr><th>Long. miemb. ant. *</th><td>33</td><td>25 - 35</td><td>29,1</td><td>2,27</td><td>0,08</td></tr><tr><th>Long. miemb. post *</th><td>33</td><td>33 - 48</td><td>39,6</td><td>3,59</td><td>0,09</td></tr><tr><th>Superposici&oacute;n miemb. adpresos*</th><td>33</td><td>12 - 24</td><td>17,1</td><td>1,50</td><td>0,00</td></tr><tr><th>Axila-ingle*</th><td>33</td><td>37 - 50</td><td>42,7</td><td>3,14</td><td>0,07</td></tr></tbody></table>

opencc-by-4.0Dec 1961View details →
zenodo36/100

CUADRO 2 in UN NUEVO GEKKONIDAE DEL URUGUAY

<p>CUADRO 2</p><table><tbody><tr><th>VARIACION DE LOS CARACTERES MERISTICOS *</th></tr></tbody><tbody><tr><th><i>Elementos contados</i></th><td><i>N</i></td><td><i>Rango</i></td><td><i>Media</i></td><td><i>D</i>. <i>S</i>.</td><td><i>C. V.</i></td></tr><tr><th>Placas labiales</th></tr><tr><th>superiores* *</th><td>24</td><td>6 - 8</td><td>7,1</td><td>0,39</td><td>0,05</td></tr><tr><th>inferiores* * *</th><td>24</td><td>5 - 6</td><td>5, 2</td><td>0,16</td><td>0,02</td></tr><tr><th>Gr&aacute;nulos zona vertebral (Fig. 1, A,) ****</th></tr><tr><th>minimo</th><td>21</td><td>2 - 4</td><td>2,2</td><td>0,56</td><td>0,24</td></tr><tr><th>m&aacute;ximo</th><td>21</td><td>3 - 6</td><td>3,9</td><td>0,70</td><td>0,18</td></tr><tr><th>dif. indiv.</th><td>21</td><td>1 - 3</td><td>1,0</td><td>0,58</td><td>0,36</td></tr><tr><th>N.&ordm; filas escamas carenadas aisladas (Fig. 1, I, II, III.)****</th><td>21</td><td>2 - 5</td><td>3,1</td><td>0.52</td><td>0,17</td></tr><tr><th>N.&deg; filas escamas carenadas unidas lados del cuerpo (Fig. l, Y) ****</th><td>21</td><td>0 - 10</td><td>8,0</td><td>1,13</td><td>0,14</td></tr><tr><th>N.&ordm; de escamas carenadas de la fila paramediana</th><td>20</td><td>38 - 52</td><td>46,0</td><td>3, 45</td><td>0,07</td></tr><tr><th>N. &ordm; filas escamas ventrales****</th><td>21</td><td>15 - 24</td><td>19,4</td><td>2,35</td><td>0,12</td></tr><tr><th>N.&ordm; l&aacute;minas 4.&ordm; dedo pie iz quierdo</th><td>21</td><td>13 - 19</td><td>14,7</td><td>1,39</td><td>0,08</td></tr></tbody></table>

opencc-by-4.0Dec 1961View details →
zenodo36/100

CARACTERES METRICOS DEL HOLOTIPO in UN NUEVO GEKKONIDAE DEL URUGUAY

<p>CARACTERES METRICOS DEL HOLOTIPO</p><table><tbody><tr><th>Long. rostro-cloacal *</th><th>40,5 mm.</th><th>10-0 **</th></tr></tbody><tbody><tr><th>Largo cabeza.</th><td>10,5 mm,</td><td>26</td></tr><tr><th>Ancho cabeza</th><td>8,5 mm.</td><td>21</td></tr><tr><th>Long. hocico</th><td>4,5 mm.</td><td>11</td></tr><tr><th>Di&aacute;m. ant. -post. ojo</th><td>2,5 mm.</td><td>6,2</td></tr><tr><th>Ojo-o&iacute;do</th><td>3,5 mm.</td><td>3,6</td></tr><tr><th>Long. miemb. ant.</th><td>10,6 mm.</td><td>26</td></tr><tr><th>Long. miemb. post.</th><td>15,5 mm.</td><td>38</td></tr><tr><th>Superposici&oacute;n miemb. adpresos</th><td>5,6 mm.</td><td>14</td></tr><tr><th>Axila-ingle</th><td>18,0 mm.</td><td>44</td></tr></tbody></table>

opencc-by-4.0Dec 1961View details →
zenodo36/100

Magnetotelluric data across Uruguay and Southern Brazil

<p>This dataset presents .edi files from 35 magnetotelluric broadband and 11 long period soundings across central Uruguay and southern Brazil. This data collection was financially supported by FAPESP Thematic Projects 2012/06082-6 and 2009/50493-8.</p> <p>Version 2.2: impedances&nbsp;in field units instead of SI (version&nbsp;1).</p> <p>Version 2.3: site&nbsp;29 coordinates have been corrected.&nbsp;</p>

opencc-by-4.0May 2018View details →
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Figure 18 in The genus Tomarus Erichson (Coleoptera: Scarabaeidae: Dynastinae: Pentodontini) in Argentina, Chile, and Uruguay

Figure 18. Variation of the parameres, anterior view, of T. burmeisteri in Argentina.

opencc-by-4.0Apr 2017View details →
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Figure 9 in The genus Tomarus Erichson (Coleoptera: Scarabaeidae: Dynastinae: Pentodontini) in Argentina, Chile, and Uruguay

Figure 9. Protibia, dorsal view, of Tomarus spp. a) T. gyas and b) T. maimon.

opencc-by-4.0Apr 2017View details →
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Figure 3 in Ecology and behaviour of the 'road tarantulas' Eupalaestrus weijenberghi and Acanthoscurria suina (Araneae, Theraphosidae) from Uruguay

Figure 3. Distribution of the beetle Diloboderus abderus in the surveyed areas.

opencc-by-4.0Feb 2005View details →
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Figure 6 in Ecology and behaviour of the 'road tarantulas' Eupalaestrus weijenberghi and Acanthoscurria suina (Araneae, Theraphosidae) from Uruguay

Figure 6. Temporal distribution of tarantulas captured by pit-fall traps.

opencc-by-4.0Feb 2005View details →
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Figure 2 in Ecology and behaviour of the 'road tarantulas' Eupalaestrus weijenberghi and Acanthoscurria suina (Araneae, Theraphosidae) from Uruguay

Figure 2. Geographical distribution of Acanthoscurria suina in the surveyed areas of Uruguay.

opencc-by-4.0Feb 2005View details →
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Fig. 1 in A New Species of Hisonotus (Siluriformes, Loricariidae) of the Upper Río Uruguay Basin

Fig. 1. Hisonotus ringueleti, holotype, ILPLA 886, female, 35.8 mm SL.

opencc-by-4.0Jun 2001View details →
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Figure 5 in Acridomorpha (Orthoptera) species associated with the protected wetlands of Santa Lucía, Montevideo, Uruguay

Figure 5. Acumulation species curve of Acridomorpha collected from Humedales de Santa Lucía.

opencc-by-4.0May 2020View details →
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Figure 1 in Acridomorpha (Orthoptera) species associated with the protected wetlands of Santa Lucía, Montevideo, Uruguay

Figure 1. Study area: Humedales de Santa Lucía. Montevideo, Uruguay

opencc-by-4.0May 2020View details →
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Fig. 1 in Oligosarcus jacuiensis (Characiformes: Characidae), a new species from the Uruguay and Jacuí River basins, southern Brazil

Fig. 1. Oligosarcus jacuiensis, holotype, MCP 28980, female, 153 mm SL, rio Jacuí.

opencc-by-4.0Dec 2010View details →
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Fig. 4 in Hyphessobrycon nicolasi (Teleostei: Characidae) a new species from the Uruguay River basin in the Mesopotamian Region, Argentina

Fig. 4. Type locality of Hyphessobrycon nicolasi (triangle).

opencc-by-4.0Mar 2010View details →
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Actividad de Twitter durante la Marcha del Silencio en Uruguay 2020

<p>Conjunto de datos del art&iacute;culo&nbsp;&quot;La batalla virtual por la memoria: Un an&aacute;lisis de las memorias en disputa en Twitter durante la Marcha del Silencio del 2020 en Uruguay&quot;&nbsp;</p> <p>Revista Teknokultura</p> <p>A&ntilde;o de publicaci&oacute;n 2022</p>

opencc-by-4.0Dec 2022View details →
zenodo36/100

Raw data for the Github repository "Collection of scripts to download & process hydropower generation data in Argentina, Bolivia, Brazil, Uruguay"

<p>This is the raw data downloaded from the websites of the following system operators:</p> <p>&nbsp; - CNDC, Comit&eacute; Nacional de Despacho de Carga (Bolivia): https://www.cndc.bo/home/index.php<br> &nbsp; - ONS, Operador Nacional do Sistema El&eacute;trico (Brazil): https://www.ons.org.br/<br> &nbsp; - UTE, Usinas y Trasmisiones El&eacute;ctricas (Uruguay): https://www.ute.com.uy/<br> &nbsp; - CAMMESA, Compa&ntilde;&iacute;a Administradora del Mercado Mayorista El&eacute;ctrico Sociedad An&oacute;nima (Argentina): https://cammesaweb.cammesa.com</p> <p>Hydropower generation data is extracted using the R scripts available here: https://github.com/matteodefelice/hydro-sam</p>

opencc-by-4.0Feb 2023View details →
zenodo36/100

Iniciativa de Ciencia Abierta sobre datos paleolimnológicos para reconstrucciones paleoclimáticas y paleoambientales – Lagunas costeras del Este de Uruguay

<p><strong>El movimiento Ciencia Abierta (open science), debe ser entendido como la promoci&oacute;n del acceso abierto de los productos de la investigaci&oacute;n cient&iacute;fica, principalmente aquellos provenientes de fondos p&uacute;blicos, tan pronto como sea pr&aacute;ctico en el proceso de descubrimiento. La intenci&oacute;n es abrir el proceso cient&iacute;fico desde la idea inicial hasta la publicaci&oacute;n final para que sea lo m&aacute;s comprensible posible y utilizable para todos los p&uacute;blicos. En este caso se trata del primer trabajo presentado en el marco de Ciencia Abierta con contenido proveniente de la Paleolimnolog&iacute;a. En particular, est&aacute; aplicada a la regi&oacute;n Este de Uruguay en el sector comprendido entre la Laguna del Sauce y la Laguna Negra cubriendo aproximadamente 200km de costa oce&aacute;anica. El registro alcanza el s&eacute;ptimo milenio antes del presente. Esta zona est&aacute; dominada por ambientes de tierras bajas donde se localizan lagunas costeras, ba&ntilde;ados y planicies anegadizas, propicios para realizar reconstrucciones paleoclim&aacute;ticas y paleoambientales. Si bien la tem&aacute;tica clim&aacute;tico-ambiental para la zona Este de Uruguay tiene ya varias d&eacute;cadas de estudio (ver: Sombroeck et al. 1969; Monta&ntilde;a y Bossi 1995; C&eacute;spedes 1995; entre otros) no fue sino hasta entrada la primer d&eacute;cada del siglo XXI que comenzaron a publicarse los primeros resultados de los trabajos provenientes de t&eacute;cnicas exclusivamente paleolimnol&oacute;gicas (ver: Blasi et al. 2005; del Puerto et al. 2006; Garc&iacute;a-Rodr&iacute;guez y Witkowski 2003; Bracco et al. 2005; entre otros). Si bien del Puerto et al (2011), as&iacute; como del Puerto (2015) presentan muy buenas recopilaciones para esta &aacute;rea con la finalidad de generar modelos regionales, en este caso a la vez de aumentar el tama&ntilde;o de la muestra se presentan las plantillas num&eacute;ricas de datos, tanto los ya publicados as&iacute; como in&eacute;ditos. Los &uacute;ltimos corresponden a los resultados de an&aacute;lisis multivariados de muestras paleolimnol&oacute;gicas (core), tales como: contenido de materia org&aacute;nica y carbonatos, fechados radiocarb&oacute;nicos, contenidos de C y N, &iacute;ndices de humedad y temperatura obtenidos en base a la cuantificaci&oacute;n de la abundancia relativa de silicofitolitos de plantas C3 y C4, todos estos indicadores evaluados en funci&oacute;n de la profundidad. Las muestras corresponden a 7 lagunas costeras, de donde se tomaron 13 n&uacute;cleos los cuales generaron 445 datos ya&nbsp; publicados, as&iacute; como 3 n&uacute;cleos correspondientes a 130 datos in&eacute;ditos. La metodolog&iacute;a utilizada incluye la revisi&oacute;n bibliogr&aacute;fica tanto en l&iacute;nea como en bibliotecas f&iacute;sicas. Se relevaron nueve fuentes que ofrec&iacute;an sus propios datos de las cuales se identificaron tres que conten&iacute;an la totalidad de la informaci&oacute;n, presentada t&iacute;picamente bajo la forma de gr&aacute;ficas. De las publicaciones seleccionadas se tomaron los gr&aacute;ficos mediante captura de pantalla y se digitalizaron esas im&aacute;genes en el programa &ldquo;Graph Reader&rdquo;. Los resultados se recopilaron en planillas de c&aacute;lculo del programa &ldquo;Libreoffice&rdquo; y fueron&nbsp; ordenados de acuerdo a la zona o laguna de muestreo, de modo tal&nbsp; que tengan una sencilla interpretaci&oacute;n generando dos columnas por cada indicador, una correspondiente a la profundidad (cm) y la otra al paleoindicador analizado. Se obtuvo un conjunto de datos de una tem&aacute;tica espec&iacute;fica, presentados en forma num&eacute;rica, que se encuentra disponible abierta y p&uacute;blicamente con la finalidad de que sea insumo a m&aacute;s investigaciones y accesible con un menor esfuerzo. Aspiramos a que este trabajo sea solamente el primero de una serie que expl&iacute;citamente haga p&uacute;blicos y f&aacute;cilmente accesibles a los datos cient&iacute;ficos recopilados en el pa&iacute;s. En este caso, se estima que se ha recopilado m&aacute;s del 90% de la informaci&oacute;n disponible en esta tem&aacute;tica. </strong></p>

opencc-by-4.0Apr 2023View details →
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Uruguay

[Uruguay](https://en.wikipedia.org/wiki/Uruguay) is a country in South America. It shares borders with Argentina to its west and southwest and Brazil to its north and northeast; while bordering the Río de la Plata to the south and the Atlantic Ocean to the southeast. Uruguay covers an area of approximately 176,000 square kilometers (68,000 sq mi) and has a population of an estimated 3.51 million, of whom 2 million live in the metropolitan area of its capital and largest city, Montevideo. Source: Objaverse 1.0 / Sketchfab

opencc-byFeb 2022View details →
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FIGURE 1. Study area. 1 in A new species of Hippomonavella (Bryozoa: Cheilostomata) from the Holocene and Recent of Argentina and Uruguay (Southwest Atlantic)

FIGURE 1. Study area. 1: Type locality, MACN-In 15933. 2: Mid-Holocene material, Destacamento Río Salado Member, MLP 36237.

opennotspecifiedJan 2020View details →
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Fig. 4. Bivariate graphs for the Smilodon populator specimen MNHN-P 957. A in An extremely large saber-tooth cat skull from Uruguay (late Pleistocene -early Holocene, Dolores Formation): body size and paleobiological implications

Fig. 4. Bivariate graphs for the Smilodon populator specimen MNHN-P 957. A, PM3 transverse diameter (PM3ML) versus PM3 anteroposterior diameter (PM3AP); B, PM4 transverse diameter (PM4ML) versus PM4 anteroposterior diameter (PM4AP). Data from different sources (see Material and methods).

opennotspecifiedMar 2020View details →

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dandi-nwb
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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record

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Last verified 2026-04-29Open record