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zenodo32/100

Supplementary material 2 from: Fernandez-Triana JL, Whitfield JB, Smith MA, Kula RR, Hallwachs W, Janzen DH (2015) Revision of the genera Microplitis and Snellenius (Hymenoptera, Braconidae, Microgastrinae) from Area de Conservacion Guanacaste, Costa Rica, with a key to all species previously described from Mesoamerica. Deutsche Entomologische Zeitschrift 62(2): 137-201. https://doi.org/10.3897/dez.62.5276

Additional information for paratype specimens of the new species of Microplitis and Snellenius: Explanation note: Additional information for paratype specimens of the new species of Microplitis and Snellenius described from Area de Conservacion Guanacaste, Costa Rica.

opencc-by-4.0Jul 2015View details →
zenodo32/100

FIGURES 99–137 in A taxonomic monograph of the genus Dodomeira Bellò & Baviera, a new genus of Peritelini from Sicily (Coleoptera: Curculionidae: Entiminae)

FIGURES 99–137. VIII sternite of: 99—D. adrianae Bello & Baviera sp. n., holotype; 100—D. alta Bello & Baviera sp. n., holotype; 101—D. belicensis Bellò & Baviera sp. n., holotype; 102—D. calatina Bellò & Baviera sp. n., holotype; 103—D. enzoi Bellò & Baviera sp. n., holotype; 104—D. forbicionii Bellò & Baviera sp. n., holotype; 105—D. hiemalis Bello & Baviera sp. n., holotype; 106—D. ibleiensis Bello & Baviera sp. n., holotype; 107—D. juliae Bello & Baviera sp. n., holotype; 108—D. laliaensis Bellò & Baviera sp. n., holotype; 109—D. sicana Bellò & Baviera sp. n., holotype; 110—D. sicelidis Bellò & Baviera sp. n., holotype; 111—D. siderea Bellò & Baviera sp. n., holotype; 112—D. caoduroi Bello & Baviera sp. n., holotype; 113—D. confusa (Pierotti, 2012), topotype; 114—D. exigua (Stierlin, 1861), topotype; 115—D. himerensis (Bellò & Baviera, 2011), paratype;116—D. trinacriae (Bellò & Baviera, 2011), paratype; 117—D. genistae Bellò & Baviera sp. n., ♀ unknown; 118—D. margheritae Bello & Baviera sp. n., paratype; 119—D. ficuzzensis (Bellò & Baviera, 2011), holotype; 120—D. silvanae Bellò & Baviera sp. n., holotype; 121—D. maritimaensis Bellò & Baviera sp. n., holotype; 122—D. petrensis (Bello & Baviera, 2011), holotype; 123—D. asinelliensis Bello & Baviera sp. n., holotype; 124—D. pfisteri (Stierlin, 1864), topotype; 125—D. angelae Bellò & Baviera sp. n., holotype; 126—D. bertoni Bellò & Baviera sp. n., holotype; 127—D. elima Bellò & Baviera sp. n., holotype; 128—D. fossor Bellò & Baviera sp. n., holotype; 129—D. giustoi Bellò & Baviera sp. n., holotype; 130—D. illuminatae Bello & Baviera sp. n., holotype; 131—D. magrinii Bello & Baviera sp. n., holotype; 132—D. montivaga Bellò & Baviera sp. n., holotype; 133—D. nobilis Bellò & Baviera sp. n., holotype; 134—D. paladinii Bellò & Baviera sp. n., holotype; 135—D. sabellai Bellò & Baviera sp. n., paratype; 136—D. zingara Bellò & Baviera sp. n., holotype; 137—D. saccoi Bellò & Baviera sp. n., holotype.

opennotspecifiedOct 2017View details →
zenodo32/100

FIGURE 137 in A taxonomic revision of the genus Baldorhynchus (Di Marco & Osella, 2002) stat. n. (Coleoptera, Curculionidae, Entiminae)

FIGURE 137—"Col Campeggia, 1070 m, Monte Grappa, Romano d'Ezzelino, Vicenza" type locality of B. danzii Bellò & Osella sp. n.—photo by C. Bellò.

opennotspecifiedJan 2016View details →
zenodo32/100

FIGURES 135–138. Coniceromyia valdesi hypopygium, 135. Dorsal, 136. Ventral, 137. Left lateral, 138 in Taxonomic revision of Coniceromyia Borgmeier (Diptera: Phoridae), with the description of three new species from Brazil

FIGURES 135–138. Coniceromyia valdesi hypopygium, 135. Dorsal, 136. Ventral, 137. Left lateral, 138. Right lateral.

opennotspecifiedMar 2016View details →
zenodo32/100

FIGURES 137–142. Male genitalia and male 7 in Taxonomic review of the Craniophora s. l. (Lepidoptera, Noctuidae, Acronictinae) generic complex with description of 8 new genera and 13 new species

FIGURES 137–142. Male genitalia and male 7th, 8th abdominal segments of Fascionycta spp. 137. F. fasciata, valva, Pakistan, Kashmir, Ayubia, slide No.: KA1033m (coll. HNHM); vesica, Pakistan, Indus valley, Motel Barseen, slide No.: KA1036m (coll. HNHM); 138. F. luteipennis, valva, vesica, India, Khasia Hills, slide No.: KA621m (coll. MSNM); 139. F. malesiae, valva, Papua New Guinea, New Guinea, slide No.: KA998m (coll. ZSM); vesica, Philippines, Luzon, slide No.: KA191m (coll. HNHM); 140. F. ardjuna, lectotype, valva, vesica, Indonesia, Java, slide No.: INS967307 (coll. and photo RMNH); 141. F. fasciata, Pakistan, Kaghan valley, 6 km NW of Balakot, slide No.: KA1061m (coll. HNHM); 142. F. luteipennis, India, Khasia Hills, slide No.: KA621m (coll. MSNM). Left side sternite, right side tergite. Not scaled.

opennotspecifiedNov 2017View details →
zenodo32/100

FIGURES 133–137 in Revision of the Genus Leptogomphus Selys in Borneo, including gene trees and a two marker molecular phylogeny (Odonata: Anisoptera: Gomphidae)

FIGURES 133–137. Photographs in life of some Bornean Leptogomphus species: (133) L. coomansi male (left hand side, flipped to right for consistency with other images), Sungai Sbong, Kapit Division, Sarawak, photograph by G.T. Reels; (134) L. coomansi female, Ranchan Recreational Park, Serian, Serian Division, Sarawak; (135) L. pendleburyi female, Bukit Tanggan, Ulu Mujok, Lanjak Entimau Wildlife Sanctuary, Sarikei Division, Sarawak, photograph by Robin Ngiam; (136) L. pendleburyi male, Sungai Kahei area, Ulu Balui, Kapit Division, Sarawak, photograph by Robin Ngiam; (137) L. williamsoni immature male, semi-teneral, Sungai Kahei area, Ulu Balui, Kapit Division, Sarawak, photograph by Robin Ngiam.

opennotspecifiedNov 2017View details →
zenodo32/100

PowerTAC 2015-04 Finals Game 137

Log and boot files of game 137

opencc-by-4.0Apr 2015View details →
zenodo32/100

PLATE VII. [scale bars: apex of abdomen = 5 mm, egg = 1 mm] 124. Oxyartes jinpingensis sp. nov., female, apex of abdomen, lateral view. 125. Oxyartes jinpingensis sp. nov., female, apex of abdomen, dorsal view. 126. Oxyartes jinpingensis sp. nov., male, apex of abdomen, lateral view. 127. Oxyartes jinpingensis sp. nov., male, apex of abdomen, dorsal view. 128. Oxyartes rubris sp. nov., female, apex of abdomen, lateral view. 129. Oxyartes rubris sp. nov., female, apex of abdomen, dorsal view. 130. Oxyartes rubris sp. nov., male, apex of abdomen, lateral view. 131. Oxyartes rubris sp. nov., male, apex of abdomen, dorsal view. 132. Planososibia brevialata sp. nov., female, apex of abdomen, lateral view. 133. Planososibia brevialata sp. nov., female, apex of abdomen, dorsal view. 134. Planososibia brevialata sp. nov., male, apex of abdomen, lateral view. 135. Planososibia brevialata sp. nov., male, apex of abdomen, dorsal view. 136. Planososibia liui sp. nov., female, apex of abdomen, lateral view. 137. Planososibia liui sp. nov., female, apex of abdomen, dorsal view. 138. Planososibia liui sp. nov., male, apex of abdomen, lateral view. 139. Planososibia liui sp. nov., male, apex of abdomen, dorsal view. 140. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., female, apex of abdomen, lateral view. 141. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., female, apex of abdomen, dorsal view. 142. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., male, apex of abdomen, lateral view. 143. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., male, apex of abdomen, dorsal view. 144. Pseudososibia cristata gen. nov. & sp. nov., female, apex of abdomen, lateral view. 145. Pseudososibia cristata gen. nov. & sp. nov., female, apex of abdomen, dorsal view. 146. Pseudososibia cristata gen. nov. & sp. nov., male, apex of abdomen, lateral view. 147. Pseudososibia cristata gen. nov. & sp. nov., male, apex of abdomen, dorsal view. 148. Pseudososibia undulatomarginata gen. nov. & sp. nov., female, apex of abdomen, lateral view. 149. Pseudososibia undulatomarginata gen. nov. & sp. nov., female, apex of abdomen, dorsal view. 150. Pseudososibia undulatomarginata gen. nov. & sp. nov., male, apex of abdomen, lateral view. 151. Pseudososibia undulatomarginata gen. nov. & sp. nov., male, apex of abdomen, dorsal view. 152. Sipyloidea tuberculata sp. nov., female, apex of abdomen, lateral view. 153. Sipyloidea tuberculata sp. nov., female, apex of abdomen, dorsal view. 154. Sipyloidea tuberculata sp. nov., egg, lateral view. 155. Sipyloidea tuberculata sp. nov., egg, dorsal view. in Contribution to the knowledge of Chinese Phasmatodea V: New taxa and new nomenclatures of the subfamilies Necrosciinae (Diapheromeridae) and Lonchodinae (Phasmatidae) from the Phasmatodea of China

PLATE VII. [scale bars: apex of abdomen = 5 mm, egg = 1 mm] 124. Oxyartes jinpingensis sp. nov., female, apex of abdomen, lateral view. 125. Oxyartes jinpingensis sp. nov., female, apex of abdomen, dorsal view. 126. Oxyartes jinpingensis sp. nov., male, apex of abdomen, lateral view. 127. Oxyartes jinpingensis sp. nov., male, apex of abdomen, dorsal view. 128. Oxyartes rubris sp. nov., female, apex of abdomen, lateral view. 129. Oxyartes rubris sp. nov., female, apex of abdomen, dorsal view. 130. Oxyartes rubris sp. nov., male, apex of abdomen, lateral view. 131. Oxyartes rubris sp. nov., male, apex of abdomen, dorsal view. 132. Planososibia brevialata sp. nov., female, apex of abdomen, lateral view. 133. Planososibia brevialata sp. nov., female, apex of abdomen, dorsal view. 134. Planososibia brevialata sp. nov., male, apex of abdomen, lateral view. 135. Planososibia brevialata sp. nov., male, apex of abdomen, dorsal view. 136. Planososibia liui sp. nov., female, apex of abdomen, lateral view. 137. Planososibia liui sp. nov., female, apex of abdomen, dorsal view. 138. Planososibia liui sp. nov., male, apex of abdomen, lateral view. 139. Planososibia liui sp. nov., male, apex of abdomen, dorsal view. 140. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., female, apex of abdomen, lateral view. 141. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., female, apex of abdomen, dorsal view. 142. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., male, apex of abdomen, lateral view. 143. Pseudososibia brachyptera (Chen & He, 2004) gen. nov. & comb. nov., male, apex of abdomen, dorsal view. 144. Pseudososibia cristata gen. nov. & sp. nov., female, apex of abdomen, lateral view. 145. Pseudososibia cristata gen. nov. & sp. nov., female, apex of abdomen, dorsal view. 146. Pseudososibia cristata gen. nov. & sp. nov., male, apex of abdomen, lateral view. 147. Pseudososibia cristata gen. nov. & sp. nov., male, apex of abdomen, dorsal view. 148. Pseudososibia undulatomarginata gen. nov. & sp. nov., female, apex of abdomen, lateral view. 149. Pseudososibia undulatomarginata gen. nov. & sp. nov., female, apex of abdomen, dorsal view. 150. Pseudososibia undulatomarginata gen. nov. & sp. nov., male, apex of abdomen, lateral view. 151. Pseudososibia undulatomarginata gen. nov. & sp. nov., male, apex of abdomen, dorsal view. 152. Sipyloidea tuberculata sp. nov., female, apex of abdomen, lateral view. 153. Sipyloidea tuberculata sp. nov., female, apex of abdomen, dorsal view. 154. Sipyloidea tuberculata sp. nov., egg, lateral view. 155. Sipyloidea tuberculata sp. nov., egg, dorsal view.

opennotspecifiedDec 2017View details →
zenodo32/100

ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Terra (2012_137-152)

<p><span>The <strong><span>E</span></strong>ssential therma<strong><span>l</span></strong> <strong><span>I</span></strong>nfrared remo<strong><span>T</span></strong>e s<strong><span>E</span></strong>nsing (<strong><span>ELITE</span></strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (</span><span><a href="https://elite.bnu.edu.cn/"><span>https://elite.bnu.edu.cn</span></a></span><span>).</span></p> <p><span>This dataset is ELITE <span>surface longwave downward radiation (SLDR)</span> product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed <span>by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</span></span></p> <p><span>This is the ELITE SLDR product in 2012 (DOY: 137-152). Please <em><strong><span>click here</span></strong></em> to download the ELITE SLDR product in 2012 (DOY: 153-167).</span></p> <p><strong><span>Dataset Characteristics:</span></strong></p> <ul> <li><span>Spatial Coverage: Global</span></li> <li><span>Temporal Coverage: 2012-05-16 ~ 2012-05-31</span></li> <li><span>Spatial Resolution: 1 km</span></li> <li><span>Temporal Resolution: 5-min</span></li> <li><span>Data Format: h5</span></li> <li><span>Projection: Sinusoidal</span></li> <li><span>Scale: 0.05</span></li> <li><span>Offset: -1000</span></li> </ul> <p><strong><span>Citation</span></strong><span>(Please cite these papers when using the data)<strong><span>:</span></strong></span></p> <ol> <li><span>Cheng J, Liang S. Global estimates for high-spatial-resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 2016, 54(7): 4115-4129. </span></li> <li><span>Cheng J, Liang S, Wang W, et al. An efficient hybrid method for estimating clear‐sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 2017, 122(5): 2616-2630.</span></li> <li><span>Yang F, Cheng J. A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 2020, 248: 111972.</span></li> </ol> <p><span>&nbsp;</span></p> <p><span>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</span></p>

opencc-zeroApr 2024View details →
zenodo32/100

ELITE SLWR: global 1km 5-min SLUR at SIN Grid-Terra (2012_137-152)

<p><span>The <strong><span>E</span></strong>ssential therma<strong><span>l</span></strong> <strong><span>I</span></strong>nfrared remo<strong><span>T</span></strong>e s<strong><span>E</span></strong>nsing (<strong><span>ELITE</span></strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (</span><span><a href="https://elite.bnu.edu.cn/"><span>https://elite.bnu.edu.cn</span></a></span><span>).</span></p> <p><span>This dataset is ELITE <span>surface longwave upward radiation (SLUR)</span> product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016).</span></p> <p><span>This is the ELITE SLUR product in 2012 (DOY: 137-152). Please <a href="../records/11083605"><em><strong><span>click here</span></strong></em></a> to download the ELITE SLUR product in 2012 (DOY: 153-167).</span></p> <p><strong><span>Dataset Characteristics:</span></strong></p> <ul> <li><span>Spatial Coverage: Global</span></li> <li><span>Temporal Coverage: 2012-05-16 ~ 2012-05-31</span></li> <li><span>Spatial Resolution: 1 km</span></li> <li><span>Temporal Resolution: 5-min</span></li> <li><span>Data Format: h5</span></li> <li><span>Projection: Sinusoidal</span></li> <li><span>Scale: 0.05</span></li> <li><span>Offset: -1000</span></li> </ul> <p><strong><span>Citation</span></strong><span>(Please cite these papers when using the data)<strong><span>:</span></strong></span></p> <ol> <li><span>Cheng, J., &amp; Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129.</span></li> </ol> <p><span>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</span></p>

opencc-zeroApr 2024View details →
zenodo32/100

ELITE SLWR: global 1km 5-min SLDR at SIN Grid-Aqua (2012_137-152)

<p><span>The <strong><span>E</span></strong>ssential therma<strong><span>l</span></strong> <strong><span>I</span></strong>nfrared remo<strong><span>T</span></strong>e s<strong><span>E</span></strong>nsing (<strong><span>ELITE</span></strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (</span><span><a href="https://elite.bnu.edu.cn/"><span>https://elite.bnu.edu.cn</span></a></span><span>).</span></p> <p><span>This dataset is ELITE <span>surface longwave downward radiation (SLDR)</span> product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed <span>by Cheng et al. (2016), Cheng et al. (2017) and Yang and Cheng. (2020).</span></span></p> <p><span>This is the ELITE SLDR product in 2012 (DOY: 137-152). Please <a href="../records/11120909"><em><strong><span>click here</span></strong></em></a> to download the ELITE SLDR product in 2013 (DOY: 153-167).</span></p> <p><strong><span>Dataset Characteristics:</span></strong></p> <ul> <li><span>Spatial Coverage: Global</span></li> <li><span>Temporal Coverage: 2012-05-16 ~ 2012-05-31</span></li> <li><span>Spatial Resolution: 1 km</span></li> <li><span>Temporal Resolution: 5-min</span></li> <li><span>Data Format: h5</span></li> <li><span>Projection: Sinusoidal</span></li> <li><span>Scale: 0.05</span></li> <li><span>Offset: -1000</span></li> </ul> <p><strong><span>Citation</span></strong><span>(Please cite these papers when using the data)<strong><span>:</span></strong></span></p> <ol> <li><span>Cheng J, Liang S. Global estimates for high-spatial-resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 2016, 54(7): 4115-4129. </span></li> <li><span>Cheng J, Liang S, Wang W, et al. An efficient hybrid method for estimating clear‐sky surface downward longwave radiation from MODIS data. Journal of Geophysical Research: Atmospheres, 2017, 122(5): 2616-2630.</span></li> <li><span>Yang F, Cheng J. A framework for estimating cloudy sky surface downward longwave radiation from the derived active and passive cloud property parameters. Remote Sensing of Environment, 2020, 248: 111972.</span></li> </ol> <p><span>&nbsp;</span></p> <p><span>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</span></p>

opencc-zeroMay 2024View details →
zenodo32/100

ELITE SLWR: global 1km 5-min SLUR at SIN Grid-Aqua (2012_137-152)

<p><span>The <strong><span>E</span></strong>ssential therma<strong><span>l</span></strong> <strong><span>I</span></strong>nfrared remo<strong><span>T</span></strong>e s<strong><span>E</span></strong>nsing (<strong><span>ELITE</span></strong>) product suite currently has four types of products, including land surface temperature (LST: clear-sky and all-sky), emissivity (NBE: narrowband emissivity; BBE: broadband emissivity; and spectral emissivity), the component of surface radiation and energy budget (SLUR: surface longwave upwelling radiation; SLDR: surface longwave downward radiation SLDR; SLNR: surface longwave net radiation), and the component of Earth&rsquo;s radiation budget (OLR; outgoing longwave radiation; RSR: reflected solar radiation). The spatial-temporal resolutions of the ELITE products are mainly determined by the employed satellite data sources. For more information about ELITE products, please refer to the website (</span><span><a href="https://elite.bnu.edu.cn/"><span>https://elite.bnu.edu.cn</span></a></span><span>).</span></p> <p><span>This dataset is ELITE <span>surface longwave upward radiation (SLUR)</span> product at 1km spatial resolution and 5-min temporal resolution. It is provided on a Sinusoidal grid and ranges from 2000 to 2022 (continuously updated). This dataset was generated from the Moderate Resolution Imaging Spectrometer (MODIS) data using the algorithms developed by Cheng et al. (2016).</span></p> <p><span>This is the ELITE SLUR product in 2012 (DOY: 137-152). Please <a href="../records/11193052"><em><strong><span>click here</span></strong></em></a> to download the ELITE SLUR product in 2012 (DOY: 153-167).</span></p> <p><strong><span>Dataset Characteristics:</span></strong></p> <ul> <li><span>Spatial Coverage: Global</span></li> <li><span>Temporal Coverage: 2012-05-16 ~ 2012-05-31</span></li> <li><span>Spatial Resolution: 1 km</span></li> <li><span>Temporal Resolution: 5-min</span></li> <li><span>Data Format: h5</span></li> <li><span>Projection: Sinusoidal</span></li> <li><span>Scale: 0.05</span></li> <li><span>Offset: -1000</span></li> </ul> <p><strong><span>Citation</span></strong><span>(Please cite these papers when using the data)<strong><span>:</span></strong></span></p> <ol> <li><span>Cheng, J., &amp; Liang, S. (2016). Global estimates for high spatial resolution clear-sky land surface upwelling longwave radiation from MODIS data. IEEE Transactions on Geoscience and Remote Sensing, 54, 4115-4129.</span></li> </ol> <p><span>If you have any questions, please contact Prof. Jie Cheng (<a href="mailto:eliteqrs@126.com">eliteqrs@126.com</a>).</span></p>

opencc-zeroMay 2024View details →
zenodo32/100

FIGURES 137–142 in Leaf-footed Bugs (Hemiptera: Heteroptera: Coreidae) of Colombia: Annotated checklist, distribution, and description of a new species

FIGURES 137–142. Discogastrini species in Colombia. 137. Cnemomis cognata, 138. Cnemomis gracilis, 139. Discogaster subferrugineus, 140. Karnaviexallis johanseni, 141. Savius diversicornis, 142. Scamurius amabilis. Scale bar: 10 mm.

opennotspecifiedMay 2024View details →
zenodo32/100

Fig. 137. Tmarus galapagosensis Baert, 2013. A in Updated checklist, origin, distribution, literature and genital drawings of the spiders of the Galápagos Islands

Fig. 137. Tmarus galapagosensis Baert, 2013. A, female, lateral view. B-C, left male palp. B, ventral view. C, retrolateral view. D, cleared female vulva, spermathecae. E-F, female epigynum, ventral view. © M. Leclercq.

opennotspecifiedNov 2023View details →
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Sion 1640 - Building 137 (LoD-1)

<u>Coordinates</u>: N/A <br><u>Length</u>: 19.9 m<br><u>Width</u>: 17.34 m<br><u>Height</u>: 11.61 m<br><u>Vertices</u>: 30 <br><u>Primitives</u>: 16 <br><br> The Length, Width, Height, Vertices and Primitives listed above have been derived directly from the OBJ file.<br><br><u>Main Files:</u><br><table><tbody><tr><th>Filename</th><th>.mtl</th><th>.glb</th><th>.xml</th><th>.obj</th></tr><tr><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137.mtl/content">0___LoD1__id-137.mtl</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137.mtl/content">Link</a></td><td></td><td></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137.obj/content">0___LoD1__id-137.obj</a></td><td></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137.obj/content">Link</a></td></tr><tr><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137.glb/content">0___LoD1__id-137.glb</a></td><td></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137.glb/content">Link</a></td><td></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12690762/files/11250410_edm.xml/content">11250410_edm.xml</a></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12690762/files/11250410_edm.xml/content">Link</a></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12690762/files/11250410_metsmods.xml/content">11250410_metsmods.xml</a></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12690762/files/11250410_metsmods.xml/content">Link</a></td><td></td></tr></tbody></table><br><br><u>Thumbnails:</u><br><table><tbody><tr><th>Perspective</th><th>1000x1000</th><th>512x512</th><th>256x256</th><th>128x128</th></tr><tr><td>Perspective 1</td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_1.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_1_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_1_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_1_128x128.png/content">Link</a></td></tr><tr><td>Perspective 2</td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_2.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_2_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_2_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_2_128x128.png/content">Link</a></td></tr><tr><td>Perspective 3</td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_3.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_3_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_3_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_3_128x128.png/content">Link</a></td></tr><tr><td>Perspective 4</td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_4.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_4_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_4_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_4_128x128.png/content">Link</a></td></tr><tr><td>Perspective Top</td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_top.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_top_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_top_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12690762/files/0___LoD1__id-137_perspective_top_128x128.png/content">Link</a></td></tr></tbody></table><br><br><br><u>Changelog</u>: <br>&nbsp;&nbsp;- v<a href="https://doi.org/10.5281/zenodo.11489181">0.0.2</a>: Thumbnails added, Description updated with Link Tables.<br>&nbsp;&nbsp;- v<a href="https://doi.org/10.5281/zenodo.12690762">0.0.3</a>: Added XMLs for Europeana Data Model (EDM) and MetsMods.<br>

opencc-by-4.0May 2024View details →
zenodo32/100

FIGURES 134–137 in Review of the genus Scolopostethus Fieber, 1860 (Hemiptera: Heteroptera: Rhyparochromidae) from Central Asia with description of a new species

FIGURES 134–137. Localities of Scolopostethus species on the territory of former Soviet Central Asia based on materials from the ZISP collection: 134—S. decoratus; 135—S. lethierryi (red circle) and S. pillosus (blue circle); 136—S. ferganensis sp. n.; 137—S. thomsoni. Used map: https://www.shadedrelief.com/world/Data/map1_type.jpg by Tom Patterson, February 2018.

opennotspecifiedJul 2024View details →
zenodo32/100

FIGURES 128–137 in The South American spider genera Mesabolivar and Carapoia (Araneae, Pholcidae): new species and a framework for redrawing generic limits

FIGURES 128–137. Female epigyna in ventral and lateral views and cleared female genitalia, dorsal views, Mesabolivar aurantiacus group. 128–129. M. macushi sp. n. (ZFMK Ar 18962). 130–132. M. spinosus (González-Sponga, 2005) (MIZA MAGS 1176). 133–134. M. tabatinga sp. n. (ZFMK Ar 18992). 135–137. M. anseriformis (González-Sponga, 2011) (ZFMK, Ven02/100-14).

opennotspecifiedMar 2018View details →
zenodo32/100

Supplementary material 3 from: Bragança PHN, Amorim PF, Costa WJEM (2018) Pantanodontidae (Teleostei, Cyprinodontiformes), the sister group to all other cyprinodontoid killifishes as inferred by molecular data. Zoosystematics and Evolution 94(1): 137-145. https://doi.org/10.3897/zse.94.22173

Maximum Likelihood (A) and Bayesian Inference (B) analysis including the 16S gene. : Explanation note: Maximum Likelihood (A) and Bayesian Inference (B) analysis including segments of the nuclear genes ENC1, GLYT, MYH6, SH3PX3, RAG1, the mitochondrial genes 16S and first and second codon position of the COI. In ML, bootstrap values under 50 are not represented, and posterior probability values under 0.5 are not represented in BI.

opencc-zeroApr 2018View details →
zenodo32/100

Supplementary material 5 from: Bragança PHN, Amorim PF, Costa WJEM (2018) Pantanodontidae (Teleostei, Cyprinodontiformes), the sister group to all other cyprinodontoid killifishes as inferred by molecular data. Zoosystematics and Evolution 94(1): 137-145. https://doi.org/10.3897/zse.94.22173

Bayesian Inference tree : Explanation note: Bayesian inference tree comprising segments of the nuclear genes ENC1, GLYT, MYH6, SH3PX3, RAG1 and first and second codon position of the mitochondrial gene COI (5,083 bp). Numbers on each node are posterior probablity values; values under 50 are not present in the tree.

opencc-zeroApr 2018View details →
zenodo32/100

Supplementary material 9 from: Staab M, Hita Garcia F, Liu C, Xu Z-H, Economo EP (2018) Systematics of the ant genus Proceratium Roger (Hymenoptera, Formicidae, Proceratiinae) in China – with descriptions of three new species based on micro-CT enhanced next-generation-morphology. ZooKeys 770: 137-192. https://doi.org/10.3897/zookeys.770.24908

Video 7 : Explanation note: Proceratium longigaster non-type worker (CASENT0790673). 3D rotation video based on volumetric surface rendering of full body.

opencc-zeroJul 2018View details →

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