Search results
-
Full text
-
Document type
-
Organisation
Filter results
Results: 57,925
Number of items: 57,925
-
Wagner-Cremer, F., Gosling, W. D., León-Yánez, S., Urrego, D. H., Hagemans, K., Donders, T. H., Toth, C.-D., & Ormaza, M. (2020). Pollen counts and vegetation composition data of surface samples from Cajas National park, Ecuadorian Andes [Data set]. PANGAEA. https://doi.org/10.1594/pangaea.922681
-
Chapman, S., Di Pietro, L., Grosvenor, K. T., & Yan, Z. (2020). Renormalization of Galilean electrodynamics. Journal of High Energy Physics, 2020(10), Article 195. https://doi.org/10.1007/JHEP10(2020)195 -
Zhang, L., Jiang, W., & Zhao, Z. (2020). Short-Text Feature Expansion and Classification Based on Non-negative Matrix Factorization. In X. Chen, H. Yan, Q. Yan, & X. Zhang (Eds.), Machine Learning for Cyber Security : Third International Conference, ML4CS 2020, Guangzhou, China, October 8–10, 2020 : Proceedings (Vol. III, pp. 347-362). (Lecture Notes in Computer Science; Vol. 12488). Springer. https://doi.org/10.1007/978-3-030-62463-7_32
-
Waldron, A., Adams, V., Allan, J., Arnell, A., Atkinson, S., Baccini, A., Baillie, J. E. M., Balmford, A., Beau, J. A., Brander, L., Brondizio, E., Bruner, A., Burgess, N., Burkart, K., Butchart, S., Button, R., Carasco, R., Cheung, W., Christensen, V., ... Zhang, Y. P. (2020). Protecting 30% of the planet for nature: costs, benefits, and economic implications: Working paper analysing the economic implications of the proposed 30% target for areal protection in the draft post-2020 Global Biodiversity Framework. Conservation Science Group University of Cambridge. https://doi.org/10.13140/RG.2.2.19950.64327 -
Hernández-Cervantes, A., Znaidi, S., van Wijlick, L., Denega, I., Basso, V., Ropars, J., Sertour, N., Sullivan, D., Moran, G., Basmaciyan, L., Bon, F., Dalle, F., Bougnoux, M.-E., Boekhout, T., Yang, Y., Li, Z., Bachellier-Bassi, S., & d'Enfert, C. (2020). A conserved regulator controls asexual sporulation in the fungal pathogen Candida albicans. Nature Communications, 11, Article 6224. https://doi.org/10.1038/s41467-020-20010-9 -
Fonseca, M. M., Pallini, A., Marques, P. H., Lima, E., & Janssen, A. (2020). Compatibility of two predator species for biological control of the two-spotted spider mite. Experimental and Applied Acarology, 80(3), 409-422. https://doi.org/10.1007/s10493-020-00472-8 -
Lopez-Honorez, L., Mena, O., Palomares-Ruiz, S., Villanueva-Domingo, P., & Witte, S. J. (2020). Variations in fundamental constants at the cosmic dawn. Journal of Cosmology and Astroparticle Physics, 2020(6), Article 026. https://doi.org/10.1088/1475-7516/2020/06/026 -
Webb, R. K., Brogi, M., Gandhi, S., Line, M. R., Birkby, J. L., Chubb, K. L., Snellen, I. A. G., & Yurchenko, S. N. (2020). A weak spectral signature of water vapour in the atmosphere of HD 179949 b at high spectral resolution in the L band. Monthly Notices of the Royal Astronomical Society, 494(1), 108-119. https://doi.org/10.1093/mnras/staa715 -
Mendieta-Leiva, G., Ramos, F. N., Elias, J. P. C., Zotz, G., Acuña-Tarazona, M., Seehaber Alvim, F., Barbosa, D. E. F., Basílio, G. A., Batke, S. P., Benavides, A. M., Blum, C. T., Boelter, C. R., Brancalion, P. H. S., Carmona, M. J., Carvalho, L. P., de la Rosa-Manzano, E., Einzmann, H. J. R., Fernández, M., Furtado, S. G., ... Jiménez-Alfaro, B. (2020). EpIG-DB: A database of vascular epiphyte assemblages in the Neotropics. Journal of Vegetation Science, 31(3), 518-528. https://doi.org/10.1111/jvs.12867 -
Varolgünes, Y. B., Bereau, T., & Rudzinski, J. F. (2020). Interpretable embeddings from molecular simulations using Gaussian mixture variational autoencoders. Machine Learning: Science and Technology, 1(1), Article 015012. https://doi.org/10.1088/2632-2153/ab80b7
Page 1189 of 5793