Fetching the paper…
Reading the bibliography…
Earth Observation (EO) provides critical planetary data for environmental monitoring, disaster management, climate science, and other scientific domains.
Global forest watch
Watch, G. F · 2002
Earlier work this paper cites.
Disappearing arctic lakes
Smith, L. C., Sheng, Y., MacDonald, G., and Hinzman, L · 2005
Earlier work this paper cites.
Ecosystem dynamics and export production in the central and eastern equatorial pacific: A modeling study of impact of enso
Wang, X., Christian, J. R., Murtugudde, R., and Busalacchi, A. J · 2005
Earlier work this paper cites.
Monitoring the impact of surface albedo on a saline lake in sw russia
Argaman, E., Keesstra, S., and Zeiliguer, A · 2012
Earlier work this paper cites.
Quantifying renewable groundwater stress with grace
Richey, A. S., Thomas, B. F., Lo, M.-H., Reager, J. T., Famiglietti, J. S., Voss, K., Swenson, S., and Rodell, M · 2015
Earlier work this paper cites.
The collection 6 modis active fire detection algorithm and fire products
Giglio, L., Schroeder, W., and Justice, C. O · 2016
Earlier work this paper cites.
A mangrove forest map of china in 2015: Analysis of time series landsat 7/8 and sentinel-1a imagery in google earth engine cloud computing platform
Chen, B., Xiao, X., Li, X., Pan, L., Doughty, R., Ma, J., Dong, J., Qin, Y., Zhao, B., Wu, Z., et al · 2017
Earlier work this paper cites.
Google earth engine: Planetary-scale geospatial analysis for everyone
Gorelick, N., Hancher, M., Dixon, M., Ilyushchenko, S., Thau, D., and Moore, R · 2017
Earlier work this paper cites.
Know what you don’t know: Unanswerable questions for squad
Rajpurkar, P., Jia, R., and Liang, P · 2018
Earlier work this paper cites.
Leveraging the google earth engine for drought assessment using global soil moisture data
Sazib, N., Mladenova, I., and Bolten, J · 2018
Earlier work this paper cites.
Global flood monitoring using satellite precipitation and hydrological modeling
Wu, H., Gu, G., Yan, Y., Gao, Z., and Adler, R. F · 2018
Earlier work this paper cites.
Yu, T., Zhang, R., Yang, K., Yasunaga, M., Wang, D., Li, Z., Ma, J., Li, I., Yao, Q., Roman, S., et al · 2018
Earlier work this paper cites.
China and india lead in greening of the world through land-use management
Chen, C., Park, T., Wang, X., Piao, S., Xu, B., Chaturvedi, R. K., Fuchs, R., Brovkin, V., Ciais, P., Fensholt, R., et al · 2019
Earlier work this paper cites.
Pathvqa: 30000+ questions for medical visual question answering
He, X., Zhang, Y., Mou, L., Xing, E., and Xie, P · 2020
Earlier work this paper cites.
Measuring massive multitask language understanding
Hendrycks, D., Burns, C., Basart, S., Zou, A., Mazeika, M., Song, D., and Steinhardt, J · 2020
Earlier work this paper cites.
Evaluating large language models trained on code
Chen, M., Tworek, J., Jun, H., Yuan, Q., Pinto, H. P. D. O., Kaplan, J., Edwards, H., Burda, Y., Joseph, N., Brockman, G., et al · 2021
Earlier work this paper cites.
Text-to-sql in the wild: A naturally-occurring dataset based on stack exchange data
Hazoom, M., Malik, V., and Bogin, B · 2021
Earlier work this paper cites.
Gymee: a global field-scale crop yield and et mapper in google earth engine based on landsat, weather, and soil data
Jaafar, H. and Mourad, R · 2021
Earlier work this paper cites.
(qa)2: Question answering with questionable assumptions
Kim, N., Htut, P. M., Bowman, S. R., and Petty, J · 2022
Cited alongside, same era.
Variation trends and attribution analysis of lakes in the qiangtang plateau, the endorheic basin of the tibetan plateau
Li, M., Weng, B., Yan, D., Bi, W., and Wang, H · 2022
Cited alongside, same era.
Land use and land cover mapping using sentinel-2, landsat-8 satellite images, and google earth engine: A comparison of two composition methods
Nasiri, V., Deljouei, A., Moradi, F., Sadeghi, S. M. M., and Borz, S. A · 2022
Cited alongside, same era.
Global maps of cropland extent and change show accelerated cropland expansion in the twenty-first century
Potapov, P., Turubanova, S., Hansen, M. C., Tyukavina, A., Zalles, V., Khan, A., Song, X.-P., Pickens, A., Shen, Q., and Cortez, J · 2022
Cited alongside, same era.
Scienceqa: A novel resource for question answering on scholarly articles
Saikh, T., Ghosal, T., Mittal, A., Ekbal, A., and Bhattacharyya, P · 2022
Grattafiori, A., Dubey, A., Jauhri, A., Pandey, A., Kadian, A., Al-Dahle, A., Letman, A., Mathur, A., Schelten, A., Vaughan, A., et al · 2024
Later among the works it cites.
Qwen2. 5-coder technical report
Hui, B., Yang, J., Cui, Z., Yang, J., Liu, D., Zhang, L., Liu, T., Zhang, J., Yu, B., Lu, K., et al · 2024
Later among the works it cites.
Hurst, A., Lerer, A., Goucher, A. P., Perelman, A., Ramesh, A., Clark, A., Ostrow, A., Welihinda, A., Hayes, A., Radford, A., et al · 2024
Later among the works it cites.
Leveraging large language models for predictive chemistry
Jablonka, K. M., Schwaller, P., Ortega-Guerrero, A., and Smit, B · 2024
Later among the works it cites.
Livecodebench: Holistic and contamination free evaluation of large language models for code
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Cited alongside, same era.
Mapping actual evapotranspiration using landsat for the conterminous united states: Google earth engine implementation and assessment of the ssebop model
Senay, G. B., Friedrichs, M., Morton, C., Parrish, G. E., Schauer, M., Khand, K., Kagone, S., Boiko, O., and Huntington, J · 2022
Cited alongside, same era.
Swe-bench: Can language models resolve real-world github issues?
Jimenez, C. E., Yang, J., Wettig, A., Yao, S., Pei, K., Press, O., and Narasimhan, K · 2023
Cited alongside, same era.
Unprecedented lake expansion in 2017–2018 on the tibetan plateau: Processes and environmental impacts
Lei, Y., Yao, T., Sheng, Y., Yang, K., Yang, W., Li, S., Zhou, J., Jiang, Y., and Yu, Y · 2023
Cited alongside, same era.
Can llm already serve as a database interface? a big bench for large-scale database grounded text-to-sqls
Li, J., Hui, B., Qu, G., Yang, J., Li, B., Li, B., Wang, B., Qin, B., Geng, R., Huo, N., et al · 2023
Cited alongside, same era.
Reflexion: Language agents with verbal reinforcement learning
Shinn, N., Cassano, F., Gopinath, A., Narasimhan, K., and Yao, S · 2023
Cited alongside, same era.
Scibench: Evaluating college-level scientific problem-solving abilities of large language models
Wang, X., Hu, Z., Lu, P., Zhu, Y., Zhang, J., Subramaniam, S., Loomba, A. R., Zhang, S., Sun, Y., and Wang, W · 2023
Cited alongside, same era.
A fully automatic and high-accuracy surface water mapping framework on google earth engine using landsat time-series
Yue, L., Li, B., Zhu, S., Yuan, Q., and Shen, H · 2023
Cited alongside, same era.
Jain, N., Han, K., Gu, A., Li, W.-D., Yan, F., Zhang, T., Wang, S., Solar-Lezama, A., Sen, K., and Stoica, I · 2024
Later among the works it cites.
Lab-bench: Measuring capabilities of language models for biology research
Laurent, J. M., Janizek, J. D., Ruzo, M., Hinks, M. M., Hammerling, M. J., Narayanan, S., Ponnapati, M., White, A. D., and Rodriques, S. G · 2024
Later among the works it cites.
Spider 2.0: Evaluating language models on real-world enterprise text-to-sql workflows
Lei, F., Chen, J., Ye, Y., Cao, R., Shin, D., Su, H., Suo, Z., Gao, H., Hu, W., Yin, P., et al · 2024
Later among the works it cites.
Scemqa: A scientific college entrance level multimodal question answering benchmark
Liang, Z., Guo, K., Liu, G., Guo, T., Zhou, Y., Yang, T., Jiao, J., Pi, R., Zhang, J., and Zhang, X · 2024
Later among the works it cites.
Liu, A., Feng, B., Xue, B., Wang, B., Wu, B., Lu, C., Zhao, C., Deng, C., Zhang, C., Ruan, C., et al · 2024
Later among the works it cites.
Augmenting large language models with chemistry tools
M. Bran, A., Cox, S., Schilter, O., Baldassari, C., White, A. D., and Schwaller, P · 2024
Later among the works it cites.
Swt-bench: Testing and validating real-world bug-fixes with code agents
Mündler, N., Müller, M., He, J., and Vechev, M · 2024
Later among the works it cites.
Quantifying shoreline dynamics in the indian sundarban delta with google earth engine (gee)-based automatic extraction approach
Santra, M., Dwivedi, C. S., and Pandey, A. C · 2024
Later among the works it cites.
Delocalized, asynchronous, closed-loop discovery of organic laser emitters
Strieth-Kalthoff, F., Hao, H., Rathore, V., Derasp, J., Gaudin, T., Angello, N. H., Seifrid, M., Trushina, E., Guy, M., Liu, J., et al · 2024
Later among the works it cites.
The virtual lab: Ai agents design new sars-cov-2 nanobodies with experimental validation
Swanson, K., Wu, W., Bulaong, N. L., Pak, J. E., and Zou, J · 2024
Later among the works it cites.
Mdcrow: Automating molecular dynamics workflows with large language models
Campbell, Q., Cox, S., Medina, J., Watterson, B., and White, A. D · 2025
Closest in time.
Deepseek-r1: Incentivizing reasoning capability in llms via reinforcement learning
Guo, D., Yang, D., Zhang, H., Song, J., Zhang, R., Xu, R., Zhu, Q., Ma, S., Wang, P., Bi, X., et al · 2025
Closest in time.
Integrating machine learning and large language models to advance exploration of electrochemical reactions
Zheng, Z., Florit, F., Jin, B., Wu, H., Li, S.-C., Nandiwale, K. Y., Salazar, C. A., Mustakis, J. G., Green, W. H., and Jensen, K. F · 2025
Closest in time.