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Bridging Local Cyberinfrastructure and XSEDE with CyberGIS-Jupyter., , , and . PEARC, page 95:1-95:3. ACM, (2019)Reproducible Hydrological Modeling with CyberGIS-Jupyter: A Case Study on SUMMA., , , , , , , and . PEARC, page 21:1-21:6. ACM, (2019)A vector-based method for drainage network analysis based on LiDAR data., , , , , and . Comput. Geosci., (2021)An integrated cyberGIS and machine learning framework for fine-scale prediction of Urban Heat Island using satellite remote sensing and urban sensor network data., , , , and . Urban Inform., (2022)Ndist2vec: Node with Landmark and New Distance to Vector Method for Predicting Shortest Path Distance along Road Networks., , , , , , and . ISPRS Int. J. Geo Inf., 11 (10): 514 (2022)A cyberGIS approach to exploring neighborhood-level social vulnerability for disaster risk management., , , , , , and . Trans. GIS, 27 (7): 1942-1958 (November 2023)Spatiotemporal assessments of nutrients and water quality in coastal areas using remote sensing and a spatiotemporal deep learning model., , , , , , and . Int. J. Appl. Earth Obs. Geoinformation, (2022)A deep trajectory clustering method based on sequence-to-sequence autoencoder model., , , , , , , , and . Trans. GIS, 26 (4): 1801-1820 (2022)CyberGIS for Scalable Remote Sensing Data Fusion., , , , , and . PEARC, page 35:1-35:4. ACM, (2022)