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Dr. rer. nat. Daniel Hernandez University of Stuttgart

Visualizing How-Provenance Explanations for SPARQL Queries, , , und . Proceedings of the ACM Web Conference 2023, Seite 212-216. New York, NY, United States, Association for Computing Machinery, (2023)

Univ. -Prof. Dr. Daniel Weiskopf University of Stuttgart

Dataset for NMF-based Analysis of Mobile Eye-Tracking Data, , , und . Dataset, (2024)Related to: Daniel Klötzl, Tim Krake, Frank Heyen, Michael Becher, Maurice Koch, Daniel Weiskopf, and Kuno Kurzhals. 2024. NMF-Based Analysis of Mobile Eye-Tracking Data. In 2024 Symposium on Eye Tracking Research and Applications (ETRA ’24), June 4-7, 2024, Glasgow, United Kingdom. ACM, New York, NY, USA, 9 pages. doi: 10.1145/3649902.3653518.
Dataset for NMF-based Analysis of Mobile Eye-Tracking Data, , , und . Dataset, (2024)Related to: Daniel Klötzl, Tim Krake, Frank Heyen, Michael Becher, Maurice Koch, Daniel Weiskopf, and Kuno Kurzhals. 2024. NMF-Based Analysis of Mobile Eye-Tracking Data. In 2024 Symposium on Eye Tracking Research and Applications (ETRA ’24), June 4-7, 2024, Glasgow, United Kingdom. ACM, New York, NY, USA, 9 pages. doi: 10.1145/3649902.3653518.Visual Analysis System to Explore the Visual Quality of Multidimensional Time Series Projections, und . Software, (2024)Related to: T. Munz-Körner, D. Weiskopf, Exploring visual quality of multidimensional time series projections, Visual Informatics (2024). doi: 10.1016/j.visinf.2024.04.004.Supplemental Material for "Exploring Visual Quality of Multidimensional Time Series Projections", und . Dataset, (2024)Related to: T. Munz-Körner, D. Weiskopf, Exploring visual quality of multidimensional time series projections, Visual Informatics (2024). doi: 10.1016/j.visinf.2024.04.004.
 

Weitere Publikationen von Autoren mit dem selben Namen

Foot function enabled by human walking dynamics, , und . Physical review. E, Statistical, nonlinear, and soft matter physics, 106 (6): 064405 (2022)ATRIAS: Design and validation of a tether-free 3D-capable spring-mass bipedal robot., , , , , , und . I. J. Robotics Res., 35 (12): 1497-1521 (2016)Effects of a neuromuscular controller on a powered ankle exoskeleton during human walking., , , , , , , und . BioRob, Seite 617-622. IEEE, (2016)Exciting Engineered Passive Dynamics in a Bipedal Robot., , , , und . IEEE Trans. Robotics, 31 (5): 1244-1251 (2015)The development of a biomechanical leg system and its neural control., , , und . ROBIO, Seite 1894-1899. IEEE, (2009)Foot function enabled by human walking dynamics, , , und . Physical review. E, Statistical, nonlinear, and soft matter physics, 106 (6): 064405 (2022)A Foot function enabled by human walking dynamics, , , und . A Physical review. E, Statistical, nonlinear, and soft matter physics, 106 (6): 064405 (2022)Compliant ankles and flat feet for improved self-stabilization and passive dynamics of the biped robot "RunBot"., , , , , und . Humanoids, Seite 276-281. IEEE, (2011)