Biblio
(2025). Assessing the Environmental Impact of IoT Devices - Hotspots and Guidelines for a Better Understanding.
2025 IEEE International Conference on Engineering, Technology, and Innovation (ICE/ITMC). 1–11.
(2013). Codimension one partially hyperbolic diffeomorphisms with a uniformly compact center foliation.
J. Mod. Dyn.. 7(4),
(2025). Dynamic Use-Phase Variability In IoT-Enabled Systems: A Simulation-Based Case Study Of Smart Thermostats.
ECMS 2025 Proceedings edited by Marco Scarpa, Salvatore Cavalieri, Salvatore Serrano, Fabrizio De Vita. 711–717.
(2024). Environmental Impact Assessment of IoT Devices: A Graph-based Approach.
Procedia Computer Science. 236, 338–347.
(2016). Existence of an attractor for a geometric tetrahedron transformation.
Differential Geom. Appl.. 49,
(2025). Faster-than-real-time Simulation of Multi-group Pedestrian Flow..
Traffic & Granular Flow 24. 04021.
(2018). Fractal Curves from Prime Trigonometric Series.
Fractal Fract.. 2(2),
(2017). A geometric mesh smoothing algorithm related to damped oscillations.
Comput Methods Appl Mech Eng. 326C,
(2018). GETOpt mesh smoothing: Putting GETMe in the framework of global optimization-based schemes.
Finite Elem. Anal. Des.. 147,
(2015). Partially hyperbolic diffeomorphisms with a uniformly compact center foliation: the quotient dynamics.
Ergodic Theory and Dynamical Systems. 36, 1067–1105.
(2016). Partially hyperbolic diffeomorphisms with uniformly compact center foliation: quotient dynamics.
Ergodic Theory Dyn. Sys.. 36(4),
(2025). Surrogate Model Using A U-NET-ConvLSTM Architecture For A Macroscopic Pedestrian Flow Model.
ECMS 2025 Proceedings edited by Marco Scarpa, Salvatore Cavalieri, Salvatore Serrano, Fabrizio De Vita. 300–306.
(2016). Von der Symmetriegruppe des Dreiecks zur Glättung von industriellen Netzen.
Die Basis der Vielfalt - 10. Tagung der DGfGG.

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