Exploring improved techniques for modeling nonconservative systems in various fields.
Shaoshuai Chu, Alexander Kurganov, Ruixiao Xin
― 5 min read
Cutting edge science explained simply
Exploring improved techniques for modeling nonconservative systems in various fields.
Shaoshuai Chu, Alexander Kurganov, Ruixiao Xin
― 5 min read
Discover new ways to tackle complex fluid and wave systems.
Shaoshuai Chu, Alexander Kurganov, Mingye Na
― 6 min read
Discover how neural networks tackle complex physics equations.
Vasiliy A. Es'kin, Alexey O. Malkhanov, Mikhail E. Smorkalov
― 7 min read
Comparing Posit, Takum, and traditional formats for counting integers.
Laslo Hunhold
― 7 min read
New arithmetic formats enhance performance in solving sparse linear systems.
Laslo Hunhold, James Quinlan
― 6 min read
Introducing MscaleFNO, a multi-scale approach reshaping how we study waves and materials.
Zhilin You, Zhenli Xu, Wei Cai
― 7 min read
An overview of how rods are analyzed for engineering applications.
Thi-Hoa Nguyen, Bruno A. Roccia, Dominik Schillinger
― 6 min read
Discover how robots use new methods to navigate tricky movements.
Andreas Mueller
― 6 min read
Explore the power of reflected McKean-Vlasov SDEs in complex systems.
P. D. Hinds, A. Sharma, M. V. Tretyakov
― 6 min read
Discover how FEX transforms understanding of infectious diseases.
Jianda Du, Senwei Liang, Chunmei Wang
― 7 min read
A fresh activation function enhances neural networks for solving complex physical problems.
Vasiliy A. Es'kin, Alexey O. Malkhanov, Mikhail E. Smorkalov
― 5 min read