A hybrid approach improves wave equation computations in various fields.
Shubin Fu, Shihua Gong, Guanglian Li
― 5 min read
Cutting edge science explained simply
A hybrid approach improves wave equation computations in various fields.
Shubin Fu, Shihua Gong, Guanglian Li
― 5 min read
Latest Articles
Giuseppe Orlando, Tommaso Benacchio, Luca Bonaventura
― 5 min read
Pongpisit Thanasutives, Ken-ichi Fukui
― 5 min read
Niall Bootland, Tyrone Rees
― 5 min read
Shubham Desai, Sai Sidhardh
― 6 min read
Innovative method enhances beam analysis efficiency and accuracy.
Giulio Ferri, Josef Kiendl, Alessandro Reali
― 6 min read
A look into weight transfer techniques and their impact on neural network training.
Xingyuan Chen, Wenwei Kuang, Lei Deng
― 7 min read
A new method enhances neural networks for solving complex physics equations.
Yilong Hou, Xi'an Li, Jinran Wu
― 4 min read
New methods improve medical imaging accuracy through better image registration techniques.
Daniel E. Hurtado, Axel Osses, Rodrigo Quezada
― 5 min read
Exploring the relationship between transformers and splines in AI.
Zehua Lai, Lek-Heng Lim, Yucong Liu
― 5 min read
New methods enhance data modeling through weighted pseudoinverses and efficient algorithms.
Haibo Li
― 4 min read
A method for risk-neutral optimization in uncertain environments.
Johannes Milz, Daniel Walter
― 5 min read
Explore how DC-DC converters ensure stable power in electronic systems.
E. V. Chistyakova, D. N. Sidorov, A. V. Domyshev
― 5 min read
Innovative techniques for simulating open quantum systems using the Lindblad equation.
Hao Chen, Alfio Borzì, Denis Janković
― 6 min read
Combining Parareal and neural networks offers a quicker way to solve ODEs.
Marta M. Betcke, Lisa Maria Kreusser, Davide Murari
― 6 min read
A new approach to quantify risks in systems with uncertain parameters using Gaussian mixtures.
Dingcheng Luo, Joshua Chen, Peng Chen
― 6 min read
An overview of how deep learning methods tackle differential equations.
Georgios Is. Detorakis
― 6 min read
A new method to compute proximal operators without sorting data for optimization.
Kathryn Linehan, Radu Balan
― 7 min read
Delay PDEs offer insights into systems affected by time lags across various fields.
Deeksha Tomer, Bankim Chandra Mandal
― 6 min read
Exploring the relationship between logarithmic energy and polynomial eigenvalue phenomena.
Diego Armentano, Federico Carrasco, Marcelo Fiori
― 5 min read
Neural networks enhance solutions for complex partial differential equations.
Janina Enrica Schütte, Martin Eigel
― 4 min read
A data-driven approach to solving linear inverse problems using trained operators.
Andrea Aspri, Leon Frischauf, Otmar Scherzer
― 4 min read
Learn how Gaussian processes address prediction uncertainty in machine learning.
Difeng Cai, Edmond Chow, Yuanzhe Xi
― 5 min read
New regularization method improves heart electrical activity reconstructions from body surface measurements.
Manuel Haas, Thomas Grandits, Thomas Pinetz
― 5 min read
Explore the role of eigenvalues in improving statistical analyses and model evaluations.
Bruno Ebner, María Dolores Jiménez-Gamero, Bojana Milošević
― 5 min read
Research improves understanding of water flow between surface and underground systems.
Valentina Schüller, Philipp Birken, Andreas Dedner
― 5 min read
Innovative techniques improve efficiency in studying hyperelastic materials and their applications.
Richard Schussnig, Niklas Fehn, Peter Munch
― 5 min read
Understanding simulations is key to improving electric machines and transformers.
Herbert Egger, Felix Engertsberger, Bogdan Radu
― 5 min read
Researching how to learn operators and handle errors effectively in function spaces.
Unique Subedi, Ambuj Tewari
― 6 min read
Analyzing the partitioning of a sphere into equal areas and its applications.
Paul Leopardi
― 5 min read
PySLSQP simplifies nonlinear programming with real-time visualization and automatic derivatives.
Anugrah Jo Joshy, John T. Hwang
― 5 min read
Using low-precision posits can improve efficiency and accuracy in calculations.
James Quinlan, E. Theodore L. Omtzigt
― 5 min read
A new method combines level-set and polytopic approaches for shape optimization.
Raphael E. Fernandes, Emmanuil H. Georgoulis, Alberto Paganini
― 5 min read
New methods improve computations for differential equations involving Lie groups in quantum dynamics.
Sofya Maslovskaya, Christian Offen, Sina Ober-Blöbaum
― 4 min read
New method uses strain measurements for aerodynamic load estimation in hypersonic flight.
Julie Pham, Omar Ghattas, Noel Clemens
― 6 min read
Learn how decoupling simplifies solving complex evolution equations.
Petr N. Vabishchevich
― 6 min read
This method improves sound wave simulation accuracy and efficiency through nodal conservation.
Wasilij Barsukow, Raphaël Loubère, Pierre-Henri Maire
― 4 min read
A new method enhances brain tumor tracking using MRI and mathematical models.
Ali Ghafouri, George Biros
― 5 min read
Exploring how tear film stability impacts dry eye disease.
Qinying Chen, Tobin A. Driscoll, Richard J. Braun
― 5 min read
A novel approach to handle dynamic boundary conditions in wave equations.
Michiel Lassuyt, Emma Vancayseele, Wouter Deleersnyder
― 6 min read
A new method enhances neural network performance for solving complex physics equations.
Tianchi Yu, Yiming Qi, Ivan Oseledets
― 6 min read
New methods for solving stochastic control problems without derivatives using neural networks.
Wei Cai, Shuixin Fang, Wenzhong Zhang
― 5 min read
Discover how Zolotarev rational functions manage values in different domains.
Lloyd N. Trefethen, Heather D. Wilber
― 6 min read
Introducing an efficient method for studying electron behavior in low-temperature plasma.
Milinda Fernando, Daniil Bochkov, James Almgren-Bell
― 5 min read
Investigating how hydrogen affects metal strength and ductility in various applications.
Dakshina Murthy Valiveti, T. Neeraj
― 7 min read