Learn how reduced order models streamline computations in numerical analysis.
― 6 min read
Cutting edge science explained simply
Learn how reduced order models streamline computations in numerical analysis.
― 6 min read
A new method enhances model accuracy using noisy data in dynamical systems.
― 7 min read
This paper reviews models adapting to new tasks without forgetting prior knowledge.
― 5 min read
A hybrid approach improves accuracy in radiation movement studies.
― 5 min read
A new approach to improving fluid simulation accuracy through effective outflow management.
― 6 min read
This article examines how acoustic waves travel in gases with changing density.
― 6 min read
A high-order approach enhances understanding of two-layer water flows.
― 6 min read
A framework to enhance image classification performance with limited data.
― 7 min read
Exploring methods for solving inverse problems in 3D printing.
― 6 min read
Discover recent insights into efficient optimization methods and their practical applications.
― 4 min read
Streamline complex problem simulations using reduced order models and effective management strategies.
― 4 min read
New techniques improve heart models for personalized patient care.
― 6 min read
Exploring the hybridized discontinuous Galerkin method for fluid dynamics.
― 5 min read
Improved techniques enhance stability and accuracy in solving conservation laws.
― 6 min read
Explore how V-cycle methods enhance efficiency in solving complex mathematical problems.
― 5 min read
This article presents a method to estimate errors in finite element analysis using a Bayesian approach.
― 6 min read
A new method cuts memory costs for advanced optimizers in machine learning.
― 6 min read
New methods enhance predictions in complex scientific systems with neural operators.
― 5 min read
A new method merges neural networks and finite element techniques for better problem-solving.
― 6 min read
A look into how substances move and interact in various fields.
― 5 min read
This article examines membrane locking in beams and shells for better structural analysis.
― 7 min read
A new method improves speed and accuracy in solving inverse source problems.
― 5 min read
A new approach to fluid modeling using machine learning and hidden variables.
― 6 min read
A look into positive spanning sets and their significance in optimization.
― 5 min read
A look into complex particle systems and their interactions through stochastic methods.
― 6 min read
Improved estimates and convergence rates for random periodic solutions in stochastic systems.
― 5 min read
Exploring two new methods for effective gradient flow solutions.
― 6 min read
Using neural networks to solve challenging equations with sudden changes.
― 5 min read
A look into least-squares methods for function approximation using data points.
― 5 min read
Analyzing the impact of regularity on solutions of parametric eigenvalue problems.
― 5 min read
A look into methods improving quantum system simulations using Hamiltonians.
― 6 min read
Discover how DeepONet and S-DeepONet are transforming engineering problem-solving.
― 4 min read
Improvements in the Kaczmarz algorithm enhance its efficiency and speed.
― 5 min read
A new method improves accuracy in piezoelectric MEMS models using DPIM.
― 6 min read
New methods improve solutions for complex boundary value problems using radial basis functions.
― 5 min read
An overview of the IMEX-RK method for solving stiff and non-stiff equations.
― 5 min read
This article examines group sparsity in solving complex data challenges across various fields.
― 5 min read
Improving plasma predictions through advanced computational methods for nuclear fusion.
― 6 min read
Utilizing ANOVA for efficient function approximation in complex data analysis.
― 6 min read
New solver improves efficiency in Stokes flow calculations critical for various fields.
― 6 min read