A framework that merges Lagrangian and Eulerian data for improved system state estimates.
― 6 min read
Cutting edge science explained simply
A framework that merges Lagrangian and Eulerian data for improved system state estimates.
― 6 min read
Researchers develop TEAMS for better predictions of extreme weather events.
― 7 min read
Exploring undecidability in subshifts of finite type and sofic subshifts.
― 4 min read
This article presents a new method for measuring city livability indices.
― 6 min read
A look into the gravitational interactions and motions of the Earth-Moon system.
― 6 min read
This article delves into hitting distributions within random dynamical systems.
― 7 min read
Introducing a framework for studying complex biological interactions using optimal transport theory.
― 5 min read
Discover how piecewise-linear maps lead to complex behavior and chaos.
― 4 min read
New models improve predictions of ENSO climate phenomena and their global impacts.
― 6 min read
Study examines how missing connections affect link prediction accuracy across networks.
― 7 min read
This study presents two algorithms for accurate recovery of source terms in initial value problems.
― 6 min read
An overview of interpolation sets and their impact on dynamical systems.
― 4 min read
A method to encourage safer health choices through rewards during disease outbreaks.
― 6 min read
This study investigates how LoRA fine-tuning influences token clustering in Transformer models.
― 5 min read
This paper investigates the impact of simplicity bias on one-dimensional dynamical systems.
― 6 min read
A look into the relationship between groups, Poincare exponents, and their applications.
― 5 min read
Researchers study calcium oscillations to understand liver cell behavior.
― 7 min read
Examining how traces of operators behave on hyperbolic surfaces.
― 6 min read
Explore how functional differential equations model systems with delays across various fields.
― 6 min read
Examining how early signals can predict crucial system changes.
― 6 min read
Researchers propose innovative methods for deploying Lagrangian drifters to better understand fluid flows.
― 7 min read
Examining the role of signal functions and delays in neural networks.
― 5 min read
Understanding how neutral functional differential equations aid in studying material flow.
― 5 min read
Study of interacting systems reveals insights into complex dynamics.
― 6 min read
A look at linear dynamics, focusing on operators, recurrence, and hypercyclicity.
― 6 min read
Explore unique behaviors of particle systems and their periodic interactions.
― 4 min read
New methods improve data efficiency and error bounds in EDMD.
― 5 min read
This article highlights the significance of complex hyperbolic lattices in mathematics.
― 5 min read
mpbn simplifies analysis of Boolean networks for gene interaction studies.
― 4 min read
Examining how noise influences fluid behavior through Lévy areas and Wong-Zakai anomalies.
― 6 min read
Examining optimal transport and Lax-Oleinik operators for efficient resource movement.
― 5 min read
This study reveals robust tilesets make the domino problem decidable.
― 7 min read
A new framework enhances learning and predictions in chaotic environments.
― 5 min read
This study examines how PCA reveals transitions between dispersive and dissipative systems.
― 6 min read
An in-depth look at Anosov flows and their key properties.
― 6 min read
Explore how fast and slow processes shape population behavior over time.
― 5 min read
Exploring the connections and behaviors of fractions through the Stern-Brocot sequence.
― 8 min read
A new neural network approach improves modeling of fast-slow dynamic systems.
― 6 min read
Exploring the natural dimensions of iterated function systems and their attractors.
― 6 min read
New methods improve our ability to find polynomial roots efficiently.
― 5 min read