A multi-domain Chebyshev collocation method for predicting ultrasonic field parameters in complex material geometries [PDF]
S.A. Nielsen, Jan S. Hesthaven
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Physics informed neural networks for fluid flow analysis with repetitive parameter initialization. [PDF]
Lee J+7 more
europepmc +1 more source
Sustaining the Shift: Mechanisms of Practice Continuation in Meat Analogue Consumption
ABSTRACT This study investigates factors influencing the ongoing consumption of contemporary plant‐based meat analogues (PBMAs), focusing specifically on products designed to mimic the taste, texture, and nutritional value of traditional meat products.
July Nguyen+3 more
wiley +1 more source
Reduced Order Models for Diffusion Systems via Collocation Methods
Torsten Söderström, Bharath Bhikkaji
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A novel hybrid framework for efficient higher order ODE solvers using neural networks and block methods. [PDF]
Murugesh V+7 more
europepmc +1 more source
Abstract Affinity photolabeling is a smart method to study noncovalent and transient interactions and provide a submolecular picture of the contacts between interacting partners. In this review, we will focus on the identification of peptide partners using photoaffinity labeling coupled to mass spectrometry in different contexts such as in vitro with a
Astrid Walrant, Emmanuelle Sachon
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Studies on the Method of Orthogonal Collocation: V. Multiple Steady States in Catalyst Particles
Khalid Alhumaizi, M.A. Soliman
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A highly accurate numerical method is given for the solution of boundary value problem of generalized Bagley‐Torvik (BgT) equation with Caputo derivative of order 0<β<2$$ 0<\beta <2 $$ by using the collocation‐shooting method (C‐SM). The collocation solution is constructed in the space Sm+1(1)$$ {S}_{m+1}^{(1)} $$ as piecewise polynomials of degree at ...
Suzan Cival Buranay+2 more
wiley +1 more source
Trainable embedding quantum physics informed neural networks for solving nonlinear PDEs. [PDF]
Berger S, Hosters N, Möller M.
europepmc +1 more source
SCT‐BEM for Transient Heat Conduction and Wave Propagation in 2D Thin‐Walled Structures
ABSTRACT Traditional boundary element method (BEM) faces significant challenges in addressing dynamic problems in thin‐walled structures. These challenges arise primarily from the complexities of handling time‐dependent terms and nearly singular integrals in structures with thin‐shapes.
Xiaotong Gao, Yan Gu
wiley +1 more source