Results 141 to 150 of about 25,484,306 (377)
Mathematical Model Of Smoking Time Temperature Effect On Ribbed Smoked Sheets Quality
Rifah Ediati, Jajang
openalex +1 more source
Mathematical Modeling of Regulatory Mechanisms for the Propagation of Excitation in the Central Nervous System [PDF]
Mohiniso Hidirova, Isroilov Shukhrat
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The fundamental intricate couplings between electrolyte wetting and fracture evolution are investigated in large single‐crystal V2O5 samples using both experimental techniques and simulations. Both approaches reveal consistent fracture patterns and lithium distribution concentration maps influenced by the wetting mechanism.
Wan‐Xin Chen +6 more
wiley +1 more source
Understanding convolutional neural networks with a mathematical model [PDF]
C.-C. Jay Kuo
semanticscholar +1 more source
Charge‐Induced Morphing Gels for Bioinspired Actuation
This study introduces a novel electroactive actuation mechanism that enables the gel material to generate substantial and reversible shape‐changing while preserving topological and isochoric (volumetric) equivalence. The resultant morphing behaviors can mimic the movements of muscle‐driven organelles in nature, including cilia‐like beating and ...
Ciqun Xu +4 more
wiley +1 more source
Multiproduct Mathematical Model for Productive Company
This model is an extension to H.M.M.S and related developments models of a single product. These models will be converted to deal with Multiproduct for productive company.
S.A. Fahad
doaj
Microsphere Autolithography—A Scalable Approach for Arbitrary Patterning of Dielectric Spheres
MicroSphere Autolithography (µSAL) enables scalable fabrication of patchy particles with customizable surface motifs. Focusing light through dielectric microspheres creates well defined, tunable patches via a conformal poly(dopamine) photoresist. Nearly arbitrary surface patterns can be achieved, with the resolution set by the index contrast between ...
Elliott D. Kunkel +3 more
wiley +1 more source
The evolution of molecular mimicry in parasites: a mathematical model
Amy Hurford
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Quantifying Spin Defect Density in hBN via Raman and Photoluminescence Analysis
An all‐optical method is presented for quantifying the density of boron vacancy spin defects in hexagonal boron nitride (hBN). By correlating Raman and photoluminescence signals with irradiation fluence, defect‐induced Raman modes are identified and established an relationship linking optical signatures to absolute defect densities. This enables direct
Atanu Patra +8 more
wiley +1 more source
A mathematical model for treatment using chemo-immunotherapy [PDF]
Ophir Nave
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