Results 271 to 280 of about 94,059 (356)
APPROXIMATION AND COMPARISON OF ORDINARY DIFFERENTIAL EQUATION USING BY NEW ITERATION METHODS
Necdet Bildik, Yasemin Bakır
openalex +1 more source
Linear ordinary differential equations: revisiting the impulsive response method using factorization [PDF]
Camporesi, Roberto
core
The tribological behavior of 100Cr6 steel spheres textured via Vickers microindentation is evaluated under lubricated sliding by varying both dimple size and density. Fine and dense textures significantly reduce friction across all lubrication regimes, while large dimples increase it.
Farideh Davoodi +3 more
wiley +1 more source
Learning nonparametric ordinary differential equations from noisy data. [PDF]
Lahouel K +5 more
europepmc +1 more source
This study presents a reversible temperature sensor with high switching ratio, ∼103. The device is fabricated using PET‐ITO and carbon nanotube dispersions in alkane. Considering its application in cold chain logistics, a proof‐of‐concept with LED is showcased. Thus, a temperature drop below the threshold temperature (crystallization temperature of the
Sunil Kumar Behera +8 more
wiley +1 more source
A new approach to determine occupational accident dynamics by using ordinary differential equations based on SIR model. [PDF]
Kaplanvural S, Tosyalı E, Ekmekçi İ.
europepmc +1 more source
Powder metal processing provides scalable advantages in nanoporous (np) metal development. Mechanical alloying is used to produce unique precursors for hybrid nanopore formation by oxide reduction and dealloying. As demonstrated in np Ag, this approach improves process efficiency while promoting smaller ligaments and larger pores, both of which are ...
Mark A. Atwater, Oliver A. Fowler
wiley +1 more source
Applying neural ordinary differential equations for analysis of hormone dynamics in Trier Social Stress Tests. [PDF]
Parker C, Nelson E, Zhang T.
europepmc +1 more source
Planar Solid‐State Nanopores Toward Scalable Nanofluidic Integration Based on CMOS Technology
We present a scalable silicon‐based fabrication strategy for planar solid‐state nanopores to enable their integration with complex nanofluidic systems. Prototype devices demonstrate normal voltage‐current characteristics, good noise performance, and appreciable streaming currents. Our CMOS‐compatible fabrication process offers precise geometric control
Ngan Hoang Pham +7 more
wiley +1 more source
Whole-heart electromechanical simulations using Latent Neural Ordinary Differential Equations. [PDF]
Salvador M +6 more
europepmc +1 more source

