Results 191 to 200 of about 1,060,009 (254)
Compressive Sensing via Variational Bayesian Inference under Two Widely Used Priors: Modeling, Comparison and Discussion. [PDF]
Shekaramiz M, Moon TK.
europepmc +1 more source
To Acquire or Not to Acquire: Evaluating Compressive Sensing for Raman Spectroscopy in Biology. [PDF]
Raj P +5 more
europepmc +1 more source
This study advances SafeWax, a bio‐inspired, fatty‐acids‐based superhydrophobic coating, by identifying an agriculturally compliant solvent and revealing how solvent‐controlled Fatty acid crystallization governs the coating's microscopic structure and performance.
Niv Ben‐Arie +13 more
wiley +1 more source
Computer-Vision-Oriented Adaptive Sampling in Compressive Sensing. [PDF]
Liu L +4 more
europepmc +1 more source
A hybrid additive manufacturing platform integrates direct droplet writing of metallic composite with VAT photopolymerization to fabricate architected soft magnetic composites. This approach enables microscale patterning of high‐viscosity materials for programmable actuators, adaptive fluidic devices, and switchable adhesives, offering tunable ...
Yeowon Yoon +4 more
wiley +1 more source
FusionOpt-Net: A Transformer-Based Compressive Sensing Reconstruction Algorithm. [PDF]
Zhang H, Chen B, Gao X, Yao X, Hou L.
europepmc +1 more source
Melanin content directly controls fungal spore mechanical properties, with pigmented spores achieving rupture forces two orders of magnitude higher than hyaline spores. Environmental stress drives this quantity‐quality tradeoff; stressed species invest energy in melanin‐reinforced, mechanically superior thick‐walled, super‐hydrophobic spores, while ...
Atul Agrawal, Steven E. Naleway
wiley +1 more source
A novel Hadamard matrix based hybrid compressive sensing technique for enhancing energy efficiency and network longevity. [PDF]
S B, M K, Palanisamy S, Alshalali TAN.
europepmc +1 more source
Polarimetric SAR Tomography with TerraSAR-X by means of Distributed Compressed Sensing [PDF]
Pau, Prats +5 more
core
A gas‐fed, zero‐gap, PEM CO2 electrolyzer is realized by incorporating PDDA+ ions onto the carbonaceous Co/N‐C electrocatalyst, with gaseous H2 and CO2 fed into the anode and cathode, respectively. Operating without an aqueous electrolyte, the system sustains a peak FECO of 65.1% at 100 mA cm−2. ABSTRACT Electrochemical carbon dioxide reduction (ECO2R)
Yuen Leong Chow +6 more
wiley +1 more source

