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Implications for future IR spectroelectrochemical studies of chemical reactions in electrochemically generated diffusion layers are discussed.
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First, we use synthetically generated diffusion-weighted images to validate our technique against ground truth.
In the proposed work, an algorithm has been designed to generate diffusion template using 3D Standard map.
Findings show that exudate from compressed cartilage is dilute relative to the bath due to the presence of matrix fixed charges, and this difference can generate diffusion potentials external to the explant, which may affect streaming potential measurements particularly under conditions of low strain rates and high strains.
DWI evaluates the mobility of water in different tissues to generate diffusion weighted images and apparent diffusion coefficient (ADC) maps.
To generate diffusion tensor tractographies of the right IFOF, the seed and target ROIs were set in the anterior and posterior parts, respectively, of the right external capsule.
To design and evaluate eddy current-nulled convex optimized diffusion encoding (EN-CODE) gradient waveforms for efficient diffusion tensor imaging (DTI) that is free of eddy current-induced image distortions.The EN-CODE framework was used to generate diffusion-encoding waveforms that are eddy current-compensated.
Compositions generated through diffusion couples, as examined by electron probe micro-analyzer, covered large part of the β phase region.
Results show that a third complementary parameter, generated from diffusion data, is necessary to accurately correlate this transport property.
The electric field generated by diffusion of ions with different mobilities induces a non uniform surface charge, which results in charge separation inside the nanopore.
Reduced elastic modulus (Er) and hardness (H) for NiMnGa alloys were investigated using nanoindentation over a large compositional range generated via diffusion couple annealing.
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