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By engineering devices with different energetic alignments of the CTS and triplet exciton, we can influence the triplet exciton density in the device.
Bottom-up and integrative approaches present a higher potential for the design of tissue engineering devices with multiscale features and higher biochemical control than top-down strategies, and are the main focus of this review.
Our calculations demonstrate that while the hydrodynamic chromatography limit of FFF (weak fields) is not improved by engineering devices with slip-walls, the performance of Normal-Mode FFF can be enhanced by having slip at the depletion wall in moderate fields.
Engineering devices with quiet, high-speed electronics and fast data analysis will be an important next step to transition nanofluidic devices from the laboratory to everyday use.
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The presented approach is relevant to all engineering devices interacting with granular matter which causes response forces.
Some argue that DPSIR, by its nature, is a narrowly formulated, engineering device, incompatible with the multiple perspectives which human interaction in global ecology requires.
So the Vienna University of Technology started investigations to find a solution with river engineering devices, to reduce these dredging operations in the future.
Recent findings about the neurophysiology of these conditions in humans coupled with progress in engineering devices to treat refractory neurological conditions imply that the time has arrived to consider the design and evaluation of a new class of devices.
Over the last decade carboxymethyl chitosan (CMCS) has emerged as a promising biopolymer for the development of new drug delivery systems and improved scaffolds along with other tissue engineering devices for regenerative medicine that is currently one of the most rapidly growing fields in the life sciences.
Development of new materials with extraordinary and outstanding performance leads to the improvement of engineering devices.
This demonstrates the possibility of engineering optoelectronic devices with adjustable absorption profiles for a specific application.
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