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The systems we describe here does not utilize linker molecules between the ligands and the nanotubes allowing a better electronic communication between them.
After introducing the structural features and functions of these systems, we describe how the current nanofabrication methods can be applied to mimic or exploit the systems.
For the solution of the resulting linear systems we describe appropriate iterative solution strategies using both local and global preconditioning techniques.
By reviewing results obtained with different electrolyte solutions (e.g. ethylene carbonate-based solutions, propylene carbonate solutions, and ether-based systems), we describe the stabilization and capacity fading mechanisms of graphite electrodes.
In this paper, we propose a definition of bootstrap for object-oriented reflective systems, we describe the architecture and components it should contain and we analyze the challenges it has to overcome.
While the optimal DR-planning problem is NP-hard even for (general) 2D bar joint constraint systems, we describe an O(n3) algorithm for a broad class of constraint systems that are isostatic or underconstrained.
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This is a DSpace-based repository, and hence is related to the DSpace-SPECTRa system we describe above.
The automated assessment system, we describe in this paper, is a part of a framework to assess Office skills that we currently design and develop.
We thereby suggest that the navigation system we describe is reliable for obtaining accurate measurements of soft tissue balancing with the patella reduced.
To demonstrate the system, we describe an experiment for characterizing rapid evoked scattered light changes in neural tissue, in vivo, using simultaneous electronic image acquisition and electrophysiological recording.
The hardness prediction system we describe in this paper is part of a force model adaptation strategy for hot strip mill.
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CEO of Professional Science Editing for Scientists @ prosciediting.com