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Electronics-communications, opportunity

These monolayers provide a significant opportunity to compare the extent of electronic communication across the p3p bridge when bound to a metal electrode as opposed to being coupled to a molecular species, e.g. within a dimeric metal complex. Electronic interaction of the redox orbitals and the metallic states causes splitting between the product and reactant hypersurfaces, which is quantified by HabL the matrix coupling element. The Landau-Zener treatment [15] of a non-adiabatic reaction yields the following equation ... [Pg.173]

A wide range of organizations provide assistive devices which offer the opportunity of functioning in a more independent manner. However, many of these devices and systems are developed without coordination resulting in incompatible products. Clinicians and users often desire to combine products from various sources to achieve maximal independence. The result is to have several devices with their own input devices and overlapping functions. Integrated controls provide access to various end-effectors with a single input device. The M3S provides an electronic communication protocol so that the system operates properly. [Pg.1146]

The unusual structure of [( PDAl)Fe]2 presented a unique opportunity to study electronic communication between two iron centers bearing redox-active bis(aldimino)pyridine pincer Hgands. Variable-temperature solid-state magnetic susceptibihty measurements established an essentially invariant effective magnetic moment of 4.3 pg between 100 and 300 K. Below 100 K, decreases monotonically... [Pg.200]

The advent of a new class of materials systems based on nanoscale particles dispersed or suspended in carrier and/or binders has captured the attention of the microelectronics technical community. These materials provide the opportunity to use inexpensive solution processing equipment versus expensive vacuum deposition equipment commonly used in the microelectronics manufacturing industry. Experts in the microelectronics industry have suggested that over the course of the next live years, the industry will experience a paradigm shift in manufacturing and, more importantly, will enjoy revenue streams created from never-before-seen products based on printed electronics. [Pg.379]

Summarizing, there are still many scientific challenges and major opportunities for the catalysis community in the field of cobalt-based Fischer-Tropsch synthesis to design improved or totally new catalyst systems. However, such improvements require a profound knowledge of the promoted catalyst material. In this respect, detailed physicochemical insights in the cobalt-support, cobalt-promoter and support-support interfacial chemistry are of paramount importance. Advanced synthesis methods and characterization tools giving structural and electronic information of both the cobalt and the support element under reaction conditions should be developed to achieve this goal. [Pg.42]

Bellcore s keen interest was understandable. The central office of a telephone company is, after all, one gigantic computer, and the new materials offered endless opportunities to improve communications technology. For example, very large-scale integrated circuitry (known as VLSI in the trade), the tiny complex of electronic components and their connections that are embedded in or on thin slices of silicon—the familiar microchips—could benefit enormously from the development of practical, high-temperature superconducting materials. [Pg.54]

This entry provides a selection of printed and electronic information resources of use in identifying toxicological information. Technological advances and ways to communicate on a global scale have provided great opportunities for sharing knowledge. [Pg.1417]


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Electronic, communication

Opportunism

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