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Research, directions for

There are several future research directions for this project. First, results from the FMO reaction check are not infallible due to the qualitative nature of this check. A more precise, yet computationally feasible model may be possible. Second, more work remains in the WLN rearranger a full system based on our concepts would require knowledge of the entire complement of WLN rules. It may also be desirable to adopt or develop another, more computationally tractable line notation for the purpose of synthetic analysis. Finally, we would like to extend our work to more reaction classes to examine its potential in more detail. [Pg.242]

According to Gasteiger et al. [59], the correlation coefficient r between bioavailability and HIA is 0.498 for 161 compounds. This conclusion inspires us to propose the use of aqueous solubility, descriptors of HIA models, and some rule-based descriptors to predict first-pass metabolism, to model bioavailability. Another research direction for the prediction of oral bioavailability is to develop separate prediction models for different components involved in oral bioavailability, including passive transcellular transport, paracellular transport, carrier-mediated transport, and first-pass metabolism, and then integrate them together. At present, the development of an integrated model is really difficult or even impossible because the predictions for some mechanisms involved in oral bioavailability are really unreliable. [Pg.115]

With respect to the aforementioned discussions, it can be noted that even though researchers have attempted to synthesize/use different types of membranes for effective separations, some restrictions for its applications are still encountered. The research direction for NF membranes is mentioned below ... [Pg.1111]

The individual needs and research directions for specific industries have been discussed above. However, there are a number of needs common to all industries that, if supplied, will aid materially in their future development education, more rational research and development schemes, initiation of more mission-oriented research, and certain organizational changes. [Pg.189]

A recent study by the US Department of Energy (DoE) [10] Catalysis for Energy indicated the following three priority research directions for advanced catalysis science for energy applications ... [Pg.9]

The future research directions for the UCR EPA chamber will of course depend on funding availability and the interests of the funding agencies, but we would expect the research would be designed to take full advantage of its capabilities. In any case, we expect to continue the ozone reactivity and gas-phase mechanism studies that are currently underway, with the mechanism evaluation being focused on aromatics, whose mechanism are the most... [Pg.40]

W. J. Koros, Membmae-Based Gas Separations Research Directions for the Eighties, paper... [Pg.949]

S.6.4.7.2 Corrosion Inhibitors The corrosion process and the mechanism of inhibitors is an important research direction for electrochemistry. Raman spectroscopy is advantageous in the investigation of adsorption-mediated corrosion inhibition, because it is readily applicable to the in situ observation of the behavior of inhibitors... [Pg.649]

The state of the art in thermometry research is generally reported at the International Temperature Symposia, with conference proceedings published by the American Institute of Physics [1]. For metrology applications at standard laboratories, an important research direction for platinum RTDs is to extend the upper temperature... [Pg.2942]

The concluding chapter, which lays out the agenda of future research directions for the held as seen by the authors, is presented. [Pg.310]

Development of inexpensive electrocatalysts For instance, Pb nanoparticles covered with a monolayer of Pt could be an option of an inexpensive electrocatalyst, although it is very challenging to make such a structure (e.g., the large lattice mismatch between Pt and Pb prohibits the epitaxial growth of Pt on Pb). Ultimately, non-noble-metal electrocatalyst is expected to be the main research direction for DFAFC applications. [Pg.899]

As mentioned earlier, scanning-based stereolithography and microstereolithography are used quite widely for the rapid prototyping of objects. The main research directions for stereolithography include ... [Pg.1351]

The state of the art in thermometry research is generally reported at the International Temperature Symposia, with conference proceedings published by the American Institute of Physics [1]. For metrology applications at standards laboratories, an important research direction for platinum RTDs is to extend the upper temperature limit at which the RTDs can be used. For example, the International Temperature Scale of 1968 (ITS-68) only used platinum RTDs up to 630.74 °C, while requiring a Pt-PtRh thermocouple above this temperature. But subsequent research improved the stability and accuracy of platinum RTDs so that they are now used in ITS-90 up to 961.78 °C. It is likely that research will continue to extend the high-temperature limits of platinum RTDs. Apphed research continues to improve the accuracy and reliabUity of thin-film RTDs, making them a good compact, low-cost alternative to the more traditional wire-wound RTDs. [Pg.1789]

Safety Vehicles A Look at Over 30 Years of Progress - Future Research Directions for Enhancing Safety. 19th ESV Conference. June 6, U.S. Department of Transportation, Washington DC.http //Avww-nrd.nhtsa.dot.gov/departments/nrd-... [Pg.19]

During the past year, the C.M.U. Medium Energy Physics group has taken data on two experiments and has made substantial progress in developing equipment for the H-particle searches scheduled to begin next year. There has also been activity in developing future research directions. For reference, the detector layouts of each experiment are found in the appendix. [Pg.2]

Song, J. A. K. Mok, D. Chen, and M. Nixon, Challenges of Wireless Control in Process Industry, Workshop on Research Directions for Security and Networking in Critical Real-Time and Embedded Systems, San Jose, CA, 2006. [Pg.165]

Japan dominates the present worldwide effort in biosensor research and development (R D The Japanese market in biosensor products is currently estimated at 1.5 million yen. About a hundred different firms from a variety of fields consider biosensors to be an important research direction (for example, Toyo Jozo, Fuji Electric, Toyobo, and Denki) or form collaborations for better development (for example, Daikin of Sumitomo and NEC). In Germany, 15 million D.marks were placed for financing biosensor research and development between 1988 and 1991. Other European countries (Great Britain, France, Italy and Spain) also participate actively in research in this field. [Pg.181]


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See also in sourсe #XX -- [ Pg.93 ]




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