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Davies Program

Madura et al. 1995] Madura, J.D., Briggs, J.M., Wade, R.C., Davis, M.E., Luty, B.A., Ilin, A., Antosiewicz, J., Gilson, M.K., Bagheri, B., Scott, L.R., McCammon, J.A. Electrostatics and Diffusion of Molecules in Solution Simulations with the University of Houston Brownian Dynamics Program. Comp. Phys. Comm. 91 (1995) 57-95... [Pg.77]

Ramanathan, P, S. Kannan, and J.F. Davis, Use Knowledge-Based-System Programming Toolkits to Improve Plant Trouhleshooting, Chemical Engineeiing Piogiess, June 1993, 75-84. (Expert system approach)... [Pg.2545]

ME Davis, JD Madura, BA Luty, JA McCammon. Electrostatics and diffusion of molecules m solution Simulations with the University of Houston Brownian dynamics program. Comput Phys Commun 62 187-197, 1991. [Pg.413]

Davis, 1999. W. Davis, Professor and Coordinator, Environmental Engineering Program, Department of Civil and Environmental Engineering, University of Tennessee, (423) 974-7728, personal communication with E. Albright, October 28, 1999. [Pg.488]

Davies, C. A., E. Freedman, D. J. Frurip, G. R. Hertel, W. H. Seaton, and D. N. Treweek (1990). CHETAH Version 4.4 The ASTM Chemical Thermodynamic and Energy Release Evaluation Program. 2nd Edition. Philadelphia, PA American Society for Testing and Materials. [Pg.146]

S., Ott, T., Davies, R., Eckart, A., 1999, in Astronomy with Adaptive Optics -Present Results and Future Programs, ESO and OSA, 333... [Pg.248]

Butterfield, V.A., McDuff, R.E., Franklin, J. and Wheat, C.G. (1994) Geochemistry of hydrothermal vent fluids from Middle Valley, Juan de Fuca Ridge. In Mottl, M.J., Davis, E.E., Fi.sher, A.T. and Slack, J.F. (eds.). Proceedings of the Ocean Drilling Program. Sci. Proc., 139, 395-410. [Pg.396]

Davies, I. K. CHEM X, a program system for manipulating and displaying molecules, Chemical Design Ltd., UK., Oct. 1986... [Pg.143]

Johanson, R.C. Imhoff, J.C. Davis, H.H., Jr. "Users Manual for Hydrological Simulation Program - FORTRAN (HSPF)" EPA-600/9-80-015, U.S. Environ. Prot. Agency, Environ. Research Lab. Athens, Georgia, 1980 p. 678. [Pg.39]

Davis, J.M., Pompe, M., Samuel, C. (2000). Justification of statistical overlap theory in programmed temperature gas chromatography thermodynamic origin of random distribution of retention times. Anal. Chem. 72, 5700-5713. [Pg.31]

Davis, J.M. (2004). Assessment by Monte Carlo simulation of thermodynamic correlation of retention times in dual-column temperature programmed comprehensive two-dimensional gas chromatography. J. Sep. Sci. 27, 417. [Pg.56]

Experimental values (x-ray) were taken from the Cambridge Crystallographic Data File (Allen, Davies, Galloy, Johnson, Kennard, Macrae, Mitchell, Smith Watson, 1991). The calculated values were obtained by taking the tj> and v j—values of each residue in the crystal structures as input in a program that calculates the values of peptide main chain parameters as functions of cf> and 4>. Further details are described in the text. [Pg.207]

Jacobs G., Ji Y., Davis B.H., Cronauer D., Kropf J., and Marshall C.L. 2007. Fischer-Tropsch synthesis Temperature programmed EXAFS/XANES investigation of the influence of support type, cobalt loading and noble metal promoter addition to the reduction behaviour of cobalt oxide particles. Appl. Catal. A Gen. 333 179-91. [Pg.14]

A similar terminal-peptide-replacement strategy was used in the Src SH2 domain antagonist program pursued at the Parke-Davis Pharmaceutical Re-... [Pg.42]

Davies, C. A., I. M. Kipnis, M. W. Chase, and D. N. Trewek, "The Thermochemical and Hazard Data of Chemicals Estimation Using the ASTM CHET AH Program," ACS Symposium Series, 274,82 (1985), American Chemical Society, Washington, DC. [Pg.184]

The Hydrogen Bus Technology Validation Program in Davis/ Sacramento, California is a multi-district partnership of the City of Davis, Yolo County Transportation District (YCTD), University of California, Davis (UC Davis), UniTrans (Transit authority for the City of Davis and UC Davis), and NRG Tech. [Pg.175]

The City of Davis receives the project funds for disbursement to the other project partners. The program seeks to validate advanced clean fuel technologies in a practical application. [Pg.175]

Joseck, F. and Davis, P. (2006). Hydrogen safety, codes and standards overview of US DOE program. HarmonHy Final Conference. Brussels, www.harmonhy.com/ harmonhydocs/HarmonHyFin-005.pdf. [Pg.269]

Production via Biomass Gasification. Advanced Energy Pathways (AEP) Project, Task 4.1 Technology Assessments of Vehicle Fuels and Technologies, Public Interest Energy Research (PIER) Program, California Energy Commission, UC Davis, Institute of Transportation Studies (ITS-Davis). [Pg.308]

Dr Joan Ogden is Professor of Environmental Science and Policy at the University of California, Davis, and Director of the Sustainable Transportation Energy Pathways Program at the campus s Institute of Transportation Studies. Her primary research interest is the technical and economic assessment of new energy technologies, especially in the areas of alternative fuels, fuel cells, renewable energy and low carbon energy systems. She received a B.S. in Mathematics from the University of Illinois, and a Ph.D. in Physics from the University of Maryland. [Pg.659]

Dr Christopher Yang is a researcher at the Institute of Transportation Studies at the University of California, Davis. He is a co-leader of Infrastructure Systems Analysis within the Sustainable Transportation Energy Pathways (STEPS) Program and his work focuses mainly on the analysis of hydrogen infrastructure, the grid impacts of electric vehicle charging and the reduction of greenhouse-gas emissions from transportation systems. [Pg.660]

Equilibrium Calculations. The computer program SURFEQL (29) was used to calculate the equilibrium distrubution of chemical-species. The constant capacitance model (30, 1) was used for the surface equilibria calculations. The equilibrium constants used in these calculations are given in Davies (26). [Pg.490]


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