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Long-range transportation

Ruthenium, osmium, and rheitium complexes have been used to define electron-transfer rates over defined distances and pathways see Iron Heme Proteins Electron Transport, Long-range Electron Transfer in Biology) They can be attached to external His residues by displacement of its... [Pg.1038]

Copper Proteins with Type 1 Sites Iron Heme Proteins Electron Transport Long-range Electron Transfer in Biology Manganese The Oxygen-evolving Complex Models. [Pg.3875]

The release of radioactivity from the accident at Chernobyl would be considered primarily a regional or continental problem. However, higher than usual levels of radioactivity were detected in the Pacific Northwest part of the United States soon after the accident. This indicates the long-range transport that occurred following this accident. [Pg.38]

Critchfield, H. ]., "General Climatology," 4th ed. Prentice-Hall, Englewood Cliffs, N], 1983. Knap, A. H, (ed.), "The Long-Range Atmospheric Transport of Natural and Contaminant Substances." Kluwer Academic Press, Hingham, MA, 1989. [Pg.39]

What are the two primary gaseous pollutants that transform to fine-particle form during long-range transport ... [Pg.39]

Sandroni, S. (ed.), "Regional and Long-Range Transport of Air Pollution." Elsevier Science Publishers, New York, 1987. [Pg.289]

The discrete distance option of SCREEN allows the user to input specific distances. Any number of distances (s 1 meter) can be input by the user and the maximum concentration for each distance will be calculated. The user will always be given this option whether or not the automated distance array option is used. The option is terminated by entering a distance of zero. SCREEN will accept distances out to 100 km for long-range transport estimates with the discrete distance option. However, for distances greater than 50 km, SCREEN sets the minimum 10 meter wind speed at 2 m/s to avoid unrealistic transport times. [Pg.306]

More detailed theoretical approaches which have merit are the configurational entropy model of Gibbs et al. [65, 66] and dynamic bond percolation (DBP) theory [67], a microscopic model specifically adapted by Ratner and co-workers to describe long-range ion transport in polymer electrolytes. [Pg.508]

Matheson, D.H. Elder, F.C., Eds. Atmospheric Contribution to the Chemistry of Lake Waters, J. Great Lakes Res., Suppliment 2, pp 225. National Academy of Science, Air Quality and Stationary Source Emission Control, Comm, on Nat. Resources, National Academy of Sciences, National Research Council, U.S. Gov t Print. Office, Washington, DC, 1975. Whelpdale, D.M. (Chair) Long-Range Transport of Air Pollutants A Summary Report of the Ad Hoc Committee, Atmospheric Environment Service, Environment Canada, Downsview, Ontario, 1976. [Pg.61]

Long-Range Transport of Airborne Pollutants, Research and Monitoring Coordinating Conunittee, Canada LRTAP Assessment, Atmospheric Environment Service, Environment Canada, Downsview, Ontario, 1990,7 Volumes. [Pg.61]

Evidence of Long-Range Atmospheric Transport and Deposition... [Pg.140]


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Atmospheric transport, long-range

Deposition long-range atmospheric transport

Environmental contamination long-range transport

International pollution long range transport

Long range

Long range transport of pollutants

Long-Range Transport Models

Long-range transport

Long-range transport

Long-range transport of air pollutants

Long-range transport potential

Molecular transport long-range

Proton transport, long range

Sulfur long range transport

Volatile organic compounds long-range transport

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