992 resultados para special groups


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Report on a special investigation of the Southwest Iowa Transit Agency for the period July 1, 2011 through June 30, 2012

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Report on a special investigation of the City of Buffalo for the period September 25, 2008 through September 30, 2010

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This report is submitted by the Iowa Department of Transportation, Motor Vehicle Division in compliance with Administrative Rule 761-401.18(3) Discontinuance. This rule requires the department to report to the legislature if 250 paid applications for any of the special registration plates subject to this rule are not submitted within one year after the date the department makes the plate available for application in order to request authority to discontinue any of the special registration plates established under Iowa Code section 321.34, new subsections 20C, 25 and 26 as amended by 2011 Iowa Acts, House File 651, section 2.

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Report on a special investigation of the Adair County Engineer’s Office for the period December 5, 2001 through December 31, 2011

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Report on a special investigation of the City of Masonville for the period of March 18, 2002 to November 30, 2011

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Report on a special investigation of the Coggon Municipal Light Plant for the period July 1, 2004 through August 27, 2012

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Report on a special investigation of the City of Stockport for the period July 1, 2007 through October 31, 2011

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Report on a special investigation of the City of Muscatine for the period July 1, 2008 through March 8, 2012

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Special investigation of the Iowa Department of Transportation for the period January 29, 1994 through July 7, 2011

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Special investigation of the University of Northern Iowa Events Complex Concessions for the period October 1, 2006 through March 31, 2012

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Report on a special investigation of the City of Indianola for the period June 1, 2006 through August 31, 2012

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A Knudsen flow reactor has been used to quantify surface functional groups on aerosols collected in the field. This technique is based on a heterogeneous titration reaction between a probe gas and a specific functional group on the particle surface. In the first part of this work, the reactivity of different probe gases on laboratory-generated aerosols (limonene SOA, Pb(NO3)2, Cd(NO3)2) and diesel reference soot (SRM 2975) has been studied. Five probe gases have been selected for the quantitative determination of important functional groups: N(CH3)3 (for the titration of acidic sites), NH2OH (for carbonyl functions), CF3COOH and HCl (for basic sites of different strength), and O3 (for oxidizable groups). The second part describes a field campaign that has been undertaken in several bus depots in Switzerland, where ambient fine and ultrafine particles were collected on suitable filters and quantitatively investigated using the Knudsen flow reactor. Results point to important differences in the surface reactivity of ambient particles, depending on the sampling site and season. The particle surface appears to be multi-functional, with the simultaneous presence of antagonistic functional groups which do not undergo internal chemical reactions, such as acid-base neutralization. Results also indicate that the surface of ambient particles was characterized by a high density of carbonyl functions (reactivity towards NH2OH probe in the range 0.26-6 formal molecular monolayers) and a low density of acidic sites (reactivity towards N(CH3)3 probe in the range 0.01-0.20 formal molecular monolayer). Kinetic parameters point to fast redox reactions (uptake coefficient ?0>10-3 for O3 probe) and slow acid-base reactions (?0<10-4 for N(CH3)3 probe) on the particle surface. [Authors]

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Report on a special investigation of the Lyon County Engineer’s Office for the period August 1, 2006 through May 31, 2012

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This article introduces the Dyadic Coping Inventory (DCI; Bodenmann, 2008) and aims (1) to investigate the reliability and aspects of the validity of the Italian and French versions of the DCI, and (2) to replicate its factor structure and reliabilities using a new Swiss German sample. Based on 216 German-, 378 Italian-, and 198 French-speaking participants, the factor structure of the original German inventory was able to be replicated by using principal components analysis in all three groups after excluding two items in the Italian and French versions. The latter were shown to be as reliable as the German version with the exception of the low reliabilities of negative dyadic coping in the French group. Confirmatory factor analyses provided additional support for delegated dyadic coping and evaluation of dyadic coping. Intercorrelations among scales were similar across all three languages groups with a few exceptions. Previous findings could be replicated in all three groups, showing that aspects of dyadic coping were more strongly related to marital quality than to dyadic communication. The use of the dyadic coping scales in the actor-partner interdependence model, the common fate model, and the mutual influence model is discussed.