998 resultados para Michigan Militia Corps.


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The arrangement of the names is alphabetical under each regiment or other organization.

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On verso: John F. Kennedy proposing the Peace Corps during the presidential campaign speech at 2 a.m. Oct. 14, 1960, on the steps of the Michigan Union at the University of Michigan (Daybook, image #58)

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Mode of access: Internet.

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A certificate from The Confederate Air Corps that reads, "To all who shall see these presents, greeting: Know yes, that in recognition of his having manifested an unusually high regard for black-eyed peas, turnip greens, hog jowl, sow belly, pot likkers, grits, chittlins, and good old corn squeezins, Dorothy Rungeling is, as of this date, hereby appointed to the rank of Colonel in the Confederate Air Corps. This officer will, by virtue of this appointment, therefore, be obliged to carefully and diligently discharge the duties of the office to which appointed by doing and performing all manner of things thereunto belonging. As evidence of his good faith in accepting this commission, the officer named herein will continue to praise the glories of the Deep South, consume a true gentleman's share of the fares mentioned above, pay respectful homage to our lovely Southern Belles, save his Confederate money, harass the carpetbaggers, and always remember that damnyankee is one word. As Secretary of this Corps, I strictly charge and require all officers of the air militia of the South to render such obedience and courtesies as are due an Officer of this distinguished rank and honored position. Done at the City of Montgomery, Alabama, the Cradle of the Confederacy, this Seventh day of July in the year One Thousand Nine Hundred and Fifty Eight." It is stamped with the name Thadeus P. Throckmorton - Secretary, Confederate Air Corps.

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In the Dominican Republic economic growth in the past twenty years has not yielded sufficient improvement in access to drinking water services, especially in rural areas where 1.5 million people do not have access to an improved water source (WHO, 2006). Worldwide, strategic development planning in the rural water sector has focused on participatory processes and the use of demand filters to ensure that service levels match community commitment to post-project operation and maintenance. However studies have concluded that an alarmingly high percentage of drinking water systems (20-50%) do not provide service at the design levels and/or fail altogether (up to 90%): BNWP (2009), Annis (2006), and Reents (2003). World Bank, USAID, NGOs, and private consultants have invested significant resources in an effort to determine what components make up an “enabling environment” for sustainable community management of rural water systems (RWS). Research has identified an array of critical factors, internal and external to the community, which affect long term sustainability of water services. Different frameworks have been proposed in order to better understand the linkages between individual factors and sustainability of service. This research proposes a Sustainability Analysis Tool to evaluate the sustainability of RWS, adapted from previous relevant work in the field to reflect the realities in the Dominican Republic. It can be used as a diagnostic tool for government entities and development organizations to characterize the needs of specific communities and identify weaknesses in existing training regimes or support mechanisms. The framework utilizes eight indicators in three categories (Organization/Management, Financial Administration, and Technical Service). Nineteen independent variables are measured resulting in a score of sustainability likely (SL), possible (SP), or unlikely (SU) for each of the eight indicators. Thresholds are based upon benchmarks from the DR and around the world, primary data collected during the research, and the author’s 32 months of field experience. A final sustainability score is calculated using weighting factors for each indicator, derived from Lockwood (2003). The framework was tested using a statistically representative geographically stratified random sample of 61 water systems built in the DR by initiatives of the National Institute of Potable Water (INAPA) and Peace Corps. The results concluded that 23% of sample systems are likely to be sustainable in the long term, 59% are possibly sustainable, and for 18% it is unlikely that the community will be able to overcome any significant challenge. Communities that were scored as unlikely sustainable perform poorly in participation, financial durability, and governance while the highest scores were for system function and repair service. The Sustainability Analysis Tool results are verified by INAPA and PC reports, evaluations, and database information, as well as, field observations and primary data collected during the surveys. Future research will analyze the nature and magnitude of relationships between key factors and the sustainability score defined by the tool. Factors include: gender participation, legal status of water committees, plumber/operator remuneration, demand responsiveness, post construction support methodologies, and project design criteria.

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In October 1980 the U.S. Army Corps of Engineers conducted a beach nourishment project at the Lexington (Michigan) Harbor on the southwest shore of Lake Huron, a project designed to mitigate beach erosion attributable to the installation of the harbor. In response to a request from the Coastal Engineering Research Center (CERC), the U.S. Fish and Wildlife Service's Great Lakes Fishery Laboratory conducted a Corps-funded study from June 1980 to October 1981 along a 8.4-kilometer segment of shoreline adjacent to the harbor to determine the effect of the Corps' beach nourishment project on the nearshore aquatic environment. The study performed by the service included aerial photographic surveys of the study area; measurement of dissolved oxygen, turbidity, and suspended particulate matter levels; and collection of lake bottom sediments, macrozoobenthos and fish. Analysis of the aerial photographs showed that the beach face profile changed markedly during the study as a result of beach nourishment. Dredging of about 19,000 cubic meters of beach sediment from an accretion area adjacent to the harbor's north breakwater caused the beach face to recede, while deposition of this sediment on a feeder beach south of the harbor caused the beach face there to extend lakeward.

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