998 resultados para Exposición Regional Valenciana (1ª. 1909: València)
Resumo:
Address sustainability in all efforts. Sustainability should be at the core of all levels of homeland security and emergency management effort in Iowa. Capabilities need to be built for the long term, and without a sustainability plan in place, projects can quickly deplete uncertain levels of funding. Utilize an all-hazards methodology. Developing capabilities that are effective during a variety of disaster and emergency scenarios represents sound planning and resource management. Enhance capabilities through joint planning, training and exercise. Effective capabilities developed through coordinated planning efforts and an ongoing joint training and exercising program to ensure substantiate of prepared response. Utilize a collaborative approach to build capability. We will utilize whatever partnerships are necessary to build capability in the most effective manner possible. Regional partnerships have been, and will continue to be, in the forefront of the State of Iowa’s efforts to build and enhance capability. Enhance statewide capabilities. Whenever possible, we will identify and augment existing resources to provide statewide capability during a disaster or terrorist attack. Awareness, outreach and education. Open communication is critical to the success of any initiative. All projects implemented will have awareness, education and outreach components to ensure that all stakeholders are informed as to their responsibilities, capabilities and access. Information sharing and a common operating picture. The timely exchange of critical/actionable information is imperative to the success of every operation. The identification of a common operating picture allows decision makers to make informed decisions based on a unified understanding of the events around them.
Resumo:
O objetivo deste trabalho foi avaliar a produtividade e as caracterÃsticas agronômicas de laranjeira 'Valência', enxertadas em porta-enxertos de hÃbridos de trifoliata (Poncirus trifoliata). A produção de frutos, a de sólidos solúveis totais por planta, as dimensões e a eficiência produtiva de copas de laranjeira 'Valência', enxertadas em 13 hÃbridos de trifoliata, cultivados sem irrigação, foram avaliados por perÃodos que variaram de três a oito anos. As plantas também foram avaliadas, visualmente, quanto à manifestação dos sintomas de tristeza (Citrus tristeza virus) e de declÃnio-dos-citros, e foi utilizado o teste diagnóstico "dot immunobinding assay" (DIBA), para detecção da ocorrência do declÃnio antes do aparecimento dos sintomas. As plantas tinham oito anos de idade, no inÃcio das avaliações. Verificou-se que o citrandarin 'Sunki' x 'English' induziu as maiores produções de frutos em oito colheitas, sem diferir significativamente do citrange 'Troyer'. Em três anos de análise, o citrandarin 'Sunki' x 'English', sem diferir dos citranges 'Troyer' e 'Carrizo', também induziu as maiores produções de frutos e sólidos solúveis por planta. O citrentin 'Clementina' x trifoliata, os citrandarins 'Cleópatra' x 'Swingle' (715) e (1.614), 'Cleópatra' x 'Rubidoux' (1.600) e 'Cleópatra' x 'Christian' induziram a formação de laranjeiras da cultivar Valência com alturas iguais ou inferiores a 2,5 m. Nenhuma das plantas apresentou sintomas de tristeza ou declÃnio-dos-citros. Foi constatada a incompatibilidade entre a cultivar Valência e o trangpur 'Cravo' x 'Carrizo'.
Resumo:
From Proposed Action: "Iowa Northland Regional Council of Governments (INRCOG) and the City of Cedar Falls, in coordination with the Iowa Department of Transportation (Iowa DOT) and the Federal Highway Administration (FHWA), are proposing to upgrade and modernize an approximate 4,900-foot segment of Iowa Highway 57 (IA 57), locally known as West 1st Street, in Cedar Falls, Black Hawk County, Iowa."
Resumo:
O objetivo deste trabalho foi avaliar a influência da temperatura do substrato nas trocas gasosas, atividade fotoquÃmica e relações hÃdricas, em plantas jovens de laranjeira 'Valência' enxertadas sobre limoeiro 'Cravo'. Foram utilizadas mudas com seis meses de idade. O experimento foi conduzido em câmara de crescimento, em que o substrato foi mantido a 10, 20 (controle) ou 30oC, e a temperatura do ar variou de 25 a 20oC entre o dia e a noite, com fotoperÃodo de 12 horas e densidade de fluxo de fótons fotossinteticamente ativos de 800 µmol m-2 s-1. Mediu-se, em cada tratamento, a assimilação de CO2 em resposta à concentração de CO2 no mesofilo, a fluorescência da clorofila a e o potencial da água na folha à s 6 e à s 13h. A temperatura de 30oC promoveu aumento na assimilação de CO2, em razão de fatores difusivos e metabólicos, tendo-se observado aumento na eficiência máxima de carboxilação (Vc, máx), na regeneração da ribulose-1,5-bisfosfato, (Jmáx) e nas condutâncias estomática (gs) e do mesofilo (gi), em relação à temperatura controle. A menor temperatura causou aumento do dreno alternativo de elétrons e queda da assimilação de CO2, em consequência de limitações difusivas e metabólicas, evidenciadas por decréscimos em gs, gi, Vc, máx e Jmáx.
Resumo:
1908-1910 Iowa Library Commission Report made to the Governor of Iowa.
Resumo:
This report provides the status of the Passenger Rail Service Revolving Fund and the development and operation of the Midwest regional rail system and the state’s passenger rail service.
Resumo:
Through the City Energy Management Program, energy managers will directly work with up to 20 municipalities in Iowa to help identify opportunities to reduce energy costs in city-owned buildings, exterior lighting, and water/wastewater facilities. This assistance will be provided to the selected municipalities who will provide an in-kind match to achieve energy efficiency within their community.
Resumo:
Through the City Energy Management Program, energy managers will directly work with up to 20 municipalities in Iowa to help identify opportunities to reduce energy costs in city-owned buildings, exterior lighting, and water/wastewater facilities. This assistance will be provided to the selected municipalities who will provide an in-kind match to achieve energy efficiency within their community. Power Point of theses resources.
Resumo:
To supplement other environmental monitoring programs and to protect the health of people consuming fish from waters within this state, the state of Iowa conducts fish tissue monitoring. Since 1980, the Iowa Department of Natural Resources (IDNR), the United States Environmental Protection Agency Region VII (U.S. EPA), and the State Hygienic Laboratory (SHL) have cooperatively conducted annual statewide collections and analyses of fish for toxic contaminants. Beginning in 1983, this monitoring effort became known as the Regional Ambient Fish Tissue Monitoring Program (RAFT). Currently, the RAFT program is the only statewide fish contaminant-monitoring program in Iowa. Historically, the data generated from the RAFT program have enabled IDNR to document temporal changes in contaminant levels and to identify Iowa lakes and rivers where high levels of contaminants in fish potentially threaten the health of fish-consuming Iowans (see IDNR 2006). The Iowa RAFT monitoring program incorporates five different types of monitoring sites: 1) status, 2) follow-up, 3) trend, 4) turtle, and 5) random.
Resumo:
To supplement other environmental monitoring programs and to protect the health of people consuming fish from waters within this state, the state of Iowa conducts fish tissue monitoring. Since 1980, the Iowa Department of Natural Resources (IDNR), the United States Environmental Protection Agency Region VII (U.S. EPA), and the State Hygienic Laboratory (SHL) have cooperatively conducted annual statewide collections and analyses of fish for toxic contaminants. Beginning in 1983, this monitoring effort became known as the Regional Ambient Fish Tissue Monitoring Program (RAFT). Currently, the RAFT program is the only statewide fish contaminant-monitoring program in Iowa. Historically, the data generated from the RAFT program have enabled IDNR to document temporal changes in contaminant levels and to identify Iowa lakes and rivers where high levels of contaminants in fish potentially threaten the health of fish-consuming Iowans (see IDNR 2006). The Iowa RAFT monitoring program incorporates five different types of monitoring sites: 1) status, 2) trend, 3) follow-up, 4) turtle, and 5) random.
Resumo:
To supplement other environmental monitoring programs and to protect the health of people consuming fish from waters within this state, the state of Iowa conducts fish tissue monitoring. Since 1980, the Iowa Department of Natural Resources (IDNR), the United States Environmental Protection Agency Region VII (U.S. EPA), and the State Hygienic Laboratory (SHL) have cooperatively conducted annual statewide collections and analyses of fish for toxic contaminants. Beginning in 1983, this monitoring effort became known as the Regional Ambient Fish Tissue Monitoring Program (RAFT). Currently, the RAFT program is the only statewide fish contaminant-monitoring program in Iowa. Historically, the data generated from the RAFT program have enabled IDNR to document temporal changes in contaminant levels and to identify Iowa lakes and rivers where high levels of contaminants in fish potentially threaten the health of fish-consuming Iowans (see IDNR 2006). The Iowa RAFT monitoring program incorporates five different types of monitoring sites: 1) status, 2) trend, 3) random, 4) follow-up and 5) turtle.
Resumo:
O objetivo deste trabalho foi avaliar as dimensões, a produção e a eficiência produtiva de copas de laranjeiras 'Valência', enxertadas em citrumelos, limão 'Cravo' e citremon, cultivados sem irrigação. Sintomas de tristeza, declÃnio e incompatibilidade com a copa foram avaliados visualmente em 11 genótipos de porta-enxertos. Os citrumelos 'Swingle' e W-2 proporcionaram laranjeiras maiores e mais produtivas, com a mesma eficiência produtiva que as formadas sobre o limão 'Cravo'. Os citrumelos F.80.6, F.80.5, F.80.3 e F.80.18 induziram plantas com altura e diâmetro de copas inferiores a 2 m. Os citrumelos e o limão 'Cravo' são tolerantes à tristeza e ao declÃnio e compatÃveis com a laranja 'Valência'. O citremon é suscetÃvel à tristeza.
Resumo:
To supplement other environmental monitoring programs and to protect the health of people consuming fish from waters within this state, the state of Iowa conducts fish tissue monitoring. Since 1980, the Iowa Department of Natural Resources (IDNR), the United States Environmental Protection Agency Region VII (U.S. EPA), and the University of Iowa Hygienic Laboratory (UHL) have cooperatively conducted annual statewide collections and analyses of fish for toxic contaminants. Beginning in 1983, this monitoring effort became known as the Regional Ambient Fish Tissue Monitoring Program (RAFT). Currently, the RAFT program is the only statewide fish contaminant-monitoring program in Iowa. Historically, the data generated from the RAFT program have enabled IDNR to document temporal changes in contaminant levels and to identify Iowa lakes and rivers where high levels of contaminants in fish potentially threaten the health of fish-consuming Iowans (see IDNR 2006). The Iowa RAFT monitoring program incorporates four different types of monitoring sites: 1) status, 2) trend, 3) random and 4) follow-up. New for 2009 was the one-time inclusion of snapping turtle tissue as part of the Iowa RAFT sampling program.
Resumo:
To supplement other environmental monitoring programs and to protect the health of people consuming fish from waters within this state, the state of Iowa conducts fish tissue monitoring. Since 1980, the Iowa Department of Natural Resources (IDNR), the United States Environmental Protection Agency Region VII (U.S. EPA), and the University of Iowa Hygienic Laboratory (UHL) have cooperatively conducted annual statewide collections and analyses of fish for toxic contaminants. Beginning in 1983, this monitoring effort became known as the Regional Ambient Fish Tissue Monitoring Program (RAFT). Currently, the RAFT program is the only statewide fish contaminant-monitoring program in Iowa. Historically, the data generated from the RAFT program have enabled IDNR to document temporal changes in contaminant levels and to identify Iowa lakes and rivers where high levels of contaminants in fish potentially threaten the health of fish-consuming Iowans (see IDNR 2006). The Iowa RAFT monitoring program incorporates four different types of monitoring sites: 1) status, 2) trend, 3) random and 4) follow-up.
Resumo:
To supplement other environmental monitoring programs and to protect the health of people consuming fish from waters within this state, the state of Iowa conducts fish tissue monitoring. Since 1980, the Iowa Department of Natural Resources (IDNR), the United States Environmental Protection Agency Region VII (U.S. EPA), and the University of Iowa Hygienic Laboratory (UHL) have cooperatively conducted annual statewide collections and analyses of fish for toxic contaminants. Beginning in 1983, this monitoring effort became known as the Regional Ambient Fish Tissue Monitoring Program (RAFT). Currently, the RAFT program is the only statewide fish contaminant-monitoring program in Iowa. Historically, the data generated from the RAFT program have enabled IDNR to document temporal changes in contaminant levels and to identify Iowa lakes and rivers where high levels of contaminants in fish potentially threaten the health of fish-consuming Iowans (see IDNR 2006a). The Iowa RAFT monitoring program incorporates four different types of monitoring sites: 1) status, 2) trend, 3) random and 4) follow-up.