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Questões de Concursos CETRO

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881Q24656 | Português, Enfermeiro, CHS, CETRO

De acordo com a norma-padrão da Língua Portuguesa e em relação à regência verbal, assinale a alternativa cuja frase esteja incorreta.
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882Q352902 | Contabilidade Geral, Analise das Demonstrações Contábeis Análise de Balanço, Supervisor de Vendas, IMBEL, CETRO

Analise as informações a seguir, da Empresa Delta S/A, em reais. Lucro líquido do exercício - R$ 400,00 Patrimônio líquido médio - R$ 2.000,00 Despesas financeiras - R$ 100,00 Ativo médio - R$ 3.000,00 Com base nos dados acima, a taxa de retorno do patrimônio líquido médio e o grau de alavancagem financeira são, respectivamente,

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883Q420742 | Direito Civil, Teoria das Obrigações Contratuais, Titular de Serviços e Notas e de Registros, TJ RJ, CETRO

Em relação ao mandato e à procuração, assinale a alternativa incorreta.
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884Q333526 | Matemática, Cálculo Aritmético Aproximado, Ajudante de Motorista, Liquigás Distribuidora SA, CETRO

José foi ao banco receber seu salário mensal e, após conferir seu dinheiro, pagou R$ 300,00 pelas contas de água, energia elétrica e telefone. Em seguida, foi ao supermercado fazer as compras do mês e gastou R$ 480,00. No caminho para sua casa, encontrou seus dois filhos e lhes presenteou com R$ 30,00 cada; em seguida, encontrou seu primo Antonio, que lhe devolveu R$ 70,00 que havia pedido emprestado no mês anterior. Sabendo que José chegou em casa com R$ 1010,00, pode-se concluir que seu salário mensal é?

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885Q24559 | Português, Oficial de Justiça, CHS, CETRO

De acordo com a norma-padrão da Língua Portuguesa e em relação à concordância nominal, assinale a alternativa correta.
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886Q161280 | Raciocínio Lógico, Atendente, CREF 4a Região, CETRO

Assinale a alternativa que apresenta o maior número inteiro que se pode somar ao dividendo de uma divisão, em que o divisor é 19 e o resto é 5, sem que o quociente sofra alteração.

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887Q46608 | Inglês, Cirurgião Dentista, AMAZUL, CETRO

Read the text below to answer the questions 11-15. 

NASA Researchers Studying Advanced Nuclear Rocket Technologies 

January 9, 2013 

By using an innovative test facility at NASA’s Marshall Space Flight Center in Huntsville, Ala., researchers are able to use non-nuclear materials to simulate nuclear thermal rocket fuels - ones capable of propelling bold new exploration missions to the Red Planet and beyond. The Nuclear Cryogenic Propulsion Stage team is tackling a three-year project to demonstrate the viability of nuclear propulsion system technologies. A nuclear rocket engine uses a nuclear reactor to heat hydrogen to very high temperatures, which expands through a nozzle to generate thrust. Nuclear rocket engines generate higher thrust and are more than twice as efficient as conventional chemical rocket engines. 

The team recently used Marshall’s Nuclear Thermal Rocket Element Environmental Simulator, or NTREES, to perform realistic, non-nuclear testing of various materials for nuclear thermal rocket fuel elements. In an actual reactor, the fuel elements would contain uranium, but no radioactive materials are used during the NTREES tests. Among the fuel options are a graphite composite and a “cermet” composite - a blend of ceramics and metals. Both materials were investigated in previous NASA and U.S. Department of Energy research efforts. 

Nuclear-powered rocket concepts are not new; the United States conducted studies and significant ground testing from 1955 to 1973 to determine the viability of nuclear propulsion systems, but ceased testing when plans for a crewed Mars mission were deferred. 

The NTREES facility is designed to test fuel elements and materials in hot flowing hydrogen, reaching pressures up to 1,000 pounds per square inch and temperatures of nearly 5,000 degrees Fahrenheit - conditions that simulate space-based nuclear propulsion systems to provide baseline data critical to the research team.

“This is vital testing, helping us reduce risks and costs associated with advanced propulsion technologies and ensuring excellent performance and results as we progress toward further system development and testing,” said Mike Houts, project manager for nuclear systems at Marshall. 

A first-generation nuclear cryogenic propulsion system could propel human explorers to Mars more efficiently than conventional spacecraft, reducing crews’ exposure to harmful space radiation and other effects of long-term space missions. It could also transport heavy cargo and science payloads. Further development and use of a first-generation nuclear system could also provide the foundation for developing extremely advanced propulsion technologies and systems in the future - ones that could take human crews even farther into the solar system. 

Building on previous, successful research and using the NTREES facility, NASA can safely and thoroughly test simulated nuclear fuel elements of various sizes, providing important test data to support the design of a future Nuclear Cryogenic Propulsion Stage. A nuclear cryogenic upper stage - its liquid- hydrogen propellant chilled to super-cold temperatures for launch - would be designed to be safe during all mission phases and would not be started until the spacecraft had reached a safe orbit and was ready to begin its journey to a distant destination. Prior to startup in a safe orbit, the nuclear system would be cold, with no fission products generated from nuclear operations, and with radiation below significant levels. 

“The information we gain using this test facility will permit engineers to design rugged, efficient fuel elements and nuclear propulsion systems,” said NASA researcher Bill Emrich, who manages the NTREES facility at Marshall. “It’s our hope that it will enable us to develop a reliable, cost-effective nuclear rocket engine in the not-too-distant future." 

The Nuclear Cryogenic Propulsion Stage project is part of the Advanced Exploration Systems program, which is managed by NASA’s Human Exploration and Operations Mission Directorate and includes participation by the U.S. Department of Energy. The program, which focuses on crew safety and mission operations in deep space, seeks to pioneer new approaches for rapidly developing prototype systems, demonstrating key capabilities and validating operational concepts for future vehicle development and human missions beyond Earth orbit. 

Marshall researchers are partnering on the project with NASA’s Glenn Research Center in Cleveland, Ohio; NASA’s Johnson Space Center in Houston; Idaho National Laboratory in Idaho Falls; Los Alamos National Laboratory in Los Alamos, N.M.; and Oak Ridge National Laboratory in Oak Ridge, Tenn. 

The Marshall Center leads development of the Space Launch System for NASA. The Science & Technology Office at Marshall strives to apply advanced concepts and capabilities to the research, development and management of a broad spectrum of NASA programs, projects and activities that fall at the very intersection of science and exploration, where every discovery and achievement furthers scientific knowledge and understanding, and supports the agency’s ambitious mission to expand humanity’s reach across the solar system. The NTREES test facility is just one of numerous cutting-edge space propulsion and science research facilities housed in the state-of- the-art Propulsion Research & Development Laboratory at Marshall, contributing to development of the Space Launch System and a variety of other NASA programs and missions. 

Available in: http://www.nasa.gov 
 
Consider the verb tense in the following sentence taken from the text. 

“Nuclear-powered rocket concepts are not new.” 

Choose the alternative in which the extract is in the same verb tense as the one above.
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888Q46614 | Inglês, Cirurgião Dentista, AMAZUL, CETRO

Background 

The Naval Nuclear Propulsion Program (NNPP) started in 1948. Since that time, the NNPP has provided safe and effective propulsion systems to power submarines, surface combatants, and aircraft carriers. Today, nuclear propulsion enables virtually undetectable US Navy submarines, including the sea-based leg of the strategic triad, and provides essentially inexhaustible propulsion power independent of forward logistical support to both our submarines and aircraft carriers. Over forty percent of the Navy"s major combatant ships are nuclear-powered, and because of their demonstrated safety and reliability, these ships have access to seaports throughout the world. The NNPP has consistently sought the best way to affordably meet Navy requirements by evaluating, developing, and delivering a variety of reactor types, fuel systems, and structural materials. The Program has investigated many different fuel systems and reactor design features, and has designed, built, and operated over thirty different reactor designs in over twenty plant types to employ the most promising of these developments in practical applications. Improvements in naval reactor design have allowed increased power and energy to keep pace with the operational requirements of the modern nuclear fleet, while maintaining a conservative design approach that ensures reliability and safety to the crew, the public, and the environment. As just one example of the progress that has been made, the earliest reactor core designs in the NAUTILUS required refueling after about two years while modern reactor cores can last the life of a submarine, or over thirty years without refueling. These improvements have been the result of prudent, conservative engineering, backed by analysis, testing, and prototyping. The NNPP was also a pioneer in developing basic technologies and transferring technology to the civilian nuclear electric power industry. For example, the Program demonstrated the feasibility of commercial nuclear power generation in this country by designing, constructing and operating the Shipping port Atomic Power Station in Pennsylvania and showing the feasibility of a thorium-based breeder reactor. 

In: Report on Low Enriched Uranium for Naval Reactor Cores. Page 1. Report to Congress, January 2014. Office of Naval Reactors. US Dept. of Energy. DC 2058 http://fissilematerials.org/library/doe14.pdf 
 
Read the passage taken of the text below. 

“The Naval Nuclear Propulsion Program (NNPP) started in 1948. Since that time, the NNPP has provided safe and effective propulsion systems to power submarines, surface combatants, and aircraft carriers. Today, nuclear propulsion enables virtually undetectable US Navy submarines, including the sea-based leg of the strategic triad, and provides essentially inexhaustible propulsion power independent of forward logistical support to both our submarines and aircraft carriers.” 

Choose the alternative in which the words can properly substitute the ones in bold and underlined, respectively.
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889Q24679 | Português, Técnico em Radiologia, CHS, CETRO

Quanto à ortografia e de acordo com a norma-padrão da Língua Portuguesa e o contexto, assinale a alternativa correta.
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890Q10097 | Pedagogia, Supervisor Escolar, SEE SP, CETRO

Em 2 de maio de 2007, foi protocolado numa Diretoria de Ensino pedido de autorização para funcionamento de um estabelecimento de ensino particular, que ministraria cursos presenciais de habilitação profissional de nível técnico, com início de atividades previsto para 1º de outubro daquele ano.

Cumprindo o disposto na Deliberação CEE nº 1/99, o Dirigente Regional de Ensino
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891Q21396 | Administração Pública, Analista Administrativo, ANVISA, CETRO

As entidades privadas sem fins lucrativos que pretendam celebrar convênio ou contrato de repasse com órgãos e entidades da Administração Pública federal deverão realizar cadastro prévio. Assinale a alternativa que apresenta o sistema em que se fará esse cadastro.
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892Q332475 | Matemática, Cálculo Aritmético Aproximado, Auxiliar de Ofício, SEMAE SP, CETRO

Sr. Jorge foi à padaria e comprou três litros de leite a R$ 1,40 o litro, 8 pãezinhos a R$ 0,15 cada e 500 gramas de presunto a R$ 12,00 o quilograma. Sr. Jorge tinha R$ 50,00 na carteira. Após pagar a compra, quanto lhe restou de troco?

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893Q16118 | Direito Administrativo, Assistente em C T 3 I, AEB, CETRO

É correto afirmar que a Lei nº 8.112/1990 trata do regime jurídico dos seguintes tipos de servidores públicos:
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894Q807690 | Legislação Federal, Legislação referente à Regulação Agências Regulatórias, Analista Administrativo, Agência Nacional de Vigilância Sanitária, CETRO

Sobre o sistema de Ouvidoria existente nas agências reguladoras, analise as assertivas abaixo.

I. À Ouvidoria, cabe atuar com imparcialidade, transparência e independência. No entanto, ela está hierarquicamente vinculada ao Diretor-Presidente da agência reguladora e a ele deverá reportar-se.

II. A competência das ouvidorias é a de dirimir, no âmbito administrativo, as divergências entre as empresas prestadoras de serviços públicos, bem como entre esses prestadores e seus usuários.

III. O Instituto da Ouvidoria está previsto apenas na Lei de Defesa do Usuário de Serviço Público.

IV. O Instituto da Ouvidoria tem origem na palavra sueca Ombudsman, cargo público de bastante relevância na monarquia daquele país; em sua origem, tinha o intuito de receber reclamações da população, investigando essas manifestações e levando-as ao conhecimento do governo monárquico.

V. Não cabe à Ouvidoria sugerir a implantação de mecanismos que incentivem o administrador público a analisar, alterar e implementar melhorias nos procedimentos regulatórios.

 É correto o que se afirma em

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895Q817936 | Legislação Federal, Legislação referente à Regulação Agências Regulatórias, Analista Administrativo, Agência Nacional de Vigilância Sanitária, CETRO

Com relação às teorias regulatórias, analise as assertivas abaixo.

I. Condições de entrada com exclusividade de demanda são importantes para recuperação de custos afundados em casos de monopólios naturais.

II. Os níveis tarifários de um contrato devem ser estabelecidos no processo licitatório, devendo ser conhecidos desde então, sem possibilidade de ajuste posterior, o que implica manutenção do equilíbrio econômico-financeiro dos serviços prestados.

III. Quanto maior a concorrência em um setor, maior é a necessidade do regulador em obter informações e intervir, sancionando os operadores ineficientes.

IV. Na teoria econômica, sob a gestão pública, a tendência é que haja um fraco desempenho das empresas, dado à falta de penalização à gestão improdutiva, pois os lucros e as perdas não são totalmente percebidos pelos gestores.

V. O sistema de “preço-teto” assume a assimetria de informação entre regulador e regulados, e como não observa o empenho de eficiência do operador, evita que os ganhos de eficiência sejam repartidos com os usuários.

É correto o que se afirma em

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896Q46613 | Inglês, Cirurgião Dentista, AMAZUL, CETRO

Background 

The Naval Nuclear Propulsion Program (NNPP) started in 1948. Since that time, the NNPP has provided safe and effective propulsion systems to power submarines, surface combatants, and aircraft carriers. Today, nuclear propulsion enables virtually undetectable US Navy submarines, including the sea-based leg of the strategic triad, and provides essentially inexhaustible propulsion power independent of forward logistical support to both our submarines and aircraft carriers. Over forty percent of the Navy"s major combatant ships are nuclear-powered, and because of their demonstrated safety and reliability, these ships have access to seaports throughout the world. The NNPP has consistently sought the best way to affordably meet Navy requirements by evaluating, developing, and delivering a variety of reactor types, fuel systems, and structural materials. The Program has investigated many different fuel systems and reactor design features, and has designed, built, and operated over thirty different reactor designs in over twenty plant types to employ the most promising of these developments in practical applications. Improvements in naval reactor design have allowed increased power and energy to keep pace with the operational requirements of the modern nuclear fleet, while maintaining a conservative design approach that ensures reliability and safety to the crew, the public, and the environment. As just one example of the progress that has been made, the earliest reactor core designs in the NAUTILUS required refueling after about two years while modern reactor cores can last the life of a submarine, or over thirty years without refueling. These improvements have been the result of prudent, conservative engineering, backed by analysis, testing, and prototyping. The NNPP was also a pioneer in developing basic technologies and transferring technology to the civilian nuclear electric power industry. For example, the Program demonstrated the feasibility of commercial nuclear power generation in this country by designing, constructing and operating the Shipping port Atomic Power Station in Pennsylvania and showing the feasibility of a thorium-based breeder reactor. 

In: Report on Low Enriched Uranium for Naval Reactor Cores. Page 1. Report to Congress, January 2014. Office of Naval Reactors. US Dept. of Energy. DC 2058 http://fissilematerials.org/library/doe14.pdf 
 
According to the text, the Naval Nuclear Propulsion Program – NNPP 

I. investigates more efficient fuels and reactors for the Navy.
II. is concerned about how to spend the financial resources received.
III. has also contributed with the civilian power industry. 

The correct assertion(s) is(are)
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897Q49177 | Direito Administrativo, Atividades Técnicas de Complexidade Intelectual, MDS, CETRO

Licitação consiste no conjunto de procedimentos administrativos para aquisições e contratações de serviços pela administração de todos os entes federativos. Nesse sentido, subordinam-se à Lei nº 8.666/1993
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898Q45609 | Português, Meteorologista, INMET, CETRO

Assinale a alternativa que preenche corretamente os espaços no período abaixo. 

Quando ___ dez dias comunicou ___ ela que iria ___ França para concluir seu mestrado, pôs-se ___ chorar.
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899Q6539 | Direito Administrativo, Técnico Administrativo, ANVISA, CETRO

Com relação à Lei nº 8.112/1990, que trata do regime jurídico dos servidores públicos civis da União, assinale a alternativa incorreta.
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900Q6542 | Direito Constitucional, Técnico Administrativo, ANVISA, CETRO

Sobre a nacionalidade, de acordo com a Constituição Federal, é correto afirmar que
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