966 resultados para sound check


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In this article it is intended to discuss the issue of noise pollution from an unusual point of view: noise pollution is not only the result of sound increase worldwide, but, particularly, the poor quality of our listening habits in modern life as well. In contemporary society we are subject to a considerable amount of stimulus to all our senses: vision, scent, taste and hearing which are becoming more and more insensible due to over exposure in our environment. These increased stimuli make us look for alternatives to reduce our ability to perceive them and be protected from injuries. However, our sensitivity will also decrease. In the specific case of environment noise, over exposure has made us forget the enchantment of certain sounds that used to give us pleasure or evoke good feelings by many ways, making us recall certain good things, bringing particular moments of our lives to our memory or even filling us with strong emotion. The Canadian composer and music educator, R. Murray Schafer, believes that noise pollution is the result of a society who became deaf. Closing our ears to noise protect us from noise pollution but also prevent us from grasping subtleties of listening. Contemporary world does not help us to be aware of sound in the space around us; acquiring this hearing ability is a matter of focus, interest and practice. Sound education exercises are aimed at children, teenagers and adults who want to improve their listening ability to environmental sounds, perceive its proprieties and learn how sound affects us and touches our feelings. The results are easy to accomplish and contribute to our awareness of the sound environment around us and to the conception of the environmental sound as a composition made by everybody and everything through positive actions, strong will and high sensitivity. Copyright © (2011) by the International Institute of Acoustics & Vibration.

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The aim of this study was to evaluate effect of bleaching agents on sound enamel (SE) and enamel with early artificial caries lesions (CL) using confocal laser scanning microscopy (CLSM). Eighty blocks (4 × 5 × 5 mm) of bovine enamel were used and half of them were submitted to a pH cycling model to induce CL. Eight experimental groups were obtained from the treatments and mineralization level of the enamel (SE or CL) (n=10). SE groups: G1 - unbleached (control); G2 - 4% hydrogen peroxide (4 HP); G3 - 4 HP containing 0.05% Ca (Ca); G4 - 7.5% hydrogen peroxide (7.5 HP) containing amorphous calcium phosphate (ACP). CL groups: G5 - unbleached; G6 - 4 HP; G7 - 4 HP containing Ca; G8 - 7.5 HP ACP. G2, G3, G6, G7 were treated with the bleaching agents for 8 h/day during 14 days, while G4 and G8 were exposed to the bleaching agents for 30 min twice a day during 14 days. The enamel blocks were stained with 0.1 mM rhodamine B solution and the demineralization was quantified using fluorescence intensity detected by CLSM. Data were analyzed using ANOVA and Fisher's tests (α=0.05). For the SE groups, the bleaching treatments increased significantly the demineralization area when compared with the unbleached group. In the CL groups, no statistically significant difference was observed (p>0.05). The addition of ACP or Ca in the composition of the whitening products did not overcome the effects caused by bleaching treatments on SE and neither was able to promote remineralization of CL.

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In this work we developed a setup to measure the speed of sound in gases using a laser ultrasonics system. The mentioned setup is an all optical system composed by a Q-switched Nd:YAG laser to generate the sound waves, and a fiber optical microphone to detect them. The Nd:YAG provided a laser pulse of approximately 420 mJ energy and 9 ns of pulse width, at the wavelength of 1064 nm. The pulsed laser beam, focused by a positive lens, was used to generate an electrical breakdown (in the gas) which, in turn, generates an sound wave that traveled through a determined distance and reached the fiber optical microphone. The resulting signal was acquired in an oscilloscope and the time difference between the optical pulse and the arrival of the sound waves was used to calculate the speed of sound, since the distance was known. The system was initially tested to measure the speed of sound in air, at room pressure and temperature and it presented results in agreement with the theory, showing to be suitable to measure the speed of sound in gases. © 2012 American Institute of Physics.

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Aim: To evaluate the sound pressure level to which preschool students are exposed. Method: This was a prospective, quantitative, nonexperimental, and descriptive study. To achieve the aim of the study we used an audio dosimeter. The sound pressure level (SPL) measurements were obtained for 2 age based classrooms. Preschool I and II. The measurements were obtained over 4 days in 8-hour sessions, totaling 1920 minutes. Results: Compared with established standards, the SPL measured ranged from 40.6 dB (A) to 105.8 dB (A). The frequency spectrum of the SPL was concentrated in the frequency range between 500 Hz and 4000 Hz. The older children produced higher SPLs than the younger ones, and the levels varied according to the activity performed. Painting and writing were the quietest activities, while free activities period and games were the noisiest. Conclusion: The SPLs measured at the preschool were higher and exceeded the maximum permitted level according to the reference standards. Therefore, the implementation of actions that aim to minimize the negative impact of noise in this environment is essential.

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Pós-graduação em Música - IA

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Nos grandes centros urbanos pode-se constatar que o nível de ruído é tão elevado que ameaça a integridade psicológica e física dos habitantes. Entretanto, observa-se que muito do ruído no ambiente hospitalar origina-se de dentro do hospital, tendo como uma das principais fontes geradoras de ruído nas unidades os equipamentos e a conversação entre a equipe hospitalar. A perda auditiva induzida pelo ruído (PAIR) é uma das consequências que o ruído elevado pode acarretar à saúde, entre outros danos. Assim, o ambiente hospitalar que deveria ser sereno e silencioso transforma-se em um espaço ruidoso e estressante, aumentando a ansiedade e a percepção dolorosa do paciente, reduzindo o sono e estendendo a convalescença. Objetivo: Avaliar as condições acústicas dos principais ambientes nas unidades de urgência e emergência no município de Belém, Estado do Pará, Brasil. Verificar a adequação às normas sanitárias e técnicas vigentes, com a simulação de um ambiente piloto validado com a utilização do software ODEON e apresentar soluções virtuais de condicionamento acústico. Material e Métodos: foi utilizado o equipamento Medidor de Nível Sonoro com certificado de calibração da Rede Brasileira de Calibração (RBC) para aferição dos NPS nos períodos diurno e noturno, de acordo com o estabelecido pela NBR 10.151 (2000), além da observação e identificação das fontes de ruído dos ambientes. Resultados: Os valores obtidos durante as aferições dos NPS nos ambientes do Hospital A foram de 58 dB(A) a 70 dB(A) e do Hospital B foram de 62 dB(A) a 70 dB(A). O ambiente piloto foi selecionado de acordo com os resultados e com o tempo de permanência da equipe de saúde e dos pacientes. Conclusão: foi desenvolvido o modelo computacional validado do ambiente piloto, gerando um modelo proposto com intervenções arquitetônicas visando o conforto acústico da equipe de saúde e dos pacientes. Os ambientes pesquisados não apresentaram níveis de ruído superiores a 85 dB(A), comprovando que não há risco ocupacional para as equipes de saúde. Entretanto, níveis de ruídos elevados, por mais que não causem PAIR nos trabalhadores, são responsáveis por estimular ou até mesmo por desencadear diversos sintomas que prejudicam a capacidade laborativa da equipe de saúde, além de aumentar a convalescença e prejudicar a recuperação dos pacientes.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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In the present work is proposed the experimental study of hydrodynamic behaviour of membrane neurological valve, applied in treatment of hydrocephalus, a pathophisiology that affects both adults and children, caused due to the excess of cerebrospinal fluid in brain ventricles.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)