965 resultados para Ondas de radio – Propagação


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A micropropagação de genótipos selecionados pode contribuir para atender a demanda de plantas matrizes e mudas de qualidade genética e sanitária comprovadas de videira (Vitis spp.) no Estado de Santa Catarina. O objetivo deste trabalho foi estabelecer e multiplicar in vitro porta-enxertos de videira e avaliar parâmetros morfofisiológicos fundamentais à micropropagação e aclimatização. Os porta-enxertos VR043-43, VR039-16, Paulsen 1103, R110, SO4 e Kober 5BB foram estabelecidos e multiplicados in vitro pelo método de gemas axilares em meio de cultura DSD1. Quarenta e dois por cento dos explantes foram estabelecidos in vitro. Houve variabilidade de crescimento, área foliar e matéria seca entre os genótipos. O porta-enxerto Paulsen 1103 foi numericamente superior aos demais no desenvolvimento in vitro em comprimento de caule (6,2 cm), produção de biomassa (34,8 mg) e área foliar (18,1 cm²) in vitro. O teor de clorofila total variou entre os porta-enxertos e o ambiente de cultura, com 0,7 e 2,8 mg/g de matéria fresca do R110 (in vitro) e VR043-43 (ex vitro), respectivamente. A maior (216,4/mm²) e a menor (119,2/mm²) densidade estomática foram apresentadas pelo VR039-16 in vitro e pelo SO4 ex vitro, respectivamente. A taxa de sobrevivência de plantas na aclimatização foi em média 90,3±1,1% por genótipo. Os porta-enxertos de videira avaliados apresentaram características morfofisiológicas apropriadas para a propagação in vitro e a transferência ex vitro.

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O camu-camu [Myrciaria dubia (Humb., Bonpl. & Kunth) McVaugh], da família Myrtaceae, é encontrado em áreas inundáveis da Região Amazônica e utilizado como conservante em antioxidantes por seu alto teor de ácido ascórbico. O objetivo deste trabalho foi avaliar porta-enxertos desta família, adaptados a terra firme, visando à propagação vegetativa de camu-camu. Selecionaram-se duzentas e quarenta mudas de camu-camu, goiabeira (Psidium guajava L.) e pitangueira (Eugenia uniflora L.), que receberam quatro tipos de enxertia, originando doze tratamentos de sessenta plantas, com cinco repetições. Apenas o porta-enxerto de camu-camu se mostrou compatível. A incompatibilidade entre camu-camu e os porta-enxertos de goiabeira e pitangueira foi demonstrada por análises anatômicas.

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We investigated the association between exposure to radio-frequency electromagnetic fields (RF-EMFs) from broadcast transmitters and childhood cancer. First, we conducted a time-to-event analysis including children under age 16 years living in Switzerland on December 5, 2000. Follow-up lasted until December 31, 2008. Second, all children living in Switzerland for some time between 1985 and 2008 were included in an incidence density cohort. RF-EMF exposure from broadcast transmitters was modeled. Based on 997 cancer cases, adjusted hazard ratios in the time-to-event analysis for the highest exposure category (>0.2 V/m) as compared with the reference category (<0.05 V/m) were 1.03 (95% confidence interval (CI): 0.74, 1.43) for all cancers, 0.55 (95% CI: 0.26, 1.19) for childhood leukemia, and 1.68 (95% CI: 0.98, 2.91) for childhood central nervous system (CNS) tumors. Results of the incidence density analysis, based on 4,246 cancer cases, were similar for all types of cancer and leukemia but did not indicate a CNS tumor risk (incidence rate ratio = 1.03, 95% CI: 0.73, 1.46). This large census-based cohort study did not suggest an association between predicted RF-EMF exposure from broadcasting and childhood leukemia. Results for CNS tumors were less consistent, but the most comprehensive analysis did not suggest an association.

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Foram testados os efeitos de diferentes concentrações de sacarose sobre a taxa multiplicativa de brotos in vitro e sobre a anatomia dos órgãos vegetativos de plântulas de macieira. A micropropagação foi obtida por organogênese direta a partir de ápices caulinares e segmentos internodais. Na análise estrutural, utilizou-se plântula desenvolvida em meio MS após 30 dias de cultura. A ausência de sacarose no meio de cultura ocasionou a morte ou atrofiamento do explante. A maior taxa de brotos foi obtida com os explantes de ápices caulinares, e o tamanho médio dos brotos, nas concentrações 30, 45 e 60 g L-1, variou entre 1 e 3 cm. A folha apresentou alterações estruturais de acordo com as concentrações de sacarose do meio.

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O objetivo deste trabalho foi avaliar a eficiência da enxertia in vitro na propagação de dois clones híbridos de Eucalyptus urophylla e E. grandis. Foram utilizados porta-enxertos juvenis obtidos de sementes de E. grandis e E. urophylla germinadas in vitro. As plantas enxertadas apresentaram pegamento de até 93% aos 50 dias de idade para as combinações de enxerto e porta-enxerto. Quanto ao crescimento em altura, verificaram-se melhores resultados em relação ao porta-enxerto E. urophylla. A análise histológica das plantas enxertadas comprovou a eficiência do processo de cicatrização do calo formado na região de conexão, seguida da reconstituição vascular.

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O objetivo deste trabalho foi avaliar as posições de origem de estacas de tomateiro na planta matriz, e quantificar a produtividade e qualidade dos frutos do híbrido Carmen, propagado por estaquia, em quatro cultivos sucessivos, o primeiro proveniente de sementes e os demais de estacas. Avaliaram-se produção por planta, massa dos frutos, número de frutos por planta, teor de sólidos solúveis, porcentagem de ácido cítrico e nutrientes em folhas e frutos. Os cultivos foram propagados, vegetativamente, em esquema fatorial 3x2 (três cultivos sucessivos e duas posições de origem das estacas, ápice e base), em blocos ao acaso, e parcelas subdivididas no tempo, com seis repetições. Compararam-se os quatro cultivos sucessivos, com base no intervalo de confiança das médias obtidas para as características avaliadas. A propagação vegetativa não reduziu a produtividade e a qualidade dos frutos, independentemente da posição de origem das estacas usadas nos três cultivos sucessivos. Também não foram observadas diferenças na produção e qualidade dos frutos, quando comparados o cultivo proveniente de sementes e os três oriundos de propagação vegetativa.

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Two portable Radio Frequency IDentification (RFID) systems (made by Texas Instruments and HiTAG) were developed and tested for bridge scour monitoring by the Department of Civil and Environmental Engineering at the University of Iowa (UI). Both systems consist of three similar components: 1) a passive cylindrical transponder of 2.2 cm in length (derived from transmitter/responder); 2) a low frequency reader (~134.2 kHz frequency); and 3) an antenna (of rectangular or hexagonal loop). The Texas Instruments system can only read one smart particle per time, while the HiTAG system was successfully modified here at UI by adding the anti-collision feature. The HiTAG system was equipped with four antennas and could simultaneously detect 1,000s of smart particles located in a close proximity. A computer code was written in C++ at the UI for the HiTAG system to allow simultaneous, multiple readouts of smart particles under different flow conditions. The code is written for the Windows XP operational system which has a user-friendly windows interface that provides detailed information regarding the smart particle that includes: identification number, location (orientation in x,y,z), and the instance the particle was detected.. These systems were examined within the context of this innovative research in order to identify the best suited RFID system for performing autonomous bridge scour monitoring. A comprehensive laboratory study that included 142 experimental runs and limited field testing was performed to test the code and determine the performance of each system in terms of transponder orientation, transponder housing material, maximum antenna-transponder detection distance, minimum inter-particle distance and antenna sweep angle. The two RFID systems capabilities to predict scour depth were also examined using pier models. The findings can be summarized as follows: 1) The first system (Texas Instruments) read one smart particle per time, and its effective read range was about 3ft (~1m). The second system (HiTAG) had similar detection ranges but permitted the addition of an anti-collision system to facilitate the simultaneous identification of multiple smart particles (transponders placed into marbles). Therefore, it was sought that the HiTAG system, with the anti-collision feature (or a system with similar features), would be preferable when compared to a single-read-out system for bridge scour monitoring, as the former could provide repetitive readings at multiple locations, which could help in predicting the scour-hole bathymetry along with maximum scour depth. 2) The HiTAG system provided reliable measures of the scour depth (z-direction) and the locations of the smart particles on the x-y plane within a distance of about 3ft (~1m) from the 4 antennas. A Multiplexer HTM4-I allowed the simultaneous use of four antennas for the HiTAG system. The four Hexagonal Loop antennas permitted the complete identification of the smart particles in an x, y, z orthogonal system as function of time. The HiTAG system can be also used to measure the rate of sediment movement (in kg/s or tones/hr). 3) The maximum detection distance of the antenna did not change significantly for the buried particles compared to the particles tested in the air. Thus, the low frequency RFID systems (~134.2 kHz) are appropriate for monitoring bridge scour because their waves can penetrate water and sand bodies without significant loss of their signal strength. 4) The pier model experiments in a flume with first RFID system showed that the system was able to successfully predict the maximum scour depth when the system was used with a single particle in the vicinity of pier model where scour-hole was expected. The pier model experiments with the second RFID system, performed in a sandbox, showed that system was able to successfully predict the maximum scour depth when two scour balls were used in the vicinity of the pier model where scour-hole was developed. 5) The preliminary field experiments with the second RFID system, at the Raccoon River, IA near the Railroad Bridge (located upstream of 360th street Bridge, near Booneville), showed that the RFID technology is transferable to the field. A practical method would be developed for facilitating the placement of the smart particles within the river bed. This method needs to be straightforward for the Department of Transportation (DOT) and county road working crews so it can be easily implemented at different locations. 6) Since the inception of this project, further research showed that there is significant progress in RFID technology. This includes the availability of waterproof RFID systems with passive or active transponders of detection ranges up to 60 ft (~20 m) within the watersediment column. These systems do have anti-collision and can facilitate up to 8 powerful antennas which can significantly increase the detection range. Such systems need to be further considered and modified for performing automatic bridge scour monitoring. The knowledge gained from the two systems, including the software, needs to be adapted to the new systems.

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In 2009, Cygnus X-3 (Cyg X-3) became the first microquasar to be detected in the GeV γ-ray regime, via the satellites Fermi and AGILE. The addition of this new band to the observational toolbox holds promise for building a more detailed understanding of the relativistic jets of this and other systems. We present a rich data set of radio, hard and soft X-ray, and γ-ray observations of Cyg X-3 made during a flaring episode in 2010 May. We detect a ~3 day softening and recovery of the X-ray emission, followed almost immediately by a ~1 Jy radio flare at 15 GHz, followed by a 4.3σ γ-ray flare (E > 100 MeV) ~1.5 days later. The radio sampling is sparse, but we use archival data to argue that it is unlikely the γ-ray flare was followed by any significant unobserved radio flares. In this case, the sequencing of the observed events is difficult to explain in a model in which the γ-ray emission is due to inverse Compton scattering of the companion star's radiation field. Our observations suggest that other mechanisms may also be responsible for γ-ray emission from Cyg X-3.

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Entrevista a Radio Nikosia

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Cognitive radio is a wireless technology aimed at improvingthe efficiency use of the radio-electric spectrum, thus facilitating a reductionin the load on the free frequency bands. Cognitive radio networkscan scan the spectrum and adapt their parameters to operate in the unoccupiedbands. To avoid interfering with licensed users operating on a givenchannel, the networks need to be highly sensitive, which is achieved byusing cooperative sensing methods. Current cooperative sensing methodsare not robust enough against occasional or continuous attacks. This articleoutlines a Group Fusion method that takes into account the behavior ofusers over the short and long term. On fusing the data, the method is basedon giving more weight to user groups that are more unanimous in their decisions.Simulations have been performed in a dynamic environment withinterferences. Results prove that when attackers are present (both reiterativeor sporadic), the proposed Group Fusion method has superior sensingcapability than other methods.

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Cognitive radio networks (CRN) sense spectrum occupancy and manage themselves to operate in unused bands without disturbing licensed users. The detection capability of a radio system can be enhanced if the sensing process is performed jointly by a group of nodes so that the effects of wireless fading and shadowing can be minimized. However, taking a collaborative approach poses new security threats to the system as nodes can report false sensing data to force a wrong decision. Providing security to the sensing process is also complex, as it usually involves introducing limitations to the CRN applications. The most common limitation is the need for a static trusted node that is able to authenticate and merge the reports of all CRN nodes. This paper overcomes this limitation by presenting a protocol that is suitable for fully distributed scenarios, where there is no static trusted node.

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Spectrum is an essential resource for the provision of mobile services. In order to control and delimit its use, governmental agencies set up regulatory policies. Unfortunately, such policies have led to a deficiency of spectrum as only few frequency bands are left unlicensed, and these are used for the majority of new emerging wireless applications. One promising way to alleviate the spectrum shortage problem is adopting a spectrum sharing paradigm in which frequency bands are used opportunistically. Cognitive radio is the key technology to enable this shift of paradigm.Cognitive radio networks are self-organized systems in which devices cooperate to use those spectrum ranges that are not occupied by licensed users. They carry out spectrum sensing in order to detect vacant channels that can be used for communication. Even though spectrum sensing is an active area of research, an important issue remains unsolved: the secure authentication of sensing reports. Not providing security enables the input of false data in the system thus empowering false results. This paper presents a distributed protocol based on wireless physical layer security, symmetric cryptography and one-way functions that allows determining a final sensing decision from multiple sources in a quick and secure way, as well as it preserves users¿ privacy.

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Spectrum scarcity demands thinking new ways tomanage the distribution of radio frequency bands so that its use is more effective. The emerging technology that can enable this paradigm shift is the cognitive radio. Different models fororganizing and managing cognitive radios have emerged, all with specific strategic purposes. In this article we review the allocation spectrum patterns of cognitive radio networks andanalyse which are the common basis of each model.We expose the vulnerabilities and open challenges that still threaten the adoptionand exploitation of cognitive radios for open civil networks.

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Cognitive radio networks sense spectrum occupancyand manage themselves to operate in unused bands without disturbing licensed users. Spectrum sensing is more accurate if jointly performed by several reliable nodes. Even though cooperative sensing is an active area of research, the secureauthentication of local sensing reports remains unsolved, thus empowering false results. This paper presents a distributed protocol based on digital signatures and hash functions, and ananalysis of its security features. The system allows determining a final sensing decision from multiple sources in a quick and secure way.