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排序方式: 共有5068条查询结果,搜索用时 15 毫秒
31.
JonathanSchwartz 《信息技术与标准化》2003,(5):33-33
长期以来,技术供应商在使用“开放”一词的同时,也在滥用它。因此,现在轮到技术用户大量使用开放一词,也就不足为奇了。如今,“开放”一词已经和软件源代码、工业标准、开发商社团和各种许可模型等四个完全不同的技术术语联系在一起。而这四个技术术语经常被人们以含糊的方式混为一谈。软件源代码、工业标准、开发商社团和许可模型都在发挥着各自的作用。但重要的是应该了解到,其中每一种技术指的是什么、不是什么。在这四种技术中,开放性标准最为关键,因为你今天做出的选择不应该妨碍你明天做出另外一种选择。这就是开放性标准的全… 相似文献
32.
This paper describes the static and transient thermal modelling of an Ohmic heating microreactor for biological sample processing for the purpose of genetic analysis. Precise thermal management can be used for the effective preparation of analyte DNA molecules prior to detection. Due to the small dimensions of the microreactor, the direct measurement and monitoring of the temperature distribution presents a challenge. To overcome this, thermal modelling has been used to accurately predict the thermal behaviour of the microreactor and sample component. It is further possible to calculate the required input power levels and provide design criteria to optimise the design of the microreactor. 相似文献
33.
Jonathan D. Servaites Sina Yeganeh Tobin J. Marks Mark A. Ratner 《Advanced functional materials》2010,20(1):97-104
Here, means to enhance power conversion efficiency (PCE or η) in bulk‐heterojunction (BHJ) organic photovoltaic (OPV) cells by optimizing the series resistance (Rs)—also known as the cell internal resistance—are studied. It is shown that current state‐of‐the‐art BHJ OPVs are approaching the limit for which efficiency can be improved via Rs reduction alone. This evaluation addresses OPVs based on a poly(3‐hexylthiophene):6,6‐phenyl C61‐butyric acid methyl ester (P3HT:PCBM) active layer, as well as future high‐efficiency OPVs (η > 10%). A diode‐based modeling approach is used to assess changes in Rs. Given that typical published P3HT:PCBM test cells have relatively small areas (~0.1 cm2), the analysis is extended to consider efficiency losses for larger area cells and shows that the transparent anode conductivity is then the dominant materials parameter affecting Rs efficiency losses. A model is developed that uses cell sizes and anode conductivities to predict current–voltage response as a function of resistive losses. The results show that the losses due to Rs remain minimal until relatively large cell areas (>0.1 cm2) are employed. Finally, Rs effects on a projected high‐efficiency OPV scenario are assessed, based on the goal of cell efficiencies >10%. Here, Rs optimization effects remain modest; however, there are now more pronounced losses due to cell size, and it is shown how these losses can be mitigated by using higher conductivity anodes. 相似文献
34.
Jonathan Harper Enrique Rodriguez 《今日电子》2007,(11):32-33
随着制造技术的发展和进步,系统设计人员必须跟上技术的发展步伐,才能为其设计挑选最合适的电子器件.MOSFET是电气系统中的基本部件,工程师需要深入了解它的关键特性及指标才能做出正确选择.本文将讨论如何根据RDS(ON)、热性能、雪崩击穿电压及开关性能指标来选择正确的MOSFET. 相似文献
35.
Dinh Thuy Phan Huy Jonathan Rodriguez Atílio Gameiro Rahim Tafazolli 《Wireless Personal Communications》2007,43(4):1727-1740
The Multicarrier CDMA Transmission Techniques for Integrated Broadband Cellular Systems (MATRICE) project addresses a candidate
solution for a Beyond 3G (B3G) air-interface based on Multi-Carrier Code Division Multiple Access (MC-CDMA). It investigates
dynamic resource allocation strategies at the Medium Access Control (MAC) layer to support the transport of Internet Protocol
(IP) packets over the air-interface in a cost effective manner and maximise the cell capacity with a target QoS. A candidate
Dynamic Resource Allocation (DRA) protocol architecture is proposed that is based on cross-layer signalling to provide reactive
resource allocation according to the fast channel and traffic variations. In-line with B3G expectations, the proposed DRA
handles a very large number of users with inherent flexibility and granularity necessary to support heterogeneous traffic,
and still with limited complexity. Thanks to the modular architecture of the DRA, various scheduling policies are investigated
and compared in terms of capacity and reactivity to the system environment. Simulation results have shown that the MATRICE
system has the potential to deliver broadband heterogenous services in a cost-effective manner, and emerge as a propespective
candidate air-interface for B3G cellular networks. 相似文献
36.
Merav Antman-Passig Jonathan Giron Moshe Karni Menachem Motiei Hadas Schori Orit Shefi 《Advanced functional materials》2021,31(29):2010837
Nerve growth conduits are designed to support and promote axon regeneration following nerve injuries. Multifunctionalized conduits with combined physical and chemical cues, are a promising avenue aimed at overcoming current therapeutic barriers. However, the efficacious assembly of conduits that promote neuronal growth remains a challenge. Here, a biomimetic regenerative gel is developed, that integrates physical and chemical cues in a biocompatible “one pot reaction” strategy. The collagen gel is enriched with magnetic nanoparticles coated with nerve growth factor (NGF). Then, through a remote magnetic actuation, highly aligned fibrillar gel structure embedded with anisotropically distributed coated nanoparticles, combining multiple regenerating strategies, is obtained. The effects of the multifunctional gels are examined in vitro, and in vivo in a 10-mm rat sciatic nerve injury model. The magneto-based therapeutic conduits demonstrate oriented and directed axonal growth, and improve nerve regeneration in vivo. The study of multifunctional guidance scaffolds that can be implemented efficiently and remotely provides the foundation to a novel therapeutic approach to overcome current medical obstacles for nerve injuries. 相似文献
37.
Marcus A. OMara Sean P. Ogilvie Matthew J. Large Aline Amorim Graf Anne C. Sehnal Peter J. Lynch Jonathan P. Salvage Izabela Jurewicz Alice A. K. King Alan B. Dalton 《Advanced functional materials》2020,30(32)
Here, an approach is presented to incorporate graphene nanosheets into a silicone rubber matrix via solid stabilization of oil‐in‐water emulsions. These emulsions can be cured into discrete, graphene‐coated silicone balls or continuous, elastomeric films by controlling the degree of coalescence. The electromechanical properties of the resulting composites as a function of interdiffusion time and graphene loading level are characterized. With conductivities approaching 1 S m?1, elongation to break up to 160%, and a gauge factor of ≈20 in the low‐strain linear regime, small strains such as pulse can be accurately measured. At higher strains, the electromechanical response exhibits a robust exponential dependence, allowing accurate readout for higher strain movements such as chest motion and joint bending. The exponential gauge factor is found to be ≈20, independent of loading level and valid up to 80% strain; this consistent performance is due to the emulsion‐templated microstructure of the composites. The robust behavior may facilitate high‐strain sensing in the nonlinear regime using nanocomposites, where relative resistance change values in excess of 107 enable highly accurate bodily motion monitoring. 相似文献
38.
On the Effect of the "Third-Person Effect": Perceived Influence of Media Coverage and Residential Mobility Intentions 总被引:1,自引:0,他引:1
This study demonstrates that third-person perceptions regarding the influence of media coverage of peripheral towns indirectly affect the desire to consider moving. It is argued that regardless of whether people's perceptions of where they live are really shaped by media coverage, if people believe others are affected by this coverage more than they are, they are more likely to consider relocation. We investigated whether the perceived stigmatization of peripheral development towns in Israel has an impact on the desire of their residents to stay or leave, over and above the disaffection with actual living conditions in these communities. Using structural equation modeling ( N = 472), we show that third-person estimations indeed influence both perceptions and behavioral intentions. 相似文献
39.
40.
Sabeel P. Valappil Derren Ready Ensanya A. Abou Neel David M. Pickup Wojciech Chrzanowski Luke A. O'Dell Robert J. Newport Mark E. Smith Michael Wilson Jonathan C. Knowles 《Advanced functional materials》2008,18(5):732-741
Novel quaternary gallium‐doped phosphate‐based glasses (1, 3, and 5 mol % Ga2O3) were synthesized using a conventional melt quenching technique. The bactericidal activities of the glasses were tested against both Gram‐negative (Escherichia coli and Pseudomonas aeruginosa) and Gram‐positive (Staphylococcus aureus, methicillin‐resistant Staphylococcus aureus, and Clostridium difficile) bacteria. Results of the solubility and ion release studies showed that these glass systems are unique for controlled delivery of Ga3+. 71Ga NMR measurements showed that the gallium is mostly octahedrally coordinated by oxygen atoms, whilst FTIR spectroscopy provided evidence for the presence of a small proportion of tetrahedral gallium in the samples with the highest gallium content. FTIR and Raman spectra also afford an insight into the correlation between the structure and the observed dissolution behavior via an understanding of the atomic‐scale network bonding characteristics. The results confirmed that the net bactericidal effect was due to Ga3+, and a concentration as low as 1 mol % Ga2O3 was sufficient to mount a potent antibacterial effect. The dearth of new antibiotics in development makes Ga3+ a potentially promising new therapeutic agent for pathogenic bacteria including MRSA and C. difficile. 相似文献