983 research outputs found

    Digital exclusion: potential implications for social work education

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    QAA Subject Benchmark 5.9 requires social work students to demonstrate the ability to have a critical understanding of the social impact of ICT, including an awareness of the impact of the 'digital divide'. In the twenty-first century, the implications of digital exclusion may become increasingly relevant for the social work profession with its values of empowerment and anti-oppressive practices. As governments and organisations move closer to the provision of online services, the social worker may find themselves addressing the disempowerment of service users and carers disconnected from a virtual welfare state. The concern is that Benchmark 5.9 does not go far enough, that the full significance of this requirement may not be sufficiently realised and a greater awareness urgently called for

    Humesiana, a Remarkable New Cumacean Genus from the Caribbean Sea

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    Most nannastacid cumaceans collected from tropical waters belong to just a few genera, among them the nearly ubiquitous genus Cumella. A new nannastacid genus is described from the West Indian island of Guadeloupe. Members of the genus possess a very long and robust pleonite 6 and short and stubby uropods and share the loss of the ischium on pereiopod 2 and maxilliped 2. This new genus is clearly allied to three species within the genus Cumella, all of which have elongate pleonite 6 and short, but not robust, uropods. These three species are known from the Caribbean Sea, Red Sea, and Gulf of Thailand

    Scaling study of Si/SiGe MODFETs for RF applications

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    Based on the successful calibration on a 0.25 /spl mu/m strained Si/SiGe n-type MODFET, this paper presents a gate length scaling study of double-side doped Si/SiGe MODFETs. Our simulations show that gate length scaling improves device RF performance. However, the short channel effects (SCE) along with the parasitic delays limit the device performance improvements. We find that it is necessary to consider scaling (dimensions and doping) of both the lateral and vertical architecture in order to optimize the device design

    Reliable Network Design Problem: case with uncertain demand and total travel time reliability

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    In the reliable network design problem (RNDP) the main sources of uncertainty are variable demand and route choice. The objective is to maximize network total travel time reliability (TTR), which is defined as the probability that the network total travel time will be less than a threshold. A framework is presented for a stochastic network model with Poisson-distributed demand and uncertain route choice. The travelers are assumed to choose their routes to minimize their perceived expected travel cost following the probit stochastic user equilibrium condition. An analytical method is presented for approximation of the first and second moments of the total travel time. These moments are then fitted with a log-normal distribution. Then the design problem is tackled in which the analytical derivative of the TTR is derived with the sensitivity analysis of the equilibrated path choice probability. This derivative is then supplied to a gradient-based optimization algorithm to solve the RNDP. The algorithm is tested with a small network exampl

    Contumacious Beasts: A Story of Two Diastylidae (Cumacea) from Arctic Waters

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    A full description of the subadult male holotype of the diastylid Ektonodiastylis robusta, new genus, new species, is presented, as well as of the adult male and adult female of E. nimia. Ektonodiastylis nimia is transferred from Brachydiastylis to Ektonodiastylis. The family definition of Diastylidae is expanded. The implications of this expansion on the systematics of the Cumacea in general, and Diastylidae and Gynodiastylidae in particular, are discussed

    Recentering open for those at the margins: three lenses on lurking

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    The group presenting this session was formed through a serendipitous participation in a ‘slow chat’ (#HEdigID) on the topic of OEP. The chat went on long beyond its official end, and we realized that the #HEdigID network was larger than we had observed. It included ‘invisible’ participants who were simply listening, or tuning in once in a while. We began to discuss the practice of ‘lurking’ and the idea of ‘the lurker’. The group conversation which followed revealed some of the complexities of lurking behaviours. What (or who) is a “lurker”? Do we need to rethink what participation means? Why some learners are visible, and others less visible or maybe invisible, remaining on the margins of online and networked learning? Do we need to recenter participation in open spaces – to bring in those who appear to choose to stay on the periphery? It seems there is a need to turn a critical lens onto our assumptions, and think about how ‘privileging the visible’ may constrain and exclude more invisible learners equally interested in learning (Honeychurch et al., 2017; Popovac, M., & Fullwood, C., 2018). Against a prior emphasis on transmission of knowledge, designing for learning in today’s open environments is often ‘designing for participation’. Has the pendulum now swung too far in this direction, such that those who are said to ‘lurk’ are dismissed, derided, or at best, understood through a deficit model? Our proposed lenses on lurking as troublesome, political and ordinary, suggest alternative ways of understanding lurking behaviours, but do not provide an obvious answer to the question of how to engage the lurking learner – or whether the lurker must be engaged. What does learner agency look like in this context? Can we truly design for all? Or should we design for participation – and let lurkers lurk? We are seeking input from participants in online learning spaces – current students or teachers or people who have other roles or with an interest in learning in open environments. Through the discussion/activity, further insights into both the ‘lurker experience’ and inclusive learning design will emerge

    Optimizations of sub-100 nm Si/SiGe MODFETs for high linearity RF applications

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    Based on careful calibration in respect of 70 nm n-type strained Si channel S/SiGe modulation doped FETs (MODFETs) fabricated by Daimler Chrysler, numerical simulations have been used to study the impact of the device geometry and various doping strategies on device performance and linearity. The device geometry is sensitive to both RF performance and device linearity. Doped channel devices are found to be promising for high linearity applications. Trade-off design strategies are required for reconciling the demands of high device performance and high linearity simultaneously. The simulations also suggest that gate length scaling helps to achieve higher RF performance, but decreases the linearity

    Indication of Non-equilibrium Transport in SiGe p-MOSFETs

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