10,153 research outputs found

    Reply to the comment by Carmelo Anile on the paper "Complexity analysis of the cerebrospinal fluid pulse waveform during infusion studies"

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    Veterinary technology is an emerging profession within the veterinary and allied animal health fields in Australia and affords graduates the opportunity to contribute to the small but growing body of literature within this discipline. This study describes the introduction of a contextualised assessment task to develop students’ research capability, competence and confidence in professional writing, and to engage them with the academic publishing process. Students worked in self-selected dyads to author a scientific case report, of publishable standard, based on authentic cases from their clinical practicum. Intrinsic to the task, students attended a series of workshops that explored topics such as critiquing the literature, professional writing styles and oral presentation skills. Assessment was multi-staged with progressive feedback, including peer review, and culminated with students presenting their abstracts at a mock conference. Students reported the task to be an enjoyable and valuable learning experience which improved their competence and confidence in scientific writing; supported by a comparison of previously submitted work. Linking scientific writing skills to clinical practice experiences enhanced learning outcomes and may foster the professionalisation of students within this emerging discipline

    Understanding the role of obsolescence in PPP/PFI

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    In 2013 the Guardian newspaper reported that the UK Government had acquired £300 billion worth of capital costs and unitary payments within the formally known Private Finance Initiatives – now Public Private Partnerships. This paper is not about the economics or moral debate upon the success and failures of PPP’s within the UK, but rather the untold story of the impact of obsolescence upon the integral asset systems which support the service delivery. Prisons require supportable and maintainable security systems, the same can be said for government/defence buildings, not to the mention the life critical systems within hospitals and clinics across the country. However, there is an untold story, which is impacting the through life or lifecycle costs to support and maintain key asset systems, driving additional lifecycle expenditures that may be unforeseen. This paper contains evidence of the scale of the financial impact of obsolescence through obsolescence driven investments, not least to mention the potential operational impacts if systems become unsupportable. This paper begins to create a foundation for future research focusing on obsolescence and how best to monitor and mitigate its effects

    Changing Societal Expectations and the Need for Dynamic Asset Lifecycling and Obsolescence Management

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    Current revolutions within the consumer electronics market are having dramatic effects upon how businesses are able to deliver their services with the continued embedding of technology within our lives. Conversely, this is currently having a direct impact upon long life assets with life expectancy in the region of 15+ years, an impact, which is believed to only increase. The term asset in this context refers to systems and their internal components, for example security systems and their orthogonal components i.e. intruder detector components, CCTV cameras, recording equipment, automated security doors, controls etc. This is a rather middle to top-level view upon the term asset and components; you will find literature referring to components as the individual electrical and material elements of a product. The mismatching of lifecycles due to contrasting market conditions is driving unforeseen obsolescence investments across the Built Environment, highlighting the current neglect of obsolescence within static asset lifecycle planning. As society changes, so do the expectations of service delivery from the Built Environment. The pressures imposed by these changes upon Facilities Managers will demand resultant changes in how services are delivered, maintained and supported throughout their useful lives. It is the combination of societal demands for a greater connected, interactive and smarter Built Environment and the effects of technological change upon obsolescence that will be covered in this paper. This paper will build upon a current Engineering Doctorate project into obsolescence and asset management to speculate both the importance of developing a dynamic approach to planning asset lifecycles and possibly how this would materialise in the future. Evidence will be provided in the form of a case study, reviewed literature and current live trends, supporting the title of this paper. The main conclusions include the growing evidence that what is being witnessed across the Built Environment will likely increase and also that more advanced industries have experienced the same problems previously. It is therefore seen as a growth area for the Built Environment to reduce the impact of obsolescence and ensure that service delivery continues to meet societal expectations

    Development of a low-maintenance measurement approach to continuously estimate methane emissions: a case study

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    The chemical breakdown of organic matter in landfills represents a significant source of methane gas (CH4). Current estimates suggest that landfills are responsible for between 3% and 19% of global anthropogenic emissions. The net CH4 emissions resulting from biogeochemical processes and their modulation by microbes in landfills are poorly constrained by imprecise knowledge of environmental constraints. The uncertainty in absolute CH4 emissions from landfills is therefore considerable. This study investigates a new method to estimate the temporal variability of CH4 emissions using meteorological and CH4 concentration measurements downwind of a landfill site in Suffolk, UK from July to September 2014, taking advantage of the statistics that such a measurement approach offers versus shorter-term, but more complex and instantaneously accurate, flux snapshots. Methane emissions were calculated from CH4 concentrations measured 700 m from the perimeter of the landfill with observed concentrations ranging from background to 46.4 ppm. Using an atmospheric dispersion model, we estimate a mean emission flux of 709 μg m−2 s−1 over this period, with a maximum value of 6.21 mg m−2 s−1, reflecting the wide natural variability in biogeochemical and other environmental controls on net site emission. The emissions calculated suggest that meteorological conditions have an influence on the magnitude of CH4 emissions. We also investigate the factors responsible for the large variability observed in the estimated CH4 emissions, and suggest that the largest component arises from uncertainty in the spatial distribution of CH4 emissions within the landfill area. The results determined using the low-maintenance approach discussed in this paper suggest that a network of cheaper, less precise CH4 sensors could be used to measure a continuous CH4 emission time series from a landfill site, something that is not practical using far-field approaches such as tracer release methods. Even though there are limitations to the approach described here, this easy, low-maintenance, low-cost method could be used by landfill operators to estimate time-averaged CH4 emissions and their impact downwind by simultaneously monitoring plume advection and CH4 concentrations

    Evidence for a Single-Spin Azimuthal Asymmetry in Semi-inclusive Pion Electroproduction

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    Single-spin asymmetries for semi-inclusive pion production in deep-inelastic scattering have been measured for the first time. A significant target-spin asymmetry of the distribution in the azimuthal angle φ of the pion relative to the lepton scattering plane was formed for π^+ electroproduction on a longitudinally polarized hydrogen target. The corresponding analyzing power in the sinφ moment of the cross section is 0.022±0.005±0.003. This result can be interpreted as the effect of terms in the cross section involving chiral-odd spin distribution functions in combination with a chiral-odd fragmentation function that is sensitive to the transverse polarization of the fragmenting quark

    Identifying and Managing Asset Obsolescence within the Built Environment

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    Obsolescence in practice commonly occurs in two forms; the asset in question is no longer suitable for current demands, or is no longer available from manufacturers. Most research surrounding obsolescence has targeted short lifecycle components such as electronics or software (2-5 years). There is little consideration of low volume, long-life assets (20+ years) that are commonplace within the built environment (e.g. Uninterruptable Power Supply Systems, Building Management Systems and Fire Alarm Systems). This paper evidences the importance of identifying asset obsolescence within the built environment by observing 'lifecycle mismatches' within a live case study of a ten year old UK Private Finance Initiative (PFI). This paper develops and proposes an original assessment tool, identifying obsolescence within the built environment and empirically tests it within the case study. The methodology and results combine to evidence the importance of obsolescence and the contractual and financial risk it poses. The model is transferrable and scalable thus allowing larger portfolios to be considered. The levels of identifying obsolescence within long-life assets are increasing, whilst the lifecycles of certain component groups are decreasing; posing a growing problem for future Facility Managers

    Dispersive estimates for Schr\"odinger operators with point interactions in R3\mathbb{R}^3

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    The study of dispersive properties of Schr\"odinger operators with point interactions is a fundamental tool for understanding the behavior of many body quantum systems interacting with very short range potential, whose dynamics can be approximated by non linear Schr\"odinger equations with singular interactions. In this work we proved that, in the case of one point interaction in R3\mathbb{R}^3, the perturbed Laplacian satisfies the same LpLqL^p-L^q estimates of the free Laplacian in the smaller regime q[2,3)q\in[2,3). These estimates are implied by a recent result concerning the LpL^p boundedness of the wave operators for the perturbed Laplacian. Our approach, however, is more direct and relatively simple, and could potentially be useful to prove optimal weighted estimates also in the regime q3q\geq 3.Comment: To appear on: "Advances in Quantum Mechanics: Contemporary Trends and Open Problems", G. Dell'Antonio and A. Michelangeli eds., Springer-INdAM series 201

    Functional co-monotony of processes with applications to peacocks and barrier options

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    We show that several general classes of stochastic processes satisfy a functional co-monotony principle, including processes with independent increments, Brownian diffusions, Liouville processes. As a first application, we recover some recent results about peacock processes obtained by Hirsch et al. which were themselves motivated by a former work of Carr et al. about the sensitivity of Asian Call options with respect to their volatility and residual maturity (seniority). We also derive semi-universal bounds for various barrier options.Comment: 27 page

    Simulation of gain stability of THGEM gas-avalanche particle detectors

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    Charging-up processes affecting gain stability in Thick Gas Electron Multipliers (THGEM) were studied with a dedicated simulation toolkit. Integrated with Garfield++, it provides an effective platform for systematic phenomenological studies of charging-up processes in MPGD detectors. We describe the simulation tool and the fine-tuning of the step-size required for the algorithm convergence, in relation to physical parameters. Simulation results of gain stability over time in THGEM detectors are presented, exploring the role of electrode-thickness and applied voltage on its evolution. The results show that the total amount of irradiated charge through electrode's hole needed for reaching gain stabilization is in the range of tens to hundreds of pC, depending on the detector geometry and operational voltage. These results are in agreement with experimental observations presented previously

    A Review of the Use of Donepezil in the Treatment of Alzheimer’s Disease

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