10,831 research outputs found

    Digital cultural heritage: Collaborating with students and discovering lost museums

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    Our paper consists of two parts. First, we review the history of the Royal United Service Institute (RUSI) museum, its collections, its closure and the dispersal of its collections. Second, we synthesize this analysis with a summary and reflection on the challenges of undertaking a collective memory project that represents the rise and fall of empire. To synthesize these two points, we discuss the museum’s history and highlight how digital cultural heritage initiatives have catalyzed an interest in digitizing and archiving RUSI’s collection records. Following our review of RUSI and its museum collection, we discuss the value of academics forming partnerships with cultural heritage institutions, and we analyze our experiences managing two student projects hosted at RUSI. Our discussion of student work will reflect on methods for designing engaging curriculum that encourages students to practice record keeping for cultural heritage institutions

    Solution of the Quasispecies Model for an Arbitrary Gene Network

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    In this paper, we study the equilibrium behavior of Eigen's quasispecies equations for an arbitrary gene network. We consider a genome consisting of N N genes, so that each gene sequence σ \sigma may be written as σ=σ1σ2...σN \sigma = \sigma_1 \sigma_2 ... \sigma_N . We assume a single fitness peak (SFP) model for each gene, so that gene i i has some ``master'' sequence σi,0 \sigma_{i, 0} for which it is functioning. The fitness landscape is then determined by which genes in the genome are functioning, and which are not. The equilibrium behavior of this model may be solved in the limit of infinite sequence length. The central result is that, instead of a single error catastrophe, the model exhibits a series of localization to delocalization transitions, which we term an ``error cascade.'' As the mutation rate is increased, the selective advantage for maintaining functional copies of certain genes in the network disappears, and the population distribution delocalizes over the corresponding sequence spaces. The network goes through a series of such transitions, as more and more genes become inactivated, until eventually delocalization occurs over the entire genome space, resulting in a final error catastrophe. This model provides a criterion for determining the conditions under which certain genes in a genome will lose functionality due to genetic drift. It also provides insight into the response of gene networks to mutagens. In particular, it suggests an approach for determining the relative importance of various genes to the fitness of an organism, in a more accurate manner than the standard ``deletion set'' method. The results in this paper also have implications for mutational robustness and what C.O. Wilke termed ``survival of the flattest.''Comment: 29 pages, 5 figures, to be submitted to Physical Review

    Imaging of Thermal Domains in ultrathin NbN films for Hot Electron Bolometers

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    We present low-temperature scanning electron microscopy (LTSEM) investigations of superconducting microbridges made from ultrathin NbN films as used for hot electron bolometers. LTSEM probes the thermal structure within the microbridges under various dc current bias conditions, either via electron-beam-induced generation of an unstable hotspot, or via the beam-induced growth of a stable hotspot. Such measurements reveal inhomogeneities on a micron scale, which may be due to spatial variations in the NbN film or film-interface properties. Comparison with model calculations for the stable hotspot regime confirm the basic features of common hot spot models.Comment: 3 pages, 3 figure

    EVALUATING THE IMPACT OF INTEGRATED PEST MANAGEMENT ON AGRICULTURE AND THE ENVIRONMENT IN THE TEXAS PANHANDLE

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    Agricultural producers in the Texas High Plains are facing the worst comparative economic conditions since 1913. Under these circumstances it is desirable to evaluate which programs are beneficial to agricultural producers and which ones are not. The concept of Integrated Pest Management was introduced to the Texas High Plains in 1976 and since then many IPM practices have been adopted for the four major crops; corn, cotton, sorghum, and wheat. The reduction in production cost is used as a measure of economic benefit and contingent valuation is used to estimate the value of the environmental benefits. The IPM practices, which have been adopted, reduce the production cost by more than 173millionperyear.Inadditionthepracticesreduceenvironmentalcost,asestimatedbycontingentvaluation,bymorethan173 million per year. In addition the practices reduce environmental cost, as estimated by contingent valuation, by more than 99 million per year. The total value of the economic and environmental benefits accruing to the Texas High Plains exceeds $272 million per year.Crop Production/Industries,

    Memory difference control of unknown unstable fixed points: Drifting parameter conditions and delayed measurement

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    Difference control schemes for controlling unstable fixed points become important if the exact position of the fixed point is unavailable or moving due to drifting parameters. We propose a memory difference control method for stabilization of a priori unknown unstable fixed points by introducing a memory term. If the amplitude of the control applied in the previous time step is added to the present control signal, fixed points with arbitrary Lyapunov numbers can be controlled. This method is also extended to compensate arbitrary time steps of measurement delay. We show that our method stabilizes orbits of the Chua circuit where ordinary difference control fails.Comment: 5 pages, 8 figures. See also chao-dyn/9810029 (Phys. Rev. E 70, 056225) and nlin.CD/0204031 (Phys. Rev. E 70, 046205

    Plasmon Evolution and Charge-Density Wave Suppression in Potassium Intercalated Tantalum Diselenide

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    We have investigated the influence of potassium intercalation on the formation of the charge-density wave (CDW) instability in 2H-tantalum diselenide by means of Electron Energy-Loss Spectroscopy and density functional theory. Our observations are consistent with a filling of the conduction band as indicated by a substantial decrease of the plasma frequency in experiment and theory. In addition, elastic scattering clearly points to a destruction of the CDW upon intercalation as can be seen by a vanishing of the corresponding superstructures. This is accompanied by a new superstructure, which can be attributed to the intercalated potassium. Based on the behavior of the c-axis upon intercalation we argue in favor of interlayer-sites for the alkali-metal and that the lattice remains in the 2H-modification
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