545 research outputs found

    Samuel Beckett’s ‘Ill Seen’: Visual Impairment in the Late Dramatic Works

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      Samuel Beckett’s critics have often written about his “aesthetics of impoverishment,” focusing on the ways in which Beckett impaired verbal language. Following the lead of those critics who have focused on the “ill said” in Beckett’s work, this paper traces Beckett’s use of the “ill seen”―i.e. the ways in which Beckett impaired the visual dimensions of his late dramatic works

    Stephen Dedalus in the Library: A Portrait of the Actor as a Young Man

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    James Joyce’s Ulysses contains an astonishing number of literary adaptations, the most prominent being Homer’s Odyssey and Shakespeare’s Hamlet. Among their many correspondences, Stephen Dedalus and Hamlet have been linked because of their shared artistic temperaments. Yet, neither Stephen nor Hamlet has any significant artistic output, which raises the question of how the reader can reasonably confer artistic status on them. This paper argues that both Stephen’s and Hamlet’s artistry derives from their role as performers in the works they inhabit. Stephen’s exposition on Shakespeare has been called a theory, lecture, and hypothesis. More than any of these, however, it is a performance. By examining the various strategies Joyce used to portray Stephen as a performer and his Shakespeare theory as a performance, this paper sheds light on an aspect of Joyce’s use of Shakespeare that has been little examined. In the library episode of Ulysses, Joyce adopted a dramatic, or performative mode to take on Shakespeare at his own game. In doing so, Joyce created a protagonist to rival Hamlet, and set himself up as a rival to the world’s greatest dramatist

    Classical Hadrodynamics: A New Approach to Ultrarelativistic Heavy-Ion Collisions

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    We discuss a new approach to ultrarelativistic heavy-ion collisions based on classical hadrodynamics for extended nucleons, corresponding to nucleons of finite size interacting with massive meson fields. This new theory provides a natural covariant microscopic approach that includes automatically spacetime nonlocality and retardation, nonequilibrium phenomena, interactions among all nucleons and particle production. In the current version of our theory, we consider NN extended unexcited nucleons interacting with massive neutral scalar (σ\sigma) and neutral vector (ω\omega) meson fields. The resulting classical relativistic many-body equations of motion are solved numerically without further approximation for soft nucleon-nucleon collisions at plabp_{\rm lab} = 14.6, 30, 60, 100 and 200 GeV/cc to yield the transverse momentum imparted to the nucleons. For the future development of the theory, the isovector pseudoscalar (π+\pi^+, π\pi^-, π0\pi^0), isovector scalar (δ+\delta^+, δ\delta^-, δ0\delta^0), isovector vector (ρ+\rho^+, ρ\rho^-, ρ0\rho^0) and neutral pseudoscalar (η\eta) meson fields that are known to be important from nucleon-nucleon scattering experiments should be incorporated. In addition, the effects of quantum uncertainty on the equations of motion should be included by use of techniques analogous to those used by Moniz and Sharp for nonrelativistic quantum electrodynamics.Comment: 6 pages, LA-UR-94-217

    The Effects of a Native Fish Reintroduction on Resident Fish Assemblages

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    Native fish reintroduction can be a valuable conservation tool used to curb declines in biodiversity. Previous native fish reintroduction projects have focused on monitoring population responses of the target species, yet potential changes in the resident fish assemblages have received less attention. The reintroduction of the Bluebreast Darter (Etheostoma camurum) to the Upper Licking River basin in Ohio was used as a model to understand how reintroduction may alter resident fish assemblages. This reintroduction began in 2016, with one additional year of stocking in 2017, and yearly follow-up surveys through 2019. Fish community, water-chemistry, and fluvial geomorphic measurements were also performed at the reintroduction sites. I found that the benthic fish assemblage diversity and evenness increased over time in response to the reintroduction, with coarser substrate emerging as an important mechanism of reintroduction success. Both diversity and evenness increased post reintroduction, peaking in 2018 and then dropping back down to similar levels at the beginning of the project. This research helps to better understand how reintroductions may impact aquatic assemblage architecture and inform future reintroduction efforts.No embargoAcademic Major: Environmental Scienc

    Recommendations for Future Efforts in RANS Modeling and Simulation

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    The roadmap laid out in the CFD Vision 2030 document suggests that a decision to move away from RANS research needs to be made in the current timeframe (around 2020). This paper outlines industry requirements for improved predictions of turbulent flows and the cost-barrier that is often associated with reliance on scale resolving methods. Capabilities of RANS model accuracy for simple and complex flow flow fields are assessed, and modeling practices that degrade predictive accuracy are identified. Suggested research topics are identified that have the potential to improve the applicability and accuracy of RANS models. We conclude that it is important that some part of a balanced turbulence modeling research portfolio should include RANS efforts

    Exploring the Area of Rectangles and their Applications

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    We will explain how to find the area of rectangles using the TI 84 tutorial. We will use “Area Explorer” from Project Interactivate to demonstrate how to find the area of different rectangular shapes. A Pre-designed house plan from GSP will be given to the students (to be loaded in each computer) to simulate a floor renewal. Students will calculate different areas from the house floor plan and collect the data
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