6,283 research outputs found

    Examination of the inter-rater agreement among faculty marking a research proposal on an undergraduate health course

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    Copyright @ 2009 The Internet Journal of Allied Health Sciences and Practice.Purpose: This research looked at inter-rater agreement among faculty marking a research proposal on an undergraduate health course. The purpose of this study was to investigate if there were significant differences between marks as well as the comments given on research proposals that were double marked by two faculty members, where faculty were blind to the other marker’s marks and comments. Subjects: The subjects for this study consisted of 80 final year health students who submitted a research proposal and 13 full-time and 10 part-time faculty members who double marked the proposals. Methods: Faculty pairs marked the proposals independently and were required to meet with each other and discuss the marks given, reasons for the mark and the comments. Markers were asked to come to an agreement about the mark and the comments. Analyses: Agreement in marks was assessed using a Bland-Altman plot. Weighted Cohen's Kappa was used to estimate the agreement between the classifications given by markers. Comments were analyzed for differences using thematic analysis. Results: There was a wide discrepancy in the classification of students between markers. The weighted proportions found to agree on classification was 46%. Analysis of the comments indicated a wide discrepancy between markers. Conclusion: The outcomes of this study are similar to previous studies that have looked at inter-rater agreement when double marking was used to mark various types of written assignments. Further exploration of the inter-rater agreement in the marking process and other marking processes that results in a transparent system is needed

    Black hole quasinormal modes using the asymptotic iteration method

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    In this article we show that the asymptotic iteration method (AIM) allows one to numerically find the quasinormal modes of Schwarzschild and Schwarzschild de Sitter (SdS) black holes. An added benefit of the method is that it can also be used to calculate the Schwarzschild anti-de Sitter (SAdS) quasinormal modes for the case of spin zero perturbations. We also discuss an improved version of the AIM, more suitable for numerical implementation.Comment: 10 pages, LaTeX; references added; substantially expanded versio

    Split fermion quasi-normal modes

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    In this paper we use the conformal properties of the spinor field to show how we can obtain the fermion quasi-normal modes for a higher dimensional Schwarzschild black hole. These modes are of interest in so called split fermion models, where quarks and leptons are required to exist on different branes in order to keep the proton stable. As has been previously shown, for brane localized fields, the larger the number of dimensions the faster the black hole damping rate. Moreover, we also present the analytic forms of the quasi-normal frequencies in both the large angular momentum and the large mode number limits.Comment: 11 pages, 7 figures, version 2 added reference

    Graviton emission from simply rotating Kerr-de Sitter black holes: Transverse traceless tensor graviton modes

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    In this article we present results for tensor graviton modes (in seven dimensions and greater, n≄3n\geq 3) for greybody factors of Kerr-dS black holes and for Hawking radiation from simply rotating (n+4)-dimensional Kerr black holes. Although there is some subtlety with defining the Hawking temperature of a Kerr-dS black hole, we present some preliminary results for emissions assuming the standard Hawking normalization and a Bousso-Hawking-like normalization.Comment: 12 pages, 18 figure

    Angular Eigenvalues of Higher-Dimensional Kerr-(A)dS Black Holes with Two Rotations

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    In this paper, following the work of Chen, L\"u and Pope, we present the general metric for Kerr-(A)dS black holes with two rotations. The corresponding Klein-Gordon equation is separated explicitly, from which we develop perturbative expansions for the angular eigenvalues in powers of the rotation parameters with D≄6D\geq 6.Comment: 10 pages, no figures. To appear in the proceedings of 2011 Shanghai Asia-Pacific School and Workshop on Gravitatio

    Bulk dominated fermion emission on a Schwarzschild background

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    Using the WKBJ approximation, and the Unruh method, we obtain semi-analytic expressions for the absorption probability (in all energy regimes) for Dirac fermions on a higher dimensional Schwarzschild background. We present an analytic expression relating the absorption probability to the absorption cross-section, and then use these results to plot the emission rates to third order in the WKBJ approximation. The set-up we use is sufficiently general such that it could also easily be applied to any spherically symmetric background in dd-dimensions. Our results lead to the interesting conclusion that for d>5d>5 bulk fermion emission dominates brane localised emission. This is an example contrary to the conjecture that black holes radiate mainly on the brane.Comment: 13 pages, 3 figure

    Noise Robust Blind System Identification Algorithms Based On A Rayleigh Quotient Cost Function

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    Felsic Volcanic Units in the Boston Area, Massachusetts

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    Guidebook to geologic field studies in Rhode Island and adjacent areas: The 73rd annual meeting of the New England Intercollegiate Geological Conference, October 16-18, 1981: Trip C-
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