678 research outputs found

    Manifestations of Athletic Identity in Black Male Collegiate Student-Athletes: Introduction of a Model

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    The socialization of Black males into athletics leads to a heightened attention placed on their athletic identity. Once these student-athletes enter the collegiate environment, the institutions of higher education and associated athletic departments have neglected to holistically develop identity within Black male student-athletes. With this population representing less than 3% of the entire student-body population on college campuses (Harper, 2018), the support that they receive also does not help to counter the negative experiences that they have. Negative experiences then lead to negative outcomes such as becoming susceptible to stereotype threat and identity foreclosure. This paper presents a conceptual model to center race while connecting athletic identity within Black male student-athletes to their experiences on campus and the outcomes related to this identity

    Computational modelling of structural integrity following mass loss in polymeric charred cellular solids

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    A novel computational technique is presented for embedding mass-loss due to burning into the ANSYS finite element modelling code. The approaches employ a range of computational modelling methods in order to provide more complete theoretical treatment of thermoelasticity absent from the literature for over six decades. Techniques are employed to evaluate structural integrity (namely, elastic moduli, Poisson’s ratios, and compressive brittle strength) of honeycomb systems known to approximate three-dimensional cellular chars. That is, reducing the mass of diagonal ribs and both diagonal-plus-vertical ribs simultaneously show rapid decreases in the structural integrity of both conventional and re-entrant (auxetic, i.e., possessing a negative Poisson’s ratio) honeycombs. On the other hand, reducing only the vertical ribs shows initially modest reductions in such properties, followed by catastrophic failure of the material system. Calculations of thermal stress distributions indicate that in all cases the total stress is reduced in re-entrant (auxetic) cellular solids. This indicates that conventional cellular solids are expected to fail before their auxetic counterparts. Furthermore, both analytical and FE modelling predictions of the brittle crush strength of both auxetic and conventional cellular solids show a relationship with structural stiffness

    A review of in-situ loading conditions for mathematical modelling of asymmetric wind turbine blades

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    This paper reviews generalized solutions to the classical beam moment equation for solving the deflexion and strain fields of composite wind turbine blades. A generalized moment functional is presented to effectively model the moment at any point on a blade/beam utilizing in-situ load cases. Models assume that the components are constructed from inplane quasi-isotropic composite materials of an overall elastic modulus of 42 GPa. Exact solutions for the displacement and strains for an adjusted aerofoil to that presented in the literature and compared with another defined by the Joukowski transform. Models without stiffening ribs resulted in deflexions of the blades which exceeded the generally acceptable design code criteria. Each of the models developed were rigorously validated via numerical (Runge-Kutta) solutions of an identical differential equation used to derive the analytical models presented. The results obtained from the robust design codes, written in the open source Computer Aided Software (CAS) Maxima, are shown to be congruent with simulations using the ANSYS commercial finite element (FE) codes as well as experimental data. One major implication of the theoretical treatment is that these solutions can now be used in design codes to maximize the strength of analogues components, used in aerospace and most notably renewable energy sectors, while significantly reducing their weight and hence cost. The most realistic in-situ loading conditions for a dynamic blade and stationary blade are presented which are shown to be unique to the blade optimal tip speed ratio, blade dimensions and wind speed

    Computational actuator disc models for wind and tidal applications

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    This paper details a computational fluid dynamic (CFD) study of a constantly loaded actuator disc model featuring different boundary conditions; these boundary conditions were defined to represent a channel and a duct flow. The simulations were carried out using the commercially available CFD software ANSYS-CFX. The data produced were compared to the one-dimensional (1D) momentum equation as well as previous numerical and experimental studies featuring porous discs in a channel flow. The actuator disc was modelled as a momentum loss using a resistance coefficient related to the thrust coefficient

    An update from the editorial board of nutrients

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    Epidemiological evidence indicates an inverse association between nut consumption and obesity, inflammation, hyperlipidaemia and glucose intolerance. We investigated effects of high oleic peanut consumption vs. a nut free diet on adiposity and cardio-metabolic risk markers. In a randomised cross-over design, 61 healthy subjects (65 ± 7 years, body mass index (BMI) 31 ± 4 kg/m2) alternated either high oleic peanuts (15%–20% of energy) or a nut free diet for 12 weeks. Body composition and mass, waist circumference, C-reactive protein (CRP), lipids, glucose and insulin were assessed at baseline and after each phase. Repeated measures analysis of variance (ANOVA) compared the two diets. Consistent with other nut studies, there were no differences in lipids, CRP, glucose and insulin with peanut consumption. In contrast, some reports have demonstrated benefits, likely due to differences in the study cohort. Energy intake was 10% higher (853 kJ, p < 0.05), following peanut consumption vs. control, attributed to a 30% increase in fat intake (p < 0.001), predominantly monounsaturated (increase 22 g, p < 0.05). Despite greater energy intake during the peanut phase, there were no differences in body composition, and less than predicted increase (0.5 kg) in body weight for this additional energy intake, possibly due to incomplete nutrient absorption and energy utilisatio

    Special Section Guest Editorial: Machine Learning In Optics

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    This guest editorial summarizes the Special Section on Machine Learning in Optics

    Antitrust Challenge to Non-Profit Certification Organizations: Conflicts of Interest and a Practical Rule of Reason Approach to Certification Programs As Industry-Wide Builders of Competition and Efficiency

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    The paramount antitrust challenge for nonprofit product certification programs is to demonstrate aggressively that such programs strengthen the competitive market system on an industry-wide basis. This affirmative challenge is, however, limited by another urgent antitrust challenge still closer to the courtroom door. This challenge, requiring advance organizational and litigation planning, is to avoid or defeat a possible plaintiff\u27s claim of antitrust abuses by a certification organization whose decision-making participants may be caught in alleged conflicts of interest. These two challenges must be met for certification programs to survive and progress. The only way successfully to meet these antitrust challenges is to make product performance certification programs synonymous with industry-wide competition and productivity and with systems of safeguards against conflicts of interest. Further, this must be proved to the judge and jury. This Commentary will discuss two critical questions that flow from an analytical approach to these two challenges: First, whether a coherent basis exists for viewing nonprofit certification programs as structural elements in the marketplace hierarchy that advance urgent antitrust goals, including increased competition and productivity; and second, whether a distinct duty to safeguard certification organizations against conflicts of interest would, if met, demonstrate that a certification organization under antitrust scrutiny in court should be found to be without conspiratorial intent

    Berni Searle: Heritage and Cultural Identity

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    This short art analysis paper accompanies an original video presentation produced by UTC undergraduate students, dedicated to the work of a contemporary artist and developed as part of ART 4190r: Global Contemporary Art course in Spring 2021.https://scholar.utc.edu/global-contemporary-artists/1024/thumbnail.jp

    Minimizing the risk qualification test wafers have on the manufacturing readings of a new microprocessor fabrication site through data processes

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    Thesis (S.M.)--Massachusetts Institute of Technology, Sloan School of Management; and, (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2001.Includes bibliographical references (p. 73).by Jonathan E. Howe.S.M
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