1,902 research outputs found

    Application of Raman diagnostics to combustion

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    The use of laser Raman diagnostic techniques to measure the specie concentrations and their temperatures in combustion flow fields is discussed. The system designed to measure the specie concentrations, which included a ruby laser and a photodiode to trip the laser at the maximum light and heat output of the combustion process, is described and problems encountered in developing the system are reported. Photographs of the combustion process are presented and analyzed detailing the evolution of the combustion in terms of the photodiode and the lack of a noticeable Raman-Stokes signal. The absence of the Raman-Stokes signal is discussed

    The impact of computer-assisted mathematics instruction for secondary students with learning disabilities

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    The purposes of this explorative study were to (a) compare results of the mathematics achievement of a group of secondary students with learning disabilities with and without computer-assisted instruction (n = 10) ; and (b) examine student satisfaction with computer-assisted instruction. The participants, ages 14-16 years old, were classified with SLD, or Specific Learning Disability , and had mathematics performance significantly below grade level according to their IEPs. Procedure included ten weeks of teacher-direct instruction and ten weeks of computer-assisted instruction in the computer lab. A total of eight mathematics units were covered, four during each condition of the study. Students completed a questionnaire at the end of each unit and were assessed by written teacher-made tests. A single subject design was used to compare the mean unit scores of the baseline, or teacher-direct instruction, to computer-assisted instruction. Mean and standard deviation values were analyzed in regard to a Likert Scale pre- and post-survey questionnaire collecting data about student satisfaction in computer-assisted mathematics instruction. There was no significant difference between the baseline and computer-assisted mean unit scores or student satisfaction with computer-assisted instruction

    Directional pinning and anisotropy in YBa2Cu3O7-x with BaZrO3 nanorods: intrinsic and nanorods-induced anisotropy

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    We present a study of the anisotropic vortex parameters as obtained from measurements of the microwave complex resistivity in the vortex state with a tilted applied magnetic field in YBa2Cu3O7-x thin films with BaZrO3 nanorods. We present the angular dependence of the vortex viscosity η\eta, the pinning constant k_p and the upper limit for the creep factor \chi_M. We show that the directional effect of the nanorods is absent in \eta, which is dictated by the mass anisotropy \gamma. By contrast, pinning-mediated properties are strongly affected by the nanorods. It is significant that the pinning and creep affected by the nanorods is detectable also at our very high operating frequency, which implies very short-range displacements of the vortices from their equilibrium position.Comment: Proceedings of VORTEX VIII Conference, to be published in Physica

    Strong reduction of field-dependent microwave surface resistance in YBa2_{2}Cu3_{3}O7−δ_{7-\delta} with sub-micrometric BaZrO3_3 inclusions

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    We observe a strong reduction of the field induced thin film surface resistance measured at high microwave frequency (ν=\nu=47.7 GHz) in YBa2_{2}Cu3_{3}O7−δ_{7-\delta} thin films grown on SrTiO3_3 substrates, as a consequence of the introduction of sub-micrometric BaZrO3_3 particles. The field increase of the surface resistance is smaller by a factor of ∼\sim3 in the film with BaZrO3_3 inclusions, while the zero-field properties are not much affected. Combining surface resistance and surface reactance data we conclude (a) that BaZrO3_3 inclusions determine very deep and steep pinning wells and (b) that the pinning changes nature with respect to the pure film.Comment: RevTeX; 4 pages, 3 figures; submitted to Applied Physics Letter

    Reduction of the field-dependent microwave surface resistance in YBa_2Cu_3O_7 with sub-micrometric BaZrO_3 inclusions as a function of BaZrO_3 concentration

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    In order to study the vortex pinning determined by artificially introduced pinning centers in the small-vortex displacement regime, we measured the microwave surface impedance at 47.7 GHz in the mixed state of YBa2_{2}Cu3_{3}O7−δ_{7-\delta} thin films, where sub-micrometric BaZrO3_3 particles have been incorporated. As a function of the BaZrO3_3 content, we observe that the absolute losses slightly decrease up to a BaZrO3_3 content of 5%, and then increase. We found that the magnetic-field-induced losses behave differently, in that they are not monotonic with increasing BaZrO3_3 concentration: at small concentration (2.5%) the field-induced losses increase, but large reduction of the losses themselves, by factors up to 3, is observed upon further increasing the BaZrO3_3 concentration in the target up to 7%. Using measurements of both surface resistance and surface reactance we estimate vortex pinning-related parameters. We find that BaZrO3_3 inclusions introduce deep and steep pinning wells. In particular, the minimum height of the energy barrier for single vortices is raised. At larger BaZrO3_3 content (5% and 7%) the phenomenon is at its maximum, but it is unclear whether it shows a saturation or not, thus leaving room for further improvements.Comment: 7 pages, 7 figure

    Anisotropy and directional pinning in YBaCuO with BaZrO3 nanorods

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    Measurements of anisotropic transport properties (dc and high-frequency regime) of driven vortex matter in YBa2_2Cu3_3O7−x_{7-x} with elongated strong-pinning sites (c-axis aligned, self-assembled BaZrO3_3 nanorods) are used to demonstrate that the effective-mass angular scaling takes place only in intrinsic physical quantities (flux-flow resistivity), and not in pinning-related Labusch parameter and critical currents. Comparison of the dynamics at different time scales shows evidence for a transition of the vortex matter toward a Mott phase, driven by the presence of nanorods. The strong pinning in dc arises partially from a dynamic effect.Comment: 4 pages, 4 figures. Accepted for publication on Applied Physics Letters. With respect to v1: changed title, slightly shortene

    Exclusive tensor meson photoproduction

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    We study tensor meson photoproduction outside of the resonance region, at beam energies of few GeVs. We build a model based on Regge theory that includes the leading vector and axial exchanges. We consider two determinations of the unknown helicity couplings, and fit to the recent a2 photoproduction data from CLAS. Both choices give a similar description of the a2 cross section, but result in different predictions for the parity asymmetries and the f2 photoproduction cross section. We conclude that new measurements of f2 photoproduction in the forward region are needed to pin down the correct production mechanism. We also extend our predictions to the 8.5 GeV beam energy, where current experiments are running.Comment: 13 pages, 7 figures, 3 tables. Version accepted for publication on Phys.Rev.
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