214 research outputs found

    The Modality System and the Emotional Appeals: An Interpersonal Interpretation of Roosevelt’s Speeches

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    This article takes Franklin D. Roosevelt’s four inaugural speeches as objects of study, and mainly uses the modality system in Halliday’s systemic functional grammar as theoretical framework. This paper, from a functional-stylistic perspective, tries to investigate the close relationship between the modality system and the interpersonal function, i.e. its emotional appeals to the audience, underlying those typical linguistic markers, hence to uncover Roosevelt’s unmatched linguistic competence and speaking techniques. Our study shows that Roosevelt prefers modalization to modulation. As for modulation, obligation covers 18.70% signaling the speaker’s degree of pressure on the audience to take positive action, and inclination appears frequently, covering 13.01%, and is mainly realized by finite modal operators or adjectives, showing Roosevelt’s willingness to do something for his country and people. Through these sparkling speeches, his wisdom and intelligence, capability and responsibility, prestige and power are fully demonstrated

    BaNa: a noise resilient fundamental frequency detection algorithm for speech and music

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    Fundamental frequency (F0) is one of the essential features in many acoustic related applications. Although numerous F0 detection algorithms have been developed, the detection accuracy in noisy environments still needs improvement. We present a hybrid noise resilient F0 detection algorithm named BaNa that combines the approaches of harmonic ratios and Cepstrum analysis. A Viterbi algorithm with a cost function is used to identify the F0 value among several F0 candidates. Speech and music databases with eight different types of additive noise are used to evaluate the performance of the BaNa algorithm and several classic and state-of-the-art F0 detection algorithms. Results show that for almost all types of noise and signal-to-noise ratio (SNR) values investigated, BaNa achieves the lowest Gross Pitch Error (GPE) rate among all the algorithms. Moreover, for the 0 dB SNR scenarios, the BaNa algorithm is shown to achieve 20% to 35% GPE rate for speech and 12% to 39% GPE rate for music. We also describe implementation issues that must be addressed to run the BaNa algorithm as a real-time application on a smartphone platform.Peer ReviewedPostprint (author's final draft

    Persistence versus extinction for two competing species under a climate change

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    This paper considers effects of a climate-induced range shift on outcomes of two competitive species, which is modeled by a reaction–diffusion system with the increasing growth rates of species along a shifting habitat gradient. Analytical conditions are established for the coexistence or competitive exclusion of two-competitors under the climate change, which present the control strategies to maintain the persistence of species

    How does noise impact speech-based emotion classification?

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    Emotion classification, Support vector machine, Thresholding fusion, Noisy speechPeer ReviewedPostprint (author's final draft

    Controlled synthesis of mussel-inspired Ag nanoparticle coatings with demonstrated in vitro and in vivo antibacterial properties

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    The in-situ formation of silver nanoparticles (AgNPs) via dopamine-reduction of Ag+ has been widely utilized for titanium implants to introduce antibacterial properties. In previous studies, the preparation of AgNPs has focused on controlling the feeding concentrations, while the pH of the reaction solution was ignored. Herein, we systematically determined the influence of various pH (4, 7, 10) and Ag+ concentrations (0.01, 0.1 mg/mL) on the AgNPs formation, followed by the evaluation of the antibacterial properties in vitro and in vivo. The results revealed that an alkaline environment was favourable for AgNP formation and resulted in more particles. Although the AgNPs bearing Ti had lower biocompatibilities, it was significantly improved after 7 days of mineralization in simulated body fluid. The outstanding antibacterial property of the AgNPs was well maintained after one day and seven days of implantation. Moreover, 3D micro-CT modelling showed that the pH 10/0.1 group exhibited remarkable osteogenesis, which may be due to their strong antibacterial properties and ability to promote mineralization. Therefore, we have demonstrated that the solution pH was as important as the feeding Ag+ concentration in determining AgNP formation, and it has paved the way for developing various AgNP-loaded surfaces that could meet different antibacterial needs

    Correlations of Baryon and Charge Stopping in Heavy Ion Collisions

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    Baryon numbers are carried by valence quarks in the standard QCD picture of the baryon structure, while some theory proposed an alternative baryon number carrier, a non-perturbative Y-shaped configuration of the gluon field, called the baryon junction in the 1970s. However, neither of the theories has been verified experimentally. It was recently suggested to search for the baryon junction by investigating the correlation of net-charge and net-baryon yields at midrapidity in heavy-ion collisions. This paper presents studies of such correlations in collisions of various heavy ions from Oxygen to Uranium with the UrQMD Monte Carlo model. The UrQMD model implements valence quark transport as the primary means of charge and baryon stopping at midrapidity. Detailed study are also carried out for isobaric 4096Zr_{40}^{96}\mathrm{Zr} + 4096Zr_{40}^{96}\mathrm{Zr} and 4496Ru_{44}^{96}\mathrm{Ru} + 4496Ru_{44}^{96}\mathrm{Ru} collisions. We found a universal trend of the charge stopping with respect to the baryon stopping, and that the charge stopping is always more than the baryon stopping. This study provides a model baseline in valence quark transport for what is expected in net-charge and net-baryon yields at midrapidity of relativistic heavy-ion collisions.Comment: 6 pages, 7 figure
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