840 resultados para Figure of writer


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Afin de se perpétuer dans le temps, la tradition recourt à des figures qui la véhiculent. Cette étude prend pour objet la figure du vampire qui, en transmettant des aspects importants de la tradition culturelle, prend la forme d’une tradition en soi, se manifestant dans une série de récits et d’œuvres littéraires et culturelles. Ces figures possèdent le plus grand pouvoir de transmission puisqu’elles ne sont pas des traditions à la base, mais elles ne peuvent rester culturellement importantes seulement qu’en devenant des traditions. C’est-à-dire que la figure du vampire possède sa propre tradition littéraire et/ou filmique, tout en offrant une vision de la transmission, de la tradition et de l’éducation. Afin de demeurer présentes à travers le temps, les traditions doivent posséder un noyau principal, tout en restant assez malléables afin que des caractéristiques secondaires de celles-ci puissent changer et évoluer. Le vampire est une figure toute aussi malléable que les traditions, faisant donc d’elle l’emblème parfait du concept. De plus, cinq nœuds de tradition réapparaissent, à différents niveaux, dans la littérature vampirique. Le choix de la victime, la morsure vampirique et l’échange de sang transformatif – et le lien de ceux-ci à une vision perverse de la sexualité, le processus d’éducation, le désir d’appartenir à une famille ou à une communauté et le besoin de comprendre ses origines, illustrent tous le lien indéniable entre la figure du vampire et le concept de la tradition. Ce mémoire explore l’impact de la figure du vampire comme emblème de la tradition à travers le roman vampirique classique – le plus traditionnel – Dracula de Bram Stoker et à travers les trois premiers tomes des Vampire Chronicles d’Anne Rice, soit Interview with the Vampire, The Vampire Lestat et Queen of the Damned, ainsi que leurs adaptations cinématographiques.

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This paper presents the implementation of a writer's workshop at Central Institute for the Deaf, as a method of developing the writing skills of hearing impaired children.

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The efficiency of a Wireless Power Transfer (WPT) system is greatly dependent on both the geometry and operating frequency of the transmitting and receiving structures. By using Coupled Mode Theory (CMT), the figure of merit is calculated for resonantly-coupled loop and dipole systems. An in-depth analysis of the figure of merit is performed with respect to the key geometric parameters of the loops and dipoles, along with the resonant frequency, in order to identify the key relationships leading to high-efficiency WPT. For systems consisting of two identical single-turn loops, it is shown that the choice of both the loop radius and resonant frequency are essential in achieving high-efficiency WPT. For the dipole geometries studied, it is shown that the choice of length is largely irrelevant and that as a result of their capacitive nature, low-MHz frequency dipoles are able to produce significantly higher figures of merit than those of the loops considered. The results of the figure of merit analysis are used to propose and subsequently compare two mid-range loop and dipole WPT systems of equal size and operating frequency, where it is shown that the dipole system is able to achieve higher efficiencies than the loop system of the distance range examined.

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We demonstrate how redox control of intra-molecular quantum interference in phase-coherent molecular wires can be used to enhance the thermopower (Seebeck coefficient) S and thermoelectric figure of merit ZT of single molecules attached to nanogap electrodes. Using first principles theory, we study the thermoelectric properties of a family of nine molecules, which consist of dithiol-terminated oligo (phenylene-ethynylenes) (OPEs) containing various central units. Uniquely, one molecule of this family possesses a conjugated acene-based central backbone attached via triple bonds to terminal sulfur atoms bound to gold electrodes and incorporates a fully conjugated hydroquinonecentral unit. We demonstrate that both S and the electronic contribution Z el T to the figure of merit ZT can be dramatically enhanced by oxidizing the hydroquinone to yield a second molecule, which possesses a cross-conjugated anthraquinone central unit. This enhancement originates from the conversion of the pi-conjugation in the former to cross-conjugation in the latter, which promotes the appearance of a sharp anti-resonance at the Fermi energy. Comparison with thermoelectric properties of the remaining seven conjugated molecules demonstrates that such large values of S and Z el T are unprecedented. We also evaluate the phonon contribution to the thermal conductance, which allows us to compute the full figure of merit ZT = Z el T/(1 + κ p/κ el), where κ p is the phonon contribution to the thermal conductance and κ el is the electronic contribution. For unstructured gold electrodes, κ p/κ el Gt⃒ 1 and therefore strategies to reduce κ p are needed to realize the highest possible figure of merit.

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National Highway Safety Bureau, Washington, D.C.

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Metalwork, Chinese, Ming; H: 10 3/64 in.; cast bronze

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Metalwork, Chinese, Ming; L: 3 35/64 in.; gilt bronze inlaid with precious stones

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Available on demand as hard copy or computer file from Cornell University Library.