996 resultados para Test tailoring, specifica tecnica, kurtosis, danno a fatica


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Ceramic dielectric resonators in the BaO-RE2O3-TiO2 (RE=rare earth) system have been prepared by the conventional solid state ceramic route. The dielectric properties have been tailored by substitution of different rare earth oxides and by bismuth oxide addition. The dielectric constants increased with Bi addition whereas the Q decreased. The temperature coeffecient of the resonant frequency improved with bismuth addition.

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Ceramic dielectric resonators in the BaO-RE2O3-TiO2 (RE = rare earth) system have been prepared by the conventional solid state ceramic route. The dielectric properties have been tailored by substitution of different rare earth oxides and by bismuth oxide addition. The dielectric constants increased with Bi addition whereas the 0 decreased. The temperature coefficient of the resonant frequency improved with bismuth addition

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Microwave dielectric ceramics based on GdTiNb,-,.Ta,O6 and Sml _.,Y,TiTa06 have been prepared by conventional solid state method . The GdTiTaO6 and SmTiTaO6 have aeschenite structure with positive rr and GdTiNbO6 and YTiTaO6 have euxenite structure with negative rr. The rr of the ceramics has been tuned by preparing solid solution phases between the aeschynites and euxenites for a possible zero rr material . It is observed that GdTiNbt_YTa.,O6 undergoes a phase transition from aeschynite to euxenite when x=0.75 and in Sml-,YxTiTa06 for x= 0.73. The microwave dielectric properties change abruptly near the transition region . The rr value approaches zero near the phase transition region while the samples have poor sinterability and poor quality factor . The unloaded quality factor, dielectric constant and the sign of rr of the solid solution phases are found to depend on the average ionic radius of the rare earth ion in RE ,-5RE',TiTaO6. The boundary of the euxenite-aeschynite phase transition occurs at an average ( RE) ionic radius of 0.915 A in Sm,_, Y,.TiTaO6 solid solution phases

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The development of new materials has been the hall mark of human civilization. The quest for making new devices and new materials has prompted humanity to pursue new methods and techniques that eventually has given birth to modern science and technology. With the advent of nanoscience and nanotechnology, scientists are trying hard to tailor materials by varying their size and shape rather than playing with the composition of the material. This, along with the discovery of new and sophisticated imaging tools, has led to the discovery of several new classes of materials like (3D) Graphite, (2D) graphene, (1D) carbon nanotubes, (0D) fullerenes etc. Magnetic materials are in the forefront of applications and have beencontributing their share to remove obsolescence and bring in new devices based on magnetism and magnetic materials. They find applications in various devices such as electromagnets, read heads, sensors, antennas, lubricants etc. Ferromagnetic as well as ferrimagnetic materials have been in use in the form of various devices. Among the ferromagnetic materials iron, cobalt and nickel occupy an important position while various ferrites finds applications in devices ranging from magnetic cores to sensors.

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Code clones are portions of source code which are similar to the original program code. The presence of code clones is considered as a bad feature of software as the maintenance of software becomes difficult due to the presence of code clones. Methods for code clone detection have gained immense significance in the last few years as they play a significant role in engineering applications such as analysis of program code, program understanding, plagiarism detection, error detection, code compaction and many more similar tasks. Despite of all these facts, several features of code clones if properly utilized can make software development process easier. In this work, we have pointed out such a feature of code clones which highlight the relevance of code clones in test sequence identification. Here program slicing is used in code clone detection. In addition, a classification of code clones is presented and the benefit of using program slicing in code clone detection is also mentioned in this work.

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Rubber ferrite composites containing various mixed ferrites were prepared for different compositions and various loadings. The magnetic and dielectric properties of the fillers as well as the ferrite filled matrixes were evaluated separately. The results are correlated. Simple equations are proposed to predetermine the magnetic and dielectric properties. The validity of these equations is verified and they are found to be in good agreement. These equations are useful in tailoring the magnetic and dielectric properties of these composites with predetermined properties

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Fe–Ni based amorphous thin films were prepared by thermal evaporation. These films were irradiated by 108 MeV Ag8+ ions at room temperature with fluences ranging from 1 1012 to 3 1013 ions/cm2 using a 15 UD Pelletron accelerator. Glancing angle x-ray diffraction studies showed that the irradiated films retain their amorphous nature. The topographical evolution of the films under swift heavy ion SHI bombardment was probed using atomic force microscope and it was noticed that surface roughening was taking place with ion beam irradiation. Magnetic measurements using a vibrating sample magnetometer showed that the coercivity of the films increases with an increase in the ion fluence. The observed coercivity changes are correlated with topographical evolution of the films under SHI irradiation. The ability to modify the magnetic properties via SHI irradiation could be utilized for applications in thin film magnetism

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Magnetism and magnetic materials have been playing a lead role in improving the quality of life. They are increasingly being used in a wide variety of applications ranging from compasses to modern technological devices. Metallic glasses occupy an important position among magnetic materials. They assume importance both from a scientific and an application point of view since they represent an amorphous form of condensed matter with significant deviation from thermodynamic equilibrium. Metallic glasses having good soft magnetic properties are widely used in tape recorder heads, cores of high-power transformers and metallic shields. Superconducting metallic glasses are being used to produce high magnetic fields and magnetic levitation effect. Upon heat treatment, they undergo structural relaxation leading to subtle rearrangements of constituent atoms. This leads to densification of amorphous phase and subsequent nanocrystallisation. The short-range structural relaxation phenomenon gives rise to significant variations in physical, mechanical and magnetic properties. Magnetic amorphous alloys of Co-Fe exhibit excellent soft magnetic properties which make them promising candidates for applications as transformer cores, sensors, and actuators. With the advent of microminiaturization and nanotechnology, thin film forms of these alloys are sought after for soft under layers for perpendicular recording media. The thin film forms of these alloys can also be used for fabrication of magnetic micro electro mechanical systems (magnetic MEMS). In bulk, they are drawn in the form of ribbons, often by melt spinning. The main constituents of these alloys are Co, Fe, Ni, Si, Mo and B. Mo acts as the grain growth inhibitor and Si and B facilitate the amorphous nature in the alloy structure. The ferromagnetic phases such as Co-Fe and Fe-Ni in the alloy composition determine the soft magnetic properties. The grain correlation length, a measure of the grain size, often determines the soft magnetic properties of these alloys. Amorphous alloys could be restructured in to their nanocrystalline counterparts by different techniques. The structure of nanocrystalline material consists of nanosized ferromagnetic crystallites embedded in an amorphous matrix. When the amorphous phase is ferromagnetic, they facilitate exchange coupling between nanocrystallites. This exchange coupling results in the vanishing of magnetocrystalline anisotropy which improves the soft magnetic properties. From a fundamental perspective, exchange correlation length and grain size are the deciding factors that determine the magnetic properties of these nanocrystalline materials. In thin films, surfaces and interfaces predominantly decides the bulk property and hence tailoring the surface roughness and morphology of the film could result in modified magnetic properties. Surface modifications can be achieved by thermal annealing at various temperatures. Ion irradiation is an alternative tool to modify the surface/structural properties. The surface evolution of a thin film under swift heavy ion (SHI) irradiation is an outcome of different competing mechanism. It could be sputtering induced by SHI followed by surface roughening process and the material transport induced smoothening process. The impingement of ions with different fluence on the alloy is bound to produce systematic microstructural changes and this could effectively be used for tailoring magnetic parameters namely coercivity, saturation magnetization, magnetic permeability and remanence of these materials. Swift heavy ion irradiation is a novel and an ingenious tool for surface modification which eventually will lead to changes in the bulk as well as surface magnetic property. SHI has been widely used as a method for the creation of latent tracks in thin films. The bombardment of SHI modifies the surfaces or interfaces or creates defects, which induces strain in the film. These changes will have profound influence on the magnetic anisotropy and the magnetisation of the specimen. Thus inducing structural and morphological changes by thermal annealing and swift heavy ion irradiation, which in turn induce changes in the magnetic properties of these alloys, is one of the motivation of this study. Multiferroic and magneto-electrics is a class of functional materials with wide application potential and are of great interest to material scientists and engineers. Magnetoelectric materials combine both magnetic as well as ferroelectric properties in a single specimen. The dielectric properties of such materials can be controlled by the application of an external magnetic field and the magnetic properties by an electric field. Composites with magnetic and piezo/ferroelectric individual phases are found to have strong magnetoelectric (ME) response at room temperature and hence are preferred to single phasic multiferroic materials. Currently research in this class of materials is towards optimization of the ME coupling by tailoring the piezoelectric and magnetostrictive properties of the two individual components of ME composites. The magnetoelectric coupling constant (MECC) (_ ME) is the parameter that decides the extent of interdependence of magnetic and electric response of the composite structure. Extensive investigates have been carried out in bulk composites possessing on giant ME coupling. These materials are fabricated by either gluing the individual components to each other or mixing the magnetic material to a piezoelectric matrix. The most extensively investigated material combinations are Lead Zirconate Titanate (PZT) or Lead Magnesium Niobate-Lead Titanate (PMNPT) as the piezoelectric, and Terfenol-D as the magnetostrictive phase and the coupling is measured in different configurations like transverse, longitudinal and inplane longitudinal. Fabrication of a lead free multiferroic composite with a strong ME response is the need of the hour from a device application point of view. The multilayer structure is expected to be far superior to bulk composites in terms of ME coupling since the piezoelectric (PE) layer can easily be poled electrically to enhance the piezoelectricity and hence the ME effect. The giant magnetostriction reported in the Co-Fe thin films makes it an ideal candidate for the ferromagnetic component and BaTiO3 which is a well known ferroelectric material with improved piezoelectric properties as the ferroelectric component. The multilayer structure of BaTiO3- CoFe- BaTiO3 is an ideal system to understand the underlying fundamental physics behind the ME coupling mechanism. Giant magnetoelectric coupling coefficient is anticipated for these multilayer structures of BaTiO3-CoFe-BaTiO3. This makes it an ideal candidate for cantilever applications in magnetic MEMS/NEMS devices. SrTiO3 is an incipient ferroelectric material which is paraelectric up to 0K in its pure unstressed form. Recently few studies showed that ferroelectricity can be induced by application of stress or by chemical / isotopic substitution. The search for room temperature magnetoelectric coupling in SrTiO3-CoFe-SrTiO3 multilayer structures is of fundamental interest. Yet another motivation of the present work is to fabricate multilayer structures consisting of CoFe/ BaTiO3 and CoFe/ SrTiO3 for possible giant ME coupling coefficient (MECC) values. These are lead free and hence promising candidates for MEMS applications. The elucidation of mechanism for the giant MECC also will be the part of the objective of this investigation.

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This work deals with the optical properties of supported noble metal nanoparticles, which are dominated by the so-called Mie resonance and are strongly dependent on the particles’ morphology. For this reason, characterization and control of the dimension of these systems are desired in order to optimize their applications. Gold and silver nanoparticles have been produced on dielectric supports like quartz glass, sapphire and rutile, by the technique of vapor deposition under ultra-high vacuum conditions. During the preparation, coalescence is observed as an important mechanism of cluster growth. The particles have been studied in situ by optical transmission spectroscopy and ex situ by atomic force microscopy. It is shown that the morphology of the aggregates can be regarded as oblate spheroids. A theoretical treatment of their optical properties, based on the quasistatic approximation, and its combination with results obtained by atomic force microscopy give a detailed characterization of the nanoparticles. This method has been compared with transmission electron microscopy and the results are in excellent agreement. Tailoring of the clusters’ dimensions by irradiation with nanosecond-pulsed laser light has been investigated. Selected particles are heated within the ensemble by excitation of the Mie resonance under irradiation with a tunable laser source. Laser-induced coalescence prevents strongly tailoring of the particle size. Nevertheless, control of the particle shape is possible. Laser-tailored ensembles have been tested as substrates for surface-enhanced Raman spectroscopy (SERS), leading to an improvement of the results. Moreover, they constitute reproducible, robust and tunable SERS-substrates with a high potential for specific applications, in the present case focused on environmental protection. Thereby, these SERS-substrates are ideally suited for routine measurements.

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A fully relativistic four-component Dirac-Fock-Slater program for diatomics, with numerically given AO's as basis functions is presented. We discuss the problem of the errors due to the finite basis-set, and due to the influence of the negative energy solutions of the Dirac Hamiltonian. The negative continuum contributions are found to be very small.

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Realizar un estudio de las propiedades psicométricas del test de Boehm de Conceptos Básicos (BTBC) a partir de las respuestas emitidas por escolares asturianos. 153 alumnos de Preescolar-1, 136 de Preescolar-2 y 205 de primero de EGB del Principado de Asturias, distribuidos en función del sexo y la clase social. Muestreo aleatorio estratificado con afijación proporcional dentro de la población escolar. Cálculo de los coeficientes de fiabilidad, validez e indices de dificultad y discriminación. Baremación de la prueba para la población asturiana. Para cada uno de los análisis se toma individualmente los tres grupos resultantes de los niveles escolares a los que pertenecen los sujetos de la muestra, pretendiendo con ello observar el comportamiento del test en cada grupo de edad. BTBC, WIPPSI, WIC y test de matrices progresivas de colores de Raven. Calificación académica en Lenguaje. La fiabilidad se calculó por tres métodos: dos mitades, alpha de Cronbach y zeta de Carmines. La validez se calculó por medio de correlaciones con otros tests y el análisis de componentes principales. Fiabilidad: para los dos grupos de Preescolar, los coeficientes son relativamente altos en todos los casos, produciéndose una baja significativa en el grupo de primero de EGB; también se observa que los resultados alcanzados son levemente inferiores a los aportados en el manual de la versión castellana. Validez: el test tiene una aceptable relación con las pruebas elegidas como criterio y con la calificación en lenguaje; se corrobora que el BTBC es un test multidimensional. Dificultad y discriminación: en la primera mitad los índices de dificultad son muy altos, de los que se derivan unos niveles de discriminación muy bajos para la mayor parte de los ítems; la segunda parte del test tiene unos índices de dificultad con valores más bajos y la discriminación mejora; al mismo tiempo, los resultados indican que los ítems aun cuando presentan una diferenciación en dificultad entre los correspondientes a la primera y segunda mitad, no mantienen un riguroso orden de dificultad creciente. Baremación: los datos obtenidos indican la necesidad de que se realice una unica baremación para todos los sujetos en los dos cursos de Preescolar y tres baremaciones, según los tres niveles de clase social, para el primer curso de EGB. En términos generales, se concluye que los valores obtenidos en los diferentes análisis caen dentro de niveles 'razonablemente' aceptables, no pudiendo olvidar nunca las especiales características de esta prueba.

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Comprobar la siguiente hipótesis: si ciertamente el Reversal es un test de madurez, sus resultados pueden constituir un índice predictivo del rendimiento en otras áreas. 740 alumnos de primero de EGB de centros de la región asturiana a través de un procedimiento aleatorio por conjuntos. La población se estratificó según: sexo, hábitat, régimen de enseñanza y asistencia o no de los alumnos a centros preescolares en el curso anterior. Para comprobar la hipótesis planteada, se relacionan los datos obtenidos en este test con los resultados de aquellos otros indicadores del rendimiento de los alumnos de primero de EGB: evaluación o exploración inicial de los alumnos efectuada por el docente al comenzar primero de EGB, los resultados del test de aptitudes cognoscitivas primaria I, y finalmente, la evaluación final al terminar el nivel de primero. Cuestionario 'ad hoc' con respuestas cerradas en escala y paramétrica, destinado a los docentes. Reversal y Test de aptitudes cognoscitivas primaria I. Calificación final en el área de Matemáticas, Lenguaje y global y calificaciones obtenidas por los alumnos en dos pruebas objetivas (Lenguaje y Matemáticas) expresamente preparadas con este fin. Análisis de las relaciones entre el reversal y las puntuaciones obtenidas en los demás indicadores. Cálculo de la validez de este test como instrumento predictivo a través de sus correlaciones con los demás indicadores utilizados.. Diferencias en función del nivel de maduración y el sexo: los alumnos clasificados con bajo nivel de maduración por el Reversal, obtienen las puntuaciones inferiores en todas las variables utilizadas; superioridad de las niñas respecto a los niños, aunque las diferencias no llegan a ser significativas. Interacción de variables en función del grado de madurez y el sexo: las correlaciones más elevadas se dan entre los índices de rendimiento y la madurez cognoscitiva evaluada por los docentes al comenzar el curso; se obtienen coeficientes diferentes con los diversos grupos entre rendimiento y test de aptitudes cognoscitivas, en los índices entre personalización y rendimiento se refleja claramente la influencia del nivel de maduración y el sexo. Relaciones entre el reversal y otros indicadores del rendimiento en función de la preescolarización: las correlaciones más altas se dan entre el Reversal y el Test de inteligencia primaria I; respecto al rendimiento de fin de curso los índices también son claramente representativos; los índices tienden a ser más bajos y desiguales en las relaciones entre el Reversal y la madurez cognoscitiva inicial evaluada por los docentes. Gran utilidad del Reversal como instrumento de diagnóstico y predicción. Se recomienda su utilización en los docentes por su facilidad de aplicación, valoración e interpretación. Este test permite obtener una información sobre el nivel de maduración del niño y 'pistas' de posibles anomalías o retrasos en las áreas perceptiva, espacial, etc..

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Diseñar y validar un protocolo de evaluación que sirva para estimar la competencia curricular en el área de matemáticas al final de la Educación Primaria o al inicio de la secundaria obligatoria. Es decir, lo que se pretende es construir un test de rendimiento en matemáticas que será baremado, tanto clásicamente como según la más moderna respuesta al ítem. 603 estudiantes de sexto de Educación Primaria en el Sector Educativo del Nalón (Asturias). Se trabaja con un error muestral muy pequeño (1,5 por ciento) y un nivel de confianza del 95 por ciento. Previamente a la aplicación del instrumento se realizó un estudio piloto con el fin de realizar una primera depuración de ítems para construir y validar estadísticamente una prueba que permitiera estimar el nivel curricular del alumnado en el área de matemáticas al final de la Educación Primaria. El trabajo se inicio con el análisis del currículo del área en tercer ciclo: decretos de mínimos y curricular de Educación Primaria. También se revisaron los documentos elaborados por el MEC, libros de texto de la principales editoriales y el material de refuerzo y recuperación disponible en el EOEP-Nalón (Asturias). Estas tareas sirven para diseñar la tabla de especificaciones de la prueba y construir un primera banco de ítems. Se diseña una matriz de especificaciones con un total de 46 entradas organizadas en dos ejes: a) Bloques de contenidos: numeración, operaciones, geometría, medidas y organización de la información; b) Capacidades matemáticas: conocimientos básicos, algoritmos, estrategias intermedias y resolución de problemas. El protocolo de evaluación implementado en la aplicación final consistió en una batería de 41 preguntas. A los 34 ítems seleccionados de la prueba piloto se unieron 7 más. El análisis de los resultados se llevo a cabo del programa SPSS V.8.0. Se calculan estadísticos de posición y dispersión, puntuaciones típicas y transformadas, ajuste a normalidad y descarte de diferencias entre los grupos de corte de la muestra. Buscando definir las características métricas se estiman los índices de fiabilidad y validez externa. a) La batería del estudio presenta buenos índices de fiabilidad, tanto en los coeficientes de test referidos a la norma, como al criterio; b) El valor del índice de fiabilidad es siempre una primera aproximación al estudio de unidimensionalidad de la escala. Un alfa superior a 0,86 parece indicar cierto grado de unidimensionalidad, lo que permitiría intentar el ajuste de los datos a algún modelo derivado de la Teoría de Respuesta al Ítem , y superar de esta forma los rudimentos de la Teoría Clásica de Respuesta a los Test; c) Se pueden establecer puntos de corte a partir del rendimiento en la prueba para identificar, tanto alumnos con dificultades en el área, como a posibles talentos matemáticos.