950 resultados para Enrique IV, Rey de Francia, 1553-1610


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Introdução; Análise estratégica; Principais oportunidades e principais ameaças; Formulação estratégica; Desafios científicos e tecnológicos; Colaboradores.

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Wydział Filologii Polskiej i Klasycznej: Instytut Filologii Polskiej

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[Vá esta impression cotejada con el original del Autor, y corregida de los innumerables errores que padecen las otras].

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This article presents the physical structure of the land, organic substances content and the chemical composition of soil comprising subsoil of 21 urban greenery locations in the city of Poznań. As they tend to be commonly underestimated, they have also been presented with view to their vital functions in plants’ life processes. The analysed microelements are referred to their levels, the so-called geo-chemical background of Polish soils and the limit values for field soils with medium levels of nutrients.

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Semiconductor nanowires, particularly group 14 semiconductor nanowires, have been the subject of intensive research in the recent past. They have been demonstrated to provide an effective, versatile route towards the continued miniaturisation and improvement of microelectronics. This thesis aims to highlight some novel ways of fabricating and controlling various aspects of the growth of Si and Ge nanowires. Chapter 1 highlights the primary technique used for the growth of nanowires in this study, namely, supercritical fluid (SCF) growth reactions. The advantages (and disadvantages) of this technique for the growth of Si and Ge nanowires are highlighted, citing numerous examples from the past ten years. The many variables involved in this technique are discussed along with the resultant characteristics of nanowires produced (diameter, doping, orientation etc.). Chapter 2 outlines the experimental methodologies used in this thesis. The analytical techniques used for the structural characterisation of nanowires produced are also described as well as the techniques used for the chemical analysis of various surface terminations. Chapter 3 describes the controlled self-seeded growth of highly crystalline Ge nanowires, in the absence of conventional metal seed catalysts, using a variety of oligosilylgermane precursors and mixtures of germane and silane compounds. A model is presented which describes the main stages of self-seeded Ge nanowire growth (nucleation, coalescence and Ostwald ripening) from the oligosilylgermane precursors and in conjunction with TEM analysis, a mechanism of growth is proposed. Chapter 4 introduces the metal assisted etching (MAE) of Si substrates to produce Si nanowires. A single step metal-assisted etch (MAE) process, utilising metal ion-containing HF solutions in the absence of an external oxidant, was developed to generate heterostructured Si nanowires with controllable porous (isotropically etched) and non-porous (anisotropically etched) segments. In Chapter 5 the bottom-up growth of Ge nanowires, similar to that described in Chapter 3, and the top down etching of Si, described in Chapter 4, are combined. The introduction of a MAE processing step in order to “sink” the Ag seeds into the growth substrate, prior to nanowire growth, is shown to dramatically decrease the mean nanowire diameters and to narrow the diameter distributions. Finally, in Chapter 6, the biotin – streptavidin interaction was explored for the purposes of developing a novel Si junctionless nanowire transistor (JNT) sensor.

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This thesis focuses on the synthesis and analysis of novel chloride based platinum complexes derived from iminophosphine and phosphinoamide ligands, along with studies on their reactivity towards substitution and oxidation reactions. Also explored here are the potential applications of these complexes for biological and luminescent purposes. Chapter one provides an extensive overview of platinum coordination chemistry with examples of various mixed donor ligands along with the history of platinum anticancer therapy. It also looks at metals in medicine, both for biological functions as well as for therapeutic purposes and gives a background to some other applications for platinum complexes. Chapter two outlines the design and synthetic strategies employed for the development of novel platinum (II) chloride complexes from iminophosphine and phosphinoamide ligands. Also reported is the cyclometallation of these complexes to form stable tridentate mixed donor platinum (II) compounds. In Chapter three the development of a direct method for displacing a chloride from a platinum metal centre with a desired phosphine is reported. Numerous methods for successful oxidation of the platinum (II) complexes will also be explored, leading to novel platinum (IV) complexes being reported here also. The importance of stabilisation of the displaced anion, chloride, by the solvent system will also be discussed in this chapter. Chapter four investigates the reactivity of the platinum (II) complexes towards two different biomolecules to form novel platinum bio-adducts. The potential application of the platinum (II) cyclometallates as chemotherapeutics will also be explored here using in-vitro cancer cell testing. Finally, luminescence studies are also reported here for the ligands and platinum complexes reported in chapter two and three to investigate potential applications in this field also. Chapter five provides a final conclusion and an overall summary of the entire project as well as identifying key areas for future work.

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Group IV materials such as silicon nanocrystals (Si NCs) and carbon quantum dots (CQDs) have received great attention as new functional materials with unique physical/chemical properties that are not found in the bulk material. This thesis reports the synthesis and characterisation of both types of nanocrystal and their application as fluorescence probes for the detection of metal ions. In chapter 2, a simple method is described for the size controlled synthesis of Si NCs within inverse micelles having well defined core diameters ranging from 2 to 6 nm using inert atmospheric synthetic methods. In addition, ligands with different molecular structures were utilised to reduce inter-nanocrystal attraction forces and improve the stability of the NC dispersions in water and a variety of organic solvents. Regulation of the Si NCs size is achieved by variation of the surfactants and addition rates, resulting high quality NCs with standard deviations (σ = Δd/d) of less than 10 %. Large scale production of highly mondisperse Si NC was also successfully demonstrated. In chapter 3, a simple solution phase synthesis of size monodisperse carbon quantum dots (CQDs) using a room temperature microemulsion strategy is demonstrated. The CQDs are synthesized in reverse micelles via the reduction of carbon tetrachloride using a hydride reducing agent. CQDs may be functionalised with covalently attached alkyl or amine monolayers, rendering the CQDs dispersible in wide range of polar or non-polar solvents. Regulation of the CQDs size was achieved by utilizing hydride reducing agents of different strengths. The CQDs possess a high photoluminescence quantum yield in the visible region and exhibit excellent photostability. In chapter 4, a simple and rapid assay for detection of Fe3+ ions was developed, based on quenching of the strong blue-green Si NC photoluminescence. The detection method showed a high selectivity, with only Fe3+ resulting in strong quenching of the fluorescence signal. No quenching of the fluorescence signal was induced by Fe2+ ions, allowing for solution phase discrimination between the same ion in different charge states. The optimised sensor system showed a sensitive detection range from 25- 900 μM and a limit of detection of 20.8 μM

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HIV-1 mucosal transmission begins with virus or virus-infected cells moving through mucus across mucosal epithelium to infect CD4+ T cells. Although broadly neutralizing antibodies (bnAbs) are the type of HIV-1 antibodies that are most likely protective, they are not induced with current vaccine candidates. In contrast, antibodies that do not neutralize primary HIV-1 strains in the TZM-bl infection assay are readily induced by current vaccine candidates and have also been implicated as secondary correlates of decreased HIV-1 risk in the RV144 vaccine efficacy trial. Here, we have studied the capacity of anti-Env monoclonal antibodies (mAbs) against either the immunodominant region of gp41 (7B2 IgG1), the first constant region of gp120 (A32 IgG1), or the third variable loop (V3) of gp120 (CH22 IgG1) to modulate in vivo rectal mucosal transmission of a high-dose simian-human immunodeficiency virus (SHIV-BaL) in rhesus macaques. 7B2 IgG1 or A32 IgG1, each containing mutations to enhance Fc function, was administered passively to rhesus macaques but afforded no protection against productive clinical infection while the positive control antibody CH22 IgG1 prevented infection in 4 of 6 animals. Enumeration of transmitted/founder (T/F) viruses revealed that passive infusion of each of the three antibodies significantly reduced the number of T/F genomes. Thus, some antibodies that bind HIV-1 Env but fail to neutralize virus in traditional neutralization assays may limit the number of T/F viruses involved in transmission without leading to enhancement of viral infection. For one of these mAbs, gp41 mAb 7B2, we provide the first co-crystal structure in complex with a common cyclical loop motif demonstrated to be critical for infection by other retroviruses.

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Cherax quadricarinatus, es una especie de langosta de agua dulce nativa de Australia y Papua Nueva Guinea que se cultiva en varios países incluyendo Argentina, por lo que las investigaciones acerca de su biología reproductiva están orientadas a conocer las condiciones óptimas de cultivo, y desarrollar técnicas para su reproducción y crecimiento. El objetivo general fue determinar el momento del desarrollo en que ocurre la diferenciación sexual y el posible rol regulador de la temperatura, caracterizar el proceso de diferenciación gonadal y madurez sexual, y los cambios morfométricos asociados. Los resultados indicaron que la diferenciación sexual secundaria ocurre a partir de los 0,23 g aproximadamente, correspondiente al estadio juvenil VI ó VII. La temperatura no ejerció un claro efecto sobre la diferenciación sexual. Las hembras, desde la diferenciación gonadal hasta su maduración, presentaron tres morfotipos ováricos. En función de la coloración ovárica, la estructura histológica y la proporción de los distintos tipos celulares se distinguieron cuatro estadios de desarrollo ovárico: I (blanco-transparente), II (crema pálido-naranja pálido), III (naranja con oocitos verdes) y IV (verde oliva). En los machos se identificaron tres estadios de desarrollo y dos tipos de appendices masculinae ó papilas fálicas. Se reconocieron diferentes patrones de intersexualidad y cuatro posibles combinaciones de aberturas genitales que permitieron definir cuatro tipos de intersexo: intersexo hembra (I), intersexo macho (II), y dos tipos de intersexo macho-hembra (III y IV). Los resultados del análisis morfométrico mostraron que los intersexos hembras representan un tipo sexual morfométricamente diferenciado de las hembras y los machos, aunque desde el punto de vista funcional son hembras. Los cambios en las relaciones morfométricas de las dimensiones de los quelípedos se vincularon con el inicio de la la madurez sexual desde el punto de vista histológico en los machos e intersexos hembra.

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¿A qué recuerda ese residuo de infelicidad (imperfección, inexactitud) que jamás llega a compensar la piedra más preciosa (fórmula, igualdad) y cuyo conocimiento determina el número exacto de quilates (perfección, igualdad) a la que debe aproximarse el diamante final (sucesión, serie, límite)? Sólo conociendo bien ese residuo evitaremos errores de cálculo, errores en la igualdad.

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Nos preguntábamos en algún momento del artículo anterior de esta serie si realmente el teorema de Pappus generaliza el de Pitágoras.

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El ajedrez puede constituir un excelente recurso didáctico en el aula de matemáticas. El presente trabajo trata sobre algunas de las conexiones que se pueden establecer entre estas dos disciplinas, y sobre la posibilidad de plantear problemas matemáticos tomando como soporte el tablero y las piezas de ajedrez. Los contenidos de los problemas son muy variados, manejando diversas cuestiones -algebraicas, combinatorias, geométricas, cálculo de probabilidades, de lógica, etc.-, que resultan especialmente motivadoras por el carácter lúdico y manipulativo que posee el juego de los 64 escaques.