1000 resultados para visible thinking


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The titanium species in four kinds of titanium-containing MFI zeolites have been studied by ultraviolet (UV)-Raman and ultraviolet visible (UV-Vis) absorption spectroscopies and by the epoxidation of propylene with diluted H2O2 solution (30%). UV-Raman spectroscopy is proved to be a suitable means to estimate qualitatively the framework titanium in TS-l zeolites. Based on the comparison of the relative intensity ratio I-1125/I-380 of UV-Raman spectra, the TS-1(conv.) sample synthesized hydrothermally by the conventional procedure shows the highest amount of framework titanium. UV-Vis spectroscopy reveals that besides minor anatase. titanium species are mainly tetrahydrally coordinated into the framework for TS-l(conv.) or the Ti-ZSM-5 sample prepared by gas-solid reaction between deboronated B-ZSM-5 and TiCl4 vapor at elevated temperatures. For the TS-1(org.) and TS-1(inorg.) samples synthesized hydrothermally using tetrapropylammonium bromide (TPABr) as template and tetrabutylorthotitanite (TBOT) and TiCl3 as titanium source, respectively, the presence of mononuclear and isolated TiOx species which are proposed to bond to the zeolite extraframework is observed. In addition to the framework titanium species, these isolated TiOx species are assumed to be also active for propylene epoxidation.

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The latest buzz phrase to enter the world of design research is “Design Thinking”. But is this anything new and does it really have any practical or theoretical relevance to the design world? Many sceptics believe the term has more to do with business strategy and little to do with the complex process of designing products, services and systems. Moreover, many view the term as misleading and a cheap attempt to piggyback the world of business management onto design. This paper seeks to ask is design thinking anything new? Several authors have explicitly or implicitly articulated the term “Design Thinking” before, such as Peter Rowe’s seminal book “Design Thinking” [1] first published in 1987 and Herbert Simon’s “The Sciences of the Artificial” [2] first published in 1969. In Tim Brown’s “Change by Design” [3], design thinking is thought of as a system of three overlapping spaces rather than a sequence of orderly steps namely inspiration – the problem or opportunity that motivates the search for solutions; ideation – the process of generating, developing and testing ideas; and implementation – the path that leads from the design studio, lab and factory to the market. This paper seeks to examine and critically analyse the tenets of this new design thinking manifesto set against three case studies of modern design practice. As such, the paper will compare design thinking theory with the reality of design in practice.

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B. Schafer, J. Keppens and Q. Shen. Thinking with and outside the Box: Developing Computer Support for Evidence Teaching. P. Robert and M. Redmayne (Eds.), Innovations in Evidence and Proof: Integrating Theory, Research and Teaching, pp. 139-158, 2007.

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Emeseh, Engobo, 'Corporate Responsibility for Crime: Thinking outside the Box' I University of Botswana Law Journal (2005) 28-49 RAE2008

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Estetyka w archeologii. Antropomorfizacje w pradziejach i starożytności, eds. E. Bugaj, A. P. Kowalski, Poznań: Wydawnictwo Poznańskie.

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The following article appeared in Torres, V., Beruete, M., Del Villar, I., & Sánchez, P. (2016). Indium tin oxide refractometer in the visible and near infrared via lossy mode and surface plasmon resonances with Kretschmann configuration. Applied Physics Letters, 108(4), doi:10.1063/1.4941077, and may be found at http://dx.doi.org/10.1063/1.4941077.

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Poszukiwanie uniwersalnej definicji bezpieczeństwa Polski w niestabilnym systemie Unii Europejskiej opiera się głównie na odnalezieniu się w roli gracza i aktora, który jako samodzielny podmiot bierze aktywny udział w wielowymiarowym unijnym systemie negocjacji i przetargów (brokering between different interests). Polska musi mieć przygotowany swój program działania w UE o charakterze strategicznym i taktycznym włączając w niego państwo-centryczne priorytety horyzontalne i sektorowe, zarówno antykryzysowe jak i antagonistyczne i dysfunkcjonalne. Wymaga to perfekcyjnego przygotowania wykształconego zespołu ludzi zajmujących się bezpieczeństwem. Konieczne są bardzo wysokie umiejętności organizacyjne i wysoki stopień znajomości sposobu funkcjonowania państw w relacjach do całości i poszczególnych elementów UE. Wszystko to sprowadza się do konieczności wypracowywania specyficznego modus operandi polskiego bezpieczeństwa, na który poza znanymi już regułami i procedurami składa się ich interwencyjne zaplecze instytucjonalno-administracyjne oraz logistyczno-techniczne. Polska musi też posiąść zdolność do adaptacji do otaczającego świata (Europy) poprzez poszerzanie bazy funkcjonowania systemu integracyjnego. Wiąże się to bezpośrednio z dostosowywaniem do permanentnej zmiany w Unii Europejskiej i globalnym otoczeniu. Adaptacja jest również istotna z punktu widzenia potrzeby stabilizowania systemu. Pozwala neutralizować wszelkie próby zakłóceń funkcjonalnych jej struktury, pozycji i zbioru kompetencji. Adaptację powinna uzupełniać realistyczna innowacyjność i misyjność Polski widoczna przez wprowadzanie do środowiska (otoczenia) nowych reguł i mechanizmów bezpieczeństwa. Innowacyjność wiąże się z inicjowaniem nowego stylu/sposobu myślenia o bezpieczeństwie, a w związku z tym z nowatorstwem w zakresie wielopoziomowego (wieloprzestrzennego) ujmowania bezpieczeństwa. Na tak rozumiane bezpieczeństwo państwa składa się nie tylko zdolność obronna (militarna), ale także siła gospodarki oraz zasoby, którym Polska powinna dysponować. Misyjność sprowadza się natomiast do promowania i propagowania wartości przypisanych państwu narodowemu - niezapisanych w unijnych traktatach takich jak potęga, racja stanu i niepodległość.

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http://www.archive.org/details/rethinkingmissio011901mbp

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We propose a new characterization of protein structure based on the natural tetrahedral geometry of the β carbon and a new geometric measure of structural similarity, called visible volume. In our model, the side-chains are replaced by an ideal tetrahedron, the orientation of which is fixed with respect to the backbone and corresponds to the preferred rotamer directions. Visible volume is a measure of the non-occluded empty space surrounding each residue position after the side-chains have been removed. It is a robust, parameter-free, locally-computed quantity that accounts for many of the spatial constraints that are of relevance to the corresponding position in the native structure. When computing visible volume, we ignore the nature of both the residue observed at each site and the ones surrounding it. We focus instead on the space that, together, these residues could occupy. By doing so, we are able to quantify a new kind of invariance beyond the apparent variations in protein families, namely, the conservation of the physical space available at structurally equivalent positions for side-chain packing. Corresponding positions in native structures are likely to be of interest in protein structure prediction, protein design, and homology modeling. Visible volume is related to the degree of exposure of a residue position and to the actual rotamers in native proteins. In this article, we discuss the properties of this new measure, namely, its robustness with respect to both crystallographic uncertainties and naturally occurring variations in atomic coordinates, and the remarkable fact that it is essentially independent of the choice of the parameters used in calculating it. We also show how visible volume can be used to align protein structures, to identify structurally equivalent positions that are conserved in a family of proteins, and to single out positions in a protein that are likely to be of biological interest. These properties qualify visible volume as a powerful tool in a variety of applications, from the detailed analysis of protein structure to homology modeling, protein structural alignment, and the definition of better scoring functions for threading purposes.