2,606 research outputs found

    Sagnac interferometry based on ultra-slow polaritons in cold atomic vapors

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    The advantages of light and matter-wave Sagnac interferometers -- large area on one hand and high rotational sensitivity per unit area on the other -- can be combined utilizing ultra-slow light in cold atomic gases. While a group-velocity reduction alone does not affect the Sagnac phase shift, the associated momentum transfer from light to atoms generates a coherent matter-wave component which gives rise to a substantially enhanced rotational signal. It is shown that matter-wave sensitivity in a large-area interferometer can be achieved if an optically dense vapor at sub-recoil temperatures is used. Already a noticeable enhancement of the Sagnac phase shift is possible however with much less cooling requirements.Comment: 4 pages, 3 figure

    CELLULAR EVENTS IN THE IMMUNE RESPONSE : ANALYSIS AND IN VITRO RESPONSE OF MOUSE SPLEEN CELL POPULATIONS SEPARATED BY DIFFERENTIAL FLOTATION IN ALBUMIN GRADIENTS

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    Cell suspensions from the spleens of normal mice or mice injected with sheep erythrocytes were separated on a discontinous bovine serum albumin density gradient. Four bands or subpopulations were obtained and were assayed for antibody-forming cells, and for antigen-sensitive precursor cells. The antibody-forming cells were assayed by the hemolytic plaque assay and the antigen-sensitive precursors were assayed by the number of plaque-forming cells which developed after 3 or 5 day's culture with antigen. It was found that both antibody-forming cells and their precursors were present in the denser region of the gradient when spleen cell suspensions were taken from unimmunized mice. In contrast, both antibody-forming cells and precursors floated to the top in cell suspensions from mice sacrificed 1, 2, or 3 days after antigen injection. The change in density was detectable as early as 12 hr and was complete by 18 hr. The cell which changed in density was specific for the antigen that brought about that change. The significance of these findings is discussed

    QuickXsort: Efficient Sorting with n log n - 1.399n +o(n) Comparisons on Average

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    In this paper we generalize the idea of QuickHeapsort leading to the notion of QuickXsort. Given some external sorting algorithm X, QuickXsort yields an internal sorting algorithm if X satisfies certain natural conditions. With QuickWeakHeapsort and QuickMergesort we present two examples for the QuickXsort-construction. Both are efficient algorithms that incur approximately n log n - 1.26n +o(n) comparisons on the average. A worst case of n log n + O(n) comparisons can be achieved without significantly affecting the average case. Furthermore, we describe an implementation of MergeInsertion for small n. Taking MergeInsertion as a base case for QuickMergesort, we establish a worst-case efficient sorting algorithm calling for n log n - 1.3999n + o(n) comparisons on average. QuickMergesort with constant size base cases shows the best performance on practical inputs: when sorting integers it is slower by only 15% to STL-Introsort

    RELATO DE EXPERIÊNCIAS: PROJETO LEITURA DE OLHOS FECHADOS

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    O presente trabalho relata a experiência com o projeto Leitura de Olhos Fechados – a imagem traduzida em palavras –, cujo objetivo é permitir que deficientes visuais tenham acesso à cultura e informação, por meio de produtos culturais como livros e filmes, com base em recursos como a audiodescrição. A audiodescrição permite o acesso de pessoas com deficiência visual ao cinema, teatro e programas de televisão. É uma importante ferramenta de acessibilidade às pessoas que não podem enxergar. Aqui, estão presentes algumas considerações acerca da criação do projeto, das etapas de execução e dos resultados alcançados. Tem-se ainda uma breve descrição de como as ações do projeto conseguiram unir ensino, pesquisa e extensão

    IMMUNIZATION OF DISSOCIATED SPLEEN CELL CULTURES FROM NORMAL MICE

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    The synthesis and structure of an n-terminal dodecanoic acid conjugate of a-conotoxin MII

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    The alpha-conotoxin MII is a 16 amino acid long peptide toxin isolated from the marine snail, Conus magus. This toxin has been found to be a highly selective and potent inhibitor of neuronal nicotinic acetylcholine receptors of the subtype alpha3beta2. To improve the bioavailability of this peptide, we have coupled to the N-terminus of conotoxin MII, 2-amino-D,L-dodecanoic acid (Laa) creating a lipidic linear peptide which was then successfully oxidised to produce the correctly folded conotoxin MII construct
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