5,184 research outputs found

    A perturbative approach to the quantum elliptic Calogero-Sutherland model

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    We solve perturbatively the quantum elliptic Calogero-Sutherland model in the regime in which the quotient between the real and imaginary semiperiods of the Weierstrass P{\cal P} function is smallComment: 6 pages, no figure

    Generating functions and multiplicity formulas: the case of rank two simple Lie algebras

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    A procedure is described that makes use of the generating function of characters to obtain a new generating function HH giving the multiplicities of each weight in all the representations of a simple Lie algebra. The way to extract from HH explicit multiplicity formulas for particular weights is explained and the results corresponding to rank two simple Lie algebras shown

    Functional Glyconanomaterials

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    Nanotechnology provides a new array of techniques and platforms to study biological processes including glycosystems [...

    Unraveling the Hispanic Health Paradox

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    In 2019, Hispanics in the US had a life expectancy advantage of 3.0 years and 7.1 years over non-Hispanic Whites and non-Hispanic Blacks, respectively, despite having real-household income values 26 percentage points lower than Non-Hispanic White households. Hispanics appear to have equal or even better health outcomes relative to non-Hispanic Whites across various health measures. This is known as the Hispanic health paradox. This paper underscores the importance of disaggregating Hispanics by ancestry and age profile when discussing the paradox across key health outcomes. It also provides an overview of the leading explanations, such as the salmon bias and the healthy immigrant effect. Further, it highlights the role of healthcare access and usage in this discussion. Ignoring these sources of bias have important consequences for how morbidity and mortality among Hispanics are measured within widely used national datasets

    In vitro regeneration and genetic fidelity of Tigridia pavonia (L.f.) DC.

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    Plants of Tigridia pavonia (L.f.) DC were regenerated from twin-scaling explants cultured on Murashige and Skoog and N6 basal medium. The highest formation of shoots per responding explant was obtained on N6 medium supplemented with 4.5 µM 2,4-dichlorophenoxy acetic acid in combination with 2.2 µM benzylaminopurine. Shoots rooted readily on N6 basal medium supplemented with 1 g l-1 activated charcoal and 2.6 µM naphtalenacetic acid. The rooted shoots achieved 100% survival. Inter Simple Sequence Repeat analysis was carried out to check for possible genetic alterations in plants obtained after two consecutive subcultures. The results revealed that the recovered plants did not exhibit any type of polymorphism

    Variety discrimination of Tigridia pavonia (L.f.) DC. assesed by different length RAPD primers

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    Tigridia pavonia (L.f.) DC. is one of the important phytogenetic resources of México. This species is used as ornamental, food and medicinal purposes. Despite its ornamental and economic potential, there is little information about the genetic variability. In this study, randomly amplified polymorphic DNA (RAPD) primers of 10, 15 and 20 bases were used to assess the level of genetic variation among nine botanical varieties of Tigridia pavoniacollected in three localities within State of México. The total number fragments, polymorphic fragments, percentage of polymorphism and resolving power were greater for 15 base (55, 52, 94.5 and 5, respectively) and 20 base (47, 45, 95.7 and 3.8, respectively), in comparison with those obtained from 10 base primers (44, 41, 93.1 and 3.6, respectively).Resultsshowed the major effectiveness of 15 and 20 bases RAPD primers in the genetic differentiation of varieties as compared to 10 bases RAPD primers. The dendrograms based on un-weighted pair group method arithmetic average (UPGMA) analysis of the 10, 15, 20 and the pooled (10, 15 and 20) bases RAPD data were consistent in the clustering varieties, grouping them in two main clusters

    Improved Adhesion of the DLC Coating Using HiPIMS with Positive Pulses and Plasma Immersion Pretreatment

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    Diamond-like carbon (DLC) coatings are used due to their extraordinary tribomechanical properties, great hardness, high elastic modulus, high wear resistance, low friction coefficient and chemical inertness, which provide them with biocompatibility. Compared to other physical vapor deposition (PVD) coatings of transition nitrides and carbonitrides, DLC has limited adhesion, so it is necessary to develop new techniques to overcome this limitation. This work reports the results of scratch testing for the measurement of adhesion and of tests for wear resistance and nanoindentation in AISI 316L stainless steel coated with a WC:C coating, produced using novel high-power impulse magnetron sputtering (HiPIMS) technology with positive pulses. In addition, the use of a preceding surface modification technique, specifically plasma immersion ion implantation (PIII), was studied with the aim of optimizing the adhesion of the coating. The results show how the coating improved the tribomechanical properties through the use of positive pulse HiPIMS compared to conventional HiPIMS, with an adhesion result that reached critical load values of 48.5 N and a wear coefficient of 3.96 × 10−7 mm3/n
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