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    1401 research outputs found

    Dataset to accompany "Shocking interactions of supernova remnants with atomic and molecular clouds - the interplay between shocks, thermal instability and gravity in the large cloud regime"

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    This is the dataset to accompany the publication titled "Shocking interactions of supernova remnants with atomic and molecular clouds - the interplay between shocks, thermal instability and gravity in the large cloud regime". The data is given for each figure and each pane

    Raw data for "A comparative meta-proteomic pipeline for the identification of plasmodesmata proteins and regulatory conditions in diverse plant species"

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    This repository contains the raw data for the publication listed in the title. Abstract: A major route for cell-to-cell signaling in plants is mediated by cell wall-embedded pores termed plasmodesmata forming the symplasm. Plasmodesmata regulate plant development and responses to the environment however, our understanding of what factors or regulatory cues affect their structure and permeability is still limited. In this paper, a meta-analysis was carried out for the identification of conditions affecting plasmodesmata transport and for the in silico prediction of plasmodesmata proteins in species for which the plasmodesmata proteome has not been experimentally determined

    Mapping material use and modelling the embodied carbon in UK construction

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    The dataset present assumptions and results for the papers "Mapping material use and embodied carbon in the UK construction'' and "Modelling the embodied carbon cost of UK domestic building construction: Today to 2050"(file: Mapping_material_use_and_modelling_the_embodied_carbon_in_UK_construction_Rev3.pdf

    Microwave Atomic Clock Synchronisation Dataset

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    Phase measurements used to calculate the difference in frequency between a pair of reference signals from atomic clocks

    Data associated with 'Three methods to measure the dissolution activation energy of cellulosic fibres using time-temperature superposition'

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    This paper investigates the dissolution kinetics of cellulosic fibres in excess [C2mim][OAc] with three quantifying parameters based on optical microscopy images of dried cellulose samples and cellulose hydrogels. The dissolution process under different times and temperatures was analysed with time-temperature superposition and was found to follow Arrhenius behaviour, allowing an activation energy to be calculated. Three activation energy values were obtained from three different quantifying methods; these were found to agree, giving an average value of 73 ± 2 kJ/mol. We argue that our hydrogel method is an excellent choice for studying dissolution behaviour of cellulose. Additionally, a new method is developed to determine the shrinking ratio of different regions of the processed cellulose samples along with the different water volume fractions contained therein. The findings will be of interest to researchers making all cellulose composites and those studying the dissolution of cellulose by ionic liquids

    Data associated with 'Understanding the differences in wear testing method standards for total knee replacement'

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    The dataset contains material to supplement the paper “Understanding the differences in wear testing method standards for total knee replacement” including: images of Figures 1 to 12 inclusive; the graphical abstract; the raw data underpinning the figures; additional points throughout the cycle to supplement Figure 4.b: (Computational contact scars at 15%, 50%, and 85% through the gait cycle using different displacement control test methods are presented in Figure 4b, this additional data shows computational contact scars at every 5% interval) and Figure 10.b: (Computational contact scars at 15%, 50%, and 85% through the gait cycle using ISO-14243-1-2009 force control test method are presented in Figure 10b, this additional data shows computational contact scars at every 5% interval

    Data for “The use of interleaved films to enhance the properties of all-cellulose composites”

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    All cellulose composites (ACCs) were produced by partially dissolving alternating layers of cotton textile and cellulose film in solvent solution and heating them under an applied pressure. The ionic liquid 1-ethyl-3-methylimidazolium acetate ([C2MIM][OAc]) combined with a co-solvent dimethyl sulfoxide (DMSO) was used in this work, and an iterative approach was employed to identify the combination of [C2MIM][OAc] and DMSO to yield the best balance of composite mechanical properties. It was revealed that the addition of the interleaved film yields a higher Young’s modulus and significantly higher interlayer peel strength compared to processing without the film. With an optimised [C2MIM][OAc] and DMSO combination, Young’s modulus was improved from 2.2 +/- 0.2 GPa to 4.2 +/- 0.2 GPa and peel strength reached as high as 917 +/- 2 N/m. In addition, there was improved uniformity between longitudinal and transverse mechanical properties which we attribute to an overall increase in interlayer adhesion

    Impedimetric biosensor based on extracellular matrix protein-adhesin binding

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    Data about ECM protein-adhesin based biosensor for whole pathogen detection. The information found in the data corresponds to the most relevant findings of the research aimed to be published

    Input data and photographs from the experimental simulation on the natural hip joint

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    The mechanical environment of the natural hip joint is related to hip geometry. Despite evidence from clinical and in silico studies that mechanical environment contributes to degradation in the hip, in vitro studies assessing this are limited. Data associated to this document comprise the conditions to run the simulations of a normal gait motion corresponding to three different loading conditions on a hip joint. In addition, the data obtained from the simulator after completing the test and the photographs used to assess the conditions of the articular surfaces of the hip joint at different stages of the tests

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