1,061 research outputs found

    Local structure of percolating gels at very low volume fractions

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    The formation of colloidal gels is strongly dependent on the volume fraction of the system and the strength of the interactions between the colloids. Here we explore very dilute solutions by the means of numerical simulations, and show that, in the absence of hydrodynamic interactions and for sufficiently strong interactions, percolating colloidal gels can be realised at very low values of the volume fraction. Characterising the structure of the network of the arrested material we find that, when reducing the volume fraction, the gels are dominated by low-energy local structures, analogous to the isolated clusters of the interaction potential. Changing the strength of the interaction allows us to tune the compactness of the gel as characterised by the fractal dimension, with low interaction strength favouring more chain-like structures

    A review of tazarotene in the treatment of photodamaged skin

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    Chronic sun exposure leads to photodamage, which is characterized clinically by fine and coarse wrinkles, dyspigmentation, telangiectasia, laxity, roughness and a sallow appearance. Many treatments claim to reduce the signs of photodamage, however evidence from randomized controlled trials (RCT) to support these claims is limited. The use of topical retinoids, particularly tretinoin, isotretinoin and tazarotene, has been shown to significantly reduce signs of photodamage both clinically and histologically. Over recent years a number of RCTs, have affirmed that topical tazarotene is an effective and safe treatment for photodamaged skin

    Effect of attractive forces on active-passive interactions

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    Reactive wetting of tin-based miniaturised solder joints

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    Quantum History cannot be Copied

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    We show that unitarity does not allow cloning of any two points in a ray. This has implication for cloning of the geometric phase information in a quantum state. In particular, the quantum history which is encoded in the geometric phase during cyclic evolution of a quantum system cannot be copied. We also prove that the generalized geometric phase information cannot be copied by a unitary operation. We argue that our result also holds in the consistent history formulation of quantum mechanics.Comment: Latex file, No figures, 9 page

    COMPASS Placement Assessment and Student Attrition at a Community College

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    Considerable research has been conducted regarding the usefulness of placement testing in community colleges. Many stuides show that using the COMPASS exam may lead to students\u27 unsuccessful course completion. To better identify the factors that may result in reduced attrition, the relationship between attrition and placement testing was studied. Using Tinto\u27s student retention model and employing qualitative methodology, this study explored the perceptions of students and faculty regarding whether COMPASS placement assessment predicted future student success in first year courses at a community college that reports higher rates of attrition when compared to other area community colleges. After completing interviews with the 10 students, 6 faculty, and 2 administrators, the data indicated that using the COMPASS placement scores did not contribute greatly to attrition. Rather, the findings from the data analysis revealed that work ethic, family obligations, and test stress factored greatly in first-year student attrition. As a possible solution, 3 retention programs identified at comparable institutions address the findings of this study: An Alternative Learning Program, a Summer Bridge Program, and use of peer mentoring. In other sites, use of these retention programs have resulted in a 15% reduction in first-year student attrition. Reducing first year student attrition provides implications for social change. By adopting these retention initiatives, the community college in this study may improve overall first-year student retention, increased funding for the college, and better serve the local community

    Biola Hour Highlights, 1974 - 09

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    How to Win Over Worry by Gerald Griffiths Psalm 37: The Psalm of Serenity by Al Sanders The Revelation of Jesus Christ by Lloyd Anderson Panel Discussions with Richard Chase, Charles Feinberg, and Samuel Sutherlandhttps://digitalcommons.biola.edu/bhhs/1008/thumbnail.jp

    Salicylic acid and aspirin stimulate growth of Chlamydomonas and inhibit lipoxygenase and chloroplast desaturase pathways

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    Chemical stimulants, used to enhance biomass yield, are highly desirable for the commercialisation of algal products for a wide range of applications in the food, pharma and biofuels sectors. In the present study, phenolic compounds, varying in substituents and positional isomers on the arene ring have been evaluated to determine structure-activity relationship and growth. The phenols, catechol, 4-methylcatechol and 2, 4-dimethyl phenol were generally inhibitory to growth as were the compounds containing an aldehyde function. By contrast, the phenolic acids, salicylic acid, aspirin and 4-hydroxybenzoate markedly stimulated cell proliferation enhancing cell numbers by 20–45% at mid-log phase. The order of growth stimulation was ortho > para > meta with respect to the position of the OH group. Both SA and aspirin reduced 16:3 in chloroplast galactolipids. In addition, both compounds inhibited lipoxygenase activity and lowered the levels of lipid hydroperoxides and malondialdehydes in the cells. The present study has demonstrated the possibility of using SA or aspirin to promote algal growth through the manipulation of lipid metabolising enzymes

    Teleportation as a quantum computation

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    An explicit quantum circuit is given to implement quantum teleportation. This circuit makes teleportation straightforward to anyone who believes that quantum computation is a reasonable proposition. It could also be genuinely used inside a quantum computer if teleportation is needed to move quantum information around. An unusual feature of this circuit is that there are points in the computation at which the quantum information can be completely disrupted by a measurement (or some types of interaction with the environment) without ill effects: the same final result is obtained whether or not these measurements takes place.Comment: 3 pages, LaTeX2e, PhysComp 96 submissio
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