705 research outputs found

    Gender-based differences in high school employment : is there differential socialization for work?

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    This study explored the gender-based differences in high school employment experiences and possible contributors to those differences, such as parental support for employment, reasons for working or not working, aspirations, and six work-related attitudes. It was expected that there would be differences by gender in employment status, time of beginning employment, weekly hours worked, average pay, parental support for employment, current job, reasons for working or not working, occupational aspirations, and work-related attitudes. Differences in the work-related attitudes were also anticipated between those who had worked and those who had not, as well as between those who worked under 20 hours weekly and those who worked 20 or more hours a week

    Exploring the photophysics and photocatalytic properties of platinum and palladium nanoparticles

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    Platinum and Palladium nanoparticles are important nanoscale materials for a variety of materials science and industrial applications. The presented research covers a broad spectrum of these unique nanoparticles, from their synthesis and characterization to their use in systems that examine their photophysical properties and as catalysts and photocatalysts. We developed a new synthetic method for producing well-defined platinum and palladium nanoparticles of less than 5 nm diameter. The nanoparticles are stabilized by long chain thioethers, which allow them to retain their stability in a variety of solvent environments. Stability and size control are critical to the application of these particles to experimental research in a variety of systems. After demonstrating the catalytic activity of these nanoparticles, we developed a method for linking them to magnetic cobalt ferrite nanoparticles. These linked particles were found to be highly recoverable when placed in a magnetic field, allowing for their reuse. In addition to traditional catalytic systems, platinum and palladium nanoparticles hold great potential as photocatalysts. We chose to study their use in two such systems. The first system explored involved utilizing platinum nanoparticles as charge transfer catalysts from titanium dioxide nanoparticles. We demonstrated the ability of this system for the degradation of an organic dye as well as for hydrogen production via water splitting, both under dark conditions. The final system explored involved studying the interaction between cadmium selenide quantum dots and palladium nanoparticles in solution. As a prelude to this research, we conducted an extensive study on the effects of stabilizing ligands on quantum dot fluorescence dynamics. We developed a model to define the dynamics of the dots based on changes in native ligand coverage upon sample dilution. These studies allowed us to take these effects into account before studying the interaction of the dots with palladium nanoparticles. Palladium nanoparticles were found to exhibit two distinct effects on quantum dot fluorescence in solution. At higher palladium concentrations, we observed a quenching of the quantum dot fluorescence and shortening of the lifetime, which was attributed to Fo¨rster energy transfer from the quantum dots to the nanoparticles. Low palladium concentrations exhibited opposite effects, which were attributed to enhanced absorption, similar to previously studied quantum dot -- gold nanoparticle systems. By fully studying these nanoparticles, from their synthesis and characterization to their use in various systems, we in turn developed a thorough understanding of their unique photophysical properties

    Sympathetic and swap cooling of trapped ions by cold atoms in a MOT

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    A mixed system of cooled and trapped, ions and atoms, paves the way for ion assisted cold chemistry and novel many body studies. Due to the different individual trapping mechanisms, trapped atoms are significantly colder than trapped ions, therefore in the combined system, the strong binary ion-atom interaction results in heat flow from ions to atoms. Conversely, trapped ions can also get collisionally heated by the cold atoms, making the resulting equilibrium between ions and atoms intriguing. Here we experimentally demonstrate, Rubidium ions (Rb+^+) cool in contact with magneto-optically trapped (MOT) Rb atoms, contrary to the general expectation of ion heating for equal ion and atom masses. The cooling mechanism is explained theoretically and substantiated with numerical simulations. The importance of resonant charge exchange (RCx) collisions, which allows swap cooling of ions with atoms, wherein a single glancing collision event brings a fast ion to rest, is discussed.Comment: 10 pages, 3 figure

    A trapped single ion inside a Bose-Einstein condensate

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    Improved control of the motional and internal quantum states of ultracold neutral atoms and ions has opened intriguing possibilities for quantum simulation and quantum computation. Many-body effects have been explored with hundreds of thousands of quantum-degenerate neutral atoms and coherent light-matter interfaces have been built. Systems of single or a few trapped ions have been used to demonstrate universal quantum computing algorithms and to detect variations of fundamental constants in precision atomic clocks. Until now, atomic quantum gases and single trapped ions have been treated separately in experiments. Here we investigate whether they can be advantageously combined into one hybrid system, by exploring the immersion of a single trapped ion into a Bose-Einstein condensate of neutral atoms. We demonstrate independent control over the two components within the hybrid system, study the fundamental interaction processes and observe sympathetic cooling of the single ion by the condensate. Our experiment calls for further research into the possibility of using this technique for the continuous cooling of quantum computers. We also anticipate that it will lead to explorations of entanglement in hybrid quantum systems and to fundamental studies of the decoherence of a single, locally controlled impurity particle coupled to a quantum environment

    The role of bisphosphonates in breast cancer: The present and future role of bisphosphonates in the management of patients with breast cancer

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    At least 25% of patients with breast cancer develop skeletal metastases, with bone the site of disease producing the greatest morbidity. It is apparent that the bisphosphonates present an important component of the treatment strategy. They are now the treatment of choice in tumour-induced hypercalcaemia, and they can reduce bone pain and skeletal complications such as pathological fractures. In addition, bisphosphonates are being increasingly evaluated in the prevention of bone metastases and to prevent and treat cancer therapy-induced osteoporosis. Ongoing research is aimed at trying to define the optimum route, dose, schedule and type of bisphosphonate

    Evolutionary Patterns in the Dentition of Duplicidentata (Mammalia) and a Novel Trend in the Molarization of Premolars

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    The cusp homology of Lagomorpha has long been problematic largely because their teeth are highly derived relative to their more typically tribosphenic ancestors. Within this context, the lagomorph central cusp has been particularly difficult to homologize with other tribosphenic cusps; authors have previously considered it the paracone, protocone, metacone, amphicone, or an entirely new cusp.Here we present newly described fossil duplicidentates (Lagomorpha and Mimotonidae) in the context of a well-constrained phylogeny to establish a nomenclatural system for cusps based on the tribosphenic pattern. We show that the central cusp of lagomorphs is homologous with the metaconule of other mammals. We also show that the buccal acquisition of a second cusp on the premolars (molarization) within duplicidentates is atypical with respect to other mammalian lineages; within the earliest lagomorphs, a second buccal cusp is added mesially to an isolated buccal cusp.The distal shift of the ‘ancestral’ paracone within early duplicidentates amounts to the changing of a paracone into a metacone in these lineages. For this reason, we support a strictly topological approach to cusp names, and suggest a discontinuity in nomenclature to capture the complexity of the interplay between evolutionary history and the developmental process that have produced cusp patterns in duplicidentates

    Comparison of pain, cortisol levels, and psychological distress in women undergoing surgical termination of pregnancy under local anaesthesia versus intravenous sedation

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    <p>Abstract</p> <p>Background</p> <p>The weight of evidence suggests that women who freely choose to terminate a pregnancy are unlikely to experience significant mental health risks, however some studies have documented psychological distress in the form of posttraumatic stress disorder and depression in the aftermath of termination. Choice of anaesthetic has been suggested as a determinant of outcome. This study compared the effects of local anaesthesia and intravenous sedation, administered for elective surgical termination, on outcomes of pain, cortisol, and psychological distress.</p> <p>Methods</p> <p>155 women were recruited from a private abortion clinic and state hospital (mean age: 25.4 ± 6.1 years) and assessed on various symptom domains, using both clinician-administered interviews and self-report measures just prior to termination, immediately post-procedure, and at 1 month and 3 months post-procedure. Morning salivary cortisol assays were collected prior to anaesthesia and termination.</p> <p>Results</p> <p>The group who received local anaesthetic demonstrated higher baseline cortisol levels (mean = 4.7 vs 0.2), more dissociative symptoms immediately post-termination (mean = 14.7 vs 7.3), and higher levels of pain before (mean = 4.9 vs 3.0) and during the procedure (mean = 8.0 vs 4.4). However, in the longer-term (1 and 3 months), there were no significant differences in pain, psychological outcomes (PTSD, depression, self-esteem, state anxiety), or disability between the groups. More than 65% of the variance in PTSD symptoms at 3 months could be explained by baseline PTSD symptom severity and disability, and post-termination dissociative symptoms. Of interest was the finding that pre-procedural cortisol levels were positively correlated with PTSD symptoms at both 1 and 3 months.</p> <p>Conclusion</p> <p>High rates of PTSD characterise women who have undergone surgical abortions (almost one fifth of the sample meet criteria for PTSD), with women who receive local anaesthetic experiencing more severe acute reactions. The choice of anesthetic, however, does not appear to impact on longer-term psychiatric outcomes or functional status.</p

    Spine neck plasticity regulates compartmentalization of synapses

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    Dendritic spines have been proposed to transform synaptic signals through chemical and electrical compartmentalization. However, the quantitative contribution of spine morphology to synapse compartmentalization and its dynamic regulation are still poorly understood. We used time-lapse super-resolution stimulated emission depletion (STED) imaging in combination with fluorescence recovery after photobleaching (FRAP) measurements, two-photon glutamate uncaging, electrophysiology and simulations to investigate the dynamic link between nanoscale anatomy and compartmentalization in live spines of CA1 neurons in mouse brain slices. We report a diversity of spine morphologies that argues against common categorization schemes and establish a close link between compartmentalization and spine morphology, wherein spine neck width is the most critical morphological parameter. We demonstrate that spine necks are plastic structures that become wider and shorter after long-term potentiation. These morphological changes are predicted to lead to a substantial drop in spine head excitatory postsynaptic potential (EPSP) while preserving overall biochemical compartmentalization
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