288 resultados para Standardized-weight


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Obese adults face pervasive and repeated weight-based stigma. Few researchers have explored how obese individuals proactively respond to stigma outside of a dominant weight-loss framework. Using a grounded theory approach, we explored the experiences of 44 bloggers within the Fatosphere--an online fat-acceptance community. We investigated participants' pathways into the Fatosphere, how they responded to and interacted with stigma, and how they described the impact of fat acceptance on their health and well-being. The concepts and support associated with the fat-acceptance movement helped participants shift from reactive strategies in responding to stigma (conforming to dominant discourses through weight loss) to proactive responses to resist stigma (reframing "fat" and self-acceptance). Participants perceived that blogging within the Fatosphere led them to feel more empowered. Participants also described the benefits of belonging to a supportive community, and improvements in their health and well-being. The Fatosphere provides an alternative pathway for obese individuals to counter and cope with weight-based stigma.

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 This thesis has identified opportunities for provision of support for women to attain a healthy weight and healthy diet and physical activity behaviours during and following pregnancy. A better understanding of strategies to promote optimal support to women during the postpartum period has been achieved.

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In the present work, electrospinnability as well as thermal, rheological, and morphological characteristics of low molecular weight hardwood organosolv lignin, as a potential precursor for carbon fiber, was investigated. Submicromter biobased fibers were electrospun from a wide range of polymer solutions with different ratios of organosolv lignin to polyacrylonitrile (PAN). Rheological studies were conducted by measuring viscosity, surface tension, and electrical conductivity of hybrid polymer solutions, and used to correlate electrospinning behavior of solutions with the morphology of the resultant electrospun composite fibers. Using scanning electron microscopy (SEM) images, the solutions that led to the formation of bead-free uniform fibers were found. Differential scanning calorimetry (DSC) analysis revealed that lignin-based fibers enjoy higher decomposition temperatures than that of pure PAN. Thermal stability of the lignin-based fibers was investigated by thermogravimetric analysis (TGA) indicating a high carbon yield of above 50% at 600 °C, which is highly crucial in the production of low-cost carbon fiber. It was also observed that organosolv lignin synergistically affects thermal decomposition of composite fibers. A significant lower activation energy was found for the pyrolysis of lignin-derived electrospun fibers compared to that of pure PAN.