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Uploaded with permission by Anna Keller, Corporate Lawyer Low Murchison Radnoff LLP. Presented Nov 19, 2015 at the University of Ottawa.
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A talk given at 'Taking the Long View: International Perspectives on E-Journal Archiving', a conference hosted by EDINA and ISSN IC at the University of Edinburgh, September 7th 2015.
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Uploaded with permission by Anna Keller, Corporate Lawyer Low Murchison Radnoff LLP. Presented Nov 19, 2015 at the University of Ottawa.
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IDC developed a set of cybersecurity case studies of US commercial organizations in order to learn: What security problems they have experienced, changes that they have made to address them, and new underlying security procedures that they are exploring.
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Frank Ham from Cascade Technologies presented this deck at the Stanford HPC Conference. "A spin-off of the Center for Turbulence Research at Stanford University, Cascade Technologies grew out of a need to bridge between fundamental research from institutions like Stanford University and its application in industries. In a continual push to improve the operability and performance of combustion devices, high-fidelity simulation methods for turbulent combustion are emerging as critical elements in the design process. Multiphysics based methodologies can accurately predict mixing, study flame structure and stability, and even predict product and pollutant concentrations at design and off-design conditions." Watch the video: http://insidehpc.com/2017/02/best-practices-large-scale-multiphysics/ Learn more: http://www.cascadetechnologies.com and http://www.hpcadvisorycouncil.com/events/2017/stanford-workshop/ Sign up for our insideHPC Newsletter: http:/insidehpc.com/newsletter
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The photo-oxidation of Rhodamime B was carried out in the presence of H2O2/ Fe2+ ion using UV light. The effects of dye concentration, pH, H2O2 dose and Fe2+ dose. These parameters strongly influenced the degradation of the dye. As expected, the increase of initial dye concentration decreased the percentage decoloration. Likewise increasing H2O2, Fe2+ concentration also increased the dye decoloration up to a certain limit after which it starts decreasing. The optimum operating conditions of the method were found to be [Dye] = 10mg/l; [H2O2] = 300mg/l; [Fe2+] = 250 mg/l at pH 2. Under these conditions, a maximum of 92% decoloration of the dye was achieved. The actual breakdown of the dye was confirmed using HPLC analyses.
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Frank Ham from Cascade Technologies presented this deck at the Stanford HPC Conference. "A spin-off of the Center for Turbulence Research at Stanford University, Cascade Technologies grew out of a need to bridge between fundamental research from institutions like Stanford University and its application in industries. In a continual push to improve the operability and performance of combustion devices, high-fidelity simulation methods for turbulent combustion are emerging as critical elements in the design process. Multiphysics based methodologies can accurately predict mixing, study flame structure and stability, and even predict product and pollutant concentrations at design and off-design conditions." Watch the video: http://insidehpc.com/2017/02/best-practices-large-scale-multiphysics/ Learn more: http://www.cascadetechnologies.com and http://www.hpcadvisorycouncil.com/events/2017/stanford-workshop/ Sign up for our insideHPC Newsletter: http:/insidehpc.com/newsletter
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Presented by Theo Andrew at the Repository Fringe 2011, Edinburgh, 3 August 2011
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The photo-oxidation of Rhodamime B was carried out in the presence of H2O2/ Fe2+ ion using UV light. The effects of dye concentration, pH, H2O2 dose and Fe2+ dose. These parameters strongly influenced the degradation of the dye. As expected, the increase of initial dye concentration decreased the percentage decoloration. Likewise increasing H2O2, Fe2+ concentration also increased the dye decoloration up to a certain limit after which it starts decreasing. The optimum operating conditions of the method were found to be [Dye] = 10mg/l; [H2O2] = 300mg/l; [Fe2+] = 250 mg/l at pH 2. Under these conditions, a maximum of 92% decoloration of the dye was achieved. The actual breakdown of the dye was confirmed using HPLC analyses.
DEGRADATION STUDIES OF RHODAMINE B IN THE PRESENCE OF UV/H2O2 /FE2+
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