Trent University Graduate Thesis Collection

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    Copyright for all items in the Trent University Graduate Thesis Collection is held by the author, with all rights reserved, unless otherwise noted.
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    The design of DNA-containing biomaterials for forensic science

    Year: 2023, 2023
    Member of: Trent University Graduate Thesis Collection
    Name(s): Creator (cre): Orr, Amanda, Thesis advisor (ths): Stotesbury, Theresa, Thesis advisor (ths): Wilson, Paul, Degree committee member (dgc): Stotesbury, Theresa, Degree committee member (dgc): Wilson, Paul, Degree committee member (dgc): Stock, Naomi, Degree granting institution (dgg): Trent University
    Abstract: <p>Access to human blood for forensic research and training in bloodstain pattern analysis (BPA) can be difficult due to many ethical, safety and cost concerns. Mammalian blood alternatives can be sourced, especially from local and willing abattoirs, but some concerns remain, and the added difficulties of high variation and species-specific differences in cellular components pose other… more
    Full Text: The design of DNA-containing biomaterials for forensic science A Thesis Submitted to the Committee of Graduate Studies in Partial Fulfillment of the Requirements for Degree of Doctor of Philosophy in the Faculty of Arts and Science TRENT UNIVERSITY …

    Electrochemical versus Chemical Oxidation of Bulky Phenols: 2,6-diphenylphenol and 2,2-dihydroxybiphenol

    Year: 2023, 2023
    Member of: Trent University Graduate Thesis Collection
    Name(s): Creator (cre): Gao, Stephanie, Thesis advisor (ths): Martic, Sanela, Degree committee member (dgc): Shetranjiwalla-Merchant, Shegufta, Degree committee member (dgc): Stock, Naomi, Degree granting institution (dgg): Trent University
    Abstract: <p>Phenolic compounds are used in industry, such as agriculture and biotechnology, and inevitably end up in our environment. These compounds may serve as a phenolic precursor to produce raw materials for a wide range of applications. Chemical oxidation has been the common synthetic pathway to oxidize phenols and related compounds. However, traditional chemical approaches suffer from use of… more
    Full Text: Electrochemical versus Chemical Oxidation of Bulky Phenols: 2,6-diphenylphenol and 2,2dihydroxybiphenol A Thesis Submitted to the Committee of Graduate Studies in Partial Fulfillment of the Requirements for the Degree of Master of Science in the Faculty …