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Gerrymandering involves the purposeful manipulation of districts in order to gain some political advantage. Because legislators have a vested interest in continuing their tenure, they can easily hijack the redistricting process each decade for their and their political party's benefit. This threatens the cornerstone of democracy: a voter’s capability to

Gerrymandering involves the purposeful manipulation of districts in order to gain some political advantage. Because legislators have a vested interest in continuing their tenure, they can easily hijack the redistricting process each decade for their and their political party's benefit. This threatens the cornerstone of democracy: a voter’s capability to select an elected official that accurately represents their interests. Instead, gerrymandering has legislators to choose their voters. In recent years, the Supreme Court has heard challenges to state legislature-drawn districts, most recently in Allen v. Milligan for Alabama and Moore v. Harper for North Carolina. The highest court of the United States ruled that the two state maps were gerrymandered, and in coming to their decision, the 9 justices relied on a plethora of amicus briefs- one of which included the Markov Chain Monte Carlo method, a computational method used to find gerrymandering. Because of how widespread gerrymandering has become on both sides of the political aisle, states have moved to create independent redistricting commissions. Qualitative research regarding the efficacy of independent commissions is present, but there is little research using the quantitative computational methods from these SCOTUS cases. As a result, my thesis will use the Markov Chain Monte Carlo method to answer if impartial redistricting commissions (like we have in Arizona) actually preclude unfair redistricting practices. My completed project is located here: https://dheetideliwala.github.io/honors-thesis/
ContributorsDeliwala, Dheeti (Author) / Bryan, Chris (Thesis director) / Strickland, James (Committee member) / Barrett, The Honors College (Contributor) / Computer Science and Engineering Program (Contributor) / School of Politics and Global Studies (Contributor)
Created2023-12
ContributorsDeliwala, Dheeti (Author) / Bryan, Chris (Thesis director) / Strickland, James (Committee member) / Barrett, The Honors College (Contributor) / Computer Science and Engineering Program (Contributor) / School of Politics and Global Studies (Contributor)
Created2023-12
ContributorsDeliwala, Dheeti (Author) / Bryan, Chris (Thesis director) / Strickland, James (Committee member) / Barrett, The Honors College (Contributor) / Computer Science and Engineering Program (Contributor) / School of Politics and Global Studies (Contributor)
Created2023-12
Description
Phosphate is a necessary and soon to be scarce nutrient needed for all life that is found in urine. Metal chlorides can be used to extract phosphate that can be converted into useful products, namely struvite a fertilizer. Different metal chlorides’ phosphate removal ability in urine were measured by testing

Phosphate is a necessary and soon to be scarce nutrient needed for all life that is found in urine. Metal chlorides can be used to extract phosphate that can be converted into useful products, namely struvite a fertilizer. Different metal chlorides’ phosphate removal ability in urine were measured by testing a molar equivalent amount of metal chloride tested at 5 minutes and 24 hours in duplicate. Phosphate removal was calculated using spectrophotometry and compared across the metal chlorides in a simulation in Visual MINTEQ, simple synthetic, full synthetic, and real urine for fresh and hydrolyzed urine. It was found that simple and full fresh synthetic urine had comparable results, but synthetic urine and real urine did not. It was also found that simple and full hydrolyzed synthetic urine are not very comparable. Overall, there was more precipitation in the real urine than the full synthetic urine and hydrolyzed urine. Time did not have a large effect on the removal trends between the same type of urine. CeCl3 performed the best for both fresh and hydrolyzed urine, and struvite produced more in hydrolyzed real urine rather than fresh.
ContributorsTripathi, Vedika (Author) / Boyer, Treavor (Thesis director) / Crane, Lucas (Committee member) / Barrett, The Honors College (Contributor) / School of Sustainable Engineering & Built Envirnmt (Contributor)
Created2023-12
Description
My Honors Thesis/ Creative Project was an collection of art pieces that were based on a research done at West Campus in Dr. Weidner's forensic entomology laboratory. In this research, two swine carcasses were place outdoors for 21 days during the four seasons. The goal was to collect insects that

My Honors Thesis/ Creative Project was an collection of art pieces that were based on a research done at West Campus in Dr. Weidner's forensic entomology laboratory. In this research, two swine carcasses were place outdoors for 21 days during the four seasons. The goal was to collect insects that approached and colonized the carcasses. The collected data can be used to determine the TOC (time of colonization) of some insects; thus, it can help to calculate the PMI (postmortem interval). Different collection were used like larvae rearing, pitfalls, netting, and hand collection. The larvae were reared into adulthood and then identified into a species. The rest of the insects were identified into orders. To present this information, the data collected from the two carcasses was combined to make the presentation easier to understand. I created four circular canvases to present the collection of flies in each check. It shows both flies were reared and which were seen or collected. The other series of work that I sculpted were 120 ceramics flowers to represent the insects orders that were observed in each season and check. During my thesis defense, I presented the research project, and how my project can help people understand this research.
ContributorsMunoz Zavala, Jaira (Author) / Weidner, Lauren (Thesis director) / Meeds, Andrew (Committee member) / Neubauer, Mary (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Natural Sciences (Contributor) / School of Art (Contributor)
Created2023-12
ContributorsMunoz Zavala, Jaira (Author) / Weidner, Lauren (Thesis director) / Meeds, Andrew (Committee member) / Neubauer, Mary (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Natural Sciences (Contributor) / School of Art (Contributor)
Created2023-12
ContributorsMunoz Zavala, Jaira (Author) / Weidner, Lauren (Thesis director) / Meeds, Andrew (Committee member) / Neubauer, Mary (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Natural Sciences (Contributor) / School of Art (Contributor)
Created2023-12
ContributorsMunoz Zavala, Jaira (Author) / Weidner, Lauren (Thesis director) / Meeds, Andrew (Committee member) / Neubauer, Mary (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Natural Sciences (Contributor) / School of Art (Contributor)
Created2023-12
ContributorsMunoz Zavala, Jaira (Author) / Weidner, Lauren (Thesis director) / Meeds, Andrew (Committee member) / Neubauer, Mary (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Natural Sciences (Contributor) / School of Art (Contributor)
Created2023-12
ContributorsMunoz Zavala, Jaira (Author) / Weidner, Lauren (Thesis director) / Meeds, Andrew (Committee member) / Neubauer, Mary (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Natural Sciences (Contributor) / School of Art (Contributor)
Created2023-12