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This study examines what factors have influenced the St. Louis homicide spike between 2011 and 2018. The study uses data provided by the U.S. Census Bureau and the St. Louis Missouri Police Department, including information on population, poverty levels, race, homicide demographics, and homicide toxicology reports to analyze possible explanations

This study examines what factors have influenced the St. Louis homicide spike between 2011 and 2018. The study uses data provided by the U.S. Census Bureau and the St. Louis Missouri Police Department, including information on population, poverty levels, race, homicide demographics, and homicide toxicology reports to analyze possible explanations for the high rates in homicide. In this study, I explore literature on elements associated with homicide that could be responsible for the high levels in St. Louis. Concepts of concentrated disadvantage, drug markets, firearms, regional differences, and the Ferguson Effect are reviewed and then evaluated in regard to the St. Louis data. I found that the high rates of homicide are related to high levels of concentrated disadvantage, increased use of drugs, increased homicide by firearm, and regional differences within the broader context of the city.
ContributorsMercer, Mackenzie (Author) / Chamberlain, Alyssa (Thesis director) / Sweeten, Gary (Committee member) / Department of Psychology (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05
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Leonard Hayflick studied the processes by which cells age during the twentieth and twenty-first centuries in the United States. In 1961 at the Wistar Institute in the US, Hayflick researched a phenomenon later called the Hayflick Limit, or the claim that normal human cells can only divide forty to sixty

Leonard Hayflick studied the processes by which cells age during the twentieth and twenty-first centuries in the United States. In 1961 at the Wistar Institute in the US, Hayflick researched a phenomenon later called the Hayflick Limit, or the claim that normal human cells can only divide forty to sixty times before they cannot divide any further. Researchers later found that the cause of the Hayflick Limit is the shortening of telomeres, or portions of DNA at the ends of chromosomes that slowly degrade as cells replicate. Hayflick used his research on normal embryonic cells to develop a vaccine for polio, and from HayflickÕs published directions, scientists developed vaccines for rubella, rabies, adenovirus, measles, chickenpox and shingles.

Created2014-07-20
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Although best known for his work with the fruit fly, for which he earned a Nobel Prize and the title "The Father of Genetics," Thomas Hunt Morgan's contributions to biology reach far beyond genetics. His research explored questions in embryology, regeneration, evolution, and heredity, using a variety of approaches.

Created2007-09-25
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Created1935