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A collection of poems concentrating on 15 small moments, tied together to explore the ardor, tensions, and fragility a relationship. Conceptions of language, teeth, domesticated dogs, and a car accident recur throughout the manuscript as a means of navigating this narrative and of questioning the role of memory in our

A collection of poems concentrating on 15 small moments, tied together to explore the ardor, tensions, and fragility a relationship. Conceptions of language, teeth, domesticated dogs, and a car accident recur throughout the manuscript as a means of navigating this narrative and of questioning the role of memory in our lives.
ContributorsOpich, Sophie Aurelia (Author) / Ball, Sally (Thesis director) / Dubie Jr., Norman (Committee member) / Barrett, The Honors College (Contributor) / Department of English (Contributor) / School of Historical, Philosophical and Religious Studies (Contributor)
Created2015-05
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Description
The transition to lead-free solder in the electronics industry has benefited the environment in many ways. However, with new materials systems comes new materials issues. During the processing of copper pads, a protective surface treatment is needed to prevent the copper from oxidizing. Characterizing the copper oxidation underneath the surface

The transition to lead-free solder in the electronics industry has benefited the environment in many ways. However, with new materials systems comes new materials issues. During the processing of copper pads, a protective surface treatment is needed to prevent the copper from oxidizing. Characterizing the copper oxidation underneath the surface treatment is challenging but necessary for product reliability and failure analysis. Currently, FIB-SEM, which is time-consuming and expensive, is what is used to understand and analyze the surface treatment-copper oxide(s)-copper system. This project's goals were to determine a characterization methodology that cuts both characterization time and cost in half for characterizing copper oxidation beneath a surface treatment and to determine which protective surface treatment is the best as defined by multiple criterion such as cost, sustainability, and reliability. Two protective surface treatments, organic solderability preservative (OSP) and chromium zincate, were investigated, and multiple characterization techniques were researched. Six techniques were tested, and three were deemed promising. Through our studies, it was determined that the best surface treatment was organic solderability preservative (OSP) and the ideal characterization methodology would be using FIB-SEM to calibrate a QCM model, along with using SERA to confirm the QCM model results. The methodology we propose would result in a 91% reduction in characterization cost and a 92% reduction in characterization time. Future work includes further calibration of the QCM model using more FIB/SEM data points and eventually creating a model for oxide layer thickness as a function of exposure time and processing temperature using QCM as the primary data source. An additional short essay on the role of SEM on the continuing miniaturization of integrated circuits is included at the end. This paper explores the intertwined histories of the scanning electron microscope and the integrated circuit, highlighting how advances in SEM influence integrated circuit advances.
ContributorsSmith, Bethany Blair (Co-author) / Marion, Branch Kelly (Co-author) / Cruz, Hernandez (Co-author) / Kimberly, McGuiness (Co-author) / Adams, James (Thesis director) / Krause, Stephen (Committee member) / Barrett, The Honors College (Contributor) / Materials Science and Engineering Program (Contributor)
Created2015-05
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Description
A student-run theatre company would give students more opportunities to perform. as well as opportunities to direct, design, and produce something that is not usually available to us. The main goal of the topic is to create a student-run theatre company that would be able to support three to four

A student-run theatre company would give students more opportunities to perform. as well as opportunities to direct, design, and produce something that is not usually available to us. The main goal of the topic is to create a student-run theatre company that would be able to support three to four minimal, low budget productions each year that are directed, designed, and performed by the students. These productions could be works that are new or out of the mainstream, one-act operas or musicals, works written or composed by our own students, or even standard repertoire. Productions could be minimal, with the focus being on direction and performances, or fully executed with lighting, sets, and costumes designed by the students. Whatever the format, the goal is to provide students with more opportunities in music theatre and opera. There are several components to this project. The first component is forming the student organization \u2014 the theatre company. While forming a student theatre company allows for more creativity and room to try different things, we must also figure out how to operate within the limits of a campus club. The second component is producing a show. To get a taste what our club would eventually be doing, the committee is essentially' producing a show with the guidance of Lyric Opera Theatre faculty. The third component is writing the actual thesis and preparing for my defense. Because this project is not a traditional research project, the end result will be more than a thesis paper. I hope to be able to show that Basement Collaborative has developed into an organization that will be able to sustain past my time here at ASU.
ContributorsZheng, Shuwen (Author) / Reber, William (Thesis director) / Dreyfoos, Dale (Committee member) / Harper, Robert (Committee member) / Barrett, The Honors College (Contributor)
Created2015-05
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Description
The creative project titled “Culture and Business: Exploring the Etiquette Behind a Chinese Business Meal” focused on defining what is proper dining etiquette targeted at doing business with China. Through the use of 10 informational interviews with seasoned professionals who have experience working overseas in China, this project explored the

The creative project titled “Culture and Business: Exploring the Etiquette Behind a Chinese Business Meal” focused on defining what is proper dining etiquette targeted at doing business with China. Through the use of 10 informational interviews with seasoned professionals who have experience working overseas in China, this project explored the key aspects of building relationships over a meal. Furthermore, online research was taken into account in order to provide a more up-to-date and well-rounded view. Trends that were discovered across categories include seating arrangements, gift giving, conversation topics, drinking culture, gender roles, and the actual act of eating. The goal of this project was to create an infographic and short video with the intention of educating American business students who are interested in working in China. It was found through the study that many Chinese professionals find the rules of business dining etiquette to be common sense. With globalization making developing relationships between American and Chinese businesses more accessible, providing established descriptions of how to properly conduct a business meal is essential to rising American professionals in order to ensure success in closing the business deal with their Chinese counterparts.
ContributorsLe, Athena (Co-author) / Ponce-Moreno, Jazmin (Co-author) / Hom, Peter (Thesis director) / Schoenfeld, Robert (Committee member) / Dean, W.P. Carey School of Business (Contributor) / Department of Finance (Contributor) / Department of Information Systems (Contributor) / School of International Letters and Cultures (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05
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Description
Hyperspectral imaging is a novel technology which allows for the collection of reflectance spectra of a sample in-situ and at a distance. A rapidly developing technology, hyperspectral imaging has been of particular interest in the field of art characterization, authentication, and conservation as it avoids the pitfalls of traditional characterization

Hyperspectral imaging is a novel technology which allows for the collection of reflectance spectra of a sample in-situ and at a distance. A rapidly developing technology, hyperspectral imaging has been of particular interest in the field of art characterization, authentication, and conservation as it avoids the pitfalls of traditional characterization techniques and allows for the rapid and wide collection of data never before possible. It is hypothesized that by combining the power of hyperspectral imaging with machine learning, a new framework for the in-situ and automated characterization and authentication of artworks can be developed. This project, using the CMYK set of inks, began the preliminary development of such a framework. It was found that hyperspectral imaging and machine learning as a combination show significant potential as an avenue for art authentication, though further progress and research is needed to match the reliability of status quo techniques.
ContributorsChowdhury, Tanzil Aziz (Author) / Newman, Nathan (Thesis director) / Tongay, Sefaattin (Committee member) / School of Politics and Global Studies (Contributor) / Materials Science and Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05
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Description
African American females must endure the distinct intersection of anti-black racism and misogyny, or misogynoir, which persists through the perpetuation of stereotypical images. The endurance of these controlling images adversely impacts young black girls in unique ways that often go unnoticed. Black and Pink: The Intersection of Blackness and Girlhood

African American females must endure the distinct intersection of anti-black racism and misogyny, or misogynoir, which persists through the perpetuation of stereotypical images. The endurance of these controlling images adversely impacts young black girls in unique ways that often go unnoticed. Black and Pink: The Intersection of Blackness and Girlhood in America examines the historical origins of misogynoir in America and its continued impact on modern black girls using the lens of bell hooks' literature. This includes how black females are masculinized, sexualized, and impacted by Eurocentric beauty standards in America. and These themes are further explored through a series of watercolor paintings, inspired by hooks' memoir, Bone Black.
ContributorsHayman, Adanna Michelle (Author) / Kim, Linda (Thesis director) / Meders, Jacob (Committee member) / School of Humanities, Arts, and Cultural Studies (Contributor) / Barrett, The Honors College (Contributor)
Created2018-05
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DescriptionFresh15 is an iOS application geared towards helping college students eat healthier. This is based on a user's preferences of price range, food restrictions, and favorite ingredients. Our application also considers the fact that students may have to order their ingredients online since they don't have access to transportation.
ContributorsBailey, Reece (Co-author) / Fallah-Adl, Sarah (Co-author) / Meuth, Ryan (Thesis director) / McDaniel, Troy (Committee member) / Computer Science and Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2018-05
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Description
The story of graphene truly began in what was simply a stub in the journal Physical Review not two years after the end of World War II. In 1947, McGill University physicist P.R. Wallace authored “The Band Theory of Graphite” and attempted to develop a foundation on which the structure-property

The story of graphene truly began in what was simply a stub in the journal Physical Review not two years after the end of World War II. In 1947, McGill University physicist P.R. Wallace authored “The Band Theory of Graphite” and attempted to develop a foundation on which the structure-property relationship of graphite could be explored; he calculates the number of free electrons and conductivity of what he describes as “a single hexagonal layer” and “suppos[es] that conduction takes place only in layers” in bulk graphite to predict wave functions, energies at specific atomic sites in the hexagonal lattice, and energy contours using a tight binding approximation for a hypothesized version of what we now call ‘armchair-style’ graphene. While Wallace was the first to explore the band structure and Brillouin Zones of single-layer graphite, the concept of two-dimensional materials was not new. In fact, for years, it was dismissed as a thermodynamic impossibility.

Everything seemed poised against any proposed physical and experimental stability of a structure like graphene. “Thermodynamically impossible”– a not uncommon shutdown to proposed novel physical or chemical concepts– was once used to describe the entire field of proposed two-dimensional crystals functioning separately from a three-dimensional base or crystalline structure. Rudolf Peierls and Lev Davoidovich Landau, both very accomplished physicists respectively known for the Manhattan Project and for developing a mathematical theory of helium superfluidity, rejected the possibility of isolated monolayer to few-layered crystal lattices. Their reasoning was that diverging thermodynamic-based crystal lattice fluctuations would render the material unstable regardless of controlled temperature. This logic is flawed, but not necessarily inaccurate– diamond, for instance, is thermodynamically metastable at room temperature and pressure in that there exists a slow (i.e. slow on the scale of millions of years) but continuous transformation to graphite. However, this logic was used to support an explanation of thermodynamic impossibility that was provided for graphene’s lack of isolation as late as 1979 by Cornell solid-state physicist Nathaniel David Mermin. These physicists’ claims had clear and consistent grounding in experimental data: as thin films become thinner, there exists a trend of a decreasing melting temperature and increasing instability that renders the films into islands at somewhere around ten to twenty atomic layers. This is driven by the thermodynamically-favorable minimization of surface energy.
ContributorsShulman, Neal Arthur (Author) / Adams, James (Thesis director) / Islam, Rafiqul (Committee member) / Materials Science and Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2018-05
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Description
Civil society, when taken as a whole, is a complex phenomenon that incorporates several movements and can be accompanied with international support. For instance in 1987, 40 NGOs (non-governmental organizations) were registered by the government, and within 25 years, the number has increased to 300,000 in the present day Russian

Civil society, when taken as a whole, is a complex phenomenon that incorporates several movements and can be accompanied with international support. For instance in 1987, 40 NGOs (non-governmental organizations) were registered by the government, and within 25 years, the number has increased to 300,000 in the present day Russian Federation. These numbers only include registered organizations, and do not count unregistered organizations, as approved under article 3 "Public organizations...can function without state registration and acquiring of the rights of registered legal body," or organizations that have been refused registration, such as the "Marriage Equality Russia" NGO that was denied registration in 2010. Thus the total amount of NGOs is significantly higher than 300,000. Every one of these NGOs "contribute to Russia‘s economic, political and social life in numerous ways and provide opportunities for citizens to help create better communities and elevate their voices" ("USAID in Russia"). With hundreds of thousands of organizations attempting to make a better society, they are creating a Russian civil society, one that could use the experience of countries with already well-established civil societies (Walzer). Walzer, however, notes the importance for civil society of political engagement with the state (317). In this thesis, I argue that the LGBT movement in Russia today has set an important example for other groups in civil society through its willingness to take on the Russian state through demonstrations and to use the state through the EU Court of Human Rights in Strasbourg.
ContributorsMark, Daniel (Author) / Hoogenboom, Hilde (Thesis director) / Hagen, V. Mark (Committee member) / Siroky, David (Committee member) / Barrett, The Honors College (Contributor) / College of Liberal Arts and Sciences (Contributor)
Created2012-12
Description
Transition metal dichalcogenides (TMDs) are a family of layered crystals with the chemical formula MX2 (M = W, Nb, Mo, Ta and X = S, Se, Te). These TMDs exhibit many fascinating optical and electronic properties making them strong candidates for high-end electronics, optoelectronic application, and spintronics. The layered structure

Transition metal dichalcogenides (TMDs) are a family of layered crystals with the chemical formula MX2 (M = W, Nb, Mo, Ta and X = S, Se, Te). These TMDs exhibit many fascinating optical and electronic properties making them strong candidates for high-end electronics, optoelectronic application, and spintronics. The layered structure of TMDs allows the crystal to be mechanically exfoliated to a monolayer limit, where bulk-scale properties no longer apply and quantum effects arise, including an indirect-to-direct bandgap transition. Controllably tuning the electronic properties of TMDs like WSe2 is therefore a highly attractive prospect achieved by substitutionally doping the metal atoms to enable n- and p-type doping at various concentrations, which can ultimately lead to more effective electronic devices due to increased charge carriers, faster transmission times and possibly new electronic and optical properties to be probed. WSe2 is expected to exhibit the largest spin splitting size and spin-orbit coupling, which leads to exciting potential applications in spintronics over its similar TMD counterparts, which can be controlled through electrical doping. Unfortunately, the well-established doping technique of ion implantation is unable to preserve the crystal quality leading to a major roadblock for the electronics applications of tungsten diselenide. Synthesizing WSe2 via chemical vapor transport (CVT) and flux method have been previously established, but controllable p-type (niobium) doping WSe2 in low concentrations ranges (<1 at %) by CVT methods requires further experimentation and study. This work studies the chemical vapor transport synthesis of doped-TMD W1-xNbxSe2 through characterization techniques of X-ray Diffraction, Scanning Electron Microscopy, Energy Dispersive X-ray Spectroscopy, and X-ray Photoelectron Spectroscopy techniques. In this work, it is observed that excess selenium transport does not enhance the controllability of niobium doping in WSe2, and that tellurium tetrachloride (TeCl4) transport has several barriers in successfully incorporating niobium into WSe2.
ContributorsRuddick, Hayley (Author) / Tongay, Sefaattin (Thesis director) / Jiao, Yang (Committee member) / Barrett, The Honors College (Contributor) / Materials Science and Engineering Program (Contributor)
Created2024-05