Matching Items (43,913)
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Envy may be an emotion shaped by evolution to resolve large resource disparities in zero-sum ancestral environments. Previous research has found evidence for two types of envy: benign envy, which drives greater effort and self-improvement; and malicious envy, which drives hostility toward the better-off target. We predicted that perceived resource

Envy may be an emotion shaped by evolution to resolve large resource disparities in zero-sum ancestral environments. Previous research has found evidence for two types of envy: benign envy, which drives greater effort and self-improvement; and malicious envy, which drives hostility toward the better-off target. We predicted that perceived resource scarcity would stoke either type, moderated by individual differences. Specifically, we predicted that high self-esteem would steer people toward benign envy and self-improvement, whereas narcissism would spark malicious envy. After completing the Rosenberg self-esteem scale and the Narcissism Personality Inventory (NPI-16), participants were randomly assigned to either read an article detailing severe cuts to university financial aid budgets (scarcity) or an article summarizing various forms of financial aid (control). Each article ended with the same envy-inducing paragraph about a particularly affluent scholarship-winner, after which participants completed a measure of both envy types, capturing feelings, appraisals, and behavioral tendencies. Results show that self-esteem predicts less malicious envy, while narcissism and scarcity predict more. Self-esteem and narcissism interact such that self-esteem dampens the effect of narcissism on malicious envy. Self-esteem predicted benign envy when narcissism was low, but not when it was high.
ContributorsDuarte, Jose L (Author) / Shiota, Michelle N. (Thesis advisor) / Kwan, Sau Y (Committee member) / Kenrick, Douglas (Committee member) / Arizona State University (Publisher)
Created2011
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Fish farming is a fast growing industry, which, although necessary to feed an ever growing worldwide population, has its share of negative environmental consequences, including the release of drugs and other waste into the ocean, the use of fish caught from the ocean to feed farm raised fish, and the

Fish farming is a fast growing industry, which, although necessary to feed an ever growing worldwide population, has its share of negative environmental consequences, including the release of drugs and other waste into the ocean, the use of fish caught from the ocean to feed farm raised fish, and the escape of farm raised fish into natural bodies of water. However, the raising of certain types of fish, such as tilapia, seems to be an environmentally better proposition than raising other types of fish, such as salmon. This paper will explore the problems associated with fish farming, as well as offer a model, based on the literature, and interviews with fish farmers, to make small-scale fish farming both more environmentally, and more economically, sustainable. This paper culminates with a model for small-scale, specifically semi-subsistence, fish farmers. This model emphasizes education of the fish farmers, as well as educators learning from the fish farmers they interact with. The goal of this model is to help these fish farmers become both more environmentally and economically sustainable.
ContributorsLongoni, Robert A (Author) / Parmentier, Mary Jane (Thesis advisor) / Grossman, Gary (Committee member) / Macia, Narciso (Committee member) / Arizona State University (Publisher)
Created2011
Description
As digital technology promises immediacy and interactivity in communication, sight and sound in motion graphics has expanded the range of design possibilities in advertising, social networking, and telecommunication beyond the visual realm. The experience of seeing has been greatly enriched by sound as visual solutions become dynamic and multi-dimensional. The

As digital technology promises immediacy and interactivity in communication, sight and sound in motion graphics has expanded the range of design possibilities in advertising, social networking, and telecommunication beyond the visual realm. The experience of seeing has been greatly enriched by sound as visual solutions become dynamic and multi-dimensional. The ability to record and transfer sight and sound with new media has granted the designer more control in manipulating a viewer's experience of time and space. This control allows time-based form to become the foundation that establishes many interactive, multisensory and interdisciplinary applications. Is conventional design theory for print media adequate to effectively approach time-based form? If not, what is the core element that is required to balance the static and dynamic aspects of time in new media? Should time-related theories and methodologies from other disciplines be adopted into our design principles? If so, how would this knowledge be integrated? How can this experience in time be effectively transferred to paper? Unless the role of the time dimension in sight is operationally deconstructed and retained with sound, it is very challenging to control the design in this fugitive form. Time activation refers to how time and the perception of time can be manipulated for design and communication purposes. Sound, as a shortcut to the active time design element, not only encapsulates the structure of its "invisible" time-based form, but also makes changes in time conspicuously measurable and comparable. Two experiments reflect the influence of sound on imagery, a slideshow and video, as well as how the dynamics in time are represented across all design media. A cyclical time-based model is established to reconnect the conventional design principles learned in print media with time-based media. This knowledge helps expand static images to motion and encapsulate motion in stasis. The findings provide creative methods for approaching visualization, interactivity, and design education.
ContributorsCheung, Hoi Yan Patrick (Author) / Giard, Jacques (Thesis advisor) / Sanft, Alfred C (Committee member) / Aisling, Kelliher (Committee member) / Arizona State University (Publisher)
Created2011
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Description
This thesis examines the 1994 Rwandan genocide with a specific emphasis on the rape of Tutsi women as a weapon of genocide. From the perspective of scholarship in trauma studies, an account of the conflict and colonialism leading up to the genocide is offered in order to demonstrate the historical

This thesis examines the 1994 Rwandan genocide with a specific emphasis on the rape of Tutsi women as a weapon of genocide. From the perspective of scholarship in trauma studies, an account of the conflict and colonialism leading up to the genocide is offered in order to demonstrate the historical making of the ground of collective trauma in Rwanda. Further, this thesis examines the discursive means of the perpetuation of collective trauma in the form of the Hutu demonization of Tutsi women. Shortcomings in the justice system emerging from the genocide are also discussed as a perpetuation of trauma. Finally, projects of justice and healing among Tutsi women are examined in an account of survival and resiliency. In conclusion, women that survived the genocide have navigated through societal and governmental systems to provide better lives for themselves, their families and the society.
ContributorsArmitage, Rebecca Lainé (Author) / Stancliff, Michael (Thesis advisor) / Casper, Monica (Committee member) / Simmons, William (Committee member) / Arizona State University (Publisher)
Created2011
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Morgan Library MS M.905 (the Geese Book) is the last known illuminated gradual produced for the Church of St. Lorenz in Nuremberg, Germany. The Geese Book, which was created during the early sixteenth century, has been in the collection of the Morgan Library since 1961. This thesis describes

Morgan Library MS M.905 (the Geese Book) is the last known illuminated gradual produced for the Church of St. Lorenz in Nuremberg, Germany. The Geese Book, which was created during the early sixteenth century, has been in the collection of the Morgan Library since 1961. This thesis describes the iconography of the eight historiated initials that illustrate the earthly life of Christ from the Annunciation to the Ascension. A detailed description of the content of each initial is followed by a brief history of the iconographic development of the identified event in order to determine whether or not the Geese Book uses a standard or nonstandard iconography. The results of this analysis reveal how this manuscript fits into the broader contexts of Christian art as well as the specific time and place of its creation. It shows that the iconography of the Geese Book reflected current theological beliefs and societal norms and allowed contemporary viewers of the Geese Book to feel a strong connection to the depicted events.
ContributorsDankert, Rebecca Lynn (Author) / Schleif, Corine (Thesis advisor) / Schier, Volker (Committee member) / Brown, Claudia (Committee member) / Arizona State University (Publisher)
Created2011
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Description
Passive cooling designs & technologies offer great promise to lower energy use in buildings. Though the working principles of these designs and technologies are well understood, simplified tools to quantitatively evaluate their performance are lacking. Cooling by night ventilation, which is the topic of this research, is one of the

Passive cooling designs & technologies offer great promise to lower energy use in buildings. Though the working principles of these designs and technologies are well understood, simplified tools to quantitatively evaluate their performance are lacking. Cooling by night ventilation, which is the topic of this research, is one of the well known passive cooling technologies. The building's thermal mass can be cooled at night by ventilating the inside of the space with the relatively lower outdoor air temperatures, thereby maintaining lower indoor temperatures during the warmer daytime period. Numerous studies, both experimental and theoretical, have been performed and have shown the effectiveness of the method to significantly reduce air conditioning loads or improve comfort levels in those climates where the night time ambient air temperature drops below that of the indoor air. The impact of widespread adoption of night ventilation cooling can be substantial, given the large fraction of energy consumed by air conditioning of buildings (about 12-13% of the total electricity use in U.S. buildings). Night ventilation is relatively easy to implement with minimal design changes to existing buildings. Contemporary mathematical models to evaluate the performance of night ventilation are embedded in detailed whole building simulation tools which require a certain amount of expertise and is a time consuming approach. This research proposes a methodology incorporating two models, Heat Transfer model and Thermal Network model, to evaluate the effectiveness of night ventilation. This methodology is easier to use and the run time to evaluate the results is faster. Both these models are approximations of thermal coupling between thermal mass and night ventilation in buildings. These models are modifications of existing approaches meant to model dynamic thermal response in buildings subject to natural ventilation. Effectiveness of night ventilation was quantified by a parameter called the Discomfort Reduction Factor (DRF) which is the index of reduction of occupant discomfort levels during the day time from night ventilation. Daily and Monthly DRFs are calculated for two climate zones and three building heat capacities. It is verified that night ventilation is effective in seasons and regions when day temperatures are between 30 oC and 36 oC and night temperatures are below 20 oC. The accuracy of these models may be lower than using a detailed simulation program but the loss in accuracy in using these tools more than compensates for the insights provided and better transparency in the analysis approach and results obtained.
ContributorsEndurthy, Akhilesh Reddy (Author) / Reddy, T Agami (Thesis advisor) / Phelan, Patrick (Committee member) / Addison, Marlin (Committee member) / Arizona State University (Publisher)
Created2011
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The interplay of genes and environment on children's development is a complex dynamic process. As behavior geneticists begin to model protective as well as risk factors, and interactive as well as main effect influences, development is elucidated. It was hypothesized that positive parenting, a quality home environment, and

The interplay of genes and environment on children's development is a complex dynamic process. As behavior geneticists begin to model protective as well as risk factors, and interactive as well as main effect influences, development is elucidated. It was hypothesized that positive parenting, a quality home environment, and high family cohesion would moderate the heritability of three components of temperament: Effortful Control, Negative Affectivity, and Extraversion/Surgency. Participants were drawn from the Wisconsin Twin Project and consisted of 1573 twins (51% boys), 88.5% Caucasian, M=7.93 years (SD=0.87). Higher order composites for the parenting and family environment moderators were formed from mother and father reports of Behavior Management Self-Assessment, Child Rearing Practices Report, Family Assessment Device, and Family Conflict Scale. Measures of the home environment (LEOS Living Environment Observation Scale and CHAOS Confusion, Hubbub, and Order Scale) were not composited due to the nature of the variables. Correlational analyses showed a majority of the temperament and environmental measures to be correlated (rs = -.49-.57). For Effortful Control, Negative Affectivity, and Extraversion/Surgency, estimates for the heritability and nonshared environment were 0.60 and 0.40, 0.80 and 0.20, and 0.59 and 0.41, respectively, with no significant main effects of the shared environment. Models incorporating environmental moderation of these estimates yielded parenting as a significant moderator for Negative Affectivity, LEOS for Effortful Control and Extraversion/Surgency, and CHAOS for Effortful Control and Extraversion/Surgency. Results suggest that the quality of the family environment may act as a permissive or determinative influence on the heritability and expression of temperament. Future analyses include the examination of interactive genetic influences. These findings underscore the importance of shared environment, and support the recent literature on the benefits of positive influences on children's development.
ContributorsKao, Karen (Author) / Bradley, Robert H. (Thesis advisor) / Lemery-Chalfant, Kathryn (Thesis advisor) / Nagoshi, Craig (Committee member) / Arizona State University (Publisher)
Created2011
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The cyanobacterium Synechocystis sp. PCC 6803 performs oxygenic photosynthesis. Light energy conversion in photosynthesis takes place in photosystem I (PSI) and photosystem II (PSII) that contain chlorophyll, which absorbs light energy that is utilized as a driving force for photosynthesis. However, excess light energy may lead to formation of reactive

The cyanobacterium Synechocystis sp. PCC 6803 performs oxygenic photosynthesis. Light energy conversion in photosynthesis takes place in photosystem I (PSI) and photosystem II (PSII) that contain chlorophyll, which absorbs light energy that is utilized as a driving force for photosynthesis. However, excess light energy may lead to formation of reactive oxygen species that cause damage to photosynthetic complexes, which subsequently need repair or replacement. To gain insight in the degradation/biogenesis dynamics of the photosystems, the lifetimes of photosynthetic proteins and chlorophyll were determined by a combined stable-isotope (15N) and mass spectrometry method. The lifetimes of PSII and PSI proteins ranged from 1-33 and 30-75 hours, respectively. Interestingly, chlorophyll had longer lifetimes than the chlorophyll-binding proteins in these photosystems. Therefore, photosynthetic proteins turn over and are replaced independently from each other, and chlorophyll is recycled from the damaged chlorophyll-binding proteins. In Synechocystis, there are five small Cab-like proteins (SCPs: ScpA-E) that share chlorophyll a/b-binding motifs with LHC proteins in plants. SCPs appear to transiently bind chlorophyll and to regulate chlorophyll biosynthesis. In this study, the association of ScpB, ScpC, and ScpD with damaged and repaired PSII was demonstrated. Moreover, in a mutant lacking SCPs, most PSII protein lifetimes were unaffected but the lifetime of chlorophyll was decreased, and one of the nascent PSII complexes was missing. SCPs appear to bind PSII chlorophyll while PSII is repaired, and SCPs stabilize nascent PSII complexes. Furthermore, aminolevulinic acid biosynthesis, an early step of chlorophyll biosynthesis, was impaired in the absence of SCPs, so that the amount of chlorophyll in the cells was reduced. Finally, a deletion mutation was introduced into the sll1906 gene, encoding a member of the putative bacteriochlorophyll delivery (BCD) protein family. The Sll1906 sequence contains possible chlorophyll-binding sites, and its homolog in purple bacteria functions in proper assembly of light-harvesting complexes. However, the sll1906 deletion did not affect chlorophyll degradation/biosynthesis and photosystem assembly. Other (parallel) pathways may exist that may fully compensate for the lack of Sll1906. This study has highlighted the dynamics of photosynthetic complexes in their biogenesis and turnover and the coordination between synthesis of chlorophyll and photosynthetic proteins.
ContributorsYao, Cheng I Daniel (Author) / Vermaas, Wim (Thesis advisor) / Fromme, Petra (Committee member) / Roberson, Robert (Committee member) / Webber, Andrew (Committee member) / Arizona State University (Publisher)
Created2011
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Description
This dissertation integrates research on boards of directors with human and social capital perspectives to examine board appointments. A director's appointment to a board is in part due to the belief that the individual can contribute critical resources and monitoring to the organization. The ability of a director to provide

This dissertation integrates research on boards of directors with human and social capital perspectives to examine board appointments. A director's appointment to a board is in part due to the belief that the individual can contribute critical resources and monitoring to the organization. The ability of a director to provide these resources and monitoring depends on his or her level of human and social capital. This dissertation more fully integrates human and social capital perspectives into our understanding of board appointment events. From these theoretical underpinnings, a model is developed proposing that several human and social capital indicators, including educational level, expertise, director experience, and access to network structural holes, affect the likelihood of joining a new board, joining a prestigious board, and exiting a current board. I also consider a number of contextual- and individual-level variables that may potentially moderate the relationship between a director's human and social capital and director mobility. Through this dissertation, I make a number of contributions to the literatures on boards, board appointments, and human and social capital. First, I offer a more comprehensive perspective of the board appointment process by developing an individual-level perspective of board appointments. Second, I contribute to a more comprehensive understanding of the market for corporate directors. Third, I focus on several salient dimensions of director mobility. Fourth, I contribute to the growing literature on human and social capital at the board and director levels. Finally, I add to the growing literature on director selection.
ContributorsWithers, Michael C (Author) / Hillman, Amy J. (Thesis advisor) / Certo, S. Trevis (Committee member) / Khanna, Poonam (Committee member) / Arizona State University (Publisher)
Created2011
Description
Single cell phenotypic heterogeneity studies reveal more information about the pathogenesis process than conventional bulk methods. Furthermore, investigation of the individual cellular response mechanism during rapid environmental changes can only be achieved at single cell level. By enabling the study of cellular morphology, a single cell three-dimensional (3D) imaging system

Single cell phenotypic heterogeneity studies reveal more information about the pathogenesis process than conventional bulk methods. Furthermore, investigation of the individual cellular response mechanism during rapid environmental changes can only be achieved at single cell level. By enabling the study of cellular morphology, a single cell three-dimensional (3D) imaging system can be used to diagnose fatal diseases, such as cancer, at an early stage. One proven method, CellCT, accomplishes 3D imaging by rotating a single cell around a fixed axis. However, some existing cell rotating mechanisms require either intricate microfabrication, and some fail to provide a suitable environment for living cells. This thesis develops a microvorterx chamber that allows living cells to be rotated by hydrodynamic alone while facilitating imaging access. In this thesis work, 1) the new chamber design was developed through numerical simulation. Simulations revealed that in order to form a microvortex in the side chamber, the ratio of the chamber opening to the channel width must be smaller than one. After comparing different chamber designs, the trapezoidal side chamber was selected because it demonstrated controllable circulation and met the imaging requirements. Microvortex properties were not sensitive to the chambers with interface angles ranging from 0.32 to 0.64. A similar trend was observed when chamber heights were larger than chamber opening. 2) Micro-particle image velocimetry was used to characterize microvortices and validate simulation results. Agreement between experimentation and simulation confirmed that numerical simulation was an effective method for chamber design. 3) Finally, cell rotation experiments were performed in the trapezoidal side chamber. The experimental results demonstrated cell rotational rates ranging from 12 to 29 rpm for regular cells. With a volumetric flow rate of 0.5 µL/s, an irregular cell rotated at a mean rate of 97 ± 3 rpm. Rotational rates can be changed by altering inlet flow rates.
ContributorsZhang, Wenjie (Author) / Frakes, David (Thesis advisor) / Meldrum, Deirdre (Thesis advisor) / Chao, Shih-hui (Committee member) / Wang, Xiao (Committee member) / Arizona State University (Publisher)
Created2011