Matching Items (371)
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Description
The following business plan is for Classically Designed, an event design and coordination company in the Raleigh-Durham area of North Carolina. All portions (business philosophy, marketing plan, operational plan, financials, etc.) are clearly lined out for immediate use and implementation. Classically Designed will be a business that will have the

The following business plan is for Classically Designed, an event design and coordination company in the Raleigh-Durham area of North Carolina. All portions (business philosophy, marketing plan, operational plan, financials, etc.) are clearly lined out for immediate use and implementation. Classically Designed will be a business that will have the reputation of honesty, responsibility, and unbelievable imagination. Previous events will shine out of the past to practically sell the business on their own. Clients should get to enjoy their own events as much as their guests and we will strive to make this happen even for the most hands-on event hosts. Customer service should always be of utmost importance so that clients know they are being taken care of and respected by every employee, whether they are with Classically Designed or were simply referred by us. We will be a well-known event company that people use when they want a memorable experience from start to finish for their event.
ContributorsKlaum, Patrice Katherine (Author) / Hoffman, David (Thesis director) / Heywood, William (Committee member) / Coon, Cynthia (Committee member) / Barrett, The Honors College (Contributor) / Herberger Institute for Design and the Arts (Contributor) / School of Community Resources and Development (Contributor)
Created2014-05
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Climate change is one of the biggest challenges facing today's society.Since the late 19th century, the global average temperature has been rising. In order to minimize the temperature increase of the earth, it is necessary to develop alternative energy technologies that do not depend on fossil fuels. Solar fuels are

Climate change is one of the biggest challenges facing today's society.Since the late 19th century, the global average temperature has been rising. In order to minimize the temperature increase of the earth, it is necessary to develop alternative energy technologies that do not depend on fossil fuels. Solar fuels are one potential energy source for the future. Solar fuel technologies use catalysts to convert low energy molecules into fuels via artificial photosynthesis. TiO2, or titania, is an important model photocatalyst for studying these reactions. It is also important to use remaining fossil fuel resources efficiently and with the lowest possible greenhouse gas emissions. Fuel cells are electrochemical devices that aim to accomplish this goal and CeO2, or ceria, is an important material used in these devices. One way to observe the atomic structure of a material is with a transmission electron microscope (TEM). A traditional transmission electron microscope employs a beam of fast electrons to form atomic resolution images of a material. While imaging gives information about the positions of the atoms in the material, spectroscopy gives information about the composition and bonding of the material. A type of spectroscopy that can be performed inside the transmission electron microscope is electron energy loss spectroscopy (EELS), which provides a fundamental understanding of the electronic structure of a material. The energy loss spectrum also contains information on the chemical bonding in the material, and theoretical calculations that model the spectra are essential to correctly interpreting this bonding information. FEFF is a software that performs EELS calculations. Calculations of the oxygen K edges of TiO2 and CeO2 were made using FEFF in order to understand the changes that occur in the spectrum when oxygen vacancies are introduced as well as the changes near a grain boundary.
ContributorsHussaini, Zahra (Author) / Crozier, Peter (Thesis director) / Rez, Peter (Committee member) / Jorissen, Kevin (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Statistical Sciences (Contributor) / Materials Science and Engineering Program (Contributor) / Department of Physics (Contributor)
Created2013-12
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This Honors Thesis evaluates a recreation program entitled Operation Recreation that was implemented at Camp Raymond, a Boy Scout Camp in Northern Arizona. The mission of Operation Recreation is to enhance each Scout's knowledge and passion for the Scouting Ideals, Patrol, and Personal Growth Methods of Scouting. Data were collected

This Honors Thesis evaluates a recreation program entitled Operation Recreation that was implemented at Camp Raymond, a Boy Scout Camp in Northern Arizona. The mission of Operation Recreation is to enhance each Scout's knowledge and passion for the Scouting Ideals, Patrol, and Personal Growth Methods of Scouting. Data were collected to evaluate Operation Recreation and measure whether the two program goals were met. The program development cycle was used to design Operation Recreation to meet the unique programming needs of Camp Raymond. Operation Recreation is a week-long recreation program that gives Scouts the opportunity to participate in activities that develop their knowledge of the Scouting Ideals, encourage an increase in engagement of the personal growth method, and create a time devoted to practicing the patrol method. Analysis of evaluation results was conducted and suggestions for modifications are made.
ContributorsClarke-Telfer, Jasmine Miranda (Author) / Rodriguez, Ariel (Thesis director) / Andereck, Kathleen (Committee member) / Knoll, Cindy (Committee member) / Barrett, The Honors College (Contributor) / School of Community Resources and Development (Contributor) / W. P. Carey School of Business (Contributor)
Created2013-12
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ABSTRACT: After attending the Major League Winter Meetings in Orlando, Florida (the largest gathering of baseball executives in the world), it was affirmed how valuable a pitcher is to a team. "Which pitcher will be worth the pay or hurt your pay?" This is a multimillion-dollar question asked every season

ABSTRACT: After attending the Major League Winter Meetings in Orlando, Florida (the largest gathering of baseball executives in the world), it was affirmed how valuable a pitcher is to a team. "Which pitcher will be worth the pay or hurt your pay?" This is a multimillion-dollar question asked every season by managers, teams and organizations in Major League Baseball. This is a question that has been mulled over in the past, present and will be a highly regarded question in the future in the baseball industry. While technology is still being developed to analyze and test pitchers for the future, what can be done in the meantime without the bells and whistles? The purpose and objective of my thesis paper is to try to identify a recipe that can be used by any baseball team to compare pitchers without the use of very advance and expensive technology. The arm motion of a pitcher is crucial as poor mechanics can lead to an injured pitcher or even surgery, forcing a team to dig deep elsewhere. For my paper, I chose pitchers I had video access to from the 2013 season that include Diamondbacks pitchers: Patrick Corbin, Wade Miley, Josh Collmenter and Joe Thatcher. Then I chose two players I would like to further analyze: a knuckleball pitcher, R.A. Dickey, and a fastball/curveball pitcher, Stephen Strasburg. The data collected includes: angles of arm in motion also known as the jerk, stride, angle velocity, height, weight, number of games started/played in 2013, percentage of pitches thrown in a season, number of pitches thrown in a season, innings pitched (IP) and earned run average (ERA). The data was put in a table to compare pitchers in the now or the future.
Created2013-12
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Description
The goal of this project was to examine the separatricies that define regions of distinct flow behaviors in realistic time-dependent dynamical systems. In particular, we adapted previously available methods for computing the Finite-Time Lyapunov Exponent (FTLE) to a set of measured wind velocity data in order to visualize the separatricies

The goal of this project was to examine the separatricies that define regions of distinct flow behaviors in realistic time-dependent dynamical systems. In particular, we adapted previously available methods for computing the Finite-Time Lyapunov Exponent (FTLE) to a set of measured wind velocity data in order to visualize the separatricies as ridges of the FTLE field in a section of the atmosphere. This visualization required a number of alterations to the original methods, including interpolation techniques and two different adaptive refinement schemes for producing more detailed results. Overall, there were two computations performed with the wind velocity data: once along a single spherical surface, on which the separatricies could be visualized as material lines, and then along a three-dimensional section of the atmosphere, for which the separatricies were material surfaces. The resulting figures provide an image of the Antarctic polar vortex from the wind velocity data, which is consistent with other data gathered on the same date.
ContributorsUpton, James Thomas (Author) / Tang, Wenbo (Thesis director) / Moustaoui, Mohamed (Committee member) / Barrett, The Honors College (Contributor) / School of International Letters and Cultures (Contributor) / School of Mathematical and Statistical Sciences (Contributor) / Department of Physics (Contributor)
Created2014-05
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Description
Using weather data from the Weather Research and Forecasting model (WRF), we analyze the transport of inertial particles in Hurricane Katrina in order to identify coherent patterns of motion. For our analysis, we choose a Lagrangian approach instead of an Eulerian approach because the Lagrangian approach is objective and frame-independent,

Using weather data from the Weather Research and Forecasting model (WRF), we analyze the transport of inertial particles in Hurricane Katrina in order to identify coherent patterns of motion. For our analysis, we choose a Lagrangian approach instead of an Eulerian approach because the Lagrangian approach is objective and frame-independent, and gives results which are better defined. In particular, we locate Lagrangian Coherent Structures (LCS), which are smooth sets of fluid particles which are locally most hyperbolic (either attracting or repelling). We implement a variational method for locating LCS and compare the results to previous computation of LCS using Finite-Time Lyapunov Exponents (FTLE) to identify regions of high stretching in the fluid flow.
ContributorsDeibel, Angelica Rae (Author) / Tang, Wenbo (Thesis director) / Moustaoui, Mohamed (Committee member) / Kostelich, Eric (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Statistical Sciences (Contributor) / Department of Physics (Contributor)
Created2013-05
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This study investigates the relationship between intercultural friendships and attitudes towards intercultural dating—from the perspective of Asian students studying in the United States. Twenty Chinese students completed an online, 19-item questionnaire (Survey Monkey) surveying the cultural diversity of their friendships (age, gender, religion, nationality, and language) and also their

This study investigates the relationship between intercultural friendships and attitudes towards intercultural dating—from the perspective of Asian students studying in the United States. Twenty Chinese students completed an online, 19-item questionnaire (Survey Monkey) surveying the cultural diversity of their friendships (age, gender, religion, nationality, and language) and also their attitudes toward dating White U.S. Americans. The data were submitted to statistical tests and the results revealed no significant correlation between success in developing U.S. American friends, diversity of friendship networks, and interest in dating a White U.S. American. These non-significant results may be due to a limitation of the study--the small number of respondents. However additional findings revealed a high percentage of respondents expressed interest in making friends and dating White U.S. Americans. They also identified major challenges involved--language barriers and cultural differences. Finally, future research directions and applications of research findings are presented.
ContributorsWarner, Olivia Rose (Author) / Martin, Judith (Thesis director) / Mongeau, Paul (Committee member) / Faulkner, Kristin (Committee member) / Barrett, The Honors College (Contributor) / School of Community Resources and Development (Contributor) / Hugh Downs School of Human Communication (Contributor)
Created2013-05
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Description
Journalism, by its very nature, is limited, often adhering to a repetitive format and narration style. Consequently, the depth of journalistic stories will always hit a barrier. Fiction, on the other hand, provides an elegant solution by exploring the world through a myriad point of views including complete omniscience. This

Journalism, by its very nature, is limited, often adhering to a repetitive format and narration style. Consequently, the depth of journalistic stories will always hit a barrier. Fiction, on the other hand, provides an elegant solution by exploring the world through a myriad point of views including complete omniscience. This thesis explores the link between journalism and fiction by taking real-world scenarios and exploring them without journalism's limitations. It includes three novellas totaling 25,000 words drawn from true-to-life research papers, news stories and manifestos to paint a realistic picture of a technological reality in the near future, a style of writing one might call futurecasting. The thesis also contains an analysis of the techniques used in contemporary fiction and an analysis of their implementation within the novellas. The goal of the novellas is to let researchers to explore the impact of their work before its mass dissemination in order to shape societal, national and international policy responsibly. Similarly, novellas like this and others similar allow society to discover the beauty of science through fiction. These are some of fiction's greatest roles in science and society.
ContributorsPacini, Jason Daniel (Author) / Zachary, Gregg (Thesis director) / Russell, Dennis (Committee member) / Giarrusso, Theresa Walsh (Committee member) / Barrett, The Honors College (Contributor) / Department of Physics (Contributor) / Walter Cronkite School of Journalism and Mass Communication (Contributor)
Created2013-05
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DescriptionThis research evaluates the national HIV/AIDS policy of Ghana and compares it to the policies of other countries in the Economic Community of West African States.
Created2013-05
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Description
In this project, we introduce a type of microscopy which produces correlated topography and fluorescence lifetime images with nanometer resolution. This technique combines atomic force microscopy (AFM) and time resolved confocal fluorescence microscopy to conduct biological and materials research. This method is used to investigate nanophotonic effects on single fluorophores,

In this project, we introduce a type of microscopy which produces correlated topography and fluorescence lifetime images with nanometer resolution. This technique combines atomic force microscopy (AFM) and time resolved confocal fluorescence microscopy to conduct biological and materials research. This method is used to investigate nanophotonic effects on single fluorophores, including quantum dots and fluorescent molecules. For single fluorescent molecules, we investigate the effects of quenching of fluorescence with the probe of an atomic force microscope which is combined and synchronized with a confocal fluorescence lifetime microscope. For quantum dots, we investigate the correlation between the topographic and fluorescence data. With this method of combining an atomic force microscope with a confocal microscope, it is anticipated that there will be applications in nanomaterial characterization and life sciences; such as the determination of the structure of small molecular systems on surfaces, molecular interactions, as well as the structure and properties of fluorescent nanomaterials.
ContributorsWard, Alex Mark (Author) / Ros, Robert (Thesis director) / Shumway, John (Committee member) / Schulz, Olaf (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Statistical Sciences (Contributor) / Department of Physics (Contributor)
Created2013-05