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Articles 1171 - 1200 of 7289
Full-Text Articles in Engineering
The Santa Clara, 2013-09-26, Santa Clara University
The Santa Clara, 2013-09-26, Santa Clara University
The Santa Clara
No abstract provided.
Energy And Economic Optimization To Achieve Near Zero Energy Homes In Europe: Implications Of Inclusion Of Lighting And Appliances, Florida Solar Energy Center, Danny Parker
Energy And Economic Optimization To Achieve Near Zero Energy Homes In Europe: Implications Of Inclusion Of Lighting And Appliances, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
Achieving annual net zero energy use in homes has been demonstrated as feasible in dozens of monitored projects in the United States.[1] In particular, very low energy use homes in Europe have been proven within the Passivhaus approach.[2] Achieving 'nearly zero energy buildings' (NZEB) has also been established as a vital objective over the next decade within the European Union (EU) (Boermans et al., 2011). However, reaching this result at the lowest possible cost remains a key challenge around the world. Balancing renewable power generation with energy efficiency will be vital in Europe as anticipated by Voss, Musall and Lichtmeß.[4] …
Civil Engineering And Construction News, Georgia Southern University
Civil Engineering And Construction News, Georgia Southern University
Civil Engineering & Construction: News & Publications (2011-2022)
- GS Alum Serves as Georgia DOT Chief Engineer
Trust-But-Verify: Guaranteeing The Integrity Of User-Generated Content In Online Applications, Akshay Dua
Trust-But-Verify: Guaranteeing The Integrity Of User-Generated Content In Online Applications, Akshay Dua
Dissertations and Theses
Online applications that are open to participation lack reliable methods to establish the integrity of user-generated information. Users may unknowingly own compromised devices, or intentionally publish forged information. In these scenarios, applications need some way to determine the "correctness" of autonomously generated information. Towards that end, this thesis presents a "trust-but-verify" approach that enables open online applications to independently verify the information generated by each participant. In addition to enabling independent verification, our framework allows an application to verify less information from more trustworthy users and verify more information from less trustworthy ones. Thus, an application can trade-off performance for …
Development Of Long Carbon Fiber-Reinforced Concrete For Dynamic Strengthening, Zahra S. Tabatabaei, Jeffery S. Volz, Benjamin P. Gliha, Darwin I. Keener
Development Of Long Carbon Fiber-Reinforced Concrete For Dynamic Strengthening, Zahra S. Tabatabaei, Jeffery S. Volz, Benjamin P. Gliha, Darwin I. Keener
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
This paper discusses the development and testing of long carbon fibers-fibers 75 mm long or longer-to improve the resistance of reinforced concrete to dynamic loading, such as blasts and impact. In the past, attempts to use long fibers in concrete have failed as a result of both balling (agglomeration) and poor dispersion of the fibers. In the present study, two types of long carbon fibers were developed and optimized for their use in reinforced concrete. The resulting long carbon fiber-reinforced concrete (LCFRC) was subsequently evaluated through impact and blast testing. Full-scale blast testing revealed that these fibers significantly increased the …
Civil Engineering And Construction News, Georgia Southern University
Civil Engineering And Construction News, Georgia Southern University
Civil Engineering & Construction: News & Publications (2011-2022)
- GS Asphalt Research on Display in Atlanta at Georgia Transportation Institute (GTI)
Neural Dynamics Of Phonological Processing In The Dorsal Auditory Stream, Einat Liebenthal, Merav Sabri, Scott A. Beardsley, Jain Mangalathu-Arumana, Anjali Desai
Neural Dynamics Of Phonological Processing In The Dorsal Auditory Stream, Einat Liebenthal, Merav Sabri, Scott A. Beardsley, Jain Mangalathu-Arumana, Anjali Desai
Biomedical Engineering Faculty Research and Publications
Neuroanatomical models hypothesize a role for the dorsal auditory pathway in phonological processing as a feedforward efferent system (Davis and Johnsrude, 2007; Rauschecker and Scott, 2009; Hickok et al., 2011). But the functional organization of the pathway, in terms of time course of interactions between auditory, somatosensory, and motor regions, and the hemispheric lateralization pattern is largely unknown. Here, ambiguous duplex syllables, with elements presented dichotically at varying interaural asynchronies, were used to parametrically modulate phonological processing and associated neural activity in the human dorsal auditory stream. Subjects performed syllable and chirp identification tasks, while event-related potentials and …
Impact Of Treatment Response Metrics On Photodynamic Therapy Planning And Outcomes In A Three-Dimensional Model Of Ovarian Cancer, Sriram Anbil, Imran Rizvi, Jonathan P. Celli, Nermina Alagic, Brian W. Pogue, Tayyaba Hasan
Impact Of Treatment Response Metrics On Photodynamic Therapy Planning And Outcomes In A Three-Dimensional Model Of Ovarian Cancer, Sriram Anbil, Imran Rizvi, Jonathan P. Celli, Nermina Alagic, Brian W. Pogue, Tayyaba Hasan
Dartmouth Scholarship
Common methods to characterize treatment efficacy based on morphological imaging may misrepresent outcomes and exclude effective therapies. Using a three-dimensional model of ovarian cancer, two functional treatment response metrics are used to evaluate photodynamic therapy (PDT) efficacy: total volume, calculated from viable and nonviable cells, and live volume, calculated from viable cells. The utility of these volume-based metrics is corroborated using independent reporters of photodynamic activity: viability, a common fluorescence-based ratiometric analysis, and photosensitizer photobleaching, which is characterized by a loss of fluorescence due in part to the production of reactive species during PDT. Live volume correlated with both photobleaching …
Technical Subtopic 2.1: Modeling Variable Refrigerant Flow Heat Pump And Heat Recovery Equipment In Energyplus, Florida Solar Energy Center, Richard Raustad
Technical Subtopic 2.1: Modeling Variable Refrigerant Flow Heat Pump And Heat Recovery Equipment In Energyplus, Florida Solar Energy Center, Richard Raustad
FSEC Energy Research Center®
The University of Central Florida/Florida Solar Energy Center, in cooperation with the Electric Power Research Institute and several variable-refrigerant-flow air conditioning (VRF AC) manufacturers, provided a detailed computer model for a VRF AC system in the United States Department of Energy's (U.S. DOE) EnergyPlus' building energy simulation tool. No other simulation tool currently has the capability to accurately model this state-of-the-art VRF heating, ventilating, and air conditioning (HVAC) equipment. Detailed laboratory testing and field demonstrations were performed to measure equipment performance and compare this performance with that predicted by the use of this new model through computer simulation.
This project …
Dynamic Nonlinearity And Nonlinear Single-Degree-Of-Freedom Model For Cable Net Glazing, Ruo Qiang Feng, Jihong Ye, Guirong Yan, Jin Ming Ge
Dynamic Nonlinearity And Nonlinear Single-Degree-Of-Freedom Model For Cable Net Glazing, Ruo Qiang Feng, Jihong Ye, Guirong Yan, Jin Ming Ge
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
The Nonlinear Vibration Differential Equation and Vibration Frequency of Cable Net Glazing Subject to Earthquake Loading Was Determined, and a Geometrically Nonlinear Single-Degree-Of-Freedom Model for Cable Net Glazing Was Developed. the Nonlinear Response Spectra Were Established, and Nonlinear Time History Analysis with Finite Element (FE) Models Was Conducted to Verify Them. the Nonlinear Vibration Differential Equation and Frequency Obtained as Described in This Paper Provide a Basis for the Nonlinear Single-Degree-Of-Freedom Model for Cable Net Glazing. the Analytical Formula for the Nonlinear Frequency with a Simplified Expression is Highly Precise and Convenient for Use in Engineering Practice. for Larger-Amplitude Seismic …
Using Knowledge Building To Support Deep Learning And The Development Of 21st Century Skills, Glenn W. Ellis, Yanning Yu
Using Knowledge Building To Support Deep Learning And The Development Of 21st Century Skills, Glenn W. Ellis, Yanning Yu
Engineering: Faculty Publications
No abstract provided.
Space Radiation Environment - Space Systems Engineering Sse 120, Fall 2013, Robert J. Twiggs
Space Radiation Environment - Space Systems Engineering Sse 120, Fall 2013, Robert J. Twiggs
Robert "Bob" Twiggs STEM Education Collection
Lecture preview on "Space Radiation Environment" created by Professor Bob Twiggs on September 24, 2013.
Space Radiation Environment: Sse 120 By Richard Mcneil, Richard Mcneil
Space Radiation Environment: Sse 120 By Richard Mcneil, Richard Mcneil
Robert "Bob" Twiggs STEM Education Collection
A PowerPoint presentation delivered by Richard McNeil on "Space Radiation Environment" on September 24, 2013.
Self-Timed Dram Data Interface, Rajesh Nerkar
Self-Timed Dram Data Interface, Rajesh Nerkar
Dissertations and Theses
A DRAM communicates with a processing unit via two interfaces: a data interface and a command interface. In today's DRAMs, also known as synchronous DRAMs (SDRAMs), both interfaces use a clock to communicate with the processing unit. The clock times the communication between the processing unit and the SDRAM on both the data interface and the command interface.
We propose a self-timed DRAM. The self-timed DRAM introduces more flexibility into the DRAM interface by eliminating the clock. The command interface and the data interface each communicate with the processing unit using a handshake protocol rather than a clock.
This thesis …
Bipedal Locomotion, Jamie Nichol, Dr. Paul Eastman
Bipedal Locomotion, Jamie Nichol, Dr. Paul Eastman
Journal of Undergraduate Research
Creating an artificial biped (two legged machine) has proven a challenge. The first stage of the project, designing and building the mechanical frame, has required that I study several engineering disciplines. I have also learned many lessons by trial and error.
Molecular Dynamics At Constant Pressure: Allowing The System To Control Volume Fluctuations Via A "Shell" Particle, Mark J. Uline, David S. Corti
Molecular Dynamics At Constant Pressure: Allowing The System To Control Volume Fluctuations Via A "Shell" Particle, Mark J. Uline, David S. Corti
Faculty Publications
Since most experimental observations are performed at constant temperature and pressure, the isothermal-isobaric (NPT) ensemble has been widely used in molecular simulations. Nevertheless, the NPT ensemble has only recently been placed on a rigorous foundation. The proper formulation of the NPT ensemble requires a "shell" particle to uniquely identify the volume of the system, thereby avoiding the redundant counting of configurations. Here, we review our recent work in incorporating a shell particle into molecular dynamics simulation algorithms to generate the correct NPT ensemble averages. Unlike previous methods, a piston of unknown mass is no longer needed to control the response …
Molecular Dynamics At Constant Pressure: Allowing The System To Control Volume Fluctuations Via A “Shell” Particle, Mark J. Uline, David S. Corti
Molecular Dynamics At Constant Pressure: Allowing The System To Control Volume Fluctuations Via A “Shell” Particle, Mark J. Uline, David S. Corti
School of Chemical Engineering Faculty Publications
Since most experimental observations are performed at constant temperature and pressure, the isothermal-isobaric (NPT) ensemble has been widely used in molecular simulations. Nevertheless, the NPT ensemble has only recently been placed on a rigorous foundation. The proper formulation of the NPT ensemble requires a “shell” particle to uniquely identify the volume of the system, thereby avoiding the redundant counting of configurations. Here, we review our recent work in incorporating a shell particle into molecular dynamics simulation algorithms to generate the correct NPT ensemble averages. Unlike previous methods, a piston of unknown mass is no longer needed to control …
Microstructural Evolution And Mechanical Properties Of Friction Stir Welded Ods Alloy Ma754, Jiye Wang, Wei Yuan, Rajiv S. Mishra, Indrajit Charit
Microstructural Evolution And Mechanical Properties Of Friction Stir Welded Ods Alloy Ma754, Jiye Wang, Wei Yuan, Rajiv S. Mishra, Indrajit Charit
Materials Science and Engineering Faculty Research & Creative Works
Microstructural evolution and mechanical properties of MA754, an yttrium oxide dispersion-strengthened nickel-based superalloy, were investigated after friction stir welding (FSW). A tool rotation rate of 1000 revolution per minute and a traverse speed of 50.8 mm per minute were employed using a cermet (WC-Co) tool. After FSW, fine equiaxed grain structure with a high dislocation density and a random texture was achieved. Agglomeration of yttrium oxide dispersoids was observed in FSW MA754. Room-temperature tensile properties of FSW MA754 were compared to those of as-received MA754 alloy, and the results indicated that particle strengthening contribution decreased as a result of dispersoid …
Dual Band Lte Planar Inverted-F Antenna For M2m Applications, Abraham Loutridis, Matthias John, Max Ammann
Dual Band Lte Planar Inverted-F Antenna For M2m Applications, Abraham Loutridis, Matthias John, Max Ammann
Articles
A Planar Inverted-F Antenna for M2M applications is presented. The antenna is located on a rectangular ground plane and operates across both LTE frequency bands (690-960 MHz) and (1710-2690 MHz). The low cost antenna has omni-directional characteristics. The efficiency is better than 86% in both bands and the gain is more than 1.38 dBi across the whole frequency range. A parametric study of key geometrical parameters is reported.
Sound And The Moving Image:Critical Characteristics For Spectator Response, Kara Rader, Rafeeq I. Roberts, Matt Egizii, Jeffery Allen
Sound And The Moving Image:Critical Characteristics For Spectator Response, Kara Rader, Rafeeq I. Roberts, Matt Egizii, Jeffery Allen
Undergraduate Research Posters 2013
The prevailing wisdom in the film and video production industries is that audio information outweighs visual information when it comes to spectator responses, but there are few empirical studies to support this claim. In previous research, four critical characteristics of sound have been identified: (1) Music, (2) visual/sound contradictions (defined as sound that is inconsistent with audience expectations based on visual information), (3) multi-channel sound, and (4) sound quality. Building on our previous research into music and film, we have found that many researchers have looked into the question of how music affects emotions (Eschrich et al., 2008; Have, 2008; …
Enhanced Reducibility And Conductivity Of Na/K-Doped Srti0.8Nb0.2O3, Guoliang Xiao, Sirikanda Nuansaeng, Lei Zhang, Suwit Suthirakun, Andreas Heyden, Hans-Conrad Zur Loye, Fanglin Chen
Enhanced Reducibility And Conductivity Of Na/K-Doped Srti0.8Nb0.2O3, Guoliang Xiao, Sirikanda Nuansaeng, Lei Zhang, Suwit Suthirakun, Andreas Heyden, Hans-Conrad Zur Loye, Fanglin Chen
Faculty Publications
Donor and acceptor co-doped SrTiO3 materials have shown interesting features in their conductivity and reducibility. In this work, 10 mol% Na+ or K+ as acceptor dopants have been introduced into the A-site of donor-doped strontium titanate, SrTi0.8Nb0.2O3, and the doping impact on their properties has been studied. By doping with Na or K, the sinterability of SrTi0.8Nb0.2O3 in reducing atmospheres has been improved. Na0.1Sr0.9Ti0.8Nb0.2O3 and K0.1Sr0.9Ti0.8Nb0.2O3 show metallic …
Ceas E-News 09.20.2013, College Of Engineering And Applied Sciences
Ceas E-News 09.20.2013, College Of Engineering And Applied Sciences
College of Engineering and Applied Sciences News
Fall Welcome Passport Day
Numerical Modeling Of Scattering Type Scanning Near-Field Optical Microscopy, Arvindvivek T. Ravichandran, Edward C. Kinzel, James Chris Ginn, Jeffrey A. D'Archangel, Eric Z. Tucker, Brian A. Lail, Markus B. Raschke, Glenn D. Boreman
Numerical Modeling Of Scattering Type Scanning Near-Field Optical Microscopy, Arvindvivek T. Ravichandran, Edward C. Kinzel, James Chris Ginn, Jeffrey A. D'Archangel, Eric Z. Tucker, Brian A. Lail, Markus B. Raschke, Glenn D. Boreman
Electrical Engineering and Computer Science Faculty Publications
Apertureless scattering-type Scanning Near-field Optical Microscopy (s-SNOM) has been used to study the electromagnetic response of infrared antennas below the diffraction limit. The ability to simultaneously resolve the phase and amplitude of the evanescent field relies on the implementation of several experimentally established background suppression techniques. We model the interaction of the probe with a patch antenna using the Finite Element Method (FEM). Green's theorem is used to predict the far-field, cross-polarized scattering and to construct the homodyne amplified signal. This approach allows study of important experimental phenomena, specifically the effects of the reference strength, demodulation harmonic, and detector location.
Flame Jet Impingement Heat Transfer, Todd Moss, Dr. Brent Webb
Flame Jet Impingement Heat Transfer, Todd Moss, Dr. Brent Webb
Journal of Undergraduate Research
Impinging flame jets are used widely in industry and manufacturing because of their high heat transport characteristics and tight spatial control of the heating. The technique is used in heating or re-heating of stock in the metals and glass industries, and in welding and soldering operations. However, these impinging flame jets are not well understood, and few studies reporting local and average heat transfer characteristics exist in the open literature which might be used by designers (Baukal and Gebhart, 1995a, 199b). The purpose of this research is to experimentally characterize and correlate the local and average heat transfer behavior of …
Modeling Effect Of Microstructure On The Performance Of Fibrous Heat Insulation, Raghu Arambakam
Modeling Effect Of Microstructure On The Performance Of Fibrous Heat Insulation, Raghu Arambakam
Theses and Dissertations
Heat insulation is the process of blocking the transfer of thermal energy between objects at different temperatures. Heat transfer occurs due to conduction, convection, or radiation, as well as any combination of these three mechanisms. Fibrous insulations can completely suppress the convective mode of heat transfer for most applications, and also help to reduce the conductive and radiative modes to some extent. In this study, an attempt has been made to computationally predict the effects of microstructural parameters (e.g., fiber diameter, fiber orientation and porosity) on the insulation performance of fibrous materials. The flexible simulation method developed in this work …
Cosmic Perspective: Where Is Space, Robert J. Twiggs
Cosmic Perspective: Where Is Space, Robert J. Twiggs
Robert "Bob" Twiggs STEM Education Collection
A PowerPoint presentation created by Bob Twigg on September 19, 2013, related to the "Cosmic Perspective."
Heats Of Combustion For Four Utah Leaf Species, Megan M. Woodhouse, Dr. Thomas Fletcher
Heats Of Combustion For Four Utah Leaf Species, Megan M. Woodhouse, Dr. Thomas Fletcher
Journal of Undergraduate Research
Empirical models have been developed to predict the spread of forest fire models from data about the burning plant species, terrain, and wind conditions. Over the past three years, a research group at Brigham Young University has collected data for ignition temperatures and time to ignition for eight leaf species involved in wildland fires. Four of these species are found in the Southern California chaparral, while the four other species are found in Utah. To further improve the fire models it is desirable to know the heats of combustion for each of the different leaf species. Heats of combustion can …
Bradford Singley, Bradfor Singley
Bradford Singley, Bradfor Singley
Journal of Undergraduate Research
I am writing to thank you for the generous scholarship. I cannot express my gratitude for this endowment. My wife is having a baby in three weeks, so this truly is a blessing in our lives. This scholarship will help us to make ends meet while allowing me to finish my bachelor’s degree.
Scanning Impedance Imaging: Optimizing Frequency And Conductivity For Cancer Cell Imaging, Ben Zhang, Dr. Aaron Hawkins
Scanning Impedance Imaging: Optimizing Frequency And Conductivity For Cancer Cell Imaging, Ben Zhang, Dr. Aaron Hawkins
Journal of Undergraduate Research
The ability to scan individual cancer cells that are alive has always fascinated the biomedical research community. Unfortunately, modern day imaging tools, such as atomic force microscopy, electron microscopy and magnetic resonance imaging, have not been successful in achieving that goal. The Scanning Impedance Imaging (SII) project hopes to successfully scan an individual living cancer cell and provide the biomedical community with a new imaging tool.
Design Of An Aerospike Rocket Nozzle For Integration With A Hybrid Rocket Motor, Jeffrey L. Smith, Dr. Paul F. Eastman
Design Of An Aerospike Rocket Nozzle For Integration With A Hybrid Rocket Motor, Jeffrey L. Smith, Dr. Paul F. Eastman
Journal of Undergraduate Research
Safe, reliable, technologies are needed to launch a new generation of astronauts and space tourists into space. The aerospike nozzle is more efficient than traditional bell shaped nozzles and is safer because of lower combustion chamber pressure. These excellent performance characteristics have never before been tested in conjunction with a hybrid rocket motor. This paper presents the design and testing method for an aerospike rocket.