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Articles 1951 - 1980 of 7240
Full-Text Articles in Engineering
A Sensitive Film Structure Improvement Of Reduced Graphene Oxide Based Resistive Gas Sensors, Yong Zhou, Guangzhong Xie, Tao Xie, Huan Yuan, Huiling Tai, Yadong Jiang, Zhi Chen
A Sensitive Film Structure Improvement Of Reduced Graphene Oxide Based Resistive Gas Sensors, Yong Zhou, Guangzhong Xie, Tao Xie, Huan Yuan, Huiling Tai, Yadong Jiang, Zhi Chen
Electrical and Computer Engineering Faculty Publications
This study was focused on how to improve the gas sensing properties of resistive gas sensors based on reduced graphene oxide. Sol-airbrush technology was utilized to prepare reduced graphene oxide films using porous zinc oxide films as supporting materials mainly for carbon dioxide sensing applications. The proposed film structure improved the sensitivity and the response/recovery speed of the sensors compared to those of the conventional ones and alleviated the restrictions of sensors' performance to the film thickness. In addition, the fabrication technology is relatively simple and has potential for mass production in industry. The improvement in the sensitivity and the …
Superradiant Decay Of Cyclotron Resonance Of Two-Dimensional Electron Gases, Qi Zhang, Takashi Arikawa, Eiji Kato, John L. Reno, Wei Pan, John D. Watson, Michael J. Manfra, Michael A. Zudov, Mikhail Tokman, Maria Erukhimova, Alexey Belyanin, Junichiro Kono
Superradiant Decay Of Cyclotron Resonance Of Two-Dimensional Electron Gases, Qi Zhang, Takashi Arikawa, Eiji Kato, John L. Reno, Wei Pan, John D. Watson, Michael J. Manfra, Michael A. Zudov, Mikhail Tokman, Maria Erukhimova, Alexey Belyanin, Junichiro Kono
Birck and NCN Publications
We report on the observation of collective radiative decay, or superradiance, of cyclotron resonance (CR) in high-mobility two-dimensional electron gases in GaAs quantum wells using time-domain terahertz magnetospectroscopy. The decay rate of coherent CR oscillations increases linearly with the electron density in a wide range, which is a hallmark of superradiant damping. Our fully quantum mechanical theory provides a universal formula for the decay rate, which reproduces our experimental data without any adjustable parameter. These results firmly establish the many-body nature of CR decoherence in this system, despite the fact that the CR frequency is immune to electron-electron interactions due …
Veselago Lens By Photonic Hyper-Crystals, Zun Huang, Evgenii Narimanov
Veselago Lens By Photonic Hyper-Crystals, Zun Huang, Evgenii Narimanov
Birck and NCN Publications
Based on the recent concept of the photonic hyper-crystal-an artificial optical medium that combines the properties of hyperbolic materials and photonic crystals, we present the imaging system functioning as a Veselago lens. This planar lens shows a nearly constant negative refractive index with substantially reduced image aberrations, and can find potential applications in photolithography and hot-spots detection of silicon-based integrated circuits. (C) 2014 AIP Publishing LLC.
High Temperature Thermoreflectance Imaging And Transient Harman Characterization Of Thermoelectric Energy Conversion Devices, T. Favaloro, Amirkoushyar Ziabari, Je-Hyeong Bahk, P. Burke, H. Lu, J. Bowers, A. Gossard, Z. Bian, Ali Shakouri
High Temperature Thermoreflectance Imaging And Transient Harman Characterization Of Thermoelectric Energy Conversion Devices, T. Favaloro, Amirkoushyar Ziabari, Je-Hyeong Bahk, P. Burke, H. Lu, J. Bowers, A. Gossard, Z. Bian, Ali Shakouri
Birck and NCN Publications
Advances in thin film growth technology have enabled the selective engineering of material properties to improve the thermoelectric figure of merit and thus the efficiency of energy conversion devices. Precise characterization at the operational temperature of novel thermoelectric materials is crucial to evaluate their performance and optimize their behavior. However, measurements on thin film devices are subject to complications from the growth substrate, non-ideal contacts, and other thermal and electrical parasitic effects. In this manuscript, we determine the cross-plane thermoelectric material properties in a single measurement of a 25 mu m InGaAs thin film with embedded ErAs (0.2%) nanoparticles using …
Opto-Electronic Devices With Nanoparticles And Their Assemblies, Chieu Van Nguyen
Opto-Electronic Devices With Nanoparticles And Their Assemblies, Chieu Van Nguyen
Department of Chemical and Biomolecular Engineering: Dissertations, Theses, and Student Research
Nanotechnology is a fast growing field; engineering matters at the nano-meter scale. A key nanomaterial is nanoparticles (NPs). These sub-wavelength (< 100nm) particles provide tremendous possibilities due to their unique electrical, optical, and mechanical properties. Plethora of NPs with various chemical composition, size and shape has been synthesized. Clever designs of sub-wavelength structures enable observation of unusual properties of materials, and have led to new areas of research such as metamaterials. This dissertation describes two self-assemblies of gold nanoparticles, leading to an ultra-soft thin film and multi-functional single electron device at room temperature. First, the layer-by-layer self-assembly of 10nm Au nanoparticles and polyelectrolytes is shown to behave like a cellular-foam with modulus below 100 kPa. As a result, the composite thin film (~ 100nm) is 5 orders of magnitude softer than an equally thin typical polymer film. The thin film can be compressed reversibly to 60% strain. The extraordinarily low modulus and high compressibility are advantageous in pressure sensing applications. The unique mechanical properties of the composite film lead to development of an ultra-sensitive tactile imaging device capable of screening for breast cancer. On par with human finger sensitivity, the tactile device can detect a 5mm imbedded object up to 20mm below the surface with low background noise. The second device is based on a one-dimensional (1-D) self-directed self-assembly of Au NPs mediated by dielectric materials. Depending on the coverage density of the Au NPs assembly deposited on the device, electronic emission was observed at ultra-low bias of 40V, leading to low-power plasma generation in air at atmospheric pressure. Light emitted from the plasma is apparent to the naked eyes. Similarly, 1-D self-assembly of Au NPs mediated by iron oxide was fabricated and exhibits ferro-magnetic behavior. The multi-functional 1-D self-assembly of Au NPs has great potential in modern electronics such as solid state lighting, plasma-based nanoelectronics, and memory devices.
Adviser: Ravi F. Saraf
A Geospatial Approach For Prioritizing Wind Farm Development In Northeast Nebraska, Usa, Adam Miller, Ruopu Li
A Geospatial Approach For Prioritizing Wind Farm Development In Northeast Nebraska, Usa, Adam Miller, Ruopu Li
School of Natural Resources: Faculty Publications
Being cleaner and climate friendly, wind energy has been increasingly utilized to meet the ever-growing global energy demands. In the State of Nebraska, USA, a wide gap exists between wind resource and actual energy production, and it is imperative to expand the wind energy development. Because of the formidable costs associated with wind energy development, the locations for new wind turbines need to be carefully selected to provide the greatest benefit for a given investment. Geographic Information Systems (GIS) have been widely used to identify the suitable wind farm locations. In this study, a GIS-based multi-criteria approach was developed to …
Compositional Model Checking Of Concurrent Systems, Hao Zheng, Zhen Zhang, Chris J. Myers, Emmanuel Rodriguez, Yingying Zhang
Compositional Model Checking Of Concurrent Systems, Hao Zheng, Zhen Zhang, Chris J. Myers, Emmanuel Rodriguez, Yingying Zhang
Electrical and Computer Engineering Faculty Publications
This paper presents a compositional framework to address the state explosion problem in model checking of concurrent systems. This framework takes as input a system model described as a network of communicating components in a high-level description language, finds the local state transition models for each individual component where local properties can be verified, and then iteratively reduces and composes the component state transition models to form a reduced global model for the entire system where global safety properties can be verified. The state space reductions used in this framework result in a reduced model that contains the exact same …
Ceas E-News 07.17.2014, College Of Engineering And Applied Sciences
Ceas E-News 07.17.2014, College Of Engineering And Applied Sciences
College of Engineering and Applied Sciences News
- Last Competition for the 2010 Model Sunseeker in 2014 American Solar Challenge
- WMU Engineering Students Design Impact Sensor for Football Helmets to Detect Concussions
Tunable Landau-Zener Transitions In A Spin-Orbit-Coupled Bose-Einstein Condensate, Abraham J. Olson, Su-Ju Wang, Robert J. Niffenegger, Chuan-Hsun Li, Chris H. Greene, Yong P. Chen
Tunable Landau-Zener Transitions In A Spin-Orbit-Coupled Bose-Einstein Condensate, Abraham J. Olson, Su-Ju Wang, Robert J. Niffenegger, Chuan-Hsun Li, Chris H. Greene, Yong P. Chen
Birck and NCN Publications
The Landau-Zener (LZ) transition is one of the most fundamental phenomena in quantum dynamics. It describes nonadiabatic transitions between quantum states near an avoided crossing that can occur in diverse physical systems. Here we report experimental measurements and tuning of LZ transitions between the dressed eigenlevels of a Bose-Einstein condensate (BEC) that is synthetically spin-orbit (SO) coupled. We measure the transition probability as the BEC is accelerated through the SO avoided crossing and study its dependence on the coupling between the diabatic (bare) states, eigenlevel slope, and eigenstate velocity-the three parameters of the LZ model that are independently controlled in …
Measuring Autonomy And Solving General Stabilization Problems With Multi-Agent Systems, Rasheed A. Rajabzadeh
Measuring Autonomy And Solving General Stabilization Problems With Multi-Agent Systems, Rasheed A. Rajabzadeh
School of Computing: Dissertations, Theses, and Student Research
Many distributed complex problems address a particular form of resource scheduling where proper resource management can cut costs by stabilizing a set of stochastic fluctuating parameters. Wireless sensor network communication, supply chain management, stock trading, intelligent traffic management, and smart grid systems are examples of these problems. Among the various solutions, a common strategy often used to address this type of problems is fluctuation reduction via resource buffering combined with load shifting. Respectively, stable wireless communication, demand for supplies, liquidity, traffic speed, and power demand reduce cost and can be achieved by properly managing sensor data buffers, warehouses, capital, distance …
Catalytic Performance Of An Iron-Based Catalyst In Fischer–Tropsch Synthesis, Majid Sarkari, Farhad Fazlollahi, Hossein Ajamein, Hossein Atashi, William C. Hecker, Larry L. Baxter
Catalytic Performance Of An Iron-Based Catalyst In Fischer–Tropsch Synthesis, Majid Sarkari, Farhad Fazlollahi, Hossein Ajamein, Hossein Atashi, William C. Hecker, Larry L. Baxter
Faculty Publications
This paper documents the performance and kinetics of an iron/manganese oxide catalyst in a fixed-bed reactor by Fischer–Tropsch synthesis (FTS) under conditions favoring the formation of gaseous and liquid hydrocarbons (P: 1–12 bar; T: 513–543 K; H2/CO:1, 1.5, 2 mol/mol; gas hourly space velocity: 4200–7000 cm3 (STP)/h/gcat). Based on the hypothesis that water inhibits the intrinsic FTS reaction rate, eight kinetic models are considered: six variations of the Langmuir–Hinshelwood–Hougen–Watson representation and two empirical power-law models. The kinetic expression/mechanism that most precisely fits the data assumes the following: (1) CO dissociation is reversible and does not involve hydrogen; (2) all hydrogenation …
Supercapacitor Power Management Module, Michael Brooks, Anderson Fu, Brett Kehoe
Supercapacitor Power Management Module, Michael Brooks, Anderson Fu, Brett Kehoe
Electrical and Computer Engineering Senior Theses
The purpose of this senior design project is to create a charge management and output converting power module incorporating an array of supercapacitors as the energy storage medium. Conventional energy storage components, such as lithium-ion batteries, use electrochemical reactions to store and release electrons into a system. These batteries are slow to charge, highly toxic to the environment and delicate compared too many of the systems they are used in. Supercapacitors are noticeably more rugged and last hundreds to thousands of times longer than the average chemical reaction-based batteries we are used to using while capable of charging in less …
The Quest For An Unambiguous Parameterization Of Mixing Efficiency In Stably Stratified Geophysical Flows, Benjamin D. Mater, Subhas K. Venayagamoorthy
The Quest For An Unambiguous Parameterization Of Mixing Efficiency In Stably Stratified Geophysical Flows, Benjamin D. Mater, Subhas K. Venayagamoorthy
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
Estimates of turbulent mixing in geophysical settings typically depend on the efficiency at which shear-driven turbulence mixes density across isopycnals. To date, however, no unifying parameterization of diapycnal mixing efficiency exists due to the variability of natural flows and also due to certain ambiguities that arise from descriptions based on a single parameter. Here we highlight important ambiguities of some common single-parameter schemes in the context of a multiparameter framework that considers the independent effects of shear, buoyancy, and viscosity. Parameterizations based on the gradient Richardson number (Ri), the turbulent Froude number (FrT), and the buoyancy Reynolds number (Reb) are …
Coel: A Web-Based Chemistry Simulation Framework, Peter Banda, Drew Blount, Christof Teuscher
Coel: A Web-Based Chemistry Simulation Framework, Peter Banda, Drew Blount, Christof Teuscher
Computer Science Faculty Publications and Presentations
The chemical reaction network (CRN) is a widely used formalism to describe macroscopic behavior of chemical systems. Available tools for CRN modelling and simulation require local access, installation, and often involve local file storage, which is susceptible to loss, lacks searchable structure, and does not support concurrency. Furthermore, simulations are often single-threaded, and user interfaces are non-trivial to use. Therefore there are significant hurdles to conducting efficient and collaborative chemical research. In this paper, we introduce a new enterprise chemistry simulation framework, COEL, which addresses these issues. COEL is the first web-based framework of its kind. A visually pleasing and …
Self-Assembled Tunable Photonic Hyper-Crystals, Vera N. Smolyaninova, Bradley Yost, David Lhneman, Evgenii Narimanov, Igor I. Smolyaninov
Self-Assembled Tunable Photonic Hyper-Crystals, Vera N. Smolyaninova, Bradley Yost, David Lhneman, Evgenii Narimanov, Igor I. Smolyaninov
Birck and NCN Publications
We demonstrate a novel artificial optical material, the "photonic hyper-crystal'', which combines the most interesting features of hyperbolic metamaterials and photonic crystals. Similar to hyperbolic metamaterials, photonic hyper-crystals exhibit broadband divergence in their photonic density of states due to the lack of usual diffraction limit on the photon wave vector. On the other hand, similar to photonic crystals, hyperbolic dispersion law of extraordinary photons is modulated by forbidden gaps near the boundaries of photonic Brillouin zones. Three dimensional self-assembly of photonic hyper-crystals has been achieved by application of external magnetic field to a cobalt nanoparticle-based ferrofluid. Unique spectral properties of …
Thickness Determination Of Few-Layer Hexagonal Boron Nitride Films By Scanning Electron Microscopy And Auger Electron Spectroscopy, P. Sutter, E. Sutter
Thickness Determination Of Few-Layer Hexagonal Boron Nitride Films By Scanning Electron Microscopy And Auger Electron Spectroscopy, P. Sutter, E. Sutter
Department of Electrical and Computer Engineering: Faculty Publications
We assess scanning electron microscopy (SEM) and Auger electron spectroscopy (AES) for thickness measurements on few-layer hexagonal boron nitride (h-BN), the layered dielectric of choice for integration with graphene and other two-dimensional materials. Observations on h-BN islands with large, atomically flat terraces show that the secondary electron intensity in SEM reflects monolayer height changes in films up to least 10 atomic layers thickness. From a quantitative analysis of AES data, the energy-dependent electron escape depth in h-BN films is deduced. The results show that AES is suitable for absolute thickness measurements of few-layer h-BN of 1 to 6 layers.
Panel I: Connecting 2nd Law Analysis With Economics, Ecology And Energy Policy, Richard Gaggioli, Mauro Reini
Panel I: Connecting 2nd Law Analysis With Economics, Ecology And Energy Policy, Richard Gaggioli, Mauro Reini
Mechanical Engineering Faculty Research and Publications
The present paper is a review of several papers from the Proceedings of the Joint European Thermodynamics Conference, held in Brescia, Italy, 1–5 July 2013, namely papers introduced by their authors at Panel I of the conference. Panel I was devoted to applications of the Second Law of Thermodynamics to social issues—economics, ecology, sustainability, and energy policy. The concept called Available Energy which goes back to mid-nineteenth century work of Kelvin, Rankine, Maxwell and Gibbs, is relevant to all of the papers. Various names have been applied to the concept when interactions between the system of interest and an environment …
Predicting Professional Golfer Performance Using Proprietary Pga Tour “Shotlink” Data, Brian Leahy
Predicting Professional Golfer Performance Using Proprietary Pga Tour “Shotlink” Data, Brian Leahy
Dissertations
It can cost a minimum of $110,000 a year for a professional golfer to compete on the PGA Tour. For the successful golfers who earn millions every year, this is not a problem. For those lower ranked golfers, it is a problem. This is due to the fact that almost half the golfers who compete in any one PGA Tour tournament will not get paid, because they have missed the dreaded cut. When a golfer begins to consistently miss the cut, they can come under financial pressure which may manifest itself into poor further tournament performances. This dissertation attempts to …
Impact Of Short-Range Scattering On The Metallic Transport Of Strongly Correlated Two-Dimensional Holes In Gaas Quantum Wells, Nicholas J. Goble, J. D. Watson, Michael J. Manfra, Xuan P.A. Gao
Impact Of Short-Range Scattering On The Metallic Transport Of Strongly Correlated Two-Dimensional Holes In Gaas Quantum Wells, Nicholas J. Goble, J. D. Watson, Michael J. Manfra, Xuan P.A. Gao
Birck and NCN Publications
Understanding the nonmonotonic behavior in the temperature dependent resistance R(T) of strongly correlated two-dimensional (2D) carriers in clean semiconductors has been a central issue in the studies of 2D metallic states and metal-insulator transitions. We have studied the transport of high mobility 2D holes in 20-nm-wide GaAs quantum wells with varying short-range disorder strength by changing the Al fraction x in the AlxGa1-xAs barrier. Via varying the short-range interface roughness and alloy scattering, it is observed that increasing x suppresses both the strength and characteristic temperature scale of the 2D metallicity, pointing to the distinct role of short-range vs long-range …
Impact Of Short-Range Scattering On The Metallic Transport Of Strongly Correlated Two-Dimensional Holes In Gaas Quantum Wells, Nicholas J. Goble, John D. Watson, Michael J. Manfra, Xuan P.A. Gao
Impact Of Short-Range Scattering On The Metallic Transport Of Strongly Correlated Two-Dimensional Holes In Gaas Quantum Wells, Nicholas J. Goble, John D. Watson, Michael J. Manfra, Xuan P.A. Gao
Birck and NCN Publications
Understanding the nonmonotonic behavior in the temperature dependent resistance R(T) of strongly correlated two-dimensional (2D) carriers in clean semiconductors has been a central issue in the studies of 2D metallic states and metal-insulator transitions. We have studied the transport of high mobility 2D holes in 20-nm-wide GaAs quantum wells with varying short-range disorder strength by changing the Al fraction x in the AlxGa1-xAs barrier. Via varying the short-range interface roughness and alloy scattering, it is observed that increasing x suppresses both the strength and characteristic temperature scale of the 2D metallicity, pointing to the distinct role of short-range vs long-range …
A Brain Robot Interface For Autonomous Activities Of Daily Living Tasks, Don Indika Upashantha Pathirage
A Brain Robot Interface For Autonomous Activities Of Daily Living Tasks, Don Indika Upashantha Pathirage
USF Tampa Graduate Theses and Dissertations
There have been substantial improvements in the area of rehabilitation robotics in the recent past. However, these advances are inaccessible to a large number of people with disabilities who are in most need of such assistance. This group includes people who are in a severely paralyzed state, that they are completely "locked-in" in their own bodies. Such persons usually retain full cognitive abilities, but have no voluntary muscle control.
For these persons, a Brain Computer Interface (BCI) is often the only way to communicate with the outside world and/or control an assistive device. One major drawback to BCI devices is …
Coastal Defenses, U.S., Bert Chapman
Coastal Defenses, U.S., Bert Chapman
Libraries Faculty and Staff Scholarship and Research
Provides an overview of U.S. military coastal defenses during the period up to and including the War 1812.
Informing Flood Plain Wetland Restoration Using Amphibian Monitoring, Ashley Vanderham
Informing Flood Plain Wetland Restoration Using Amphibian Monitoring, Ashley Vanderham
School of Natural Resources: Dissertations, Theses, and Student Research
Wetlands are among the most important and complex ecosystems in the world. They contribute to nutrient cycling, the hydrologic cycle, and provide critical habitat for many plants, fish, and wildlife. Channelization of Missouri River resulted in the loss of many floodplain wetlands. Despite ongoing restoration efforts, there are few ecologically-based performance guidelines, and managers need methods to quantify and assess the success of restored riverine wetland systems.
In 2008 a multi-institutional herpetofauna monitoring project, funded by the U.S. Army Corps of Engineers, was initiated in four states (Kansas, Missouri, Iowa, and Nebraska). The main goal of the project is to …
Self-Organizing Microstructures Orientation Control In Femtosecond Laser Patterning On Silicon Surface, Pengjun Liu, Lan Jiang, Jie Hu, Shuai Zhang, Yongfeng Lu
Self-Organizing Microstructures Orientation Control In Femtosecond Laser Patterning On Silicon Surface, Pengjun Liu, Lan Jiang, Jie Hu, Shuai Zhang, Yongfeng Lu
Department of Electrical and Computer Engineering: Faculty Publications
Self-organizing rippled microstructures are induced on silicon surface by linearly polarized femtosecond laser pulses. At a near threshold fluence, it is observed that ripple orientation is co-determined by the laser polarization direction and laser scanning parameters (scanning direction and scanning speed) in surface patterning process. Under fixed laser polarization, the ripple orientation can be controlled to rotate by about 40° through changing laser scanning parameters. In addition, it is also observed that the ripple morphology is sensitive to the laser scanning direction, and it is an optimal choice to obtain ordered ripple structures when the angle between laser scanning and …
Emission Of Volatile Organic Compounds After Land Application Of Cattle Manure, Bryan Woodbury, John E. Gilley, David B. Parker, David B. Marx, Daniel N. Miller, Roger A. Eigenberg
Emission Of Volatile Organic Compounds After Land Application Of Cattle Manure, Bryan Woodbury, John E. Gilley, David B. Parker, David B. Marx, Daniel N. Miller, Roger A. Eigenberg
Department of Agricultural and Biological Systems Engineering: Faculty Publications
Beef cattle manure can serve as a valuable source of nutrients for crop production. However, emissions of volatile organic compounds (VOCs) after land application may pose an odor nuisance to downwind populations. This study was conducted to evaluate the effects of land application method, diet, soil moisture content, and time since manure application on VOC emissions. Manure was collected from feedlot pens where cattle were fed diets containing 0, 10, or 30% wet distillers grains with solubles (WDGS). Land application methods included surface-applying manure (i.e., no-tillage) or incorporating manure using disk tillage. The effects of soil moisture content on VOC …
Application Of A Modified Backwards Lagrangian Stochastic Model To Estimate Particulate Matter Emissions From A Dairy, Kori Moore, Michael Wojcik, Randy Martin, Richard Pfeiffer, John Prueger, Jerry Hatfield
Application Of A Modified Backwards Lagrangian Stochastic Model To Estimate Particulate Matter Emissions From A Dairy, Kori Moore, Michael Wojcik, Randy Martin, Richard Pfeiffer, John Prueger, Jerry Hatfield
Space Dynamics Laboratory Publications
Background
- SDL, USU, and ARS have assembled sensors to measure PM and NH3 concentrations around area sources
- Point and remote sensors, including a PM calibrated scanning lidar
- Emissions estimated using concentration measurements
- Mass balance (lidar only)
- Inverse modeling
Advances In Aquatic Target Localization With Passive Sonar, John Thomas Gebbie
Advances In Aquatic Target Localization With Passive Sonar, John Thomas Gebbie
Dissertations and Theses
New underwater passive sonar techniques are developed for enhancing target localization capabilities in shallow ocean environments. The ocean surface and the seabed act as acoustic mirrors that reflect sound created by boats or subsurface vehicles, which gives rise to echoes that can be heard by hydrophone receivers (underwater microphones). The goal of this work is to leverage this "multipath" phenomenon in new ways to determine the origin of the sound, and thus the location of the target. However, this is difficult for propeller driven vehicles because the noise they produce is both random and continuous in time, which complicates its …
56th Annual Rocky Mountain Conference On Magnetic Resonance
56th Annual Rocky Mountain Conference On Magnetic Resonance
Rocky Mountain Conference on Magnetic Resonance
Final program, abstracts, and information about the 56th annual meeting of the Rocky Mountain Conference on Magnetic Resonance, co-endorsed by the Colorado Section of the American Chemical Society and the Society for Applied Spectroscopy. Held in Copper Mountain, Colorado, July 13-17, 2014.
Topsoil Moisture Estimation For Precision Agriculture Using Unmanned Aerial Vehicle Multispectral Imagery, Leila Hassan-Esfahani, Alfonso F. Torres-Rua, Andres M. Ticlavilca, Austin M. Jensen, Mac Mckee
Topsoil Moisture Estimation For Precision Agriculture Using Unmanned Aerial Vehicle Multispectral Imagery, Leila Hassan-Esfahani, Alfonso F. Torres-Rua, Andres M. Ticlavilca, Austin M. Jensen, Mac Mckee
Civil and Environmental Engineering Faculty Publications
There is an increasing trend in crop production management decisions in precision agriculture based on observation of high resolution aerial images from unmanned aerial vehicles (UAV). Nevertheless, there are still limitations in terms of relating the spectral imagery information to the agricultural targets. AggieAir™ is a small, autonomous unmanned aircraft which carries multispectral cameras to capture aerial imagery during pre-programmed flights. AggieAir enables users to gather imagery at greater spatial and temporal resolution than most manned aircraft and satellite sources. The platform has been successfully used in support of a wide variety of water and natural resources management areas. This …
Predictive Models For Earthquake Response Of Clay And Sensitive Clay Slopes, Amir M. Kaynia, Gokhan Saygili
Predictive Models For Earthquake Response Of Clay And Sensitive Clay Slopes, Amir M. Kaynia, Gokhan Saygili
Civil Engineering Faculty Publications and Presentations
Earthquake-induced permanent displacement and shear strain are suitable indicators in assessing the seismic stability of slopes. In this paper, predictive models for the permanent displacement and shear strain as functions of the characteristics of the slope (e.g. factor of safety) and the ground motion (e.g. peak ground acceleration) are proposed. The predicted models are based on numerical simulations of seismic response of infinite slopes with realistic soil profiles and geometry parameters. Predictive models are developed for clay and sensitive clay slopes. A strain-softening soil model is used for sensitive clays. A comparison of the permanent displacement and strain predictions for …