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Articles 27661 - 27690 of 196358
Full-Text Articles in Engineering
Measuring Solar Activity With Cosmicwatch Muon Detectors, Jade Marchant
Measuring Solar Activity With Cosmicwatch Muon Detectors, Jade Marchant
Utah Space Grant Consortium
To expand upon the knowledge gained from the construction of the CosmicWatch detectors, we conducted an experiment that had specific aims to measure the correlation between muon detection and current solar activity. This was done by taking daily muon count measurements and comparing it to daily sunspot and solar flare activity data retrieved from various space weather agencies. This experiment allowed us to test the capabilities of the detectors while also exploring fascinating astrophysical phenomena. Our results indicate that muon detection through the CosmicWatch detectors does not correlate with changes in daily solar activity.
Are They Really Muons: Determining The Viability Of Cosmicwatch Muon Detectors In ‘Coincidence Mode’, Matt Wilkinson
Are They Really Muons: Determining The Viability Of Cosmicwatch Muon Detectors In ‘Coincidence Mode’, Matt Wilkinson
Utah Space Grant Consortium
Our project went forward in two stages, the first stage being the building and testing of the detectors and the second being the primary experiment to test the detectors in their coincidence modes. Experiences with the build phase, particularly with the setting of thresholds for the detectors, lead to the interest in determining the statistical significance of these values.
Rover Propulsion In Frozen Environments, Kyler Ingles
Rover Propulsion In Frozen Environments, Kyler Ingles
Utah Space Grant Consortium
The goal of this study is to find the optimal propulsion system for a rover on snowy terrain. The purpose of the study is to test multiple methods of driving a rover in deep fresh snow to later be used when designing a rover intended to traverse steep snowy terrain on other planets. The exploration of this topic is important for our study of other celestial bodies. A significant portion of the planets and moons in our solar system has a surface covered in frozen substances like carbon dioxide, methane, and oxygen. This research will help create a rover to …
Optimization Of Nozzle Profiles To Achieve Higher Thrust Performance And Lowering Manufacturing Costs, Chandler Taylor
Optimization Of Nozzle Profiles To Achieve Higher Thrust Performance And Lowering Manufacturing Costs, Chandler Taylor
Utah Space Grant Consortium
With the growing popularity in high-powered rockery the question of cost and performance is on every rocketeer’s mind. Then paired with the interest of flying higher and breaking records for armature rocketry flight the question is proposed, how does one make a rocket motor to increase its performance and lower its costs? In this we intend to answer that question. We will design a test for ammonium perchlorate motors and define methods to increase the performance and lower the cost. The way we can achieve this is testing in computer simulations with focused being on nozzle and materials optimization. Computer …
The Influence Of Mycorrhizal Associations On Monoterpene And Isoprene Emissions In Plants, Luis Valdez, Lane Law
The Influence Of Mycorrhizal Associations On Monoterpene And Isoprene Emissions In Plants, Luis Valdez, Lane Law
Utah Space Grant Consortium
The Purpose of this research is to determine the extent of the influence of AMF symbiosis can exert on the VOC emissions profiles of plants, particularly whether AMF symbiosis has a positive or negative effect on isoprene and monoterpene emissions.
Development Of A Nano-Encapsulation Platform With A Novel Antioxidant Indigoidine For The Mitigation Of Space Radiation, Kyle Jackson, Jie Ren, Jixun Zhan, Yu Huang
Development Of A Nano-Encapsulation Platform With A Novel Antioxidant Indigoidine For The Mitigation Of Space Radiation, Kyle Jackson, Jie Ren, Jixun Zhan, Yu Huang
Utah Space Grant Consortium
Space includes many hazards to the human species, one of the most detrimental to us is the biological damage from radiation. Loading an astronaut's immune system with free radical scavenging molecules as a potential shield from this damage is one method to prevent biologically relevant damage that has only been slightly explored. Unfortunately, the pharmacological potential of many antioxidants is severely restricted because of their low solubility/absorption. Here, I characterize a powerful delivery system that can deliver many different hydrophobic antioxidants to the cell, increasing their bioavailability. The novel antioxidant Indigoidine has been explored in this delivery system. It has …
Magnetically-Stabilized Let Joints For Origami-Based Space Arrays, Hunter Pruett, Spencer Magleby
Magnetically-Stabilized Let Joints For Origami-Based Space Arrays, Hunter Pruett, Spencer Magleby
Utah Space Grant Consortium
A review of surrogate folds is presented. From said review, a concept set of surrogate folds is generated and concept selection criteria are generated. The surrogate fold concept set is refined and the LET array is selected with justification. Novel stress considerations are presented for LET arrays seeking to minimize panel thickness and be as proximate as possible in the stowed state. The MaNO hinge is introduced, and the MaLDO, MaLO, and MaNO hinges are successfully incorporated into LET arrays demonstrating viable options for actuation and stabilization of origami-inspired mechanisms and arrays.
Ultra-Low Power Adcs For Space Sensors And Instruments, Shea Smith, Wood Chiang
Ultra-Low Power Adcs For Space Sensors And Instruments, Shea Smith, Wood Chiang
Utah Space Grant Consortium
A 28nm 0.1V 10-bit 20kS/s time domain ADC with 225Hz bandwidth is proposed. This design opens the doors to both low supply and low power space sensors and instruments. Due to the stringent voltage supply, unique challenges arise that are met with innovation in the sample switch and the quantizer design. These components of the ADC architecture are aggressively optimized to perform successfully at a 0.1V supply with a sample rate suitable for most sensor applications.
Preliminary Exploration Of Approaches To Increase The Stability Of Flat-Foldable Origami-Adapted Designs In The Open, Flat State, Collin Ynchausti, Spencer Shirley, Larry L. Howell
Preliminary Exploration Of Approaches To Increase The Stability Of Flat-Foldable Origami-Adapted Designs In The Open, Flat State, Collin Ynchausti, Spencer Shirley, Larry L. Howell
Utah Space Grant Consortium
Deployable spacecraft-based systems are benefitted from origami-adapted systems because they can be folded compactly and then deployed to larger areas. This unfolding motion must be stopped and held in specific configurations. In the case of reflectarrays, the panels need to deployed to flat and be kept there. Strain energy can be utilized to stabilize these systems. This works shows three ways, based on three different thickness accommodation techniques, that strain energy may be used to stabilize the systems in their deployed, flat positions. Additionally, each technique shown creates co-planar top surfaces to benefit reflectarray antenna design cases.
Advances In Noninvasive Urine Oxygen Monitoring For Detection Of Acute Kidney Injury, Lars Lofgren, Kai Kück, Natalie Silverton
Advances In Noninvasive Urine Oxygen Monitoring For Detection Of Acute Kidney Injury, Lars Lofgren, Kai Kück, Natalie Silverton
Utah Space Grant Consortium
Acute kidney injury (AKI) is a common complication of cardiac surgery that is associated with increased hospital length of stay and mortality risk. The most common diagnostic criteria come from the Kidney Disease Improving Global Outcomes Guidelines. These criteria rely on detecting changes in serum creatinine relative to a baseline measurement and decreased urine output. These markers are meant to capture a decrease in the overall filtration rate. However, the filtration rate may or may not change depending on the baseline health of the individual patient and the type and severity of the injury. In addition, these markers are influenced …
Notes Of Black Holes, A. B. Chanson
Notes Of Black Holes, A. B. Chanson
Utah Space Grant Consortium
Fully leveraging Analysis onto physics proves fruitful, as a number of results are displayed; in particular, emergent symmetries are, generally, categorized as information symmetries; together with Noether’s theorems, these laws are found dual to the Laws of Thermodynamics as well as the Three Isomorphism Theories (alongside the Fundamental Theorem of Algebra). Most remarkably, the fine structure constant is analytically derived (using monodromy techniques), the cosmological hierarchy problem is resolved (using thermodynamic techniques), and a new duality between quantum information, celestial holography, and black holes is exhibited and exploited to resolve the Arrow of Time.
Aerodynamic Effects Of Phase Offset Between Synchronized Propellers In Hover, Nathan Welker, Daniel Maynes
Aerodynamic Effects Of Phase Offset Between Synchronized Propellers In Hover, Nathan Welker, Daniel Maynes
Utah Space Grant Consortium
Emerging advances in electric-propulsion technology are enabling aircraft to use distributed electric propulsion (DEP) to increase performance and maneuverability. Distributed electric propulsion can also provide unique take-off and landing abilities which are not commonly found on traditional aircraft. The implementation of DEP effectively decreases the spacing between propellers, introducing complex aerodynamic interactions that are not well understood. This study aims to present the findings of the effects of phase offset on the flow fields of synchronized propellers at close-proximity using a particle image velocimetry system. The tip vortex locations and peak vorticities were tracked and plotted for various phase offset …
Steering Colloids Using Chemical Gradients And Model Predictive Control, Mark N. Mcdonald, Cameron K. Peterson, Douglas R. Tree
Steering Colloids Using Chemical Gradients And Model Predictive Control, Mark N. Mcdonald, Cameron K. Peterson, Douglas R. Tree
Utah Space Grant Consortium
Creating the next generation of dynamic colloidal materials that change their structure based on external stimuli may require the capability to precisely manipulate colloidal particles. Colloidal particles can be manipulated using a variety of forces, such as electric, magnetic, and optical, but so far chemical reactions have been neglected. We consider here a novel paradigm for using chemical gradients to precisely manipulate colloidal particles in a microfluidic device. Specifically, we show in simulation that model predictive control can be applied to a set of spatially localized chemical reactions to move a small number of colloidal particles on a circular trajectory.
Modeling The Effects Of Space Travel On The Cardiovascular System Using A Bio-Mimetic In Vitro Hagfish Protein Model Of The Myocardium, Emilee Rickabaugh, Elizabeth Vargis
Modeling The Effects Of Space Travel On The Cardiovascular System Using A Bio-Mimetic In Vitro Hagfish Protein Model Of The Myocardium, Emilee Rickabaugh, Elizabeth Vargis
Utah Space Grant Consortium
Long-term space travel is a harsh experience for the human body. Astronauts exposed to the effects of space travel often experience bone and muscle loss, as well as an increased risk of diseases, including heart disease[1]. While the human heart has shown an impressive ability to adapt to spaceflight, many of the long-term effects on cardiovascular health are unknown [2]. To plan for missions requiring longer flight durations, understanding these effects is neccessary to assess the risk to the astronauts undertaking these missions. However, evaluating these risks is difficult due to the lack of a sufficiently accurate model. While animal …
Using Landsat And Sentinel To Investigate Drivers Of Algal Growth In Utah Lake, Kaylee B. Tanner
Using Landsat And Sentinel To Investigate Drivers Of Algal Growth In Utah Lake, Kaylee B. Tanner
Utah Space Grant Consortium
Earth observation satellites provide a valuable opportunity to study spatial and temporal water quality trends in ways that are not possible with research based on in-situ water sampling. We used data from Sentinel 2 and the Landsat missions to analyze algae blooms on Utah Lake, a large, shallow, freshwater lake in Utah that is experiencing water quality challenges. We found that algae blooms mainly occur in the shallow bays and along the eastern shoreline of the lake, and are correlated with water temperature and turbidity. Our results suggest a need for further research and use of remote sensing data to …
Principles And Categorization Of Compliant Surrogate Folds For Deployable Origami-Inspired Mechanical Systems, Ivyann O. Running, Phebe Ramsdell, Spencer Magleby
Principles And Categorization Of Compliant Surrogate Folds For Deployable Origami-Inspired Mechanical Systems, Ivyann O. Running, Phebe Ramsdell, Spencer Magleby
Utah Space Grant Consortium
Origami principles, patterns, and thickness accommodation techniques have been explored and tested for engineering applications in many fields. Two of the main difficulties of transferring a design from folded paper to thicker, stiffer materials are accommodating thickness and replicating folding motion with surrogate folds. While literature reviews exist for thickness accommodation, it is difficult for a designer to survey and assess work that has been on the subject of surrogate folds. Currently, many engineering origami instances limit themselves to using pin hinges, adjusting all other design parameters to accommodate pure revolute motion. The possibilities for origami design and application are …
Venturi Adapters – Feedback Control And Dynamic Modeling Simulation, Trey Blackwell, Joseph Orr
Venturi Adapters – Feedback Control And Dynamic Modeling Simulation, Trey Blackwell, Joseph Orr
Utah Space Grant Consortium
Administration of CPAP in moderate sedation medical procedures has been shown to reduce the risk of oxygen desaturation. Venturi adapters provide a more cost-efficient and logistically feasible alternative to non-invasive ventilators for administering CPAP. Flow-to-pressure tables provided with commercially available CPAP Venturi adapters do not account for inherent variables such as mask leak flow and inhalation flow rate. A dynamic model was developed to describe the pressure and oxygen behavior of a CPAP system utilizing a Venturi adapter. The model was evaluated to reflect system behavior with reasonable accuracy but high computational expense. PID and sliding mode controllers were implemented …
Theory, Simulation, And Experiments On A Magnetically Insulated Transmission Line Terminated By A Bremsstrahlung Diode, Troy Clay Powell
Theory, Simulation, And Experiments On A Magnetically Insulated Transmission Line Terminated By A Bremsstrahlung Diode, Troy Clay Powell
Electrical and Computer Engineering ETDs
Foundational concepts necessary for power flow analysis of a self-magnetically insulated transmission line (MITL) are introduced in theoretical form and several developments to the theory are described. These include cold-cathode electron emission physics, self-magnetic insulation physics, self-limited MITL current, and relativistic secondary ion production from anode surfaces. Modeling these physics is performed using EMPIRE, an electromagnetic particle-in-cell code.
Self-limited MITL current theory described numerically by Pointon is developed here in analytic form and is then used to drive simulations to compare to experiments that were performed in EMPIRE. Carefully calibrated current sensors from HERMES-III experiments show good agreement with EMPIRE …
Multiple And Consecutive Genome Editing Using I-Gonad And Breeding Enrichment Facilitates The Production Of Genetically Modified Mice, Carolina R Melo-Silva, Cory J Knudson, Lingjuan Tang, Samita Kafle, Lauren E. Springer, Jihae Choi, Christopher M. Snyder, Yajing Wang, Sangwon V. Kim, Luis J. Sigal
Multiple And Consecutive Genome Editing Using I-Gonad And Breeding Enrichment Facilitates The Production Of Genetically Modified Mice, Carolina R Melo-Silva, Cory J Knudson, Lingjuan Tang, Samita Kafle, Lauren E. Springer, Jihae Choi, Christopher M. Snyder, Yajing Wang, Sangwon V. Kim, Luis J. Sigal
Department of Microbiology and Immunology Faculty Papers
Genetically modified (GM) mice are essential tools in biomedical research. Traditional methods for generating GM mice are expensive and require specialized personnel and equipment. The use of clustered regularly interspaced short palindromic repeats (CRISPR) coupled with improved-Genome editing via Oviductal Nucleic Acids Delivery (i-GONAD) has highly increased the feasibility of producing GM mice in research laboratories. However, genetic modification in inbred mouse strains of interest such as C57BL/6 (B6) is still challenging because of their low fertility and embryo fragility. We have successfully generated multiple novel GM mouse strains in the B6 background while attempting to optimize i-GONAD. We found …
Atmospheric Carbon Capture: A Review On Current Technologies And Analysis Of Energy Consumption For Various Direct Air Capture (Dac) Systems, Jennifer Perskin
Atmospheric Carbon Capture: A Review On Current Technologies And Analysis Of Energy Consumption For Various Direct Air Capture (Dac) Systems, Jennifer Perskin
Doctoral Dissertations and Master's Theses
Carbon dioxide (CO2) capture is a crucial approach to reducing greenhouse gases in the atmosphere to directly combat climate change. Major components of the technology to desublimate CO2 at cryogenic temperatures are mature and have the potential to be applied to build large Arctic/Antarctic direct-air CO2 capture plants. Pressure swing adsorption another gas separation technique used in industry today that can be modified for atmospheric carbon capture. The discussion of energy consumption for cryogenic and combined direct air capture systems is explored in this study. The investigation of precompression of atmospheric air for a direct-air capture …
Deep Learning Of Semantic Image Labels On Hdr Imagery In A Maritime Environment, Charles Montagnoli
Deep Learning Of Semantic Image Labels On Hdr Imagery In A Maritime Environment, Charles Montagnoli
Doctoral Dissertations and Master's Theses
Situational awareness in the maritime environment can be extremely challenging. The maritime environment is highly dynamic and largely undefined, requiring the perception of many potential hazards in the shared maritime environment. One particular challenge is the effect of direct-sunlight exposure and specular reflection causing degradation of camera reliability. It is for this reason then, in this work, the use of High-Dynamic Range imagery for deep learning of semantic image labels is studied in a littoral environment. This study theorizes that the use HDR imagery may be extremely beneficial for the purpose of situational awareness in maritime environments due to the …
Online Estimation Of Unknown Parameters For Flexible Spacecraft, Nicolo Woodward
Online Estimation Of Unknown Parameters For Flexible Spacecraft, Nicolo Woodward
Doctoral Dissertations and Master's Theses
Attitude controls methods of highly flexible spacecraft have seen increased interest over the last decades thanks to the technological development of flexible solar panels and deploy-ables, which improves the capabilities of small satellites. However, a high-fidelity model of the flexible mode dynamics is hard to obtain in on-ground testing because not all modes of frequencies can be observed, complicating the controller design. Furthermore, plastic deformations due to long periods of storage of stowed flexible components could result in exciting frequencies outside of the designed controller’s bandwidth, leading to an uncontrollable system. This thesis proposes a method to develop a high-fidelity …
Thermal Atomization Of Impinging Drops On Superheated Superhydrophobic Surfaces, Eric Lee
Thermal Atomization Of Impinging Drops On Superheated Superhydrophobic Surfaces, Eric Lee
Theses and Dissertations
Drop impact on a surface has an effect on nearly every industry and this impact may have adverse effects if not controlled. Superhydrophobic (SH) surfaces have been created with the extreme ability to repel water. These surfaces exist in nature but may also be fabricated using modern techniques. This thesis explores heat transfer from these SH surfaces to drops impacting them. This thesis is devoted to increasing the breadth of knowledge of thermal atomization during drop impingement on superheated SH surfaces. When a water drop impinges vertically on a horizontal superheated surface, intense atomization can occur. The atomization is caused …
Approximate And Sample Entropy Of Center Of Pressure In Unperturbed Tandem Standing: Contribution Of Embedding Dimension And Tolerance, Jayla Mashae Wesley
Approximate And Sample Entropy Of Center Of Pressure In Unperturbed Tandem Standing: Contribution Of Embedding Dimension And Tolerance, Jayla Mashae Wesley
Masters Theses
Approximate entropy (ApEn) and sample entropy (SampEn) are statistical methods designed to quantify the regularity or predictability of a time series. Although ApEn has been a prominent choice for use, it is currently unclear as to which method and parameter selection combination is optimal for its application in biomechanics. The goal of this thesis was to examine the difference between ApEn and SampEn related to center of pressure (COP) data during standing balance tasks, while also refining tolerance r, to determine entropy optimization. Six participants completed five 30-second, feet together and tandem standing, trials under eyes-open and eyes-closed conditions. Ground …
An Online Adaptive Machine Learning Framework For Autonomous Fault Detection, Nolan Coulter
An Online Adaptive Machine Learning Framework For Autonomous Fault Detection, Nolan Coulter
Doctoral Dissertations and Master's Theses
The increasing complexity and autonomy of modern systems, particularly in the aerospace industry, demand robust and adaptive fault detection and health management solutions. The development of a data-driven fault detection system that can adapt to varying conditions and system changes is critical to the performance, safety, and reliability of these systems. This dissertation presents a novel fault detection approach based on the integration of the artificial immune system (AIS) paradigm and Online Support Vector Machines (OSVM). Together, these algorithms create the Artificial Immune System augemented Online Support Vector Machine (AISOSVM).
The AISOSVM framework combines the strengths of the AIS and …
Review: Inelastic Constitutive Modeling: Polycrystalline Materials, Mirza Baig, Josiah Owusu-Danquah, Anne A. Campbell, Stephen F. Duffy Phd, Pe
Review: Inelastic Constitutive Modeling: Polycrystalline Materials, Mirza Baig, Josiah Owusu-Danquah, Anne A. Campbell, Stephen F. Duffy Phd, Pe
Civil and Environmental Engineering Faculty Publications
This article provides a literature review that details the development of inelastic constitutive modeling as it relates to polycrystalline materials. This review distinguishes between inelastic constitutive models that account for nonlinear behavior at the microstructural level, time-independent classic plasticity models, and time-dependent unified models. Particular emphasis is placed on understanding the underlying theoretical framework for unified viscoplasticity models where creep and classical plasticity behavior are considered the result of applied boundary conditions instead of separable rates representing distinct physical mechanisms. This article establishes a clear understanding of the advantages of the unified approach to improve material modeling. This review also …
Framework For Applicability Of Fidic Red Book (1999) For Contracts Governed By Law No. 182 Of The Year 2018 For Regulating Contracts Concluded By Public Entities, Fredy Ayad
Theses and Dissertations
An administrative contract is a type of contract that the administrative body enters in order to achieve a public interest. In Egypt, administrative contracts are governed by Law No. 182 of the year 2018 for Regulating Contracts concluded by Public Entities, which has been promulgated in October 2018. This Law includes several mandatory rules, which will govern over any conditions in the construction contract.
The FIDIC Red Book 1999 is widely used in Egypt and the Middle East in private sector and is currently also being utilized by governmental bodies. However, some contractors are not aware of the major deviations …
Blockchain Security: Double-Spending Attack And Prevention, William Henry Scott Iii
Blockchain Security: Double-Spending Attack And Prevention, William Henry Scott Iii
Electronic Theses and Dissertations
This thesis shows that distributed consensus systems based on proof of work are vulnerable to hashrate-based double-spending attacks due to abuse of majority rule. Through building a private fork of Litecoin and executing a double-spending attack this thesis examines the mechanics and principles behind the attack. This thesis also conducts a survey of preventative measures used to deter double-spending attacks, concluding that a decentralized peer-to-peer network using proof of work is best protected by the addition of an observer system whether internal or external.
Routing Battery-Constrained Delivery Drones In A Depot Network: A Business Model And Its Optimization-Simulation Assessment, Yanchao Liu
Industrial and Systems Engineering Faculty Research Publications
This paper proposes a novel business model for on-demand package shipment services using drones, and evaluates different modeling and solution approaches for the drone routing problem that underpins the service operation. In the proposed service, customers’ shipment orders of arbitrary origins and destinations, payload weights and bid values are collected every five minutes, and available drones from multiple depots are then dispatched to fulfill a subset of these orders in a way to maximize profit. A drone path starts from a depot, serves one or more customer orders in sequence, and ends at a depot for battery recharging, which incurs …
An Investigation On The Resilience Of Long Short-Term Memory Deep Neural Networks, Christopher Vasquez
An Investigation On The Resilience Of Long Short-Term Memory Deep Neural Networks, Christopher Vasquez
LSU Master's Theses
In a world of continuously advancing technology, the reliance on these technologies continues to increase. Recently, transformer networks [22] have been implemented through various projects such as ChatGPT. These networks are extremely computationally demanding and require cutting-edge hardware to explore. However, with the growing increase and popularity of these neural networks, a question of reliability and resilience comes about, especially as the dependency and research on these networks grow. Given the computational demand of transformer networks, we investigate the resilience of the weights and biases of the predecessor of these networks, i.e. the Long Short-Term (LSTM) neural network, through four …