Results
Displaying 217-228 of 436 Results
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PI Fady Barsoum
CO-I Arka Das
CO-I Heidi Steinhauer
CO-I William Engblom
CO-I Chad Rohrbacher
- This project aims to introduce and implement ANSYS computer modeling and simulation tools into the Engineering Programs at Embry-Riddle.
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PI Emily Faulconer
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The purpose of this work was to develop additional teaching strategies to increase student interaction with and awareness of the student
learning objectives. The influence of these targeted strategies on student perception of both the clarity of learning objectives and their overall connection to the course activities and deliverables was measured using an end-of-course evaluation (EOCE) with Likert-scale responses.
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PI Anke Arnaud
- Educators are continuously concerned with developing innovative and effective teaching methodology to increase student learning and engagement. This study is designed to assess the effectiveness of an innovative instructional methodology, using a TV series to teach and develop leadership understanding, skills and knowledge.
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PI Emily Faulconer
CO-I David Mazyck
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In this work, aqueous adsorption of Hg(II) and Hg(0) onto surface-modified activated carbon was analyzed in a batch system with respect to the following carbon modification variables: modifying reagent, reagent concentration, and activated carbon. The goal of this study was to elucidate the influence of C(O) on aqueous Hg(0) adsorption. The objectives of this study are as follows: 1) to increase a carbon’s acidic C(O) without significant pore damage and 2) to identify the conditions that produce the greatest removal of aqueous mercury (Hg(II) and Hg(0)) between two types of powdered activated carbon.
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PI Alberto Mello
CO-I Christopher Leirer
CO-I Ken Shishino
CO-I Open Position - New students are welcome
- This research aims to establish the effect of hole cold expansion on fatigue life of pre-cracked material under aggressive environment.
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PI Leila Halawi
PI Wendi Kappers
PI Aaron Glassman
- Issues associated with information security are numerous and diverse. Since the majority of organizational actions rely greatly on information and communication technologies, Information Systems (IS) security and Information Security & Assurance (ISA) is now a main concern for firms, governments, institutes, and society as a whole. As a result, a plethora of graduate programs have been created, covering nearly every aspect of IS security. The purpose of this project is to document the findings for using a particularly inventive and extremely efficient technique of job skill analysis known as a DACUM, which stands for “developing a curriculum.” A DACUM begins with an identification of an industry pool that is further reduced to an expert panel, culminating in a daylong workshop to identify new job skill statements and skill needs.
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PI Thomas Yang
PI Siyao Li
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Current communication networks with transmitter/receiver nodes can provide large-scale area coverage and robust interconnection between nodes. This allows for the seamless integration of sensing functions into the existing communication framework, paving the way for Integrated Communication and Sensing (ICAS). Unlike previous generations that treated communication and sensing separately, ICAS eliminates the need for additional hardware, extra transmit power, or dedicated frequency bands, by enabling communication signals to support data transmission and environmental sensing simultaneously. This convergence makes ICAS a key feature of six-generation (6G) communication and enables advanced applications, including Unmanned Aerial Vehicle (UAV) missions, autonomous driving, surveillance, and smart cities, to be powered by a single transmitted signal.
This project aims to develop a novel ICAS framework tailored specifically for autonomous systems operating in safety-critical environments. The primary focus is enabling environment sensing by systematically analyzing the received information-carrying communication signals, through line-of-sight and/or reflected and scattered paths.
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PI Dae Won Kim
PI Sirish Namilae
- Under this research project we will develop an innovative structural health monitoring system for inflatable space habitat structures by integrating nanocomposite piezoresistive sensors
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PI Leila Halawi
CO-I Marwa El-Sayed
CO-I Mark Miller
CO-I Sophia White
- This project aims to develop a transferable plan for integrating industry standards into engineering and aeronautics programs, with a short-term goal of refining learning modules. It has the potential to serve as a model for other STEM institutions and improve learning outcomes at both undergraduate and graduate levels.
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CO-I Dothang Truong
CO-I Ryan Wallace
- This research led by Richard Stansbury (PI) will provide further insight into the safe integration of sUAS through the forecasting of expanded and non-segregated sUAS operations. The ASSURE research team will collect data to inform the FAA on risk-based methodologies to develop and apply safety rules, regulations, and revised Safety Management System (SMS) protocols based on forecasted UAS operational needs and performance characteristics.
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PI Soumia Ichoua
- In this project, stochastic modeling and optimization techniques are used to address the effective integration of Distributed Energy Resources (DER) (e.g. micro-C HP, wind turbines, solar panels and storage). The goal is to increase clean energy capacity and its ability to accommodate energy demand efficiently.
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PI Massoud Bazargan
- Conducted operational and simulation approaches to identify potential bottlenecks and examine future expansion strategies for airports by integrating SATS with GA.