Saleh A. Alfawaz
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Biography and Research Information
OverviewAI-generated summary
Saleh A. Alfawaz's research spans multiple disciplines, with recent work focusing on antenna design and microwave heating systems. He has published on the modeling, characterization, and application of machine learning algorithms for rectangular choke horn antennas. Alfawaz has also investigated temperature-controlled microwave heating systems and the optimization of choke antenna aperture radiation patterns. His work includes studies on enhancing microwave disinfection, examining the impact of sodium chloride on microbial inactivation, and developing temperature-controlled disinfection systems utilizing microwave and plasma technologies. Earlier publications by Alfawaz have addressed public health topics, including the prevalence of gestational diabetes mellitus and associated risk factors in Saudi Arabia, and a medical case report on acute psychosis secondary to isoniazid in pediatric tuberculosis. He has a publication record of 10 papers with 37 citations and an h-index of 4. Alfawaz has collaborated with several researchers at the University of Arkansas at Fayetteville, including Amirreza Ghadimi Avval, Samir El‐Ghazaly, Sara Ghayouraneh, and Ibrahim N. Alquaydheb, with whom he shares 7 co-authored publications.
Metrics
- h-index: 3
- Publications: 8
- Citations: 26
Selected Publications
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Microwave-plasma disinfector (origreen) (2026)Journal of the Arkansas Academy of Science OpenAlex
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Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation (2024)
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Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas (2024)
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Temperature-Controlled Disinfection System Using Microwave and Plasma (2023)
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Double-Choke Antenna Radiation Optimization (2023)
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Optimization of Choke Antenna Aperture Radiation Pattern (2023)
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Temperature-Controlled Microwave Heating System (2023)
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Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction (2022)
Collaboration Network
Top Collaborators
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Optimization of Choke Antenna Aperture Radiation Pattern
Showing 5 of 8 shared publications
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Optimization of Choke Antenna Aperture Radiation Pattern
Showing 5 of 8 shared publications
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Optimization of Choke Antenna Aperture Radiation Pattern
Showing 5 of 8 shared publications
- Modeling, Characterization, and Machine Learning Algorithm for Rectangular Choke Horn Antennas
- Choke Ring Circular Waveguide Antenna Analysis and Design Using Geometrical Theory of Diffraction
- Temperature-Controlled Microwave Heating System
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Optimization of Choke Antenna Aperture Radiation Pattern
Showing 5 of 8 shared publications
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Temperature-Controlled Disinfection System Using Microwave and Plasma
- Enhancing Microwave Disinfection: Impact of Sodium Chloride on Microbial Inactivation
- Temperature-Controlled Disinfection System Using Microwave and Plasma
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