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Ali F. Almutairi

Researcher at Kuwait University

Publications -  59
Citations -  859

Ali F. Almutairi is an academic researcher from Kuwait University. The author has contributed to research in topics: Metamaterial & Metamaterial absorber. The author has an hindex of 11, co-authored 55 publications receiving 420 citations. Previous affiliations of Ali F. Almutairi include University of Florida.

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Monitoring of the human body signal through the Internet of Things (IoT) based LoRa wireless network system

TL;DR: The results show that MySignals is successfully interfaced with the ECG, temperature, oxygen saturation, and pulse rate sensors and the communication with the hyper-terminal program using LoRa has been implemented and an IoT based healthcare system is being developed in My signals platform with the expected results getting from the sensors.
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A Polarization Independent Quasi-TEM Metamaterial Absorber for X and Ku Band Sensing Applications

TL;DR: A dual-band metamaterial absorber ring with a mirror reflexed C-shape is introduced for X and Ku band sensing applications and particularly demonstrates two resonance frequencies and absorption was analyzed using a quasi-TEM field distribution.
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A Complementary Split Ring Resonator Based Metamaterial with Effective Medium Ratio for C-band Microwave Applications

TL;DR: In this article, a complementary split-ring resonator (CSRR) based metamaterial is designed and investigated for microwave applications with effective medium ratio, which is the modification of the conventional split ring resonator.
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Ultra-wideband (UWB) antenna sensor based microwave breast imaging: A review

TL;DR: This work reviews ultra-wideband (UWB) antenna sensors and their current applications in medical imaging, leading to breast imaging, and describes recent developments in these techniques.
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Left-Handed Metamaterial-Inspired Unit Cell for S-Band Glucose Sensing Application

TL;DR: The proposed oval-shaped sensor design for the measurement of glucose concentration in aqueous solution is inspired by metamaterial properties and is analytically described for better parametric study.