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Empirical model of natural frequency for single span integral bridge
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Experience, skill and competence: boundary spanning capabilities for leadership and management of transnational education
Published 2020“…Keywords: activity theory; boundary spanning distributed leadership; partnerships; professional learning community; transnational education…”
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Nanoparticle-coated Vivaldi antenna array for gain enhancement
Published 2023“…A novel technique is described to significantly enhance the gain of a Vivaldi antenna (CVA) array by a factor of four (6 dB) without compromising its size and radiation characteristics. …”
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Millimeter-wave high-gain SIW end-fire bow-tie antenna
Published 2015“…This communication presents a high-gain bow-tie antenna that operates across 57–64 GHz for application in high data rate point-to-point communication systems. …”
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Improvement of gain and elevation tilt angle using metamaterial loading for millimeter-wave applications
Published 2015“…In addition, the proposed technique provides 5 dB gain enhancement.…”
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High-gain on-chip antenna design on silicon layer with aperture excitation for terahertz applications
Published 2020“…This article investigates the feasibility of designing a wideband high-gain on-chip antenna on silicon technology for sub-terahertz applications. …”
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Dual-band magneto-electric dipole antenna with high-gain for base-station applications
Published 2021“…The paper presents the results of a novel high-gain dual-band magneto-electric dipole (MED) antenna. …”
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High-gain end-fire bow-tie antenna using artificial dielectric layers
Published 2015“…This study presents a high-gain bow-tie antenna for applications in next generation base-stations operating from 2.5 to 3.9 GHz. …”
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Miniature CRLH-Based Ultra Wideband Antenna with Gain Enhancement for Wireless Communication Applications
Published 2016“…The proposed antenna covers an impedance bandwidth of 3–10.6 GHz, which is equivalent to a fractional bandwidth of 111%. The gain and efficiency of the antenna are greater than 2.89 dBi and 38.54%, respectively, with a peak gain of 9.41 dBi and a peak efficiency of 99.93%. …”
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Design of high gain base station antenna array for mm-wave cellular communication systems
Published 2023“…Millimeter wave (mm-Wave) wireless communication systems require high gain antennas to overcome path loss effects and thereby enhance system coverage. …”
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Frequency selective surfaces-based miniaturized wideband high-gain monopole antenna for UWB systems
Published 2023“…The sheet of FSS is placed behind the antenna to reflect the antenna’s backward radiation and improve antenna gain. In the results, the gain of the antenna improved from 4.5 dBi to 9.5 dBi. …”
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H∞ gain-scheduled dynamic output feedback control with transient performance applied to electrical microgrid
Published 2024“…This paper introduces an approach for designing gain-scheduled dynamic output feedback controllers for continuous-time Linear Parameter-Varying (LPV) systems. …”
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High-gain metasurface in polyimide on-chip antenna based on CRLH-TL for sub-terahertz integrated circuits
Published 2020“…The overall structure behaves like a metasurface that is shown to exhibit a very large bandwidth of 0.350-0.385THz with an average radiation gain and efficiency of 8.15dBi and 65.71%, respectively. …”
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Reconsidering the need for gain-of function research on enhanced potential pandemic pathogens in the post-COVID-19 era
Published 2022“…The dual-use risk of infectious disease research using enhanced potential pandemic pathogens (ePPP), particularly gain-of-function (GOF) research, has been debated since 2011. …”
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Dual-band multi-layer antenna array with circular polarization and gain enhancement for WLAN and X-band applications
Published 2025“…Measured peak gains are 7 dBi for the WLAN band and 6.8 dBi for the X-band, with favourable S11 levels, omni-directional radiation patterns, and consistent gain across both bands. …”
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A high-gain quasi-fractal antenna with wide range operation for 5G applications over V-band spectrum
Published 2022“…The antenna is shown to provide an average gain exceeding 6.5 dBi across 59 GHz to 68 GHz. The simple geometrical configuration of the antenna and its radiation characteristics makes it a potential candidate for 5G applications operating in V-band.…”
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Conference or Workshop Item