If you would like to follow my research activities, you can find me in #Twitter, #LinkedIn, and #ResearchGate:
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A well-written research paper is based on a clear understanding of a key message. This key message should tell a “story” to the reader with a beginning (Introduction), middle (Methods), end (Results) and the moral of the “story” (Conclusion), focused on this message.
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5G is not going to be replacing 4G, at least not in the short term. No need to rush out and a buy a 5G ready device as soon as they're available, out of a fear of being left behind.
4G to 5G will be a trickier move than 3G to 4G was!
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I use the Computer Simulation Technology (CST) and High Frequency Structure Simulator (HFSS) software programs for simulations. In order to measure the characteristics of the fabricated designs, I use Vector Network Analyzer (HP 8510C) and the Anechoic Chamber.
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A productive daily routine allows you to consider your constraints and cultivate your energy levels. My daily work routine is structured by reading the latest publications in my research field and also discussing with my supervisor and colleagues.
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Adjusting to a new country comes with new understandings of life and new perspectives. This is not always an easy process to go through. However, I adjusted easily with my new lifestyle in #UK and I am interested in learning more about its culture and history.
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I live in Bradford, which is the world's first UNESCO City of Film and is one of the UK's most up and coming cultural destinations. It has lots of attractions such as the National Science and Media Museum, Cartwright Hall and Impressions Gallery.
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I have published two papers at EuCAP’2018 (The 12th European Conference on Antennas and Propagation) and Broadnets’2018 (9th International Conference on Broadband Communications, Networks, and Systems).
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The worldwide demand for 5G technology and higher data rates in cell phones has led to a new and urgent need for reconfigurable antennas. My study would focus on designing antennas with multifunctional abilities, compact in size, and ease of integration.
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The objective of my task is to design reconfigurable antennas for multi-mode mobile terminals which is a critical challenge for today’s mobile standards and expected spectrum reallocations for 5G communications.
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My areas of expertise include: multi-band/UWB antennas, mm-wave phased arrays, MIMO/Diversity antennas, Fabry resonators, microwave filters, reconfigurable structures, and metamaterials. Currently, I am working on Reconfigurable antennas for multi-mode 5G handsets.
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