Zobrazeno 1 - 10
of 12
pro vyhledávání: '"Nur Zatil Ismah Hashim"'
Autor:
Noor Syazwani Mansor, Nazatul Shiema Moh Nazar, Muhammad Afiq Azmi, Nur Zatil Ismah Hashim, Dahaman Ishak, Mariatti Jaafar, Huzainie Shafi Abd. Halim, Ahmad Basri Abd Ghani, Mohamaad Kamarol Mohd Jamil
Publikováno v:
IEEE Access, Vol 8, Pp 117574-117581 (2020)
The effect of nanofillers on the electrical tree behavior of polymeric materials, such as epoxy resin and polyethylene, has been investigated. Thus, research on electrical tree behaviour is extended but limited only to pure crosslinked polyethylene (
Externí odkaz:
https://doaj.org/article/298dc68699214295b93e7e646a7adca8
Autor:
Noramalina Abdullah, Nur Zatil Ismah Hashim, Intan Sorfina Zainal Abidin, Sarah Madihah Mohd Shazali
Publikováno v:
Pertanika Journal of Social Sciences and Humanities. 30:1857-1879
Since the COVID-19 outbreak was discovered in Malaysia on January 25, 2020, it has impacted many aspects of Malaysian life, including health, lifestyle, and economic changes. As a result, this study was carried out to conduct a more thorough investig
Autor:
Nur Zatil Ismah Hashim, Muhammad Afiq Azmi, Mariatti Jaafar, Mohamaad Kamarol Mohd Jamil, Ahmad Basri Abd Ghani, Dahaman Ishak, Noor Syazwani Mansor, Nazatul Shiema Moh Nazar, H. S. A. Halim
Publikováno v:
IEEE Access, Vol 8, Pp 117574-117581 (2020)
The effect of nanofillers on the electrical tree behavior of polymeric materials, such as epoxy resin and polyethylene, has been investigated. Thus, research on electrical tree behaviour is extended but limited only to pure crosslinked polyethylene (
Publikováno v:
Lecture Notes in Electrical Engineering ISBN: 9789811681288
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::6d1afebadad08db9f6f615451312d3e4
https://doi.org/10.1007/978-981-16-8129-5_157
https://doi.org/10.1007/978-981-16-8129-5_157
Autor:
Noor Syazwani Mansor, Nazatul Shiema Moh Nazar, Nur Zatil ‘Ismah Hashim, Dahaman Ishak, Mariatti Jaafar Mustapha, Huzainie Shafi Abd. Halim, Ahmad Basri Abd. Ghani, Mohamad Kamarol Mohd Jamil
Publikováno v:
Lecture Notes in Electrical Engineering ISBN: 9789811681288
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::8c41378817e5cf01e20846d5ec9a9f97
https://doi.org/10.1007/978-981-16-8129-5_116
https://doi.org/10.1007/978-981-16-8129-5_116
Publikováno v:
Journal of Physics: Conference Series. 2411:012006
High resistivity silicon is increasingly becoming one of the subjects of interest in optimizing the performance of MIS photodetectors as it offers better bias responses compared to low resistivity silicon. The incorporation of thin AlN as the tunnell
Autor:
Suardi Kaharuddin, Roslina Hussin, Ain Mohd Fadzil, Mahmud Mohd Nazri, Bin Sobirin Mohd Ilyas, Intan Sorfina Zainal Abidin, Abdul Aziz Azniza, Muhammad Ammirrul Atiqi Mohd Zainuri, Nur Zatil ‘Ismah Hashim, Mohamad Anuar Kamaruddin
Publikováno v:
European Proceedings of Social and Behavioural Sciences.
Autor:
Massinissa Nabet, Martin Rack, Nur Zatil Ismah Hashim, C.H. (Kees) de Groot, Jean-Pierre Raskin
Publikováno v:
Solid-State Electronics, Vol. 168, p. 107718 (2020)
In this paper, small- and large-signal performances of passive devices integrated on high-resistivity, trap-rich and gold-doped silicon wafers are presented and compared through measurements and simulations. The gold-doped silicon substrate was produ
Autor:
Samuel Guerin, Steven Gao, Xingli He, Brian E. Hayden, Ian M. Reaney, Qi Luo, Nur Zatil Ismah Hashim, C. H. Kees de Groot, Ioanna Bakaimi
The identification and optimization of tunable dielectric materials exhibiting low loss characteristics in the GHz frequencies are essential in the development of low power devices for microwave applications. We have applied a combinatorial synthetic
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6315506c66b2fd95a69aa0ab5f3610f0
https://eprints.soton.ac.uk/421657/
https://eprints.soton.ac.uk/421657/
Publikováno v:
2018 Australian Microwave Symposium (AMS).
Deep level doping compensation concept using elemental gold is utilised to create effectively high resistivity silicon substrates for the use in GHz range. Bias-dependent substrate losses associated with parasitic surface conduction is fully suppress