|
Mohd Anuar Md Ali, Aminuddin Ahmad Kayani, Burhanuddin Yeop Majlis. (2018). Biological particle control and separation using active forces in microfluidic environments. - . 83-102. |
|
Roer Eka Pawinanto, Burhanuddin Yeop Majlis, Jumril Yunas. (2018). Aktuator mems elektromagnet untuk aplikasi bioperubatan. - . 75-94. |
|
Gandi Sugandi, Burhanuddin Yeop Majlis. (2018). Speaker mikro MEMS: reka bentuk dan fabrikasi. - . 120-144. |
|
P Susthitha Menon, Fairus Atida Said, Nur Akmar Jamil, Sahbudin Shaari, Burhanuddin Yeop Majlis. (2018). Sensor berasaskan resonans plasmon permukaan (SPR) dengan konfigurasi kretschmann. - . 240-265. |
|
Burhanuddin Yeop Majlis. (2018). Sensor dan aktuator MEMS : rangkuman pengenalan. - . 25-32. |
|
Jahariah Sampe, Nor Afidatul Asni Semsudin, Burhanuddin Yeop Majlis. (2018). Penuai Tenaga Hibrid Berkuasa Rendah untuk Peranti Bioperubatan. - . 52-65. |
|
Burhanuddin Yeop Majlis. (2018). Teknologi semikonduktor dan nanoelektronik: rangkuman pengenalan. - . 21-26. |
|
Norhafizah Burham, Azrul Azlan Hamzah & Burhanuddin Yeop Majlis. (2017). Self adjusting electrochemical etching technique for producing nanoporous silicon membrane. - . 125-154. |
|
Hafzaliza Erny Zainal Abidin, Azrul Azlan Hamzah, Jumril Yunas, Mohd Ambri Mohamed & Burhanuddin Yeop Majlis. (2016). Interdigitated MEMS supercapacitor for powering heart pacemaker. - . -. |
|
Gebeshuber I.C., Macqueen M.O., Majlis B.Y. and Drack M.. (2013). Nanobioconvergence. - . 123-139 (10). |
|
Gebeshuber I.C., Majlis B.Y. and Stachelberger H.. (2011). Biomimetics in Tribology. - Series: Biological and Medical Physics,. Ch. 3, pp. 25-50. |
|
Badariah Bais, Ille C. Gebeshuber & Burhanuddin Yeop Majlis. (2010). Nanoelectronics. - . 466-470. |
|
J. Johari, J. Yunas, B.Y. Majlis. (2009). Piezoelectric Micropump for Drug Delivery System Fabricated Using two Optical masks. - . 279-282. |
|
Ille C. Gebeshuber, Herbert Stachelberger, Bahram Azizollah ganji, Dee Chang Fuu, Jumril Yunas, Burhanuddin Yeop Majlis. (2009). Exploring the Innovational Potential of Biomemetics for Novel 3D MEMS. - . 265-268. |