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mainahid@ru.ac.bd

Dept of Electrical and Electronic Engineering, University of Rajshahi 6205


DR. MD. ARIFUL ISLAM NAHID
PROFESSOR
Electrical & Electronic Engineering


Education Summary  
M.Sc.(Raj), Doctor of Engineering (Japan)

Research Interest  
Functional Oxide Thin Films, Embedded System, Internet of Things (IoT)
Level Institution Year
Doctoral
(Doctor of Engineering)
Toyota Technological Institute, Nagoya, Japan 2004
Masters
(M.Sc. in Applied Physics and Electronics)
University of Rajshahi 1999
Bachelor/Honors
(B.Sc. in Applied Physics and Electronics)
University of Rajshahi 1997
Higher Secondary
(Higher Secondary School Certificate)
Rajshahi College 1992
Secondary
(Secondary School Certificate)
Rajshahi University School 1990

Experience in Rajshahi University

Duration Organization/Institute Position
2019-12-24 to Electrical & Electronic Engineering PROFESSOR
2013-12-24 to 2019-12-24 Dept of Applied Physics and Electronic Engineering PROFESSOR
2007-12-12 to 2013-12-23 Dept of Applied Physics and Electronic Engineering ASSOCIATE PROFESSOR
2003-09-04 to 2007-12-12 Dept of Applied Physics and Electronic Engineering ASSISTANT PROFESSOR

Experience in other Organization/Institute

Duration Organization/Institute Position
2008-01-25 to 2010-01-24 Tohoku University Post Doctoral Researcher

Journal

1. Md Sarwar Pervez, Md FarukHossain and M.A.I.Nahid "Study the electronic and magnetic properties of MnxZn1-xO supercell using first principle calculation" Materials Science in Semiconductor Processing, Volume 137, January 2022, 106179

Published: January 2022
2. Md. Sarwar Pervez , Md. Faruk Hossain & M. A. I. Nahid "Annealing effect on the structural and optical properties of Co/TiO2 multilayer thin films prepared by e-beam evaporation" Inorganic and Nano-Metal Chemistry, Vol 51, Issue 9, p.1272-1279, Oct, 2020

Published: October 2020
3. Sarwar Pervez, M.A.I.Nahid and Faruk Hossain "Study the electronic properties and magnetization of rutile polymorph CoxTi1-xO2 super cell at various cobalt (Co) concentrations using first principle calculation" Computational Condensed Matter (Elsevier) 18, e00347, (2018)

Published: March 2019
4. Afroza Yasmin, Md. Jakir Hossan and Md. Ariful Islam Nahid "Synthesis and Characterization of Ni-doped ZnO Thin Films for Diluted Magnetic Semiconductor by Spin Coating Technique" IEEE Xplore,1, 2018

Published: October 2018
5. Mohammad Faruk Hossain, Mohammad Shahidullah Kayser, Mohammad Sarwar Pervez, Mohammad Ariful Islam Nahid, "Technological Regimes Searching the Effect of Thermal Annealing on Optical and Electrical Properties of Co/ZnO Multilayer Thin Film of Different Thickness" International Journal of High Energy Physics, 4, No.3, 32, (2017)

Published: September 2017
6. M. A. I. Nahid and Md. Faruk Hossain "The Effect of Inter diffusion on The Electrical And Optical Properties of Co/TiO2 Multilayer Thin Films" International Journal Thin Film Science and Technology, 6, No. 3, 123 (2017)

Published: September 2017
7. Sarwar Parvez, Faruk Hossain, M. A. I. Nahid "To Study The Electrical Properties of Co/TiO2 Multilayer Thin Films" IOSR Journal of Applied Physics, vol.8. issue 5 ver.2

Published: October 2016
8. M. A. I. Nahid, Mikihiko Oogane, Miho Watanabe, Hiroshi Naganuma, Yasuo Ando "Epitaxial Growth and Magnetic Properties of MnAl Films using CrRu Buffer Layer," J. of Mater. and Metal. Engg, 1, 1,

Published: January 2016
9. M.A.I. Nahid, M. Oogane, H. Naganuma, and Y. Ando "Epitaxial growth of Co2MnSi thin films at the vicinal surface of n-Ge(111) substrate" Applied Physics Letter 96, 142501

Published: October 2010

EEE4271 Processing and Fabrication Technology

Etching: Wet chemical etching, silicon and GaAs etching, anisotropic etching, selective etching, dry physical etching, ion beam etching, sputtering etching and reactive ion etching. Cleaning: Surface cleaning, organic cleaning and RCA cleaning. Lithograph

PHY1121 Electricity, Magnetism and Optics

Static Electric Field, Static Magnetic Field, Electromagnetic Induction, Thermoelectricity

Sample Questions

1.     1.     Draw the isometric view of the simple object.

2.     Convert that isometric view into orthographic view.

3.     Develop the surface of a cube / triangular prism/ cone /square pyramid.

4.     Draw an simple object using Auto CAD .

  • PHY1121 Electricity, Magnetism and Optics