Tu Anh – Civil Engineering – Best Researcher Award

Tu Anh - University of Transport and Communications - Vietnam

Professional Profiles
Early Academic Pursuits

Tu Anh Do commenced his academic journey with a Bachelor's degree in Civil Engineering from the University of Transport and Communications (UTC), Hanoi, Vietnam, graduating in June 2002. This initial phase laid the groundwork for his subsequent academic achievements.

Professional Endeavors

Tu Anh Do's professional journey reflects a commitment to both teaching and research. Starting as a Lecturer at the Faculty of Civil Engineering, UTC, Hanoi, Vietnam, from 2002 to 2008, he transitioned to an international platform as a Teaching and Research Assistant at the University of Florida, United States, from 2008 to 2013. Following this, he held the position of Postdoctoral Associate at the University of Florida in 2013-2014. Returning to his roots, Tu Anh Do continued his service at the Faculty of Civil Engineering, UTC, Hanoi, Vietnam, from 2014 to 2018. Currently, he holds the esteemed position of Associate Professor at the Faculty of Civil Engineering, UTC, Hanoi, Vietnam, since 2018.

Contributions and Research Focus

Tu Anh Do's research prowess spans diverse projects and topics in civil engineering. Notable projects include the development of software for analyzing bridge decks using finite element methods, a pilot project for the maximum heat of mass concrete, and the optimal selection of sensor locations for dynamic monitoring of bridges. His recent projects delve into the thermal behavior of high-strength concrete structures, evaluating the impact of temperature variation on cracking risk in concrete bridges using Artificial Intelligence, and the strength and temperature sensitivity of high-performance concrete containing nano-silica for bridge construction. Tu Anh Do has made significant contributions to the field, with a focus on early-age concrete elements, convective heat transfer coefficients, and the effects of electro-osmosis on lubrication of cement paste-based material.

Accolades and Recognitio

Tu Anh Do's academic journey is adorned with prestigious honors and awards. Notably, he received the Vietnam Fund for Support of Technical Creativeness grant, the Minister of Education and Training grant, and the Japan KUMAGAI GUMI Scholarship for his outstanding undergraduate studies. His excellence has been consistently acknowledged, with awards such as the ASTM International Committee on Publications 2014 Award for Outstanding Article in the Journal of Testing and Evaluation and the Minister of Education and Training grant for excellent performances in teaching and research during the years 2018-2020.

Impact and Influence

Tu Anh Do's impact transcends borders and disciplines. His extensive research contributions, spanning from the United States to Vietnam, demonstrate a global influence. By engaging in projects that address critical aspects of civil engineering, he contributes not only to academic knowledge but also to the practical implementation of innovative solutions in infrastructure and construction.

Legacy and Future Contributions

Tu Anh Do's legacy is characterized by a harmonious blend of teaching, research, and impactful projects. His commitment to exploring new frontiers in civil engineering, particularly in the thermal behavior of concrete structures, positions him as a thought leader in the field. As he continues his academic journey, Tu Anh Do is poised to leave a lasting legacy of innovation, excellence, and positive influence on the future of civil engineering.

Notable Publications

Cited by

All Since 2018
Citations 345 315
h-index 11 11
i10-index 13 13

Gopinath Shit- Materials Chemistry- Best Researcher  – Award Winner 2023

Congratulations to  Gopinath Shit- Materials Chemistry- Best Researcher  - Award Winner 2023

Gopinath Shit:

Gopinath Shit's research spans across critical areas such as Materials Chemistry, Metallurgy and Materials Engineering, Corrosion Science and Technology, Electrochemistry, Materials Characterization. Gopinath Shit's work are not specified in the provided information. He completed his B.Sc in 2008 from the University of Burdwan, specializing in Physics, Chemistry (Hons), and Mathematics. His academic journey continued with an M.Sc. in Chemistry at IIT, Guwahati, where he graduated in 2010.

professional profile:

Early Academic Pursuits:

Gopinath Shit pursued his education with a focus on physics, chemistry, and mathematics. He completed his B.Sc in 2008 from the University of Burdwan, specializing in Physics, Chemistry (Hons), and Mathematics. He further pursued M.Sc. in Chemistry at IIT, Guwahati, graduating in 2010.

Professional Endeavors:

  • BARC Training School (01-09-2010 to 30-08-2011):
    • Designation: Trainee Scientific Officer
    • Discipline: Materials Science
  • IGCAR, Kalpakkam:
    • 01-09-2011 to 07/2015:
      • Designation: Scientific Officer

Contributions and Research Focus:

Gopinath Shit's research is centered around Materials Chemistry, Metallurgy and Materials Engineering, Corrosion Science and Technology, Electrochemistry, Materials Characterization, Materials Development for Nuclear Applications, and Nuclear Science. His specific research experiences include:

  • Development of materials for Nuclear Applications.
  • Synthesis of nanoparticles using wet chemical methods.
  • Corrosion evaluation using electrochemical tests (OCP, Potentiodynamic, EIS, etc.).
  • Characterization of materials using various tools like XRD, SEM, XPS & TEM.
  • Investigating the effects of radiation on materials.

Legacy and Future Contributions:

For more specific details or updates, it's recommended to refer to official profiles, publications, or announcements related to Gopinath Shit from the Indira Gandhi Centre for Atomic Research.

Current Position and Address:

Scientist/Scientific Officer-E; CSTD; Metallurgy and Materials Group; Indira Gandhi Centre for Atomic Research (DAE); Govt. of India; Kalpakkam-603102 (T.N), India.

Notable Publication:

High temperature phase transformation studies in magnetite nanoparticles doped with Co2+ ion

Improvement of sensitization and intergranular corrosion of AISI type 304L stainless steel through thermo-mechanical treatment

The Effect of Severe Plastic Deformation on the Corrosion Resistance of AISI Type 304L Stainless Steel

The corrosion behavior of compositional modified AISI type 304L stainless steel for nitric acid application