Shweta Koparde | Cognitive Development | Best Researcher Award

Mrs Shweta Koparde | Cognitive Development |  Best Researcher Award 

D Y Patil University, Navi Mumbai, India

Shweta Ashish Koparde is a dedicated Computer Engineering academic currently pursuing her PhD at D.Y. Patil University, Mumbai. She holds an M.E. with Distinction and a B.E. from Pune University. With extensive teaching experience in subjects like AI and Computer Networks 🖥️, she has also guided colleges through NBA accreditation and contributed to SPPU syllabus revisions 📚. Skilled in Python, C++, Java, and more, Shweta blends practical industry experience from her time as a Software Engineer with her academic pursuits. She was awarded the “Best Outgoing Student” for her M.E. from MCOERC, Nashik 🏆.

 

Professional Profile:

Education

PhD in Computer Engineering (Pursuing) DY Patil University, Mumbai RPS-II completed M.E. in Computer Engineering (2013)University of Pune First Class with Distinction from MCOERC, Nashik 7.88 CGPA 🎓✨ B.E. in Computer Engineering (2005) University of Pune First Class from VIT, Pune 64.06%

H.S.C. (High School Certificate) S.M.V Akurdi, Pune Board of Pune 84.00% First Class with Distinction 🎖️🏅S.S.C. (Secondary School Certificate) Jana Prabodhini, Akurdi, Pune Board of Pune 87.06% First Class with Distinction 🏆📜

Technical Skill Sets

Operating Systems: Windows, Linux, Ubuntu, Android 🖥️🐧📱 Programming Languages: Python, C, C++, VB 6, Java, VB.Net, Android Bundle, Android Studio 💻📲 Databases: Oracle 9i, SQLite 🗄️ Tools: Rational Rose, Lex, Yaac, NS2 🛠️🔧

Work Experience

Assistant Professor

Guided four colleges (KBT COE, Nasik; PCCOE Akurdi; NMIT Talegaon; Vidyavardhini College of Engg & Technology, Mumbai) for NBA visit 🏫👨‍🏫Successfully registered for PhD in Computer Engineering at RAIT, Nerul, and DY Patil University 📚📝Worked as member in SPPU syllabus revision for TE 2019 and BE 2019 Course 📋Served as SPPU Paper setter for subjects SPOS and Augmented Reality 📝📚Institute NBA Coordinator & Criteria-10 Coordinator 🏅ISO Coordinator 🏢✔️In charge for direct second-year admission process 🏫PBL coordinator for Second Year Project 🔍Higher study cell coordinator 📈🎓Reviewer and session chair for CPGCON -2016 🗣️📑NSS member and coordinator at various colleges 🌱🤝External examiner for university exams 🎓

Software Engineer (2.5 years)

Synthesis Software, Pune 🖥️Winjit Technologies, Nashik 💼

Subjects Taught

Computer Networks 🌐 System Programming & Operating System 🖥️ Artificial Intelligence & Robotics 🤖 Digital Electronics & Logic Design 🔌 Smart System Design and Application 🏗️  Theory of Computation 📚 Operating System Design 🖥️ Principles of Programming Languages 💻 Discrete Structures 🧮 Software Architecture 🏛️ Object-Oriented Programming 🌟  Mobile Computing 📱

Achievements

  • Received the “Best Outgoing Student” Award for M.E. from MCOERC, Nashik 🏅🎓

Activities & Contributions

Completed multiple MOOC certifications in DevOps and IoT under PBL via Coursera 📜💡 Coordinated an event on “Architecting the Next Generation Governance” with Dr. K. Subramanian 🎤📊 Worked in prize distribution committee for annual functions 🎉 Maintained and managed student achievement records 📈📊 Worked in ARC for 5 years and on mandatory disclosure for compliance reports 📋✔️

Research Focus

Currently pursuing a PhD in Computer Engineering, focusing on advanced computational methods and their applications in real-world problems 🧠🔍 Engaged in syllabus revision and paper setting for advanced computer engineering courses, contributing to academic standards and curriculum development 📚✨

publication

 

 

 

Anandan Sambandam | Cognitive Development | Best Researcher Award

Prof. Anandan Sambandam | Cognitive Development | Best Researcher Award 

Anandan Sambandam,National Institute of Technology, Tiruchirappalli,India

 

Anandan Sambandam is a noted academic and researcher affiliated with the National Institute of Technology (NIT) in Tiruchirappalli, India. He holds expertise in [insert area of expertise, e.g., Computer Science, Electrical Engineering] and has made significant contributions to [mention any notable contributions or achievements, e.g., research in renewable energy, development of new algorithms, etc.]. His work is recognized for [mention any awards or recognitions if applicable]. Anandan Sambandam continues to be an influential figure in his field, shaping both academic research and practical applications

Professional Profile:

Education:

  • B.Sc. Chemistry: University of Madras, India (1993)
  • M.Sc. Chemistry: University of Madras, India (1995)
  • Ph.D. Chemistry-Energy Interdisciplinary: University of Madras, India (2002)
  • FTnASc (Fellow of Tamil Nadu Academy of Science): 2010

Academic Positions:

  • Current: Professor in the Department of Chemistry at the National Institute of Technology, Trichy, since March 2018.
  • Previous: Held various academic positions including Head of Department and Associate Professor at the same institute from 2006 onwards.

Research Focus Areas:

  • Nanomaterials
  • Sonochemistry
  • Photocatalysis
  • Dye-sensitized solar cells
  • Perovskite solar cells
  • Organic solar cells
  • Electrochemical and fluorescence sensors

Awards and Recognitions:

Dr. Anandan has received numerous awards and fellowships, highlighting his contributions and achievements:

  • Department of Science & Technology (India) SERC Fast Track Young Scientist Award (2005)
  • Hiyoshi Young Leaf Award (2009)
  • Dr. APJ Abdul Kalam Award (2016)
  • Best Performers Awards from National Institute of Technology (multiple years from 2017 to 2024)

Publications: 

  1. Material: Co3O4-CoO@Co electrocatalysts.
    • These are cobalt-based compounds likely used for catalyzing the hydrogen evolution reaction (HER).
  2. Properties:
    • Nonprecious: Indicates these catalysts are cost-effective compared to precious metal alternatives.
    • Shape-controlled: The morphology of the catalysts is intentionally engineered for enhanced performance.
    • Defect-rich: Catalysts with defects can often exhibit higher catalytic activity.
    • Spin-state altering properties: This suggests the ability to modify electron spin states, which can impact catalytic efficiency.
  3. Application:
    • Accelerating HER: Enhancing the rate of hydrogen production, crucial for various energy applications.
    • Large current densities: Ability to sustain high current outputs, relevant for industrial-scale electrolysis.
    • Wide pH range: Functionality across different acidity levels, making them versatile for various environmental conditions.