Prof. Wangdo Kim | Perception | Interdisciplinary Innovation Prize

Prof. Wangdo Kim | Perception | Interdisciplinary Innovation Prize🏆


Professor in Biomechanics at  Universidad de Ingenieria y Tecnologia—UTEC, Peru
 🎓

👨‍🏫 Wangdo Kim is a professor of Mechanical Engineering at Universidad de Ingeniería y Tecnología (UTEC) in Lima, Peru, with a distinguished career spanning continents and fields. He has been a pivotal contributor to the study of biomechanics, with research experience across institutions like the Technical University of Lisbon and Portland State University. A seasoned author in biomechanics, he has a broad spectrum of published works and currently resides in Lima, Peru, with his wife of 37 years, Miwon Chung.

Professional Profile 

🎓 Education

Wangdo Kim completed his undergraduate education with a Bachelor of Science in Mechanical Engineering from Seoul National University in January 1979. His passion for advancing in the field led him to Lehigh University, where he earned a Master’s degree in October 1986, followed by a Ph.D. in Mechanical Engineering in June 1991. Kim’s academic journey continued with a postdoctoral fellowship in Orthopaedic Biomechanics at Lehigh in July 1992, where he further honed his expertise in biomechanics, setting a foundation for his extensive career in research and academia.

🏢 Work Experience

Wangdo Kim’s career includes a broad range of roles, from production management at Daewoo Heavy Industries and software engineering at Fujitsu Korea to leadership in CAD/CAM at Samsung Aerospace. His academic roles range from associate professor at Nanyang Technological University in Singapore to his current position as a professor of biomechanics at UTEC. He has also held notable research positions at the Technical University of Lisbon and Portland State University.

 

🧬 Skills

  • Biomechanics & Motion Tracking: Expertise in virtual reality (VR) applications and real-time kinematics
  • CAD/CAM Management: Led concurrent engineering projects to streamline design and production processes
  • Project Management: Managed multi-million-dollar projects at Samsung, improving product development cycles and market competitiveness
  • Software Development: Extensive experience with CAD/CAM software and systems engineering for complex manufacturing

Awards and Honors 🏆

Kim’s achievements are marked by prestigious recognitions, including first place in the biomedical product competition at Nanyang Technological University, a Paper Award from Physiological Measurement, and recognition by BioMedLib as a top article author. In 2015, he was named an Outstanding Reviewer for Elsevier’s The Knee journal.

🌐 Memberships

Wangdo Kim is a member of editorial boards for journals like Advances in Biomechanics and Applications and Biomed Communication. He actively participates in conferences, including roles on organizing committees for the International Conference on Perception and Action and ISBS 2011.

📚 Teaching Experience

With over two decades of academic experience, Kim has taught at esteemed institutions such as Nanyang Technological University, Seoul National University, and currently UTEC in Lima, Peru. His teaching integrates practical biomechanics with cutting-edge research, preparing students for advancements in engineering and technology.

 

 

🔬 Research Focus

Kim’s research centers on biomechanics and VR motion tracking using IMU sensors, with a particular focus on applications in neurorehabilitation and gaming. His work also involves developing algorithms for disease detection through motion tracking, integrating technologies like OpenSenseRT with Python-based Vizard for enhanced data streaming in virtual environments.

Conclusion 

Dr. Wangdo Kim’s interdisciplinary expertise, coupled with his forward-thinking research in biomechanics and VR technology, makes him a suitable and competitive candidate for the Interdisciplinary Innovation Prize. His pioneering efforts to integrate biomechanics with VR motion tracking for neurorehabilitation demonstrate a unique and innovative approach that aligns with the Prize’s focus on cross-disciplinary advancements. With enhancements to his recent publication record and collaborations in clinical settings, Dr. Kim is well-positioned to further his impact in the interdisciplinary research community, making him a strong contender for this prestigious award.

📚 Publilcation 

 

 

K S V POORNA CHANDRIKA | Cognitive Development| Best Researcher Award

Dr. K S V POORNA CHANDRIKA | Cognitive Development| Best Researcher Award

Dr.K S V POORNA CHANDRIKA,ICAR-Indian Institute of Oilseeds Research, Tiruchirappalli,India

Dr. K S V Poorna Chandrika is a prominent scientist affiliated with the ICAR-Indian Institute of Oilseeds Research in Tiruchirappalli, India. Her research primarily focuses on various aspects of oilseed crops, including breeding, genetics, and sustainable agricultural practices. Dr. Poorna Chandrika has made significant contributions to the field through her extensive research and publications, aiming to enhance crop productivity and resilience in challenging agricultural environments. Her work is highly regarded within the scientific community for its practical implications in improving food security and agricultural sustainability.

Professional Profile:

Area of Expertise:

  • Synthesis and characterization of hydrophilic superabsorbent and superporous hydrogels
  • Development of polymeric films as carriers for crop protection inputs
  • Formulation of microbial bioagents and chemicals for seed health and nutrient management
  • Instrumentation expertise: GLC, HPLC, UV spectroscopy, NMR, Electron microscopy, FT-IR, HPTLC, GC, XRD, AAS, DLS, rheometer, ICP, DSC etc.

Contribution to Scientific Advancement:

  • Developed potential polymeric films for management of biotic and abiotic stresses in various pulses and oilseeds
  • Field evaluation of innovative formulations for sustainable agriculture

Awards and Recognition:

    • Best Paper Award at IIOR-2019 for “Development of chitosan-PEG blended films using Trichoderma: Enhancement of antimicrobial activity and seed quality”
    • Best Oral Presentation Award at International Bio Pesticide Conference-2019

Area of Research:

    • Currently researching polymers as formulation carriers and nanosystems for various delivery mechanisms

Publications: 

  • Hydrogels and Superabsorbent Materials: Chandrika KSVP has contributed significantly to research on novel hydrogels, particularly those based on guar gum and poly(acrylate). These hydrogels are characterized for their superabsorbent properties and their behavior in different environments, including simulated environments and plant growth media.
  • Biopesticides and Agricultural Applications: Chandrika KSVP has also explored nanobiopesticides and biopolymeric formulations for agricultural applications. This includes the development of Bacillus thuringiensis-based nanopesticides and other bioformulations for pest management and crop protection.
  • Biopolymer Blends and Coatings: Research extends to the development of biopolymer blends, such as chitosan-PEG films and chitosan-based seed coatings. These innovations aim to enhance antimicrobial activity, seed quality, and stress tolerance in crops against biotic and abiotic factors.
  • Nanotechnology in Agriculture: Chandrika KSVP has contributed to studies involving metal nanoparticles as plant nutrients and their applications through soil application. This includes research on Fe and Zn metal nanocitrates.
  • Patents and Innovations: There are mentions of patents related to polymer compositions and their preparation, indicating a focus on translating research into practical applications and intellectual property.

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.