Assist Prof. Dr. ADITYA CHAKRABORTY | Analytical Modeling | Best Researcher Award

Assist Prof. Dr. ADITYA CHAKRABORTY | Analytical Modeling | Best Researcher Award

Assist Prof. Dr. ADITYA CHAKRABORTY, OLD DOMINION UNIVERSITY, United States

Based on Aditya Chakraborty’s qualifications and accomplishments, he appears to be a strong candidate for the Best Researcher Award. Here’s why:

Profile 🌟

Extensive Research Experience πŸ”¬πŸ“š

Aditya has over 10 years of experience in statistical modeling and applications. His research spans important areas such as cancer surveillance, chronic disease modeling, and health disparities, demonstrating a broad and impactful research focus.

Relevant Publications πŸ“–πŸ“

His publication record includes notable articles in high-impact journals on topics like predictive modeling for cancer patients, survival analysis, and data-driven approaches in health science. This shows his active contribution to advancing knowledge in his field.

Innovative Work πŸ’‘πŸ”

Aditya’s work on AI-driven predictive models, particularly in cancer research, and his patents related to cancer diseases and healthcare stock optimization, highlight his innovative approach and potential for significant contributions to his field.

Professional Engagement πŸ€πŸ’Ό

His involvement in prestigious conferences, such as the American Public Health Association and the American Statistical Association, and his role as a reviewer for leading journals, further underscore his professional engagement and recognition in the academic community.

Teaching and Mentorship πŸŽ“πŸ‘¨β€πŸ«

His experience as an Assistant Professor and previous roles as a teaching associate and adjunct faculty demonstrate his commitment to education and mentorship in data science and applied statistics.

Honors and Awards πŸ†πŸŽ–οΈ

Aditya has received multiple awards and honors, including the EVMS Professional Enrichment Grant and the Tharp Endowed Award, which recognize his academic excellence and contributions.

Ongoing and Pending Grants πŸ’°πŸ“‘

His involvement in several ongoing and pending grants indicates his active role in current research projects and his future research potential.

Overall, Aditya Chakraborty’s achievements and ongoing work align well with the criteria for the Best Researcher Award, making him a suitable nominee.

Publication Top Notes πŸ“πŸ—žοΈβ­

A real data-driven analytical model to predict happiness

Parametric and non-parametric survival analysis of patients with acute myeloid leukemia (AML)

Survival analysis for pancreatic cancer patients using Cox-Proportional Hazard (CPH) model

An AI-driven Predictive Model for Pancreatic Cancer Patients Using Extreme Gradient Boosting

COVID‐19 and tobacco products use among US adults, 2021 National Health Interview Survey

A real data-driven clustering approach for countries based on happiness score

A modern approach of survival analysis of patients with pancreatic cancer

A Stock Optimization Problem in Finance: Understanding Financial and Economic Indicators through Analytical Predictive Modeling

Models for cancer diseases

A Modern Analytical Approach for Assessing the Treatment Effectiveness of Pancreatic Adenocarcinoma Patients Belonging to Different Demographics and Cancer Stages

Assoc Prof. Dr. Jiunn-Jer Hwang | Advanced Materials Engineering | Best Researcher Award

Assoc Prof. Dr. Jiunn-Jer Hwang | Advanced Materials Engineering | Best Researcher Award

Teacher, Department of Health and Nutrition & Chemical Engineering, Army Academy, Taiwan

Assoc. Prof. Dr. Jiunn-Jer Hwang, a distinguished educator in the Department of Health and Nutrition & Chemical Engineering at the Army Academy in Taiwan, has been honored with the Best Researcher Award in Advanced Materials Engineering. πŸ† His groundbreaking work and dedication to innovation have significantly contributed to the field, earning him this prestigious recognition. 🌟 Dr. Hwang’s research not only advances scientific understanding but also inspires students and colleagues alike, fostering a dynamic and innovative academic environment. πŸ“š His commitment to excellence continues to drive progress in advanced materials engineering. βš™οΈ

Profile

Scopus

Education πŸŽ“

Jiunn-Jer Hwang, based at the Army Academy School of Taiwan (ROC) since 2005, is an accomplished associate professor in Chemical Engineering. πŸŽ“ His academic pursuits are deeply rooted in materials science, with a significant emphasis on advancing nanoclay and nanocomposite materials. His research is particularly distinguished by its focus on biomimetic structures and antimicrobial applications, aiming to mimic natural biological systems for innovative material solutions. 🌱 Dr. Hwang’s scholarly journey underscores his commitment to exploring cutting-edge technologies that enhance material functionality and sustainability, contributing to both academic discourse and practical advancements in engineering and biotechnology.

Projects 🌱

Assoc. Prof. Dr. Jiunn-Jer Hwang’s research embodies innovation and interdisciplinary synergy. 🌐 His focus on superhydrophobic coatings draws inspiration from nature, aiming to bolster materials with enhanced antimicrobial qualities and corrosion resistance. 🌿 Integrating cutting-edge technologies such as microwave kilns and ionogel electrolytes for solid-state batteries underscores his dedication to practical applications and sustainability. Dr. Hwang’s work not only pushes the boundaries of materials science but also seeks to address pressing global challenges through transformative research. His holistic approach promises to pave the way for novel advancements that benefit both industry and environmental conservation efforts.

Awards πŸ†

Assoc. Prof. Dr. Jiunn-Jer Hwang’s contributions have earned acclaim, with grants and honors recognizing his pioneering research in polymer science and materials engineering. πŸ† His work focuses on developing biomimetic surfaces and innovative coatings that tackle environmental and biomedical challenges. 🌱 Dr. Hwang’s efforts are pivotal in enhancing antimicrobial properties and corrosion resistance through materials science, reflecting his commitment to sustainable solutions. His interdisciplinary approach integrates nanotechnology to create practical applications in fields such as solid-state batteries and surface coatings, aiming to bridge scientific innovation with real-world impact for global environmental and health advancements. πŸ”¬

Research πŸ”¬

Assoc. Prof. Dr. Jiunn-Jer Hwang’s recent publications showcase pioneering research in materials science, from silica-based epoxy composites to advanced carbon-based coatings. 🌱 His focus on antimicrobial applications and electrochemical sensing reflects a commitment to harnessing nanotechnology for societal progress. Through these innovations, Dr. Hwang aims to translate scientific breakthroughs into practical solutions that promote global sustainability and improve public health. πŸ”¬ His work not only pushes the boundaries of nanomaterials but also underscores their potential to address critical challenges, emphasizing their role in shaping a more resilient and environmentally conscious future.

Publications Top Notes

Advanced Integration of Microwave Kiln Technology in Enhancing the Lost-Wax Glass Casting Process: A Study on Methodological Innovations and Practical Implications

Superhydrophobic surface of biomass carbon-based PANI composite coatings with the biomimetic structure of goose feather for anticorrosion/antibiofilm applications

Preparation and Characterization of Silica-Based Ionogel Electrolytes and Their Application in Solid-State Lithium Batteries

Porous Diatomaceous Earth/Nano-Zinc Oxide Composites: Preparation and Antimicrobial Applications

Biomimetic PMMA coating surface and its application on inhibition of bacterial attachment and anti-biofilm performance

Comparative Studies on Carbon Paste Electrode Modified with Electroactive Polyamic Acid and Corresponding Polyimide without/with Attached Sulfonated Group for Electrochemical Sensing of Ascorbic Acid

The synthesis of biodegradable poly(L-lactic acid)-polyethylene glycols copolymer/montmorillonite nanocomposites and analysis of the crystallization properties