Dr Mansour Nasrallah Abd EL-Salam | Mechanical Properties of Materials | Best Researcher Award

Dr Mansour Nasrallah Abd EL-Salam | Mechanical Properties of Materials | Best Researcher Award

Dr. Mansour Nasrallah Abd EL-Salam is a lecturer in mathematics at the Higher Technological Institute, Egypt ๐Ÿ“˜๐ŸŽ“. He holds a Ph.D. in Differential Equations (2021) and an M.Sc. in Fluid Mechanics (2015) from Zagazig University ๐Ÿง ๐Ÿ”ข. His research focuses on nonlinear dynamical systems, vibration control, and oscillator models for engineering structures ๐Ÿ”ง๐ŸŒ€. With 10+ journal publications and expertise in control theory and computational modeling, he contributes to innovations in civil and mechanical systems. He is also a skilled educator and active in academic development, training, and collaborative research ๐Ÿ’ก๐Ÿ‘จโ€๐Ÿซ๐Ÿ“Š.

Dr Mansour Nasrallah Abd EL-Salam, Higher Technological Institute, Egypt

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๐ŸŽ“ Education

Dr. Mansour holds a strong academic foundation in mathematics ๐Ÿ“˜๐Ÿ”ข. He earned his Ph.D. in Pure Mathematics (Differential Equations) in 2021 from Zagazig University, Egypt ๐ŸŽ“๐Ÿง , with a thesis focused on controlling vibrations in nonlinear dynamical systems. His M.Sc. in Applied Mathematics (Fluid Mechanics) was awarded in 2015, where he studied vibration control under multi-force dynamics ๐ŸŒŠโš™๏ธ. He also holds a B.Sc. in Mathematics with distinction (Very Good) from the same institution, awarded in 2006 ๐Ÿงฎ๐Ÿ…. His academic training reflects a blend of theoretical precision and engineering application excellence.

๐Ÿง‘โ€๐Ÿซ Experienceย 

Dr. Mansour has over 15 years of teaching experience at the Higher Technological Institute, Tenth of Ramadan City, Egypt ๐ŸŽ“๐Ÿ‡ช๐Ÿ‡ฌ. He began as a Demonstrator (2009โ€“2016), advanced to Assistant Lecturer (2016โ€“2021), and is currently serving as a Lecturer (2021โ€“Present) ๐Ÿง‘โ€๐Ÿซ๐Ÿ“˜. He has taught a wide range of core mathematics courses including Differential Equations, Numerical Methods, Advanced Calculus, and Statistical Analysis ๐Ÿ“๐Ÿ“Š๐Ÿงฎ. His teaching blends theory and computation, equipping students with analytical and problem-solving skills vital for engineering and applied sciences โš™๏ธ๐Ÿ”๐Ÿ“.

๐Ÿง‘โ€๐Ÿ’ป Certificationsย 

Dr. Mansour has completed multiple professional certifications enhancing his academic, research, and digital competencies ๐Ÿง ๐Ÿ“š. His training includes teaching strategies, student evaluation, and course design through NAQAAE (2021) ๐Ÿซ๐Ÿ“ˆ. He also completed the TOEFL Review Course and workshops on research promotion, plagiarism prevention, and scientific database management hosted by Elsevier and Zagazig University ๐Ÿ”๐Ÿง‘โ€๐Ÿ’ป. Skilled in tools like Microsoft Office, LaTeX, and SPSS, he effectively integrates technology into education and research ๐Ÿ’ป๐Ÿ“Š. These certifications reflect his commitment to excellence in both pedagogy and scholarly integrity.

๐Ÿ” Research Focusย 

Dr. Mansourโ€™s research is centered on the modeling and control of nonlinear dynamical systems ๐ŸŒ€๐Ÿ”ง. He specializes in vibration suppression techniques for complex systems such as Rayleighโ€“Van der Polโ€“Duffing oscillators, suspended cables, and cantilever beams using advanced controllers like negative velocity feedback, positive position feedback, PD controllers, and nonlinear saturation methods โš™๏ธ๐Ÿ“‰. His work targets real-world engineering applications including mechanical and structural systems, enhancing performance, stability, and resilience under external excitation ๐Ÿ’ก๐Ÿ—๏ธ. His studies contribute significantly to modern control theory, stability analysis, and applied mathematics for engineering innovation ๐Ÿ”๐Ÿ“Š.

๐Ÿ“š Publications

Effect of Negative Velocity Feedback Control on the Vibration of a Nonlinear Dynamical System
Journal: International Journal of Dynamics and Control (2023)

Negative Derivative Feedback Controller for Repressing Vibrations of the Hybrid Rayleighโˆ’Van der Polโˆ’Duffing Oscillator
Journal: Nonlinear Phenomena in Complex Systems (2022)

On Controlling of Vibrations of a Suspended Cable via Positive Position Feedback Controller
Journal: International Journal of Dynamics and Control (2022)

A Suitable Active Control for Suppression the Vibrations of a Cantilever Beam
Journal: Sound and Vibration (2022)

Behavior of a Hybrid Rayleighโ€“Van der Polโ€“Duffing Oscillator with a PD Controller
Journal: Journal of Applied Research and Technology (2022)

Mr Sudhansu Sekhar Hota | Materials Science | Best Researcher Award

Mr Sudhansu Sekhar Hota | Materials Science | Best Researcher Award

Mr. Sudhansu Sekhar Hota is a passionate materials scientist ๐Ÿงชโš™๏ธ and research scholar at the Multifunctional Research Laboratory, ITER, SOA University ๐Ÿซ. His expertise lies in nanoceramics, dielectric materials, polymer composites, and energy storage devices ๐Ÿ”‹๐Ÿ”ฌ. With over 30 SCI/SCOPUS-indexed publications ๐Ÿ“š and awards for best paper presentations ๐Ÿ…, he is advancing research on lead-free electroceramics and perovskite-based functional materials. Skilled in XRD, Raman, SEM, and simulation tools ๐Ÿ“ˆ๐Ÿ–ฅ๏ธ, Mr. Hota combines theory and experimentation to develop sustainable solutions for next-gen electronics ๐ŸŒฑ๐Ÿ’ก.

Mr Sudhansu Sekhar, Hota SOA UNIVERSITY, India

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๐ŸŽ“ Education

Mr. Hota is currently pursuing a Ph.D. in Physics (Material Science) at SOA University (ITER), Bhubaneswar ๐Ÿงช๐ŸŽ“. He completed his M.Sc. in Physics from Berhampur University (2017โ€“2019) with a stellar CGPA of 8.52 ๐Ÿ“˜๐Ÿ”ฌ. His undergraduate studies were in Physics (Hons.) at Dhenkanal Autonomous College, affiliated with Utkal University, where he scored 83.66% ๐Ÿง ๐Ÿ“. He completed his Intermediate from BJB Junior College, Bhubaneswar (73%) ๐Ÿ“š, and his Matriculation from Saraswati Vidya Mandir, Bhawanipatna, achieving an impressive 91.66% ๐Ÿ†โœ๏ธ. His academic journey reflects a strong and consistent dedication to science and learning.

๐Ÿซ Experience

Since January 2022, Mr. Sudhansu Hota has been working as a Research Scholar at the Multifunctional Research Laboratory, ITER, SOA University, Bhubaneswar ๐Ÿซ๐Ÿ”ฌ. His role involves advanced research in nanostructured electroceramics, dielectric and ferroelectric materials, and multifunctional composites โšก๐Ÿงฒ. He actively performs material synthesis, characterization (XRD, SEM, Raman), and electrical property measurements using modern instrumentation โš™๏ธ๐Ÿงช. His contributions support cutting-edge developments in energy storage and sensor applications ๐Ÿ”‹๐Ÿ“Ÿ. As a hands-on researcher, Mr. Hota integrates theoretical modeling with practical experimentation to drive innovations in sustainable material science ๐ŸŒฑ๐Ÿ’ก.

๐Ÿ…Achievementsย 

Mr. Hota has been consistently recognized for his research excellence on national and international platforms ๐Ÿ…๐ŸŒ. He received the Best Paper Presentation Award at the prestigious 2nd International Conference APSIT 2023, organized by IEEE ๐ŸŽค๐Ÿ“˜. Additionally, he secured Second Position in Poster Presentation at the International Conference on Advanced Materials and Applications 2022 for his work on next-generation functional materials ๐Ÿงช๐Ÿ“Š. These accolades underscore his innovative research in dielectric materials, energy storage ceramics, and nanocomposites, highlighting his ability to translate complex science into impactful technological applications โšก๐Ÿ”ฌ.

๐ŸŒฑ Scientific Skillsย 

Mr. Hota possesses advanced expertise in material characterization and fabrication tools essential for functional ceramics and composite research ๐Ÿ”ฌ๐Ÿงช. His skillset includes XRD, SEM, Raman, FTIR, UV-Vis spectroscopy, and ferroelectric loop tracers for detailed structural and electrical analysis ๐Ÿ“Š. He is proficient with instruments like Keithley electrometers, LCR meters, and magnetoelectric systems โšก๐Ÿงฒ. For materials processing, he utilizes ball mills, spin/dip coaters, muffle/vacuum furnaces, and temperature-controlled polling units ๐Ÿ”ฅ๐ŸŒ€. His hands-on command of these tools enables cutting-edge research in energy storage and multifunctional materials ๐ŸŒฑ๐Ÿ”‹.

๐Ÿ”ฌ Research Focus

Mr. Hotaโ€™s research centers on advanced ceramic materials and nanostructured composites ๐Ÿ”ฌโš™๏ธ, with a strong emphasis on dielectric and ferroelectric behavior for energy applications ๐Ÿ”‹. He specializes in X-ray diffraction (XRD) analysis, multiferroics, polymer-based composites, and thin films used in capacitors, sensors, and multifunctional devices ๐Ÿ“Š๐Ÿ“. His work integrates optical studies, material characterization, and device fabrication, aiming to develop eco-friendly, high-performance energy storage systems ๐ŸŒฑ๐Ÿ’ก. Through innovations in nanomaterials and structure-property correlation, he contributes to next-gen technologies for smart electronics and sustainable energy devices ๐ŸŒ๐Ÿ“ก.

๐Ÿ“š Publications

Synthesis and Characterization of Co-doped (Li/W) Distorted Perovskite Bismuth Manganite (Biโ‚/โ‚‚Liโ‚/โ‚‚)(Mnโ‚/โ‚‚Wโ‚/โ‚‚)Oโ‚ƒ for Electronic Devices
Authors: Sudhansu Hota
Journal: Brazilian Journal of Physics (2025)

Dielectric Characteristics and Energy Storage Capabilities of PVDF-Based Composite Incorporating 2D GnP Nanofiller
Authors: Sudhansu Hota
Journal: Results in Engineering (2025)

Fabrication, Structural, Microstructural, Topological and Electrical Characteristics of Powellite Calcium Molybdate for Suitable Electronic Application
Authors: Sudhansu Hota
Journal: Transactions on Electrical and Electronic Materials (2025)

Absorption-Dominant Electromagnetic Interference Shielding of Polymer Nanocomposite PVDF/LiNbOโ‚ƒ for High-Frequency Microwave Application
Authors: Sudhansu Hota
Journal: ACS Applied Electronic Materials (2025)

Prof Chunlai Wang | Mechanical Properties of Materials | Best Researcher Award

Prof Chunlai Wang | Mechanical Properties of Materials | Best Researcher Award

Prof. Chunlaiโ€ฏWang is a renowned expert in rock mechanics and mining engineering at the China University of Mining & Technology, Beijing โ›๏ธ๐Ÿซ. He serves as Associate Director of the National Engineering Laboratory for efficient indium and tin resource use. A Ph.D. supervisor and recipient of the National Youth Science and Technology Award, he specializes in rockburst mechanisms, microseismic monitoring, and landslide prediction ๐Ÿ“ก๐Ÿชจ. His achievements include over 80 academic papers (45+ SCI), three books (one Springer monograph), and eight national invention patents ๐Ÿ’ก๐Ÿ“š. A former visiting scholar at UBC, Prof. Wang advances safe and intelligent mining technologies ๐ŸŒ๐Ÿ”ฌ.

Prof Chunlai Wang, China University of Mining and Technology-Beijing, China

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๐ŸŽ“ Educationย 

Prof. Chunlai Wang earned his Ph.D. in Geological Engineering from the University of Science & Technology Beijing (2007โ€“2011) ๐ŸŽ“๐Ÿงฑ. His doctoral research focused on advanced rock mechanics and mining safety, laying a strong academic foundation for his career in geotechnical engineering and hazard prediction. Prior to his Ph.D., he pursued rigorous training in geological sciences and engineering principles, which equipped him with the analytical and technical expertise to address complex mining and seismic challenges ๐Ÿชจ๐Ÿ“Š. His academic path has been marked by excellence, innovation, and a commitment to solving real-world problems in earth science and engineering ๐ŸŒ๐Ÿ”ฌ.

๐Ÿซ Experience

Prof. Chunlai Wang has been serving at the China University of Mining and Technology, Beijing since 2011 ๐Ÿซ๐Ÿ‡จ๐Ÿ‡ณ, where he holds the role of Deputy Director of the Department of Resources Engineering and is an esteemed Ph.D. Professor in rock mechanics, rockburst control, and microseismic monitoring ๐Ÿชจ๐Ÿ“ก๐Ÿ’ฅ. As part of the School of Energy and Mining Engineering, he leads research and teaching in advanced geotechnical systems, underground hazard prevention, and intelligent mining technologies โš™๏ธโ›๏ธ๐Ÿง . His position combines academic leadership, research excellence, and national-level project coordination, making him a pillar in Chinaโ€™s mining safety innovation landscape.

๐Ÿ† Honors and Achievements

Prof. Chunlai Wang has been honored with 7 major national and ministerial-level science and technology awards ๐Ÿ†๐ŸŽ“, including the Second Prize of the State Scientific and Technological Progress Award (2010) for innovations in joint open-pit and underground mining. He has received multiple second prizes from the China Coal Industry Association and China Nonferrous Metals Industry Association for breakthroughs in deep soft rock support, zero-waste tailing technologies, and mechanized mining โš™๏ธโ›๏ธ. His special award from the China Gold Association underscores leadership in gold mining engineering. These accolades reflect his lasting impact on safe, efficient, and sustainable mining technologies ๐ŸŒ

๐Ÿ”ฌ Research Leadership

Prof. Chunlai Wang has led and contributed to 11 major research projects focused on rockburst prediction, microstructural instability, and dynamic disaster control in deep mining ๐Ÿชจ๐Ÿ“กโ›๏ธ. As principal investigator on multiple National Natural Science Foundation of China (NSFC) projects, he has pioneered early-warning systems, animal behavior-based disaster prediction, and energy modeling under dynamic loads. His work spans both national and provincial programs, including the National Key R&D Program and Eleventh Five-Year Plan. Prof. Wangโ€™s expertise in deep mine safety, rock mechanics, and multi-source monitoring is advancing safer and more intelligent mining technologies ๐Ÿ”ฌ๐Ÿง โš™๏ธ.

๐Ÿ› ๏ธ Invention and Innovationย 

Prof. Chunlai Wang holds five authorized national invention patents that address rock mass failure prediction, microseismic early warning, and disaster prevention in mining engineering ๐Ÿ› ๏ธ๐Ÿ“ก. His innovations include methods for detecting rockburst risks, systems for multi-point displacement monitoring, and energy-absorbing structures for mine goafs ๐Ÿชจ๐Ÿ“‰. Notably, he developed a vertical coal bunker blockage-clearing device, advancing mine safety and operational efficiency โš™๏ธ๐Ÿšง. These patented technologies represent a fusion of geotechnical insight, sensor integration, and engineering safety applications, making a significant impact on rock mechanics, mine hazard mitigation, and smart mining development โ›๏ธ๐Ÿ”ฌ.

๐Ÿ”ฌ Research Focusย 

Prof. Chunlai Wangโ€™s research is rooted in rock mechanics and mining safety engineering ๐Ÿชจโš™๏ธ. He specializes in the mechanism of rockburst and its prediction, aiming to reduce catastrophic failures in underground mining โ›๏ธ๐Ÿ’ฅ. His work on microseismic monitoring enables early warning and real-time control of geological hazards ๐Ÿ“ก๐Ÿ“ˆ. He also focuses on landslide prediction and support technologies, improving slope stability and infrastructure protection ๐Ÿž๏ธ๐Ÿ› ๏ธ. Integrating advanced modeling and monitoring, his research enhances operational safety, disaster prevention, and sustainable mining practices ๐ŸŒ๐Ÿ”ฌ. His innovations are critical to modern geotechnical and energy resource engineering.

๐Ÿ“š Publications

Crack Nucleation Mechanism of Rock Fracture
Authors: Chunlai Wang, Baokun Zhou, Chaoyang Zhu, Changfeng Li, Liang Sun
Journal: Engineering Fracture Mechanics (2025)

Infrared Temperature Distribution Characteristics and State Assessment Method of Sandstone Under Tension and Compression Stress
Authors: Changfeng Li, Chunlu Lan, Baokun Zhou, Chaoyang Zhu, Qiru Sui, Xiaolin Hou, Chunlai Wang
Journal: Infrared Physics & Technology (2024)

Optimization of Ore Pillar Recovery Based on Weighting Combined with Uncertainty Measurement Theory
Authors: Jun Qian, Wenqiang Xu, Chunlu Lan, Chunlai Wang, Changfeng Li, Qingjun Yu, Yuze Li, Yutao Tang, Jianwei Zhang, Guannan Wang
Journal: Journal of Geophysics and Engineering (2024)

Prediction and Critical Transition Mechanism for Granite Fracture: Insights from Critical Slowing Down Theory
Authors: Chun-lai Wang, Bao-kun Zhou, Chang-feng Li, Zhi-jie Wen, Zhi-an Bai, Chao-yang Zhu, Liang Sun, Xu-hui Xue, Peng Cao
Journal: Journal of Central South University (2024)

Temperature Response of Coal Fracture Induced by Three-Dimensional Stress Field
Authors: Chunlai Wang, Changfeng Li, Baokun Zhou, Liang Sun, Zhian Bai, Chaoyang Zhu, Guangjin Wang, Qiru Sui, Jinze Song
Journal: Measurement (2024)

Robustness of Rock Damage Regions Induced by Crack Nucleation
Authors: Yubo Liu, Chunlai Wang, Changfeng Li, Zhian Bai, Lin Huang, Kang Peng, Xuhui Xue, Peng Cao
Journal: International Journal of Geomechanics (2023)

Numerical Simulation Investigation on Parameter Optimization of Deep-Sea Mining Vehicles
Authors: Hongyun Wu, Wei Liu, Min Jiang, Changfeng Li, Jiangming Li, Bingzheng Chen, Chunlai Wang, Yuheng Chen
Journal: Chinese Journal of Mechanical Engineering (2023)

Prof shanshan Feng | Composite Materials | Best Researcher Award

Prof Shanshan Feng | Composite Materials | Best Researcher Award

Prof. Shanshan Feng is an accomplished environmental scientist ๐ŸŒฟ๐Ÿงช specializing in radioactive wastewater treatment, functional nanomaterials, and pollution remediation technologies. She holds a Ph.D. from Harbin Institute of Technology ๐ŸŽ“ and completed joint training at Peking University. Currently serving as Associate Professor and Assistant to the Dean at Changzhou University ๐Ÿซ, she has published 20+ SCI-indexed papers ๐Ÿ“š and holds 4 national patents โš™๏ธ. Her work focuses on magnetic composites, MOF membranes, and sustainable water purification solutions ๐Ÿ’ง๐ŸŒ. A dedicated mentor and award-winning educator, Prof. Feng drives forward-thinking research for environmental sustainability and public health.

Prof Shanshan Feng, Changzhou university, China

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๐ŸŽ“ Educationย 

Prof. Shanshan Feng earned her Ph.D. in Environmental Science and Engineering ๐ŸŽ“ from the prestigious Harbin Institute of Technology (2011โ€“2017), where she studied at the School of Municipal and Environmental Engineering ๐Ÿ—๏ธ๐Ÿ’ง. During her doctoral studies, she also participated in a Joint Training Program at Peking Universityโ€™s College of Engineering (2014โ€“2015) ๐Ÿ”ฌ๐Ÿซ, enriching her interdisciplinary skills in environmental technology and nanomaterials. This dual exposure at two of Chinaโ€™s top institutions equipped her with a strong foundation in pollution control, functional materials, and sustainable water treatment ๐ŸŒ๐Ÿงช, driving her future success in academic and applied environmental research.

๐Ÿ‘ฉโ€๐Ÿ”ฌ Experienceย 

Since June 2017, Prof. Shanshan Feng has been a faculty member at the School of Environmental Science and Engineering, Changzhou University ๐Ÿซ๐ŸŒฟ, serving as a Lecturer and now Associate Professor. She teaches core courses such as Surface Water Restoration, Groundwater Remediation, and Solid Waste Treatment ๐Ÿ’งโ™ป๏ธ๐Ÿงช. Additionally, she leads modules on Innovation and Entrepreneurship in Environmental Protection ๐Ÿ’ก๐ŸŒฑ. Her work integrates practical training with scientific theory. Prof. Fengโ€™s research and teaching intersect in the development of functional eco-materials and radioactive wastewater treatment technologies, empowering students and advancing solutions for real-world environmental challenges ๐Ÿšฐ๐Ÿ”ฌ.

๐Ÿ† Awards and Recognitionย 

Prof. Shanshan Feng has been consistently recognized for her excellence in education, mentorship, and scientific contribution ๐Ÿ†๐Ÿ“š. She was honored as an Outstanding Individual in Jiangsu Province’s Double Innovation Doctoral Program (2018) and received multiple Excellent Instructor awards ๐ŸŽ“โญ. She won Changzhou University’s Young Teacher Teaching Skills Award (2019) and was named Outstanding Educator in 2023 ๐Ÿ…. Her leadership was acknowledged through her appointment as Deputy Director of Science and Technology of Jiangsu Province (2021) ๐Ÿ›๏ธ๐Ÿ”ฌ. Prof. Fengโ€™s accolades reflect her dedication to research, teaching innovation, and student development ๐ŸŒ๐Ÿ‘ฉโ€๐Ÿ”ฌ.

๐ŸŒฑ Patent Innovationย 

Prof. Shanshan Feng has been granted four cutting-edge patents in the field of environmental purification and functional material development โš™๏ธ๐Ÿงช. Her inventions include composite fiber membranes for cesium removal from contaminated water ๐Ÿ’งโ˜ข๏ธ, HKUST-1/silica membranes for filtration ๐Ÿงซ, photo-thermal conversion fiber membranes for solar-driven applications โ˜€๏ธโ™ป๏ธ, and magnetic Prussian Blue/Feโ‚ƒOโ‚„/MoSโ‚‚ composites for radioactive ion capture ๐Ÿงฒ๐ŸŒ. These technologies integrate nanomaterials, magnetic separation, and solar energy to create advanced, sustainable solutions for water and soil remediation. Her patented methods bridge the gap between laboratory research and practical environmental applications, promoting global environmental safety and innovation. ๐ŸŒฑ๐Ÿ”ฌ

๐Ÿงช Research Projects

Prof. Shanshan Feng has led and contributed to multiple innovative research projects focused on environmental purification and functional materials ๐Ÿงช๐ŸŒฑ. As Principal Investigator for six funded projects, she has advanced areas such as radioactive wastewater treatment, MOFs, and smart polymers ๐Ÿ”ฌ๐Ÿ’ง. Her projects span local and national levels, including grants from Changzhou City, Jiangsu Province, and the National Natural Science Foundation of China ๐Ÿ‡จ๐Ÿ‡ณ๐Ÿ’ผ. Notable work includes shape memory polymers for toxin separation and MOF composites for bisphenol removal โš™๏ธโ™ป๏ธ. Her research combines material innovation with real-world environmental applications ๐ŸŒ๐Ÿงซ.

๐Ÿ”ฌ Research Focus

Prof. Shanshan Feng’s research centers on water pollution control ๐Ÿ’ง๐Ÿงช, adsorption-based separation technologies โš—๏ธ๐Ÿงฒ, and the development of eco-friendly nanomaterials ๐ŸŒฟ๐Ÿ”ฌ. She explores innovative solutions using magnetic composites, MOFs, and functional nanofibers to remove hazardous pollutants like radioactive ions, VOCs, and endocrine disruptors from contaminated environments โ™ป๏ธ๐Ÿšฑ. Her work bridges materials science and environmental engineering, targeting real-world applications in wastewater treatment and purification ๐ŸŒŽ๐Ÿ› ๏ธ. Through advanced synthesis, membrane engineering, and catalytic methods, Prof. Feng aims to build sustainable, efficient, and scalable technologies that contribute to global clean water initiatives and ecological safety. ๐ŸŒฑ๐ŸŒŠ

๐Ÿ“š Publications

Enhancing the Efficiency of Solar Interface Distillation and the Removal of Low-Concentration s-VOCs Using CuFC/SiOโ‚‚-SH Nanofibers
Authors: Prof. Shanshan Feng
Journal: Separation and Purification Technology, 2025

A Cobalt Ferricyanide/ZIF-67/Composted Humus Gel Composite for Improved Cesium Ion Removal from Wastewater
Authors: Prof. Shanshan Feng
Journal: Journal of Water Process Engineering, 2025

Amino Modified Nanofibers Anchored to Prussian Blue Nanoparticles Selectively Remove Csโบ from Water
Authors: Prof. Shanshan Feng
Journal: Journal of Environmental Sciences (China), 2024

Prof Ki Hyung Kim | Materials Science | Best Researcher Award

Prof Ki Hyung Kim | Materials Science | Best Researcher Award

Prof. Dr. Ki Hyung Kim is a leading expert in gynecologic oncology and robotic surgery ๐Ÿงฌ๐Ÿค–. With an MD and Ph.D. from Pusan National University and a visiting professorship at Yale University ๐ŸŒ๐ŸŽ“, he has authored over 200 scientific publications and led multiple cancer research projects ๐Ÿ”ฌ๐Ÿ“š. His research addresses ovarian cancer, endometriosis, and minimally invasive techniques. He holds a U.S. patent for an anti-cancer drug innovation ๐Ÿ’Š and has published five medical textbooks. As an educator, innovator, and clinician, Prof. Kim advances womenโ€™s health through global research and medical excellence ๐Ÿ‘ฉโ€โš•๏ธ๐ŸŒŸ.

Prof Ki Hyung Kim, Pusan National University School of Medicine, South Korea

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๐ŸŽ“ Educationย 

Prof. Dr. Ki Hyung Kim earned his MD (1985โ€“1991) and Ph.D. in Medicine (1999โ€“2001) from Pusan National University School of Medicine ๐ŸŽ“โš•๏ธ. He completed his residency in Obstetrics and Gynecology at Pusan National University Hospital (1995โ€“1999) ๐Ÿฅ๐Ÿ‘จโ€โš•๏ธ. His academic career began as an Assistant Professor (2001), followed by promotion to Associate Professor (2005) and then Professor (2011โ€“present) ๐Ÿ“˜๐Ÿ…. Notably, he expanded his global expertise during his tenure as a Visiting Professor at Yale University School of Medicine (2006โ€“2008) ๐ŸŒ๐Ÿ”ฌ. His educational journey reflects a lifelong commitment to womenโ€™s health and clinical excellence.

๐Ÿ‘ฉโ€โš•๏ธ Experience

Prof. Ki Hyung Kim has over three decades of medical and academic expertise in obstetrics, gynecology, and oncology ๐Ÿฉบ๐ŸŽ“. After earning his MD (1991) and Ph.D. (2001) from Pusan National University, he completed a residency in OB-GYN and began his academic career as Assistant Professor (2001), rising to Associate Professor (2005) and then Full Professor (2011โ€“present) at Pusan National University School of Medicine ๐Ÿฅ๐Ÿ“š. His international profile was enriched through a Visiting Professorship at Yale University (2006โ€“2008) ๐ŸŒ๐Ÿงฌ. Prof. Kim’s career reflects deep commitment to teaching, research, and clinical excellence in women’s health ๐Ÿ‘ฉโ€โš•๏ธ๐Ÿ”ฌ.

๐Ÿ“– Booksย 

Prof. Ki Hyung Kim has authored five influential medical textbooks focused on gynecology, endoscopic surgery, and chronic pelvic pain ๐Ÿ“š๐Ÿฉบ. His works include Chronic Pelvic Pain (2023) ๐Ÿ“–, a detailed exploration of diagnostic and therapeutic approaches, and Gynecology (5th and 6th editions, 2015 & 2021) ๐Ÿงฌ, widely used in medical education. Gynecologic Oncology (2020) ๐ŸŽ—๏ธ covers clinical and surgical management of womenโ€™s cancers, while Endoscopic Surgery in Obstetrics and Gynecology (2018) ๐Ÿค– guides minimally invasive procedures. These books are essential references for clinicians, researchers, and students in advancing womenโ€™s healthcare knowledge and surgical practice globally ๐ŸŒ๐Ÿ“˜.

๐Ÿ† Contributionsย 

Prof. Kim has led pioneering advancements in gynecologic oncology and minimally invasive surgery ๐Ÿงฌ๐Ÿค–, notably in pelvic pain management and robotic techniques. His impactful research has earned Best Paper Awards ๐Ÿ† and national recognition. As an editorial board member of SCI(E) journals ๐Ÿ“–๐ŸŒ, he influences global scientific dialogue. Through active roles in medical societies ๐Ÿฉบ๐Ÿ‘ฅ, he drives clinical innovation and surgical training. His work has improved patient care outcomes ๐Ÿฅ๐Ÿ’ก and expanded evidence in womenโ€™s health, especially through novel surgical approaches and multidisciplinary collaboration for endometriosis and gynecologic cancer treatment ๐Ÿ”๐Ÿ‘ฉโ€โš•๏ธ.

๐Ÿ” Research Focus

Prof. Kimโ€™s research centers on gynecologic oncology, minimally invasive and robotic surgery, and the management of chronic pelvic pain disorders such as endometriosis and adenomyosis ๐Ÿงฌ๐Ÿค–๐Ÿฉบ. His work explores clinical innovation in ovarian, cervical, and uterine cancers, emphasizing laparoscopic and robotic techniques for safer, more effective treatment outcomes ๐Ÿ”๐Ÿ‘ฉโ€โš•๏ธ. He integrates clinical trials, translational research, and multidisciplinary collaboration to develop advanced protocols for diagnosis, prevention, and therapy ๐Ÿ’‰๐Ÿ”ฌ. With a focus on personalized medicine, surgical precision, and improved patient recovery, Prof. Kim contributes extensively to global advancements in womenโ€™s reproductive health ๐ŸŒ๐Ÿ’ก.

๐Ÿ“š Publications

Comparison of Surgical Outcomes Between Single-Site Laparoscopic Adenomyomectomy and Fundusectomy: Experience from a Single Center
Authors: Jeong, J.H.; Kim, Y.R.; Kim, B.R.; Lee, J.W.; Oh, S.Y.; Yun, J.H.; Han, M.S.; Song, Y.J.; Kim, K.H.
Journal: Journal of Clinical Medicine (2025)

Ribosomal Proteins Mediate Non-Canonical Regulation of Gut Inflammatory Signature by Crop Contaminant Deoxynivalenol
Authors: Kim, J.; Song, B.; Kim, K.H.; Moon, Y.
Journal: Ecotoxicology and Environmental Safety (2025)

Clinical Outcomes of Poly(ADPโ€“Ribose) Polymerase Inhibitors as Maintenance Therapy in Patients with Ovarian Cancer in the Southeastern Region of Korea
Authors: Ha, H.I.; Yoon, H.J.; Song, C.; Kim, E.T.; Suh, D.S.; Kim, K.H.; Na, Y.J.; Song, Y.J.
Journal: Current Oncology (2024)

Leveraging Xenobiotic-Responsive Cancer Stemness in Cell Line-Based Tumoroids for Evaluating Chemoresistance: A Proof-of-Concept Study on Environmental Susceptibility
Authors: Kim, K.H.; Lee, S.J.; Kim, J.; Moon, Y.
Journal: International Journal of Molecular Sciences (2024)

Pulmonary Cryptococcosis Masquerading as Lung Metastasis in Gynecologic Cancers: Two Case Reports
Authors: Lee, S.Y.; Song, Y.J.; Lee, G.; Yoon, H.J.; Choi, K.U.; Suh, D.S.; Kim, K.H.
Journal: Medicine (2023)

Preoperative Haematologic Markers for the Differentiation of Endometrial Cancer from Benign Endometrial Lesions in Postmenopausal Patients with Endometrial Masses
Authors: Song, Y.J.; Kim, H.G.; Yoon, H.J.; Choi, K.U.; Suh, D.S.; Kim, K.H.
Journal: Cancer Management and Research (2023)

The Discrepancy Between Preoperative Tumor Markers and Imaging Outcomes in Predicting Ovarian Malignancy
Authors: Shin, K.H.; Kim, H.H.; Yoon, H.J.; Kim, E.T.; Suh, D.S.; Kim, K.H.
Journal: Cancers (2022)

Mrs Sadhwi Dash | Composite Materials | Women Researcher Award

Mrs Sadhwi Dash | Composite Materials | Women Researcher Award

Mrs. Sadhwi Suman Dash is an emerging researcher and Assistant Professor in Physics ๐Ÿ”ฌ๐Ÿ“˜, specializing in dielectric materials, magnetic composites, and lead-free ceramics โš›๏ธ๐Ÿงฒ. She holds a Ph.D. in Experimental Condensed Matter Physics from VSSUT, Burla ๐ŸŽ“ and has published in reputed journals like Ceramics International and Journal of Materials Science: Materials in Electronics ๐Ÿ“„๐Ÿ“Š. Her expertise spans ferroelectric behavior, morphotropic phase boundaries, and nitrogen annealing effects ๐Ÿ”๐Ÿ”ฅ. Passionate about teaching and mentoring, she blends research with pedagogy in her classroom ๐Ÿ‘ฉโ€๐Ÿซ๐Ÿ’ก. Mrs. Dash is a committed voice in materials science and higher education ๐ŸŒŸ๐Ÿ“š.

Mrs Sadhwi Dash, Kalinga University, India

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๐ŸŽ“ Education

Mrs. Sadhwi Dash holds a Ph.D. in Experimental Condensed Matter Physics from VSSUT, Burla ๐ŸŽ“๐Ÿ”ฌ, where she began her research in 2018 and has completed the experimental phase. She earned her M.Sc. in Applied Physics with a CGPA of 8.15 in 2016 ๐Ÿ“Šโš›๏ธ and a B.Sc. in Physics (Hons.) with 78.8% in 2014 ๐Ÿงฎ๐Ÿ“˜. Her academic journey began with stellar school performances at DAV Public Schools in Bandhbahal and Banharpali, scoring 93.6% in Class 10 and 76% in Class 12 ๐Ÿ…๐Ÿ“š. Her education reflects a consistent focus on physics and materials science from an early stage ๐Ÿ“๐Ÿง .

๐Ÿ’ป Experienceย 

Mrs. Sadhwi Dash is an experienced educator with over 8 years of teaching physics across undergraduate and higher secondary levels ๐Ÿ“˜๐Ÿงฒ. Currently an Assistant Professor at Kalinga University (2024โ€“Present), she teaches Quantum Mechanics, Solid State Physics, and Mathematical Physics to UG and PG students ๐Ÿง ๐Ÿ“š. She has previously served as a Guest Faculty at Vedic Degree College and as a Lecturer at Brajrajnagar Degree College, delivering concept-driven instruction and guiding student research projects ๐Ÿ”ฌ๐Ÿ“ˆ. Her early experience at BEM School involved teaching classes 11โ€“12 using tech-enabled methods ๐ŸŽ“๐Ÿ’ป. Her pedagogy emphasizes critical thinking and applied learning.

๐Ÿ“˜ย Workshop & Seminarย 

Mrs. Sadhwi Dash has actively participated in national-level seminars, workshops, and faculty development programs focused on functional materials, sustainable physics, and advanced materials research ๐Ÿงช๐Ÿ”ฌ. Notable engagements include the Orissa Physical Society conventions, TEQIP-III FDPs on material design and simulation techniques, and thematic workshops on large-scale materials behavior and data analysis ๐Ÿ’ก๐Ÿ“Š. Her early academic engagement in astronomical optics reflects her curiosity beyond condensed matter physics ๐Ÿ”ญ๐ŸŒ . These activities highlight her dedication to continuous learning, collaborative research, and remaining updated with innovations in physics and material science ๐Ÿ“˜๐ŸŒฑ.

๐Ÿ” Research Focus

Mrs. Sadhwi Dashโ€™s research focuses on lead-free ferroelectric ceramics, dielectric and magnetic composites, and energy storage materials ๐Ÿงชโšก๐Ÿงฒ. Her work explores the impact of nitrogen annealing, morphotropic phase boundaries, and phase engineering on the electrical, magnetic, and thermal behavior of advanced ceramic systems ๐Ÿงฌ๐Ÿ”‹. Through experimental studies on systems like BCZT and BNT-based composites, she aims to develop eco-friendly, high-performance materials for electronic and capacitor applications ๐ŸŒฟ๐Ÿ’ก. Her interdisciplinary efforts link materials science, solid-state physics, and sustainable technologies, driving innovation in next-generation multifunctional materials ๐Ÿ”๐Ÿ”ง๐Ÿ“ˆ.

๐Ÿ“š Publications

Influence of Nitrogen Annealing on Dielectric, Electrical, and Magnetic Properties of 0.94(Biโ‚€.โ‚…Naโ‚€.โ‚…)TiOโ‚ƒโ€“0.06BaTiOโ‚ƒ/Coโ‚€.โ‚†โ‚…Znโ‚€.โ‚ƒโ‚…Feโ‚‚Oโ‚„ Composites
Authors: Dash, Sadhwi S.; Zhang, Yajun; Behera, Banarji; Sahoo, M.P.K.
Journal: Journal of Materials Science: Materials in Electronics (2024), Vol. 35, Article 2178

Intermediate Ferroelectric Phase Driven Ferroelectricโ€“Relaxor Crossover and Superior Storage Properties in Phase Boundary Engineered BCZT Ceramics
Authors: Nayak, R.L.; Zhang, Yajun; Dash, Sadhwi S.; Sahoo, M.P.K.
Journal: Ceramics International (2022), Vol. 48, pp. 10803โ€“10816

Enhanced Dielectric, Thermal Stability, and Energy Storage Properties in Compositionally Engineered Lead-Free Ceramics at the Morphotropic Phase Boundary
Authors: Nayak, R.L.; Dash, Sadhwi S.; Zhang, Yajun; Sahoo, M.P.K.
Journal: Ceramics International (2021), Vol. 47, pp. 17220โ€“17233

 

Assoc. Prof. Dr Piotr Skrzypacz | Materials Characterization Techniques | Best Researcher Award

Assoc. Prof. Dr Piotr Skrzypacz | Materials Characterization Techniques | Best Researcher Award

Assoc. Prof. Dr. Piotr Skrzypacz is a distinguished researcher in applied mathematics and computational engineering ๐Ÿงฎ๐Ÿ”ฌ. He specializes in Finite Element Methods (FEM), MEMS modeling, chemical reactor engineering, and nonlinear dynamics โš™๏ธ๐Ÿ“ˆ. With a Ph.D. from Otto von Guericke University, he has authored over 50 publications, many in Q1 journals ๐Ÿ“šโœจ. He leads major interdisciplinary projects in materials science and process modeling, supported by over $1 million in funding ๐Ÿ’ฐ๐Ÿ“Š. As a passionate educator and mentor ๐ŸŽ“๐ŸŒ, Dr. Skrzypacz bridges theory and application, making vital contributions to modern science and engineering ๐Ÿ’ก๐ŸŒ.

Assoc. Prof. Dr Piotr Skrzypacz, Nazarbayev University, Kazakhstan

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๐ŸŽ“ Education

Dr. Piotr Skrzypacz earned his Ph.D. in Applied Mathematics from Otto von Guericke University of Magdeburg, Germany (2002โ€“2010) ๐ŸŽ“๐Ÿ‡ฉ๐Ÿ‡ช, graduating magna cum laude ๐Ÿ…. His Ph.D. thesis focused on finite element analysis for flows in chemical reactors ๐Ÿ”ฌโš—๏ธ. He previously completed his Bachelorโ€™s and Masterโ€™s degrees in Mathematics at the same university (1996โ€“2002) ๐Ÿ“˜๐Ÿ“, graduating with top honors (sehr gut). His masterโ€™s thesis explored superconvergence in finite element methods applied to elliptic equations and fluid dynamics problems ๐ŸŒŠ๐Ÿงฎ. This rigorous academic background laid the groundwork for his research in FEM, CFD, and applied engineering ๐Ÿš€.

๐Ÿ‘จโ€๐Ÿซ Experience

Dr. Piotr Skrzypacz is an accomplished educator and academic leader in applied mathematics and numerical analysis ๐Ÿ“˜๐Ÿงฎ. As Associate Professor at Nazarbayev University, he has taught over 30 advanced undergraduate and graduate courses, including FEM, PDEs, Scientific Computing, and Nonlinear Optimization ๐Ÿ“Š๐Ÿ”ฌ. He has supervised numerous capstone projects, master’s theses, and PhD-level research ๐Ÿ“ˆ๐ŸŽ“. A mentor to award-winning students, his protรฉgรฉs have joined prestigious institutions globally ๐ŸŒ๐Ÿ…. He has also served in key administrative rolesโ€”developing curricula, chairing committees, and organizing international math competitions ๐Ÿค๐Ÿ†. His passion for education and innovation makes him a pillar of academic excellence.

๐Ÿงฎ Research Projectsย 

Dr. Piotr Skrzypacz has led and collaborated on a wide array of funded projects totaling over $1 million USD ๐Ÿ’ฐ๐Ÿ”ฌ. His research spans MEMS/magMEMS systems, 3D printing extrusion modeling, and catalytic reactor simulations ๐Ÿงฎโš™๏ธ๐Ÿงซ. Projects include grants from Nazarbayev University, the Polish NAWA Agency, and the German DFG, focusing on finite element methods, nonlinear material structures, chemical engineering, and micro-reactor modeling ๐ŸŒก๏ธ๐Ÿ“‰. From advanced ceramics in additive manufacturing to catalyst-controlled membrane systems, his interdisciplinary work advances precision modeling and high-impact engineering applications ๐Ÿ—๏ธ๐Ÿง ๐Ÿ“Š.

๐ŸŽค Conference Presentationย 

Dr. Piotr Skrzypacz has delivered over 40+ international talks and invited lectures on finite element methods, nonlinear dynamics, chemical reactor modeling, and MEMS/magMEMS systems ๐ŸŽค๐Ÿงฎโš™๏ธ. His work covers stabilization techniques, dead-core diffusion phenomena, pull-in dynamics, and catalytic reaction modeling in complex systems ๐Ÿ”ฌ๐Ÿ“Š. He has spoken across Europe, Asia, and Australia in top events like CHEMREACTOR, NODYCON, and EFEF ๐ŸŒ๐Ÿ—ฃ๏ธ. His technical insights into reaction-diffusion systems, oscillation-free schemes, and nano-scale mechanical systems illustrate deep innovation at the interface of applied mathematics and engineering ๐Ÿง ๐ŸŒก๏ธ๐Ÿ”ง.

๐Ÿ” Research Focusย 

Dr. Piotr Skrzypacz’s research lies at the intersection of applied mathematics and engineering sciences ๐Ÿงฎโš™๏ธ. He specializes in Finite Element Methods (FEM), Computational Fluid Dynamics (CFD), MEMS/magMEMS modeling, and nonlinear dynamics ๐Ÿ”„๐Ÿง . His work extends to chemical reactor engineering, where he develops advanced simulation tools for transport-reaction systems, catalytic processes, and energy-efficient designs ๐Ÿงช๐Ÿ”ฅ. By integrating mathematical rigor with real-world problem-solving, Dr. Skrzypacz advances innovations in micro-systems, reactor optimization, and multi-physics modeling ๐Ÿงฌ๐Ÿ”ง. His interdisciplinary approach bridges simulation, design, and experimentation, shaping next-generation technologies across science and industry ๐ŸŒ๐Ÿ”.

๐Ÿ“š Publications

A Variational Principle for a Nonlinear Oscillator Arising in the Microelectromechanical System

Authors: He, J.-H.; Anjum, N.; Skrzypacz, P.S.
Journal: Journal of Applied and Computational Mechanics (2021)

Dynamic Pull-in for Microโ€“Electromechanical Device with a Current-Carrying Conductor

Authors: He, J.-H.; Nurakhmetov, D.; Skrzypacz, P.; Wei, D.
Journal: Journal of Low Frequency Noise, Vibration and Active Control (2021)

Numerical Simulations of Dead Zone Formation in the Catalytic Flow-Through Membrane Reactor

Authors: Skrzypacz, P.; Chalkarova, N.; Golman, B.; Andreev, V.; Schieweck, F.
Journal: Computers and Chemical Engineering (2021)

A Simple Approximation of Periodic Solutions to Microelectromechanical System Model of Oscillating Parallel Plate Capacitor

Authors: Skrzypacz, P.; He, J.-H.; Ellis, G.; Kuanyshbay, M.

Analysis of the Lumped Mass Model for the Cantilever Beam Subject to Grob’s Swelling Pressure

Authors: Skrzypacz, P.; Bountis, A.; Nurakhmetov, D.; Kim, J.
Journal: Communications in Nonlinear Science and Numerical Simulation (2020)

Approximate Periodic Solutions to Microelectromechanical System Oscillator Subject to Magnetostatic Excitation

Authors: He, J.-H.; Skrzypacz, P.S.; Zhang, Y.; Pang, J.
Journal: Mathematical Methods in the Applied Sciences (2020)

Mr Sindre Zeiner-Gundersen | Materials Science | Best Researcher Award

Mr Sindre Zeiner-Gundersen | Materials Science | Best Researcher Award

Mr. Sindre Zeiner-Gundersen is a leading physicist and principal process engineer with a strong background in hydrogen technology, nuclear physics, and advanced energy systems. With over two decades of experience, he has worked across sectors including green hydrogen, ammonia, tidal energy, and nuclear reactor development. He is the founder and technical director of several pioneering research initiatives focused on hydrogen Rydberg matter, ultra-dense hydrogen, and propellantless propulsion systems. His blend of theoretical insight and applied engineering has positioned him at the forefront of innovation in renewable and quantum-based energy technologies.

Mr Sindre Zeiner-Gundersen, University Of Iceland, Norway

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๐ŸŽ“ Educationย 

Mr. Sindre Zeiner-Gundersen holds a Ph.D. (Cand.) in Hydrogen Physics and Excited States of Hydrogen from the University of Iceland (2016โ€“2023) ๐Ÿงชโš›๏ธ. He earned an M.Sc. in Electron Microscopy and Material Physics from the University of Oslo (2011โ€“2012) ๐Ÿ”ฌ๐Ÿงซ, and another M.Sc. in Environmental and Biotechnological Sciences from NMBU (2006โ€“2009) ๐ŸŒฑ๐Ÿงฌ. He began his academic path with a B.Sc. in Physics from the University of Tromsรธ (2003โ€“2006) ๐Ÿ“˜๐Ÿง . His specialized training includes hydrogen fuel cell design, solar grid optimization, LabVIEW, TEM/SEM, and XRF calibration, equipping him with advanced technical and computational skills ๐Ÿ› ๏ธ๐Ÿ’ป๐Ÿ”.

๐Ÿ’ผ Experienceย 

Mr. Sindre Zeiner-Gundersen brings over a decade of multidisciplinary expertise in hydrogen, ammonia, and advanced energy systems โš›๏ธ๐Ÿ”‹. As Principal Process Engineer at Scatec ASA (2022โ€“), he leads large-scale hydrogen/ammonia infrastructure projects ๐ŸŒโš™๏ธ. At Norconsult AS (2021โ€“2022), he advised on hydrogen technologies and renewable process systems ๐Ÿ’ผ๐Ÿ”ฌ. He co-founded Nornec AS, focusing on nuclear reactor design and instrumentation ๐Ÿ”ง๐Ÿงช. At Norrรธnt AS (2009โ€“2020), he directed a pioneering laser-pulsed hydrogen/deuterium reactor project ๐Ÿš€๐Ÿ’ก. His experience spans engineering design, quantum energy research, and sustainable system optimization across multiple continents ๐ŸŒ๐Ÿ› ๏ธ.

๐Ÿ’ป Project Contributionsย 

Mr. Sindre Zeiner-Gundersen has led and contributed to over a decade of high-impact energy and engineering projects ๐ŸŒโšก. His portfolio includes the design and optimization of green hydrogen and ammonia facilities across Egypt, Oman, and Norway ๐Ÿ—๏ธ๐Ÿ’จ. He played key roles in 100+ MW electrolyzer deployments, waste-to-energy plasma systems, and tidal/wind energy turbines ๐ŸŒŠโ˜€๏ธ. As Chief Scientist and Process Engineer, he delivered scalable solutions for hydrogen production, fusion research, and carbon capture systems ๐Ÿงช๐Ÿ”‹. His strategic work bridges clean energy deployment, hydrogen materials, and advanced propulsion, making him a cornerstone in sustainable technology innovation ๐Ÿš€โ™ป๏ธ.

๐Ÿงฒ Research Focusย 

Mr. Zeiner-Gundersenโ€™s research centers on quantum hydrogen states, nuclear fusion, and plasma-based waste-to-energy systems โš›๏ธ๐Ÿ”‹๐Ÿ”ฅ. He explores ultra-dense hydrogen, focusing on material excitation, radiation shielding, and superconductivity for advanced energy applications ๐Ÿงช๐Ÿงฒ๐Ÿ›ก๏ธ. His groundbreaking studies in propellantless propulsion, fusion catalysts, and turbine optimization merge theoretical physics with real-world energy systems ๐Ÿš€๐ŸŒ. His work supports breakthroughs in green hydrogen infrastructure, renewables, and aerospace energy technologies ๐ŸŒฑโš™๏ธโœˆ๏ธ. Blending visionary science with applied engineering, Mr. Zeiner-Gundersen pioneers frontier technologies that redefine how energy is generated, stored, and utilized across industries ๐ŸŒ๐Ÿ”ง.

๐Ÿ“˜ Publications

A Technical Review of Hydrogen Production Methods, Equipment, and Market Leaders

Author: Sindre Zeiner-Gundersen
Published: November 2024

Unlocking Your Creativity โ€“ The Power of the Theta Brainwave State

Author: Sindre Zeiner-Gundersen
Published: October 2023

Muon-Catalyzed Fusion: Breaking Barriers Toward Scalable Clean Energy Solutions

Author: Sindre Zeiner-Gundersen
Published: October 2023

Exploring the Connection Between Rydberg Matter, Ultra-Dense Hydrogen, Black Holes, and Frozen Stars: A New Paradigm in Compact Quantum States

Author: Sindre Zeiner-Gundersen
Published: October 2023

Harnessing Ultra-Dense Hydrogen and Meson Generators: A New Frontier in Sustainable Energy and Fundamental Physics

Author: Sindre Zeiner-Gundersen
Published: October 2024

Superconductivity and Quantum Effects in Ultra-Dense Hydrogen

Author: Sindre Zeiner-Gundersen
Published: September 2024

Design and Energy Requirements of a Linear Wormhole Accelerator Fueled by Ultra-Dense Hydrogen Annihilation

Author: Sindre Zeiner-Gundersen
Published: September 2024

Dr MICHELE CROZATIER | Materials Science | Women Researcher Award

Dr MICHELE CROZATIER | Materials Science | Women Researcher Award

Dr. Michรจle Crozatier is a senior scientist (DR1-CNRS) at the Centre de Biologie Intรฉgrative, University of Toulouse III โ€“ Paul Sabatier, France. She co-leads the research group โ€œHematopoiesis and Immune Response in Drosophilaโ€ and is internationally recognized for her pioneering work in developmental biology and genetics. With over three decades of experience, she has significantly advanced the understanding of blood cell development, immune response, and stem cell regulation using Drosophila as a model organism. Her work integrates molecular biology, immunology, and stem cell niche dynamics, positioning her as a leader in integrative biomedical research.

Dr MICHELE CROZATIER, MCD/CBI /University Toulouse, France

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๐ŸŽ“ Education

Dr. Michรจle Crozatier earned her Ph.D. in Molecular and Cellular Biology in 1987 from the University of Clermont-Ferrand II, France ๐ŸŽ“๐Ÿงฌ. She later received her HDR (Habilitation to Direct Research) in 2002 from the University Paul Sabatier, Toulouse III, where she has since been a leading figure in developmental biology education and research ๐Ÿงซ๐Ÿ“˜. Her academic training laid the foundation for decades of innovation in stem cell biology, genetics, and hematopoiesis research ๐Ÿ”ฌ๐Ÿง . Dr. Crozatierโ€™s prestigious academic credentials reflect her long-standing commitment to scientific excellence and interdisciplinary education in life sciences ๐Ÿ“š๐ŸŒ.

๐Ÿ›๏ธ Experienceย 

Dr. Michรจle Crozatier is a senior research director (DR1-CNRS) at the Centre de Biologie Intรฉgrative, CNRSโ€“University Paul Sabatier, Toulouse ๐Ÿ›๏ธ๐Ÿ”ฌ. Since 2021, she has co-led the research group โ€œHematopoiesis and Immune Response in Drosophilaโ€ ๐Ÿงฌ๐ŸฆŸ. With a career spanning over three decades, she has held roles from postdoctoral researcher at the Netherlands Cancer Institute ๐Ÿงซ to group leader and platform coordinator at CNRS Toulouse ๐Ÿ”๐Ÿ‘ฉโ€๐Ÿ”ฌ. Her contributions to developmental genetics, immune signaling, and stem cell biology have shaped Drosophila research across Europe and inspired innovation in immunology and niche biology globally ๐ŸŒ๐Ÿง .

๐Ÿ” Grant-Funded Research

Dr. Michรจle Crozatier has led and collaborated on multiple prestigious research projects exploring Drosophila hematopoiesis and immune regulation ๐Ÿงฌ๐Ÿฆ . Her ANR and FRM-funded projects investigated niche-stem cell interactions, vascular influences on blood cell formation, and the microenvironmental control of hematopoiesis under stress ๐Ÿ”๐Ÿฉธ๐ŸŒฑ. Supported by agencies like ANR, FRM, and Ligue contre le Cancer, her work utilizes Drosophila as a model to uncover principles relevant to mammalian systems ๐Ÿงช๐Ÿงซ. These studies bridge developmental biology and immunology, offering key insights into how stem cells respond to signals and environmental changes under physiological and pathological conditions ๐Ÿง โš™๏ธ.

๐Ÿ† Scientific Contribution

Dr. Michรจle Crozatier has an impressive scientific record with 54 publications, including 10 invited reviews ๐Ÿ“๐Ÿ“š. Since 2007, she has authored 20 original research papers, with 10 as last and corresponding author, reflecting her leadership in the field ๐Ÿงฌ๐Ÿ”ฌ. Her research contributions focus on hematopoiesis, stem cell regulation, and immune responses using Drosophila as a model organism ๐Ÿงซ๐Ÿฆ . Her work, featured in top journals like Nature, PNAS, and eLife, has deepened understanding of niche signaling and developmental genetics ๐Ÿง ๐ŸŒฑ. Dr. Crozatier’s output reflects a sustained and influential role in life science research globally ๐ŸŒ๐Ÿ†.

๐Ÿ”ฌ Research Focusย 

Dr. Michรจle Crozatierโ€™s research centers on developmental biology, with a specific focus on hematopoiesis, stem cell regulation, cell signaling, and genetic control mechanisms ๐Ÿงฌ๐Ÿ”ฌ๐Ÿงซ. Using Drosophila melanogaster as a model organism ๐Ÿชฐ, her work explores how blood cells are formed, maintained, and influenced by their microenvironment. She investigates the interplay between stem cells and their niches, uncovering how external and internal signals govern immune cell differentiation and response ๐Ÿ’‰๐Ÿง . Her studies provide valuable insights into fundamental biological processes with implications for understanding human health, immune disorders, and regenerative medicine ๐ŸŒ.

๐Ÿ“š Publications

Hematopoietic progenitor maintenance depends on their direct contacts with the niche
Authors: Tian Y., Morin-Poulard I., Liu X., Vanzo N., Crozatier M.*
Journal: PNAS, 2023, Vol. 120, No. 18, e2217862120

The Drosophila lymph gland acts as a hematopoietic organ and is a model to study blood cell development
Authors: Destalminil-Letourneau M., Morin-Poulard I., Tian Y., Vanzo N., Crozatier M.*
Journal: eLife, 2021; 10:e64672

Immune stress triggers hematopoietic progenitor plasticity and niche remodeling in Drosophila
Authors: Morin-Poulard I., Tian Y., Vanzo N., Crozatier M.*
Journal: Frontiers in Immunology, 2021; 12:719349

Drosophila model for studying the vascular control of hematopoiesis
Authors: Louradour I., Sharma A., Morin-Poulard I., Letourneau M., Vincent A., Crozatier M., Vanzo N.
Journal: eLife, 2017; e25496

Reactive oxygen species control blood progenitor cell fate via regulation of niche signals
Authors: Morin-Poulard I., Sharma A., Louradour I., Vanzo N., Vincent A., Crozatier M.*
Journal: Nature Communications, 2016; 7:11634

Drosophila hematopoiesis under immune challenge
Authors: Oyallon J., Vanzo N., Krzelien J., Morin-Poulard I., Vincent A., Crozatier M.*
Journal: PLoS One, 2016; 11(2):e0148978

Notch and Dpp signaling pathways cooperate to maintain hematopoietic progenitors
Authors: Pennetier D., Oyallon J., Morin-Poulard I., Dejean S., Vincent A., Crozatier M.*
Journal: PNAS, 2012; 109(9): 3389

Prof Junping LIU | Fuzhou University | Best Researcher Award

Prof Junping LIU | Fuzhou University | Best Researcher Award

Prof. Junping Liu is a prominent figure in civil and structural engineering, currently serving as a Professor at the College of Civil Engineering, Fuzhou University, China. With a Ph.D. in Bridge and Tunnel Engineering from Changโ€™an University, his work integrates cutting-edge research in composite bridge structures, ultra-high performance concrete (UHPC), and structural innovation. Prof. Liu has an extensive track record of academic leadership, numerous publications in high-impact journals, and recognition through national scientific achievement awards. His research has significantly advanced both theoretical frameworks and practical applications in modern bridge engineering.

Prof Junping LIU, Fuzhou University, China

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๐ŸŽ“ Educationย 

Prof. Junping Liu holds a Ph.D. in Bridge and Tunnel Engineering from Changโ€™an University (2006โ€“2009), where he specialized in advanced structural systems for infrastructure ๐Ÿ—๏ธ๐ŸŽ“. He earned his M.S. in Structural Engineering from Changsha University of Science and Technology (2002โ€“2005), focusing on composite structures and load-bearing behavior ๐Ÿ“๐Ÿ”ฌ. His academic journey began with a diploma from the College of Civil Engineering and Architecture, Jiangxi Science & Technology Normal University (1995โ€“1998), laying a solid foundation in civil engineering fundamentals ๐Ÿงฑ๐Ÿ“. This educational progression has shaped his expertise in modern bridge design and engineering innovation ๐ŸŒ‰๐Ÿ’ก.

๐Ÿ›๏ธ Experienceย 

Prof. Junping Liu brings over two decades of expertise in civil and structural engineering ๐Ÿ—๏ธ๐Ÿ“. He is currently a Professor at Fuzhou University (2021โ€“present) and previously served as Associate Professor (2013โ€“2020) and Assistant Professor (2010โ€“2013) in the same department ๐ŸŽ“๐Ÿ›๏ธ. From 2017โ€“2018, he was a Visiting Scholar at the University of Toronto, expanding his global research outlook ๐ŸŒ๐Ÿ“š. Earlier in his career, he worked as a Civil Engineer at the An’fu County Construction Bureau (1998โ€“2002), gaining valuable practical experience in infrastructure development and municipal projects ๐Ÿข๐Ÿ› ๏ธ. His career blends academic leadership with real-world engineering impact.

๐Ÿ† Awardย 

Prof. Junping Liu has received prestigious provincial awards for his groundbreaking work in bridge engineering and composite structures ๐Ÿ—๏ธ๐Ÿ“. In 2012, he was honored with the Fujian Provincial Award for Achievement in Science and Technology for his research on the theory and application of steelโ€“concrete composite bridge structures ๐Ÿ”ฉ๐Ÿงฑ. Earlier, in 2010, he received the Gansu Provincial Award for his innovative contributions to the design and performance of rectangular steel tube trusses ๐Ÿ“Š๐Ÿ”ง. These accolades reflect his leadership in developing sustainable, high-performance infrastructure solutions that shape modern civil engineering ๐ŸŒ‰๐Ÿ†.

๐Ÿ“˜ Bookย 

Co-authored by Prof. Junping Liu, this book offers a comprehensive overview of concrete-filled steel tubular (CFST) arch bridges, a key innovation in modern bridge engineering ๐ŸŒ‰๐Ÿงฑ. Published by Springer in 2022, it explores the mechanical behavior, design methods, construction techniques, and performance evaluation of CFST structures ๐Ÿ› ๏ธ๐Ÿ“. It also presents experimental results, numerical simulations, and case studies that demonstrate the durability and load-carrying capacity of these composite systems ๐Ÿ“Š๐Ÿงช.

๐Ÿ”ฌ Research Focus

Prof. Junping Liuโ€™s research focuses on advanced structural systems in civil engineering, with an emphasis on concrete-filled steel tube (CFST) arch bridges and composite bridge technologies ๐ŸŒ‰๐Ÿ”ฉ. He explores the behavior, design, and durability of ultra-high performance concrete (UHPC) for next-generation infrastructure ๐Ÿงฑโš™๏ธ. A key area of his work includes the rehabilitation and strengthening of aging bridges, contributing to sustainable and resilient engineering practices ๐Ÿ› ๏ธโ™ป๏ธ. Through experimental analysis and field applications, his studies enhance the safety, efficiency, and innovation of long-span bridge systems across various environments ๐ŸŒ๐Ÿ”ฌ.

๐Ÿ“š Publications

Flexural Behavior of Steel-UHPC-NC Composite Girders with Different UHPC-NC Interface Treatments

Authors: Jing-Wei Zhu, Yu Pan, Junping Liu, Mostafa Fahmi Hassanein, Hai-Ting Li
Journal: Journal of Bridge Engineering (2025)

Experimental Study on Punching Shear Behavior of Ultra-High-Performance Concrete (UHPC) Slabs

Authors: Junping Liu
Journal: Buildings (2025)

Design Principles and Technological Development of Concrete-Filled Steel Tube Composite Bridges (Review Article)

Authors: Junping Liu

Trial Design of Concrete Arch Bridge with UHPC Butterfly Web

Authors: Liu Junping, Xie Yunpeng, Xiong Shiwei, Wang Daolin, Chen Bao-Chun
Journal: Journal of Changโ€™an University (Natural Science Edition) (2025)

Study on Vehicle-Bridge Coupling and Impact Factor of the Wumengshan Bridge

Authors: Junping Liu