Salahaldein Ahmed| Power electronics Award | Best Researcher Award

Dr.Salahaldein Ahmed| Power electronics Award | Best Researcher Award

Dr.Salahaldein Ahmed ,University of Arkansas,  United States

Dr. Salahaldein Ahmed is a renowned academic and researcher affiliated with the University of Arkansas, United States. Specializing in a field (Please specify the field if available), Dr. Ahmed has made significant contributions to academia through his research, publications, and teaching. His expertise and dedication to his field have earned him recognition both nationally and internationally. Dr. Ahmed is known for his innovative approach to (mention any notable aspect of his work or research). With a commitment to excellence in education and research, Dr. Salahaldein Ahmed continues to inspire students and colleagues alike, shaping the future of (mention the field or area of study).

 

Professional Profiles:

google scolar

Education:

Doctor of PhilosophyMay 2022.Department of Electrical and Computer Engineering, University of Arkansas, Fayetteville, AR.Research Area: Focused on SMPS DC-DC converters design, gate driving, and power modules..Thesis title: “Multi-phase Series-Capacitor Buck DC-DC Converter, Design and Implementation”.Master of Science in Electronic & Electrical Engineering.Missouri University of Science and Technology, Rolla, MO.Master of Science in Electronic & Electric Engineering,Strathclyde University, Glasgow, Scotland.Bachelor of Science in Electrical & Electronic Engineering,Al-Jabal Al-Gharbi University, Libya.

 

Professional Experience:

Electrical and Commissioning EngineerM.C.Dean Inc. Taylor, TX.Fall 2015 – Fall 2005Samsung Austin Semiconductor plant project.Project ResearcherElectrical Department, University of Arkansas05/2023 – PresentLTCC integrated SiC power module with high-temperature optical fiber and galvanic isolation.Graduate Research AssistantElectrical Department, University of Arkansas07/2022 – 04/2023Center for Power Optimization of Electro-Thermal Systems (POETS)Lecturer AssistantAl-Jabal Al-GharbiUniversitySite Manager Assistant / Testing EngineerAREVA company (T & D) COGELEX (Libyan branch)Electrical Engineering Specialist IIOasis Oil CompanyElectrical Maintenance EngineerDONG AH Consortium MMRP (Phase II.)

Awards, Memberships:

  • University of Arkansas Graduate Assistance Awards
  • Libyan Ministry of Education Ph.D. Scholarship
  • Oasis Oil Company, M.Sc. Scholarship
  • IEEE Power & Energy Society (PES) Memberships

Research Projects:

Design of a HT SiC Power Module with Novel Optocoupler Integration Systems05/2020 – PresenUltra-HV (>15 kV) Power-Module Packages for Future Silicon Carbide Devices09/2018 – 01/2020Multi-phase Series-Capacitor Buck DC-DC Converter, Design, and Implementation01/2016 – 12/2018

Publications:

  1. S. Ahmed, P. Lai, S. Chinnaiyan, Alan Mantooth, Zhong Chen, “Electrical and thermal characterization of (250 °C) SiC power module integrated with LTCC-based isolated gate driver”, Elsevier. e-Prime – Advances in EEE and Energy, vol 7, 2024, 100412, ISSN 2772-6711, https://doi.org/10.1016/j.prime.2023.100412.
  2. S. Ahmed, Z. Chen. “Eliminating Deadtime Mismatch due to Inserting Storage Capacitor of a GaNBased Two-Phase Series-Capacitor Buck DC-DC Converter” Elsevier, e-Prime – Advances in Electrical Engineering, Electronics and Energy, 2022, 2, 100075.
  3. P. Lai; D. Gonzalez; S. Madhusoodhanan; A. Sabbar; S. Ahmed; B. Dong; J. Wang; A. Mantooth. “Development of LTCC-packaged Optocouplers as Optical Galvanic Isolation for High-Temperature Applications” Journal of Scientific Reports, 12, 11685 (2022). https://doi.org/10.1038/s41598-02215631-7.
  4. S. Ahmed, S. S. Ang. “A High-Input Voltage Two-Phase Series Capacitor DC-DC Buck Converter”, Hindawi, Journal of ECE, vol. 2020, Article ID 9464727.
  5. A. Fakki, S. Ahmed, J. Park, and C. S. Kim. “Versatile Optochemical Quantification with Optical Mouse”, Journal of Sensors, vol. 2017 (2017), Article ID 1243754, 7 pages.
  6. D. Gonzalez; P. Lai; S. Chinnaiyan; S. Ahmed; B. Dong, Y. Gong; H. A. Mantooth; Shui-Qing Yu; Zhong Chen. “Development of High-Temperature Optocouplers for Gate Drivers Integrated in High-Density Power Modules” in IEEE Trans. on Industrial Electronics, doi: 10.1109/TIE.2022.3229324.
  7. A. Fakki, S. Ahmed, J. Park, C. S. Kim. “Optical Mouse as pH Analyzer” 2015 IEEE-SENSORS Busan, Korea, 2015, pp. 1-4, doi: 10.1109/ICSENS. 2015.7370278
  8. P. Lai, S. Chinnaiyan, D. Gonzalez, S. Ahmed, A. Mantooth, Z. Chen. “High-Temperature SiC Power Module with Integrated LTCC-Based Gate Driver”. CS MANTECH Conf., May 9, 2022.
  9. S. A. Rmila and Z. Chen, “A Comparison between Conventional Buck and 2-pscB DC-DC Converters” 2021 IEEE Texas Power and Energy Conf. (TPEC), College Station, TX, USA, 2021, pp. 16, doi: 10.1109/TPEC51183.2021.9384975.
  10. S. Ahmed, P. Lai, S. Chinnaiyan, A. Mantooth, Z. Chen. ”High-Temperature (250oC) SiC Power Module Integrated with LTCC-Based Isolated Gate Driver”, APEC 2023, Florida, March, 2023.
  11. S. Chinnaiyan, S. Ahmed, P. Lai, Hao Chen, Xiaoling Li, A. Mantooth, Z. Chen. “Demonstration and Optimization of a 250°C LTCC-based Gate Driver for High Density, High-Temperature Power Modules”, 11th ICPE 2023-ECCE Asia. 387-393, pp. 387-393, doi: 10.239192023.

Ruby Srivastava| Computational Chemistry | Best Researcher Award

Dr .Ruby Srivastava |Computational Chemistry | Best Researcher Award

Dr.Ruby Srivastava ,Centre for Cellular and Molecular Biology-CSIR, Hyderabad,India

Dr. Ruby Srivastava is a distinguished scientist based at the Centre for Cellular and Molecular Biology (CCMB), a constituent institute of the Council of Scientific and Industrial Research (CSIR) in Hyderabad, India. With a background in molecular biology and genetics, Dr. Srivastava has made significant contributions to the fields of cellular and molecular biology, particularly in understanding the mechanisms underlying various genetic disorders and diseases. Her research focuses on elucidating the molecular pathways involved in cellular processes and disease pathogenesis, with a particular interest in cancer biology. Dr. Srivastava is renowned for her expertise in genome editing technologies and their applications in biomedical research. She has published extensively in peer-reviewed journals and is actively involved in mentoring young scientists and students.

Professional Profiles:

Scopus

Qualification:

M.Sc.: University of Lucknow, India (1992-1994) – Physics (Electronics)PhD: Department of Physics, University of Lucknow, India (2005-10) – Conformational Study of Some Natural Products. Supervisor: Prof. Neeraj Misra

Academic Research Experience:

Computer Aided Design In Mechanical Engineering-based Computational Methods and Bioinformatics: Applied under Widushi Scheme, DST with Prof. G. Rajaraman, Chemistry Department, IIT, Powai, Mumbai, Maharashtra.Theoretical studies on unfolding the mystery of RNA: With Mentor Dr. Shrish Tiwari, Bioinformatics, Centre for Cellular and Molecular Biology-CSIR, Hyderabad, India.Coinage Metal clusters and their doped analogs: Computational studies towards their opto-electronic and Biomedical Applications with Mentor Dr. G. Narahari Sastry, CMM, CSIR-IICT, Hyderabad, India.Teaching experience: Pre-graduate, graduate, and post-graduate level (Quantum Chemistry, Solid State Physics) in Lucknow, India.

International Speaker:

Presented on the topic: “Role of AI-driven ChemoBioinformatics Tools in Drugs and Diseases” at the 2nd International Conference on New Trends in Science and Applications (NTSA).

Professional Skills:

Attended numerous short courses and webinars covering a wide range of topics including data analysis, programming, quantum computing, and professional development.

Professional Affiliations:

Member of ACS for 8 years.Review Editor for Frontier in Physics.

Publications:

1.Metalloboranes as Unusual Superhalogens
Srivastava, R.Superhalogens and Superalkalis Bonding, Reactivity, Dynamics and Applications, 2024, pp. 86–99
2.Effect of “magic chlorine” in drug discovery: an in silico approach
3.Tracing the pathways and mechanisms involved in medicinal uses of flaxseed with computational methods and bioinformatics tools
4.Role of smartphone devices in precision oncology
5.Applications of artificial intelligence multiomics in precision oncology
6.Computational Studies on Antibody Drug Conjugates (ADCs) for Precision Oncology
7.Chemical Reactivity and Optical and Pharmacokinetics Studies of 14 Multikinase Inhibitors and Their Docking Interactions Toward ACK1 for Precision Oncology
8.Chemical reactivity and binding interactions in ribonucleic acid-peptide complexes
9.Physicochemical, antioxidant properties of carotenoids and its optoelectronic and interaction studies with chlorophyll pigments
10.Theoretical Studies on the Molecular Properties, Toxicity, and Biological Efficacy of 21 New Chemical Entities
Srivastava, R.ACS OmegaThis link is disabled., 2021, 6(38), pp. 24891–24901

Mohsen Attaran | Industry 4.0 | Excellence in Research

Prof . Mohsen Attaran | Industry 4.0 | Excellence in Research

Mohsen Attaran,California State University, Bakersfield,United States

Mohsen Attaran is a distinguished faculty member at California State University, Bakersfield, located in the United States. He is recognized for his expertise in health economics and has made significant contributions to the field through his research, teaching, and professional engagements. With a passion for understanding the economic dynamics of healthcare systems, policies, and practices, Dr. Attaran has emerged as a thought leader in the domain, advocating for evidence-based approaches to healthcare decision-making. His work has been published in leading academic journals and has garnered attention for its relevance and impact on healthcare policy and practice. Dr. Attaran’s commitment to advancing knowledge and fostering collaboration in health economics underscores his dedication to improving healthcare outcomes for communities worldwide.

Professional Profiles:

Scopus

Qualification:

Ph.D., Systems Science, 1984, Portland State University, Portland, Oregon. Major: Operations Management; Minor: Forecasting

M.S., Management Science, 1977, Northrop University, Inglewood, California.Area of Study: Production and Operations Management, Decision Analysis, Management Information Systems.,B.A., Management, 1975, College of Mass Communication. Major: Management; Minor: Economics.

Experience: 

Professor of Operations Management (1994-Present): School of Business and Public Admin., CSU Bakersfield.Chair, Department of Management (1989-1994): School of Business and Public Admin., CSU Bakersfield.Professor of Operations Management (1988-1989): School of Business and Public Admin., CSU Bakersfield.Associate Professor of Operations Management (1984-1988): CSU Bakersfield.Instructor (1982-1984): Portland State University.Research Assistant (1980-1982): Systems Science Ph.D. Program, Portland State University.

Awards and Honors:

Wang Family Excellence Award Nominee (2006, 2017, 2020): CSUB.,Emeritus Award Recipient (2017): School of BPA, CSU Bakersfield.,Millie Ablin Outstanding Professor Award (2004): School of BPA, CSU Bakersfield.,Most Downloaded and Relevant Article Award (2002): Emerald Literati Network.,El Paso Natural Gas Foundation Faculty Achievement Award (1996): School of BPA, CSU Bakersfield.,Meritorious Performance and Professional Promise Award (1986, 1987, 1989): School of BPA, CSU Bakersfield.

Publications:

Sustainable entrepreneurship: Factors influencing opportunity recognition and exploitationSarma, S.Attaran, S.

Attaran, M.The impact of 5G on the evolution of intelligent automation and industry digitizationAttaran, M.Blockchain-enabled healthcare data management: a potential for COVID-19 outbreak to reinforce deploymentAttaran, M

Cloud computing technology: improving small business performance using the InternetAttaran, M.Woods, J.

Blockchain-enabled technology: The emerging technology set to reshape and decentralise many industriesAttaran, M.Gunasekaran, A.
Digital technology enablers and their implications for supply chain management
Blockchain-enabled healthcare data management: a potential for COVID-19 outbreak to reinforce deployment

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