Dr. Adewale Sedara | Engineering | Research Excellence Award

Dr. Adewale Sedara | Engineering | Research Excellence Award

Research Associate | University of Wisconsin-Madison | United States

Dr. Adewale Sedara is a distinguished scholar whose work demonstrates sustained excellence in Engineering research, innovation, and applied impact. His expertise spans Engineering design optimization, Engineering simulation, Engineering soil machine interaction, and Engineering systems modeling, with a strong emphasis on data driven Engineering solutions. Dr. Adewale Sedara has authored multiple peer reviewed Engineering publications that collectively reflect rigorous Engineering methodology and practical Engineering relevance, generating notable citation impact within the global Engineering community. His Engineering research integrates advanced computational Engineering tools with experimental Engineering validation, strengthening collaboration across academic and industry focused Engineering environments. Through interdisciplinary Engineering partnerships, his contributions advance sustainable Engineering practices, agricultural Engineering efficiency, and infrastructure Engineering performance. His Engineering outcomes support societal needs by improving resource efficiency, environmental resilience, and technology driven Engineering decision making. Dr. Adewale Sedara continues to influence Engineering scholarship through high quality Engineering dissemination, collaborative Engineering engagement, and impactful Engineering innovation. Google Scholar profile of 113 Citations, 5 h- index, 2 i10- index.

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Featured Publications

Assist. Prof. Dr. Feng Chieh Lin | Engineering | Research Excellence Award

Assist. Prof. Dr. Feng Chieh Lin | Engineering | Research Excellence Award

Research Assisant Professor | National Taipei University of Technology | Taiwan

Assist. Prof. Dr. Feng Chieh Lin is a distinguished scholar whose contributions continue to strengthen global research in engineering with a focus on advanced motor drive systems, power converter control, and intelligent diagnostic technologies. His work integrates engineering principles with practical innovation to address challenges in mechatronics, motor drives, and power electronic applications. Through sustained research leadership, he has advanced engineering methodologies for high performance electric machines, with a particular emphasis on demagnetization diagnosis, deep learning based sampling analysis, and precision converter control. His academic role enables him to merge engineering theory with industrial insight, building collaborations that promote technology transfer and practical implementation. He has contributed to influential research projects that support national and industrial development, demonstrating how engineering solutions can enhance energy efficiency, operational reliability, and sustainable technological growth. His experience in research management and product innovation has further strengthened his ability to guide engineering development across multidisciplinary domains. He continues to publish impactful work that reflects rigorous engineering analysis, forward looking design perspectives, and practical societal relevance. His publications and citations demonstrate consistent global engagement, and his engineering research has supported collaborations between academia, research institutes, and industry partners. His contributions highlight the role of engineering in advancing intelligent control strategies, improving machine performance, and shaping modern power electronic applications. His expertise positioned at the intersection of engineering science and applied innovation reflects a commitment to knowledge creation and societal benefit. He remains dedicated to fostering engineering excellence while contributing to high level academic and industrial research communities through impactful publications and technical leadership. Scopus profile of 355 Citations, 25 Documents, 10 h index.

Profiles: Scopus | ORCID

Featured Publications

1. Chen, C.-S., Lin, C.-J., Liu, J.-F., & Lin, F.-C. (2026). IPMSM demagnetization fault diagnosis based on ultra-low sampling frequency data re-indexing restoration method. International Journal of Data Science and Analytics.

2. Chen, C.-S., Wu, Y.-Y., Lin, C.-J., & Lin, F.-C. (2025). Reindexing method for ultralow-sampling-rate data used in the diagnosis of demagnetization faults in IPMSM. IEEE Transactions on Instrumentation and Measurement.

3. Chen, C. S., Lin, C. J., Lin, Y. J., & Lin, F. C. (2025). Application of multi-objective optimization for path planning and scheduling: The edible oil transportation system framework. Applied Sciences.

4. Chen, C. S., Lin, F. C., Lin, C. J., & Wu, P. H. (2024). The improved ROS-based MTAR navigation framework for service robot: Motion trajectory analysis regulator. IEEE Access.

5. Chen, C.-S., Lin, C.-J., Yang, F.-J., & Lin, F.-C. (2024). Model design of inter-turn short circuits in internal permanent magnet synchronous motors and application of wavelet transform for fault diagnosis. Applied Sciences.

Assoc. Prof. Dr. Mohammad Silani | Engineering | Research Excellence Award

Assoc. Prof. Dr. Mohammad Silani | Engineering | Research Excellence Award

Associate Professor | Isfahan University of Technology | Iran

Assoc. Prof. Dr. Mohammad Silani is a distinguished figure in Engineering research, widely recognized for his contributions to computational mechanics, multiscale material modeling, fracture mechanics, and advanced numerical simulations. With an extensive background in Engineering applications, his work integrates molecular dynamics, finite element analysis, stochastic modeling, and phase-field theory to address complex material behavior in composite and nanocomposite structures. His Engineering research extends across multiscale modeling, machine learning–assisted simulations, and high-fidelity experimentation, establishing him as a leading contributor to Engineering innovation in computational materials science. He has served in multiple advanced academic and scientific capacities, has supervised doctoral and postgraduate research, and has actively collaborated internationally with institutions and Engineering research groups across Europe, Asia, and Australia. His scholarly output reflects a strong Engineering foundation, comprising many high-impact journal publications, conference contributions, and collaborations that have advanced computational Engineering and numerical methodology. His work on nanostructures, wear modeling, fatigue crack propagation, and hydrogen embrittlement demonstrates a deep Engineering perspective in bridging theory, simulation, and physical behavior. As a reviewer for numerous international journals, his expertise supports the global Engineering community through critical evaluation and scientific refinement. His research continues to influence structural integrity, biomaterial mechanics, lattice optimization, composites Engineering, mechanical design, and simulation-driven material development at multi-scale and multi-physics levels. His sustained contributions to Engineering research, academic leadership, and scientific cooperation reflect a career dedicated to advancing knowledge, improving computational frameworks, and developing reliable Engineering tools for industrial and scientific application. His work stands as a reference point for emerging researchers in Engineering modeling and mechanical material characterization, highlighting precision, innovation, and impactful academic leadership in modern Engineering science. Google Scholar profile of 3041 Citations, 22 h-index, 32 i10-index.

Profile: Google Scholar

Featured Publications

1. Koupaei, F. B., Javanbakht, M., Silani, M., Mosallanejad, M. H., & Saboori, A. (2026). Mechanics-based phase-field model for directional microstructure evolution: Multiscale finite element simulation of IN718 in DED process. Computational Materials Science, 261, 114342.

2. Sabetghadam-Isfahani, A., Silani, M., Javanbakht, M., & others. (2025). Molecular dynamics analysis of temperature and shear stress effects on nickel bi-crystal amorphization. Iranian Journal of Chemistry and Chemical Engineering, e732047.

3. Varshabi, N., Jafari, M., Jamshidian, M., Silani, M., Thamburaja, P., & Rabczuk, T. (2025). Phase-field modeling of stressed grain growth in nanocrystalline metals. International Journal of Mechanical Sciences, 110951.

4. Saffari, M. M., Javanbakht, M., Silani, M., & Jafarzadeh, H. (2025). Stress analysis of nanostructures including nanovoids and inclusions based on nonlocal elasticity theory with different kernels. International Journal of Applied Mechanics, 17(6), 2550041.

5. Sabetghadam-Isfahani, A., Javanbakht, M., & Silani, M. (2025). Atomistic-informed phase-field modeling of edge dislocation evolution in Σ3, Σ9, and Σ19 silicon bi-crystals. Computational Materials Science, 254, 113893.

Sarra Senouci | Engineering | Editorial Board Member

Mrs. Sarra Senouci | Engineering | Editorial Board Member

Sarra Senouci | University of Electronic Science and Technology of China | Algeria

Mrs. Sarra Senouci is an active contributor to contemporary Engineering research, recognized for her commitment to advancing scholarly inquiry and strengthening collaborative scientific networks. Her work reflects a rigorous approach to Engineering challenges, integrating analytical methodologies with practical applications that support innovation across multiple Engineering domains. Mrs. Sarra Senouci has contributed to the broader Engineering community through focused research outputs that highlight both technical depth and interdisciplinary relevance. Her publications demonstrate a clear engagement with emerging Engineering problems, addressing key gaps and offering solutions that align with global priorities in Engineering development, sustainability, and technological advancement. Throughout her professional journey, Mrs. Sarra Senouci has participated in collaborative initiatives that enhance the visibility and applicability of Engineering research. Her scholarly activities reinforce the importance of Engineering as a driver of societal progress, with particular emphasis on structured problem-solving and evidence-based approaches. By contributing to peer-reviewed scientific work, she supports the continuous growth of Engineering knowledge and the dissemination of high-quality research findings. Her academic presence underscores a dedication to Engineering excellence, methodological precision, and constructive international collaboration. Mrs. Sarra Senouci’s research interests intersect with multiple branches of Engineering, allowing her to engage with diverse scientific communities and contribute meaningfully to multidisciplinary Engineering dialogues. Her work aligns with global standards in Engineering innovation, reflecting a strong orientation toward impactful research that supports technological and societal advancement. As a researcher, she emphasizes integrity, analytical clarity, and a sustained commitment to Engineering-driven solutions that benefit both academic and industrial ecosystems. Her contributions continue to reinforce the role of Engineering as a foundational pillar of modern scientific progress. Google Scholar profile of 4 Citations, 1 h-index, 0 i10-index.

Profile: Google Scholar

Featured Publications

1. Senouci, S., Madoune, S. A., Senouci, M. R., Senouci, A., & Tang, Z. (2025). A novel PRNG for fiber optic transmission. Chaos, Solitons & Fractals, 192, 116038.

2. Madoune, S. A., Senouci, S., Dingde, J., & Senouci, A. (2024). Deep convolutional neural network-based high-precision and speed DDOS detection in SDN environments. In 2024 21st International Computer Conference on Wavelet Active Media.

3. Madoune, S. A., Senouci, S., Setitra, M. A., & Dingde, J. (2024). Toward robust DDOS detection in SDN: Leveraging feature engineering and ensemble learning. In 2024 21st International Computer Conference on Wavelet Active Media.

4. Madoune, S. A., Senouci, S., De Jiang, D., Senouci, M. R., Daoud, M. A., & others. (2025). A novel approach for real-time DDoS detection in SDN using dimensionality reduction and ensemble learning. Journal of Information Security and Applications, 94, 104195.

5. Senouci, S., Madoune, S. A., Senouci, M. R., Senouci, A., & Zhangchuan, T. (2024). A new chaotic based cryptographically secure pseudo random number generator. In 2024 21st International Computer Conference on Wavelet Active Media.

Almara Aliyeva | Nanotechnology | Editorial Board Member

Ms. Almara Aliyeva | Nanotechnology | Editorial Board Member

Researcher | Baku State University | Azerbaijan

Ms. Almara Aliyeva is a distinguished researcher whose work demonstrates sustained excellence in Nanotechnology and its diverse scientific applications. Her contributions reflect a deep commitment to advancing Nanotechnology through rigorous investigation, multidisciplinary collaboration, and impactful scholarly output. She has authored numerous publications in reputable journals and has accumulated significant citations that highlight the relevance and influence of her research within the global Nanotechnology community. Through her extensive engagement in projects and collaborative initiatives, Ms. Almara Aliyeva has positioned herself as a respected figure in Nanotechnology research, contributing to scientific progress and technological innovation. Her research activities integrate Nanotechnology with advanced materials development, experimental analysis, and emerging scientific methodologies. This ongoing commitment has strengthened the role of Nanotechnology in solving complex scientific challenges and supporting the development of high performance materials that contribute to technological progress. Her involvement in collaborative research teams further enhances the reach of Nanotechnology by fostering knowledge exchange and encouraging new scientific perspectives. These efforts have enabled her to participate in impactful research that supports societal advancement through Nanotechnology based solutions and innovations. Ms. Almara Aliyevacontinuously contributes to the scientific community through active participation in academic discussions, peer review engagements, and interdisciplinary partnerships. Her work demonstrates the transformative potential of Nanotechnology in modern research environments and emphasizes the importance of integrating Nanotechnology into broader scientific and technological frameworks. Her scholarly activities and contributions strengthen the global understanding of Nanotechnology and reinforce its value in addressing scientific, environmental, and industrial challenges. Through her dedication, Ms. Almara Aliyeva remains an influential contributor to the advancement of Nanotechnology and its expanding role in contemporary research.

Profile: SciProfiles

Featured Publication

1. Rahimli, A., & Jafarov, M. (2025). Effect of nanoparticle concentration on the crystallinity, vibrational dynamics and morphology of PS/TiO₂ nanocomposites. Physical Chemistry Chemical Physics.

2. Rahimli, A., & Jafarov, M. (2025). Effect of nanoparticle concentration on the crystallinity, vibrational dynamics, and morphology of PS/TiO₂ nanocomposites. Physics of the Solid State.

Mohammadmahdi Negaresh | Engineering | Editorial Board Member

Mr. Mohammadmahdi Negaresh | Engineering | Editorial Board Member

Polymer Researcher | Amirkabir University of Technology | Iran

Mr. Mohammadmahdi Negaresh is an accomplished researcher whose work reflects a strong commitment to Engineering innovation, Engineering advancement, and Engineering oriented problem solving across multidisciplinary research environments. His contributions demonstrate a sophisticated understanding of Engineering principles, with a focus on developing solutions that support scientific progress and practical applications. His scholarly outputs highlight a consistent engagement with Engineering methodologies, and his collaborations underscore the value he brings to collective scientific endeavors in Engineering driven fields. As an active contributor to high quality publications, he has authored multiple Engineering related studies that extend technical knowledge and strengthen global research dialogue. His work represents a meaningful intersection of Engineering practice and scientific inquiry, emphasizing analytical depth, research precision, and purposeful academic direction. Through his involvement in impactful collaborative projects, he demonstrates how Engineering insights can enhance societal development, industrial capability, and technological growth. His research contributions show continued refinement of Engineering concepts applied to real world challenges, offering clear evidence of professional dedication and scholarly integrity. With an established record of publications and citations within reputable academic sources, he remains a recognized contributor whose work promotes Engineering excellence and Engineering based solutions with sustained relevance. His scientific engagement reflects a strong alignment with international research standards, reinforcing the importance of Engineering competence within collaborative networks and research communities. His ability to integrate Engineering knowledge with emerging research themes demonstrates both academic maturity and technical expertise. This professional profile positions him as a valuable figure who continues to support the progression of Engineering scholarship and its broader societal impacts with clarity, quality, and commitment. Scopus profile of 15 Citations, 4 Documents, 3 h index.

Profile: Scopus

Featured Publication

1. Poly(lactic acid)/poly(ε-caprolactone) blends: Separate effects of nanocalcium carbonate and glycidyl methacrylate on interfacial characteristics. Journal of Thermoplastic Composite Materials. (2024).

Assoc. Prof. Dr Elnaz Khodapanah | Engineering | Editorial Board Member

Assoc. Prof. Dr Elnaz Khodapanah | Engineering | Editorial Board Member

Assoc. Prof. Dr Elnaz Khodapanah reflects a distinguished record of contributions shaped by sustained commitment to Engineering research, Engineering innovation, and Engineering-driven societal advancement. As an active scholar in the global Engineering community, Assoc. Prof. Dr Elnaz Khodapanah has established a strong research footprint through impactful studies that integrate Engineering principles with applied scientific inquiry, resulting in high-quality outputs recognized across international platforms. Her body of work demonstrates consistent engagement with multidisciplinary Engineering collaborations, leading to publications that advance methodological rigor and strengthen the broader relevance of Engineering solutions for contemporary challenges. Through productive partnerships with research teams and institutional networks, she has expanded the scope and visibility of Engineering knowledge, with her publications receiving meaningful scholarly attention aligned with the evolving frontiers of Engineering practice. Her research contributions reflect a commitment to bridging theoretical Engineering foundations with practical outcomes that yield long-term societal value. The scholarly influence of Assoc. Prof. Dr Elnaz Khodapanah continues to grow through active participation in Engineering communities, strategic involvement in collaborative Engineering projects, and sustained dissemination of high-impact findings that reinforce the essential role of Engineering in global scientific progress. Her contributions exemplify the intellectual depth, professional integrity, and forward-looking perspective expected within the international Engineering landscape, ensuring continued impact across multiple domains enriched by Engineering excellence. Presented in alignment with recognized academic standards, her professional influence is further reflected through the Scopus profile of 570 Citations, 43 Documents, 13 h-index.

Profile: Scopus

Featured Publications

1. Experimental investigation of silica nanoparticle morphology on interfacial properties, diffusion behavior, and oil recovery in carbonate reservoirs: Insights into spherical and rod-shaped particles. Journal of Molecular Liquids. (2025).

2. An evaluation of the viscoelastic properties of nanosized preformed particle gels. ACS Omega. (2025)

3. Comprehensive review of hybrid chemical enhanced oil recovery methods: synergistic mechanisms, applications, and insights into chemical-based water alternating gas techniques. (2025).

4. Evaluation of nanosilica morphology: Effects on nanofluid stability and interaction with carbonate rock surfaces. Journal of Cluster Science. (2024).

Dr. Jagadish | Engineering | Best Researcher Award

Dr. Jagadish | Engineering | Best Researcher Award

Assistant Professor | Indian Statistical Institute, Bengaluru Centre | India

Dr. Jagadish is a distinguished researcher and Assistant Professor at the Indian Statistical Institute, Bangalore Centre, known for his influential contributions in Engineering fields encompassing Industrial Engineering, Production Engineering, and Mechanical Engineering. His academic and research accomplishments reflect a deep commitment to advancing Engineering principles through innovation, optimization, and sustainable development. With a strong foundation in Engineering optimization techniques, Engineering management, and Engineering modeling, Dr. Jagadish has established a reputation for excellence in multidisciplinary Engineering research. He has published 52 documents and accumulated 853 citations, achieving an h-index of 15 on Scopus, underscoring the impact and visibility of his scholarly work. A prolific author, Dr. Jagadish has contributed significantly to high-impact international journals and has authored and co-authored numerous Engineering books and book chapters published by leading academic publishers such as Springer, IGI Global, and Elsevier. His Engineering research spans optimization in green manufacturing, additive manufacturing, sustainable composites, and decision-making methods in production systems. He has also collaborated extensively with academic and industrial partners across multiple Engineering disciplines, bridging theoretical analysis with practical applications. His Engineering consultancy and project leadership demonstrate a strong connection between academic research and industrial implementation, particularly in areas such as quality management, Six Sigma applications, and process optimization. Dr. Jagadish’s leadership in Engineering training programs, conferences, and applied research projects has contributed greatly to capacity building and knowledge transfer in the Engineering community. His research integrates computational methods, experimental design, and sustainable approaches, reflecting the evolving role of Engineering in addressing environmental and industrial challenges. Through his consistent scholarly excellence and dedication to innovation, Dr. Jagadish continues to advance the frontiers of modern Engineering, contributing meaningfully to both academia and society.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

1. Performance Analysis and Optimization of Different Electrode Materials and Dielectric Fluids on Machining of High Carbon High Chromium Steel in Electrical Discharge Machining. (2022). Proceedings of the National Academy of Sciences India Section A: Physical Sciences.

2. Evaluation of Machining Properties of Short Bamboo Fiber-Based Green Composites Using CNC Drilling Process. (Conference Paper).

3. Performance Evaluation of Sand Coated Absorber Based Solar Air Collector. (2021). Journal of Building Engineering.

4. Energy, Exergy, and Environmental (3E) Analyses of Reverse and Cross-Corrugated Trapezoidal Solar Air Collectors: An Experimental Study. (2021). Journal of Building Engineering.

5. A Soft Computing-Based Study on WEDM Optimization in Processing Inconel 625. (2021). Neural Computing and Applications.

Jonathan Stromberg | Engineering | Best Researcher Award

Mr. Jonathan Stromberg | Engineering | Best Researcher Award

Undergraduate Research | University of Idaho | United States

Mr. Jonathan Stromberg is an emerging talent in the field of engineering, demonstrating exceptional commitment to research, innovation, and interdisciplinary collaboration. With a solid foundation in biological engineering, his work bridges advanced engineering techniques with environmental and sustainability challenges. His contributions to PFAS and wastewater treatment research showcase deep analytical ability, where he co-authored multiple peer-reviewed publications focused on PFAS defluorination and the optimization of plasma reactor performance. His engineering expertise extends to managing complex analytical systems such as LC-MS, IC, and UV-Vis for evaluating degradation mechanisms, which reflects a practical understanding of applied engineering science. As the lead of a NASA-affiliated wastewater engineering project, Mr. Stromberg has guided a multidisciplinary team in developing an ammonia and biochar-based treatment system, integrating performance-driven engineering design with real-world environmental applications. Beyond laboratory work, he demonstrates leadership and innovation as President of Product Development for a nonprofit organization, directing engineering design and commercialization strategies for a patented drink-safety dispenser. His experience spans project management, technical documentation, and system integration, essential skills for high-level engineering problem-solving. Mr. Stromberg’s global outlook, shaped by his volunteer engineering efforts in Kenya, underscores his dedication to sustainable development and societal impact. His proficiency with tools such as CAD, SolidWorks, MATLAB, and Python reflects a robust engineering skillset adaptable to diverse technological domains. His academic excellence and mentorship as a Supplemental Instruction Leader further highlight his ability to apply engineering principles to educational and collaborative contexts. Mr. Jonathan Stromberg’s professional trajectory exemplifies the integration of innovative engineering research, leadership, and global responsibility, contributing meaningfully to scientific advancement and environmental sustainability. Scopus profile of 287 Citations, 5 Documents, 4 h-index.

Profile: Scopus

Featured Publication

1. Dynamics and equilibrium of heme axial ligation in mesoporous nanocrystalline TiO₂ thin films. (2010). Inorganic Chemistry.

Dr. Deepakkumar R | Engineering | Best Researcher Award

Dr. Deepakkumar R | Engineering | Best Researcher Award

Assistant Professor | Vellore Institute of Technology | India

Dr. Deepakkumar R is a distinguished Engineering academician and researcher with expertise in Computational Fluid Dynamics, Mechanical Engineering, and Thermal Engineering. His Engineering career reflects deep engagement with teaching, research, and innovation in advanced Engineering systems such as heat exchangers, solar air heaters, hydrogen storage, and fuel cells. He has contributed significantly to Engineering research through his studies on vortex shedding, phase change materials, and multiphase flow analysis. His professional experience includes serving at leading Engineering institutions such as VIT Vellore, SRM Institute of Science and Technology, NIT Andhra Pradesh, and IIITDM Kancheepuram, where he guided numerous Engineering projects and doctoral candidates. His Engineering education spans from a Bachelor’s in Mechanical Engineering to a Ph.D. in Mechanical Engineering from IIITDM Kancheepuram, emphasizing Computational Engineering and simulation of fluid flows. Dr. Deepakkumar’s research skills include expertise in CFD tools like ANSYS Fluent, CATIA, Tecplot, and MATLAB, combined with experimental proficiency in wind and water tunnel analysis. His contributions to Engineering education and innovation have been recognized through multiple awards, including the “Outstanding Research Award” and “Best Research Paper Award,” underlining his excellence in Engineering research and pedagogy. His innovative work also extends to design registration in heat exchanger technology, showcasing his Engineering creativity and applied problem-solving capability. Overall, Dr. Deepakkumar R exemplifies the integration of Engineering research, teaching, and technology-driven innovation, continuously contributing to sustainable and renewable energy systems within the broader Engineering community. His Scopus profile of 184 Citations, 22 Documents, 7 h-index.

Profiles: Scopus | Google Scholar | ORCID

Featured Publications

1. Deepakkumar, R., & Jayavel, S. (2017). Air side performance of finned-tube heat exchanger with combination of circular and elliptical tubes. Applied Thermal Engineering, 119, 360–372.

2. Deepakkumar, R., Jayavel, S., & Tiwari, S. (2017). Cross flow past circular cylinder with waviness in confining walls near the cylinder. Journal of Applied Fluid Mechanics, 10(1), 183–197.

3. Ramalingam, S., Babu, D., Deepakkumar, R., & Malinee, S. (2022). Effect of Moringa oleifera biodiesel–diesel–carbon black water emulsion blends in diesel engine characteristics. Energy Reports, 8, 9598–9609.

4. Deepakkumar, R., & Jayavel, S. (2018). Effect of local waviness in confining walls and its amplitude on vortex shedding control of the flow past a circular cylinder. Ocean Engineering, 156, 208–216.

5. Ramalingam, S., Babu, D., Santhoshkumar, A., Deepakkumar, R., & Ravikanth, D. (2022). Impact of exhaust gas recirculation and split injection strategy combustion behavior on premixed charge compression ignition engine fuelled with moringa oleifera methyl ester. Fuel, 319, 123702.