Prof Dr. Milos Kojic | Computational Modeling | Research Excellence Award
Professor of Nanomedicine at Houston Methodist Research Institute, United States
Dr. Milos Kojic is a highly accomplished researcher with an extensive background in mechanical engineering, computational methods, and bioengineering. His career spans over five decades, during which he has made significant contributions to finite element methods (FEM), discrete particle methods, software development, biomechanics, and inelastic material deformation. Dr. Kojic has held multiple prestigious academic and industry positions, authored over 250 papers, and published several key textbooks and monographs. His research and leadership have had a profound impact on both academia and industry, particularly in the fields of nonlinear structural analysis and computational mechanics.
Professional ProfileÂ
Education 🎓
Dr. Milos Kojic has an extensive and distinguished educational background, rooted in mechanical engineering and computational methods. He began his academic journey at the University of Kragujevac in Serbia, where he earned a Bachelor of Science (B.S.) in Mechanical Engineering from 1960 to 1964. His outstanding academic performance during this period earned him a scholarship and a prestigious award as the top student in his class. Continuing his studies, Dr. Kojic pursued a Master of Science (M.S.) in Mechanics at the University of Belgrade from 1964 to 1969, where he deepened his understanding of mechanics and mathematical methods. Seeking to further expand his expertise, Dr. Kojic enrolled at Rice University in Houston, Texas, where he completed his Doctor of Philosophy (Ph.D.) in Mechanical Engineering between 1970 and 1972. His doctoral research focused on the “Influence of Fluid Pressure Gradient on Plasticity of Porous Media,” demonstrating his early commitment to pioneering work in the field of computational mechanics. During his Ph.D. studies, Dr. Kojic received a prestigious Fulbright Foundation Scholarship and an assistantship from Rice University, underscoring his academic excellence and potential. His educational path laid a strong foundation for his remarkable career in research, teaching, and software development, particularly in the areas of finite element methods and biomechanics.
Work Experience 🏛️
Dr. Milos Kojic has had an illustrious career spanning over five decades, with diverse experiences in both academia and industry. His professional journey began at the Faculty of Mechanical Engineering, University of Kragujevac, where he progressed from Assistant Professor to Full Professor, teaching courses in mechanics and computational methods. Over a period of more than 30 years, Dr. Kojic led a team of researchers in developing numerical methods for nonlinear structural analysis, heat conduction, fluid flow, and biomechanics. He also supervised over 30 M.S. and Ph.D. theses, shaping the next generation of engineers. In parallel, Dr. Kojic played a key role in industry, particularly with the Automobile Factory in Kragujevac, where he developed the general-purpose finite element code PAK, which has been widely used for solid and fluid analysis. His work at ADINA R&D in the U.S. further demonstrated his expertise, where he contributed to the integration of stress analysis for plasticity and thermo-plasticity into the ADINA software suite.
Skills 🛠️
Dr. Milos Kojic possesses a diverse and advanced skill set spanning multiple disciplines within mechanical engineering, computational mechanics, and bioengineering. He is an expert in Finite Element Method (FEM), having pioneered its application in nonlinear structural analysis, heat transfer, and fluid mechanics. His work extends to Discrete Particle Methods (DPM), which are essential for modeling complex material behaviors. Dr. Kojic is also highly proficient in software development, having led the creation of the general-purpose PAK finite element code, which has been widely used in both academic and industrial settings. His deep understanding of elasticity and plasticity allows him to address complex material deformation problems, while his expertise in biomechanics has driven innovation in computational models for bioengineering. Additionally, his knowledge of coupled problems—where mechanical, thermal, and fluid dynamics are interconnected—further highlights his ability to tackle multifaceted engineering challenges. Dr. Kojic’s combination of theoretical insight and practical application makes him a leading figure in computational mechanics and bioengineering.
🏆 Awards & Honors:
Dr. Milos Kojic has been recognized with numerous awards and honors throughout his distinguished career. As an undergraduate, he received a scholarship for his B.S. in Mechanical Engineering and graduated as the top student in his class at the University of Kragujevac, earning the university’s prestigious Award for Outstanding Performance. During his Ph.D. studies at Rice University, he was awarded a Fulbright Foundation scholarship and an assistantship, reflecting his academic excellence. In 1983, he secured a research grant as the principal investigator of a Yugoslav-American project in nonlinear finite element analysis in collaboration with MIT. Dr. Kojic has also been honored with special awards for his research contributions to the automobile industry and for his teaching and research efforts at the University of Kragujevac, where he received accolades such as the Award for Contribution in Teaching and Research in 1988. His contributions to the region’s industrial development were recognized by the Chamber of Industry of Kragujevac in 1992, and he was awarded the Diploma of the City of Kragujevac in 1993 for his role in advancing the city and its university. Among his most notable accolades, Dr. Kojic was awarded the Serbian Engineering Society Gold Medal in 2001 and the St. Sava Award for Life Achievements in 2020, celebrating his lifelong contributions to mechanical engineering, computational mechanics, and the development of the University of Kragujevac. His career-long commitment to academic and industrial development has left an indelible mark on both Serbia and the global scientific community.
Research Focus 🔬
Dr. Milos Kojic’s research focus centers on advancing computational methods and their applications in mechanical engineering, bioengineering, and interdisciplinary fields. A pioneer in finite element methods (FEM) and discrete particle methods, he has developed innovative software solutions for nonlinear structural analysis, inelastic material deformation, and coupled problems. His work encompasses elasticity, plasticity, and biomechanics, addressing complex issues like fluid-structure interaction and stress analysis in porous media. Dr. Kojic’s research also extends into bioengineering, where he has made significant strides in computational modeling of biological systems. His multidisciplinary approach integrates traditional mechanical engineering with cutting-edge bioengineering techniques, contributing to both theoretical developments and practical applications in fields such as nanomedicine and biomechanical analysis. Through his extensive research and software development, Dr. Kojic continues to push the boundaries of computational mechanics and bioengineering.
Conclusion:
Dr. Milos Kojic is an outstanding candidate for the Research for Research Excellence Award. His pioneering work in computational mechanics, finite element analysis, and biomechanics has made lasting contributions to both academia and industry. His leadership in the development of software tools like PAK, and his extensive mentorship of the next generation of researchers, exemplifies his commitment to advancing scientific research. Although there is room to explore more contemporary research collaborations, his lifetime achievements, broad expertise, and substantial impact make him an exemplary candidate for the award.
đź“–Publications :Â
Inelastic Analysis of Solids and Structures
Authors: M Kojic, KJ Bathe
Citations: 447
Year: 2005
Computer Modeling in Bioengineering: Theoretical Background, Examples and Software
Authors: M Kojic, N Filipović, B Stojanović, N Kojic
Citations: 354
Year: 2008
A Finite Element Model of Cell Deformation during Magnetic Bead Twisting
Authors: SM Mijailovich, M Kojic, M Zivkovic, B Fabry, JJ Fredberg
Citations: 298
Year: 2002
An Implicit Algorithm within the Arbitrary Lagrangian–Eulerian Formulation for Solving Incompressible Fluid Flow with Large Boundary Motions
Authors: N Filipovic, S Mijailovic, A Tsuda, M Kojic
Citations: 154
Year: 2006
The ‘Effective-Stress-Function’ Algorithm for Thermo-Elasto-Plasticity and Creep
Authors: M Kojic, KJ Bathe
Citations: 154
Year: 1987
Modelling Thrombosis Using Dissipative Particle Dynamics Method
Authors: N Filipovic, M Kojic, A Tsuda
Citations: 129
Year: 2008
Modelling of Muscle Behaviour by the Finite Element Method Using Hill’s Three-Element Model
Authors: M Kojic, S Mijailovic, N Zdravkovic
Citations: 105
Year: 1998
Capillary-Wall Collagen as a Biophysical Marker of Nanotherapeutic Permeability into the Tumor Microenvironment
Authors: K Yokoi, M Kojic, M Milosevic, T Tanei, M Ferrari, A Ziemys
Citations: 96
Year: 2014
A Robust Nanofluidic Membrane with Tunable Zero-Order Release for Implantable Dose-Specific Drug Delivery
Authors: D Fine, A Grattoni, S Hosali, A Ziemys, E De Rosa, J Gill, R Medema, …
Citations: 93
Year: 2010
Hierarchical Modeling of Diffusive Transport through Nanochannels by Coupling Molecular Dynamics with Finite Element Method
Authors: A Ziemys, M Kojic, M Milosevic, N Kojic, F Hussain, M Ferrari, A Grattoni
Citations: 77
Year: 2011
Engineering Multi-Stage Nanovectors for Controlled Degradation and Tunable Release Kinetics
Authors: JO Martinez, C Chiappini, A Ziemys, AM Faust, M Kojic, X Liu, M Ferrari, …
Citations: 76
Year: 2013