Expert Details
Mathematical Modeling in Chemical Engineering
ID: 713157
Minnesota, USA
Education
Year | Degree | Subject | Institution |
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Year: 1986 | Degree: PhD | Subject: Chemical Engineering | Institution: M.I.T. |
Year: 1982 | Degree: MS | Subject: Chemical Engineering | Institution: M.I.T. |
Year: 1981 | Degree: BS | Subject: Chemical Engineering | Institution: Cal. Tech. |
Work History
Years | Employer | Title | Department |
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Years: 1988 to Present | Employer: Undisclosed | Title: Assistant Professor | Department: Department of Chemical Engineering and Materials Science |
Responsibilities:Available upon request. |
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Years | Employer | Title | Department |
Years: 1986 to 1988 | Employer: University of California - Lawrence Livermore National Lab | Title: Engineer | Department: Physics Deparment, Atmospheric and Geophysical Sciences |
Responsibilities:Available upon request. |
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Years | Employer | Title | Department |
Years: 1986 to Present | Employer: Undisclosed | Title: Instructor | Department: Department of Chemical Engineering |
Responsibilities:Available upon request. |
Career Accomplishments
Associations / Societies |
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Expert is a member of the American Association for Crystal Growth and the American Institute of Chemical Engineers. |
Awards / Recognition |
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Expert has won the M.I.T. Chemical Engineering Department Special Service Award and the National Science Foundation Presidential Young Investigator Award (1990-95). He is also the recipient of the McKnight-Land Grant Professorship (1991-93). |
Fields of Expertise
chemical engineering, chemical engineering mathematical modeling, chemical process modeling, finite element analysis, heat transfer modeling, Navier-Stokes equation, single crystal, Czochralski process, Bridgman technique, finite element method, computational heat transfer analysis, advanced material processing, computer language, materials science modeling, FORTRAN programming language, heat-transport property, computer algorithm optimization, chemical process analysis, boundary element modeling, computer simulation, chemical reactor design, liquid state mechanics, melting, computer mathematics, supercomputer, chemical reactor control modeling, physics modeling, parallel processing, numerical analysis, number crunching, multiphase heat transfer, mathematics, mathematical model, mass transport, linear algebra, internal flow, heat transfer, heat radiation, heat convection, heat conduction, freezing, fluid mechanics modeling, fluid mechanics, fluid dynamics, dynamic heat transfer, diffusion theory, fluid diffusion, mass transfer, differential equation, crystal growth, continuous reactor, computer application process, computer algebra, computational fluid dynamics, chemical reactor scale-up, chemical reactor, chemical process control, calculus, batch reactor, algebra