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School of Science and Engineering: Chemical and Biomolecular Engineering
2008-2009 Academic Year
617
CENG 715 Advanced Reactor Design (3) Lecture 3.
Coupled reaction and transport phenomena as they are involved in major reactor
configurations are studied with attention to data resources and computational
capabilities.
CENG 752 Applied Statistical Mechanics (3) Lecture 3.
The course covers the fundamental principles and methods of statistical
mechanics. Emphasis is placed on applications to thermodynamics, phase
behavior, polymer science and self-assembly phenomena.
CENG 781-782 Advanced Independent Research (3,3)
Research studies performed under faculty tutelage by prior arrangement.
CENG 788 Polymer Rheology (3) Lecture 3.
Non-Newtonian phenomena, material functions and generalized Newtonian
fluids, rheometry, linear viscoelasticity, multiphase systems and mixing.
CENG 789 Adv Macromolecular Chemistry and Materials (3) Lecture 3.
This course will cover various topics on the design, synthesis and applications of
polymers and nanocomposites. The goals of this course are to teach the students
basic polymer science, in particular, polymer synthesis and characterization, and
to expose the students to the current-state-of-art polymer research. The
representative topics include basic polymer synthesis and characterization,
supramolecular assembly, functional polymers, polymeric nanocomposites,
biopolymers, and polymeric devices.
CENG 791-794 Master's Level Research Orientation and Methods (1,1,1,1)
CENG 891-892 Doctoral Level Research Seminar (1,1)
CENG 998 Master's Research
CENG 999 Dissertation Research