CHBE 594

Spring 2016 All Classes

All Classes

Credit: 1 TO 4 hours.

Various advanced topics; generally taken during the second year of graduate study. Typical topics include turbulence, hydrodynamic instability, process dynamics, interfacial phenomena, reactor design, cellular bioengineering, properties of matter at high pressure, and phase transitions.

May be repeated. Prerequisite: Consent of instructor.

CHBE 594 class schedule data for spring 2016
CRN Type Section Time Day Location Instructor Section Details
50328
Lecture
DEL
9:30AM -10:50AM
TR
1027 Lincoln Hall
Dan, A
Leckband, D
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Meets with CHBE 472-Techniques in Biomolecular Engineering
32049
Lecture
HJK
9:30AM -10:50AM
TR
161 Noyes Laboratory
Kong, H
Ren, W
Song, J
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Topic: Biotransport. Meets with CHBE 476
44876
Lecture
HY2
9:30AM -10:50AM
TR
217 Gregory Hall
Warren, S
Yang, H
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Nanostructures and Nanomaterials: Synthesis, Propertis, and Applications. Meets with CHBE 494 HY. This course will introduce the concepts related to the fundamentals and practical methods for the preparation of nanostructured materials. Principles on nucleation and growth and related subjects of interfacial science, crystal structure and essential characterization techniques will be covered. The main emphasis of the course will be the approaches to non-hydrolytic synthesis of uniform and monodispersed nanoparticles, i.e. the control of size, shape, facet, and structure of nanomaterials. The type of nanomaterials include the semiconducting quantum dot, metal, metal oxide and metal alloy nanoparticles. Other related topics include self-assembled nanomaterials, heterogeneous nanostructures, templating approaches and basics of gas-phase synthesis.
32048
Lecture
HZ
11:00AM -12:20PM
TR
135 Mechanical Engineering Bldg
Zhao, H
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Topic: Bioenergy Technology. Meets with ChBE 478
45024
Lecture
MLK
9:00AM -9:50AM
MWF
103 Transportation Building
Kraft, M
Mirshafiee, V
Wang, Y
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Meets with CHBE 471-Biochemical Engineering
32050
Lecture
SAR
11:00AM -12:20PM
TR
G30 Foreign Languages Building
Kumar, M
Rogers, S
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Meets with CHBE 494 SAR. Polymer Rheology Course builds a molecular understanding of polymer characterization and properties and develops a link between the physical chemistry of the microstructure and macroscopic behaviors. The course begins with polymeric descriptions from a physical basis and continues with polymer solution thermodynamics in the context of Flory-Huggins theory. After fundamentals, the course considers polymer characterization from a rheological (flow and deformation) perspective. with overage of dynamics, linear and nonlinear viscoelasticity, the rheology of dilute and networked polymer systems, and time-temperature superposition. The course concludes with models for dilute polymeric suspensions, unentangled polymer melts, entanglements, and the reptation model.
32052
Lecture
YD
11:00AM -12:20PM
TR
1065 Lincoln Hall
Diao, Y
Part of Term:
1
Date Range:
01/19/16-05/04/16
Credit:
4 hours
Section Info:
Meets with CHBE 494 YD. Topic: Assembly of Functional Materials. Covers fundamental principles and industrial applications of self and directed assembly from molecular, nano-, to macro-scale in all classes of materials, in particular molecular and polymeric materials. Topics include meta-stable liquids, solution phase chemistry and kinetics, interfacial stability, interfacial free energies, nucleation theories, crystal growth, aggregation and other phase separation mechanisms, grain growth and grain boundaries, defects formation, flow-induced assembly and aggregation. Lectures will also introduce application of these fundamental principles in the production of a broad range of materials, such as pharmaceuticals, fine chemicals, food products, electronics and solar cells.
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