CHBE 594

Fall 2022 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 fall 2022
CRN Type Section Time Day Location Instructor Section Details
49475
Lecture
DEL
11:00AM -12:20PM
TR
245 Altgeld Hall
Leckband, D
Thompson, G
Part of Term:
1
Date Range:
08/22/22-12/07/22
Credit:
4 hours
Section Title:
Techniques in Biomolecular Eng
Section Info:
Techniques in Biomolecular Engineering. Meets with CHBE 472 A. Engineering principles that underlie many of the powerful tools in biotechnology and how scientific discoveries and engineering approaches are used in current industrial applications. Physical principles that govern self-organization and repair in biological systems; tools developed to characterize, manipulate, and quantify biomolecules; use of analytical tools and genetic manipulation in modern bioengineering and biotechnology applications.
Restriction(s):
Restricted to Graduate - Urbana-Champaign.
77152
Lecture
DS
12:30PM -1:50PM
TR
165 Noyes Laboratory
Chiang, H
Jackson, N
Shukla, D
Part of Term:
1
Date Range:
08/22/22-12/07/22
Credit:
4 hours
Section Title:
Chemical Data Science & Engrg
Section Info:
Meets with CHBE 494 DS/CHEM 492. This course serves as an introduction to data-driven and machine learning techniques in chemistry and chemical engineering. Surveyed topics will include standard regression and classification algorithms, neural network architectures, unsupervised learning, clustering, molecular featurization techniques and best practices for machine learning. The course serves as a practical introduction to these techniques in Python using existing chemical datasets.
Restriction(s):
Restricted to Graduate - Urbana-Champaign.
46151
Lecture
DSG
11:00AM -11:50AM
MWF
162 Noyes Laboratory
Guironnet, D
Part of Term:
1
Date Range:
08/22/22-12/07/22
Credit:
4 hours
Section Title:
Advanced Polymer Chemistry
Section Info:
This course is designed to explore in detail the different synthetic methodologies employed in polymer synthesis. The goal is to gain a broad knowledge of the synthesis methods employed in polymer chemistry field as well as reviewing the motivation behind each of these advances. The course will first provide a rapid overview of general concepts in polymer science including synthesis, characterization, polymerization kinetics and polymer characterization. We will then cover all the polymerization mechanisms employed. After this review is over, we will investigate the most significant advances of the last two decades in polymer chemistry. The lectures will be divided by specific reaction mechanisms and fundamental concepts. No prerequisites are mandatory for this class, however, prior knowledge in organic chemistry and polymer chemistry would be beneficial.
Restriction(s):
Restricted to Graduate - Urbana-Champaign.
46979
Lecture
SAR
11:00AM -12:20PM
TR
1065 Lincoln Hall
Rogers, S
Part of Term:
1
Date Range:
08/22/22-12/07/22
Credit:
4 hours
Section Title:
Polymer Rheology
Section Info:
Polymer Rheology Course builds a molecular understanding of polymer characterization and properties and develops a link between the physical chemistry of the microstructure and the 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. Meets with CHBE 494 SAR.
Restriction(s):
Restricted to Graduate - Urbana-Champaign.
31571
Lecture
YD
9:30AM -10:50AM
TR
163 Noyes Laboratory
Diao, Y
Part of Term:
1
Date Range:
08/22/22-12/07/22
Credit:
4 hours
Section Title:
Assembly of Functional Materia
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.
Restriction(s):
Restricted to Graduate - Urbana-Champaign.
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