Prerequisites: course work in cell biology, genetics, combinatorial chemistry; or consent of instructor; graduate standing
Description: Explores chemical genomic research approaches. Emphasizes critical thinking; advanced planning of time-consuming tests of hypotheses and experimental caveats, trade-offs, and options. Taught in a case-study approach, teams consist of students with engineering, biology, computational sciences, and chemical backgrounds. Teams generate an interdisciplinary chemical genomic research project.
Cross-listing: Cross-listed with CMDB 220.
Credit: May be taken Satisfactory (S) or No Credit (NC) with consent of instructor and graduate advisor.