Chemistry
Catalog pages 201-213
Subject abbreviation: CHEM College of Natural and Agricultural Sciences
Leonard J. Mueller, Ph.D., Chair Chia-En A. Chang, Ph.D., Vice Chair Department Office, 248 Chemical Sciences
- (951) 827-3789; chem.ucr.edu
Distinguished Professors Michael Pirrung, Ph.D. Richard Schrock, Ph.D. Yinsheng Wang, Ph.D. Francisco Zaera, Ph.D.
Professors Christopher J. Bardeen, Ph.D. Ludwig Bartels, Ph.D. Gregory J.O. Beran, Ph.D. Chia-En A. Chang, Ph.D. Quan “Jason” Cheng, Ph.D. Pingyun Feng, Ph.D. Boniface Fokwa, Ph.D. Richard Hooley, Ph.D. Ryan Julian, Ph.D. Vincent Lavallo, Ph.D. Leonard J. Mueller, Ph.D. Christopher Y. Switzer, Ph.D. Kathryn Uhrich, Ph.D. Yadong Yin, Ph.D. Jingsong Zhang, Ph.D. Wenwan Zhong, Ph.D.
Professors Emeriti David F. Bocian, Ph.D. Eric L. Chronister, Ph.D. Walter J. Deal, Ph.D. M. Mark Midland, Ph.D. Robert C. Neuman, Jr., Ph.D. William H. Okamura, Ph.D. William H. Orttung, Ph.D. Dallas L. Rabenstein, Ph.D. Christopher A. Reed, Ph.D. Gary W. Scott, Ph.D. Charles L. Wilkins, Ph.D. Richard M. Wing, Ph.D.
Associate Professors W. Hill Harman, Ph.D. De-en Jiang, Ph.D. Catharine Larsen, Ph.D.
Assistant Professors Ana Bahamonde, Ph.D. Matthew Conley, Ph.D. James Davies, Ph.D. Joseph Genereux, Ph.D. Kevin Kou, Ph.D. Timothy Su, Ph.D. Min Xue, Ph.D. Haofei Zhang, Ph.D. Linlin Zhao, Ph.D.
**
Lecturer with Security of Employment Jack Eichler, Ph.D.
Lecturer with Potential for Security of Employment Matthew Casselman, Ph.D. Cooperating Faculty Roya Bahreini, Ph.D. (Atmospheric Science) Richard J. Debus, Ph.D. (Biochemistry) Russ Hille, Ph.D. (Biochemistry) Jocelyn G. Millar, Ph.D. (Entomology) Mihri Ozkan, Ph.D. (Electrical and Computer Engineering) Giulia Palermo, Ph.D. (Bioengineering) Maurizio Pelleccia, Ph.D. (Biomedical Sciences) Valentine Vullev, Ph.D. (Bioengineering)
Major
The Department of Chemistry offers a B.S. and B.A. degree in Chemistry and a B.S. in Chemistry with a Chemical Physics option or an Environmental Chemistry option.
The B.S. program is approved by the American Chemical Society and is designed for students interested in a professionally oriented major leading most often to a career or advanced study in chemistry.
The B.A. program is designed for students who wish to obtain a broad educational back- ground with less intensive emphasis on chem- istry. In this program, students have increased ease in meeting requirements for such areas as premedical, predental, or prepharmaceu- tical science; education; and administration. Check careers.ucr.edu.
A Chemical Physics option is available for students who wish to prepare for admission to a graduate program in chemical physics.
The Environmental Chemistry option is available for students who wish to become familiar with environmental processes and problems related to air, water, and soil, and to apply their chemical knowledge working in environmental-related areas. This option also prepares students for admission to a graduate program emphasizing environmental chemistry.
Pre-Health Science Chemistry majors in either the B.S. or B.A. programs can prepare for admission to medical, pharmacy, or dental schools by carefully planning their programs of study. Students planning to apply for post-graduate studies in the health sciences should make it a special point to consult with their Chemistry advisor early in their studies at UCR. Check hpac.ucr.edu.
Teaching Credential
Teachers in the public schools in California must have a credential approved by the State Commission on Teacher Credentialing. The credential requires an undergraduate major, baccalaureate degree, and completion of a graduate credential program such as that offered by the School of Education at UCR (see Education in this catalog and education.ucr. edu).
UCR has an approved undergraduate pro- gram for Chemistry majors who plan to get a Multiple Subjects Credential and teach in the elementary (K-6) grades. A breadth of course work is necessary, in addition to the speci- fied requirements for the major. Students are urged to start early, preferably as freshmen, selecting courses most helpful for this career. Details and counseling on the Bridge to Teaching Program, a preparation program for the multiple subjects credential, are available in the Office of Interdisciplinary Programs, 3111 Interdisciplinary Building South (INTS), (951) 827-1584; lsnid.ucr.edu. Details and counseling on other programs are available in the School of Education and https://education.ucr.edu/ teacher-education.
UCR does not yet have a state-approved undergraduate program for chemistry majors who wish to teach at the secondary level. The Teaching Credential in Science, chemistry emphasis, is required for chemistry teach- ers, grades 7-12. Students who plan to get this credential must take the commission’s subject-matter assessment examination and should make certain their academic pro- gram includes preparatory course work. The examination includes chemistry in depth and general science with introductory, college-level biology, chemistry, physics, and geoscience (geology, meteorology, oceanography, astron- omy).
Further information about courses, require- ments, and examinations can be obtained in orientation meetings and the School of Educa- tion (1124 Sproul Hall).
California Teach-Science/Mathematics Initia- tive (CaTEACH-SMI) California Teach-Science Mathematics Initiative (CaTEACH-SMI) has a goal of addressing the critical need of highly qualified K-12 science and mathematics teachers in California. With an economy increasingly reliant on science, technology, engineering, and mathematics (STEM) and the anticipated large scale retire- ment of qualified teachers, this is an essential time to explore and prepare for a career in teaching science or mathematics.
CaTEACH-SMI at UCR offers undergraduate students paid/unpaid opportunities, such as the SMI & Alpha Center Apprentice Programs, to explore STEM teaching as a career option. Through CaTEACH-SMI, students receive ad- vising and mentoring to prepare for entrance into an intern teaching credential program while diligently coordinating with academic advisors to ensure completion of STEM degree requirements. The CaTEACH-SMI Resource Center provides future STEM teachers with ma- terial and financial resources which includes the National Science Foundation (NSF) Noyce Scholarship Program to promote planning and professional development towards a science/ mathematics education career.
For more information about the CaTEACH-SMI program, please visit smi.ucr.edu, the Resource Center at 1315 Pierce Hall, or on Facebook at facebook.com/ScienceMathInitiativeAtUcr.
Transfer Students
Students transferring to the Chemistry major must complete courses comparable to the following one-year sequences before they transfer:
CHEM 01LB, CHEM 01LC, each course com- pleted with a grade of “C” or better
completed with a grade of “C” or better
At least one of the following one-year se- quences:
- 1. General physics (calculus-based) equiva-
lent to PHYS 040A, PHYS 040B, PHYS 040C, each course completed with a grade of “C” or better (strongly recommended)
- 2. Second-year calculus, equivalent to
MATH 010A, MATH 010B, MATH 046, each course completed with a grade of “C” or better
- 3. Organic chemistry (one-year lower-divi-
sion), each course completed with a grade of “B” or better
Students must have a minimum grade point average of 2.70 in transferable college courses. UCR has articulation agreements with most of the California community colleges. These agreements list specific community college courses that have been designated as compa- rable to UCR courses (see the statewide articu- lation web site at assist.org). Transfer students will usually find it advantageous to complete most or all sequences before starting at UCR. All prospective transfers should try to com- plete the sequences they begin rather than divide a sequence between two campuses.
Change of Major Criteria
General requirement:
- 1. Students must be in good academic
standing with 2.0 cumulative GPA and 2.0 upper- division chemistry major GPA.
- 2. Grades for all chemistry core and required
lower-division math and physics courses must be “C-” or better.
- 3. A grade of “C-” or better in each of the
courses used to satisfy the 20-unit CNAS Natural Science and Mathematics breadth requirement.
- 4. AP credit is not accepted for lower-divi-
sion chemistry courses.
Specific requirement: If student has completed less than 45 units (first year students), then
• Completion of CHEM 001A or CHEM 01HA, CHEM 01LA or CHEM 01HLA, MATH 009A
If student has completed between 45 and 90 units (second year students), then
• Completion of MATH 009A, MATH 009B, MATH 009C.
• Completion of CHEM 001A or CHEM 01HA, CHEM 001B or CHEM 01HB, CHEM 001C or CHEM 01HC, CHEM 01LA or CHEM 01HLA, CHEM 01LB or CHEM 01HLB, CHEM 01LC or CHEM 01HLC and PHYS 040A or PHYS 002A and PHYS 02LA (PHYS 002A & PHYS 02LA can be used for B.A. program only)
If student has completed between 90 and 135 units (third year students), then
• Completion of all lower-division math requirements (MATH 009A, MATH 009B, MATH 009C, MATH 010A for B.A. program; and MATH 009A, MATH 009B, MATH 009C, MATH 010A, and two out of the following: MATH 010B, MATH 031, MATH 046 for B.S. program).
• Completion of the following chemistry courses (CHEM 001A, CHEM 001B, CHEM 001C, CHEM 01LA, CHEM 01LB, CHEM 01LC, CHEM 005, CHEM 008A and CHEM 08LA, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC).
• Completion of all lower-division physics requirements (PHYS 040A, PHYS 040B, PHYS 040C or PHYS 002A, PHYS 002B, PHYS 002C and PHYS 02LA, PHYS 02LB, PHYS 02LC) (Phys 002A, PHYS 002B, PHYS 002C and PHYS 02LA, PHYS 02LB, PHYS 02LC can be used for B.A. program only)
If student has completed more than 135 units (fourth year students), then
• Completion of all lower-division math requirements (MATH 009A, MATH 009B, MATH 009C, MATH 010A for B.A. program; and MATH 009A, MATH 009B, MATH 009C, MATH 010A, and two out of the following: MATH 010B, MATH 031, MATH 046 for B.S. program).
• Completion of all lower-division chemistry courses (CHEM 001A, CHEM 001B, CHEM 001C, CHEM 01LA, CHEM 01LB, CHEM 01LC, CHEM 005, CHEM 008A and CHEM 08LA, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC).
• Completion of all lower-division physics requirements (PHYS 040A, PHYS 040B, PHYS 040C or PHYS 002A, PHYS 002B, PHYS 002C and PHYS 02LA, PHYS 02LB, PHYS 02LC) (PHYS 002A, PHYS 002B, PHYS 002C and PHYS 02LA, PHYS 02LB, PHYS 02LC can be used for B.A. program only)
• Completion of upper-division chemistry courses (CHEM 125W and CHEM 150A)
University Requirements
See Undergraduate Studies section.
College Requirements
See College of Natural and Agricultural Scienc- es, Colleges and Programs section.
Some of the following requirements for the major may also fulfill some of the college’s breadth requirements. Consult with a professional academic advisor at the CNAS Advising Center, 1223 Pierce Hall.
Major Requirements
The major requirements for the B.A. and the B.S. degree in Chemistry are as follows:
Bachelor of Arts
- 1. Lower-division requirements (63 units)
CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA and CHEM 1HLA, CHEM 01HB and CHEM 1HLB, CHEM 01HC and CHEM 1HLC), CHEM 005, CHEM 008A and CHEM 08LA, CHEM 008B and CHEM, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC)
PHYS 002A, PHYS 002B, PHYS 002C, PHYS 02LA, PHYS 02LB, PHYS 02LC)
- 2. Upper-division requirements (36 units)A
minimum grade of “C-” for any upper-di- vision course used to fulfill the require- ments for the B.A. degree.
CHEM 111 or CHEM 140 or CHEM 166
- b) Ten (10) additional upper-division units
Chemistry with Education Focus Option Students must consult with their Chemistry advisor before electing this option.
- 1. Lower Division Requirements (66 units)
CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA, CHEM 01HB, CHEM 01HC and CHEM 1HLA, CHEM 1HLB, CHEM 1HLC), CHEM 005, CHEM 008A and CHEM 08LA, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC)
or MATH 007B, MATH 009C, MATH 010A
PHYS 002A and PHYS 02LA, PHYS 002B and PHYS 02LB, PHYS 002C and PHYS 02LC)
- d) EDUC 003
- 2. Upper Division Requirements (41 or 42
units) A minimum grade of “C- “for any upper-division course used to fulfill the requirements for Chemistry with Educa- tion Focus option.
or CHEM 140 or CHEM 155 or CHEM 166, CHEM 143 or BCH 100 or BCH 110A
from EDUC 132 or EDUC 147 Bachelor of Science
- 1. Lower-division requirements (71-72 units)
CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA and CHEM 1HLA, CHEM 01HB and CHEM 1HLB, CHEM 01HC and CHEM 1HLC), CHEM 005, CHEM 008A and CHEM 08LA or, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC)
MATH 010A, and two out of the follow- ing: MATH 010B, MATH 031, MATH 046
- 2. Upper-division requirements (41-43 units)
A minimum grade of “C-” for any upper-di- vision course used to fulfill the require- ments for the B.S. degree.
- b) Two laboratory courses from CHEM 114
or CHEM 140, CHEM 166, BCH 162
- d) One 4-unit course from CHEM 135/
ENSC 135/ENTX 135, CHEM 136/ENSC 136/ENTX 136/SWSC 136, CHEM 150B, CHEM 197, CHEM 199. CHEM 197 and CHEM 199 must be taken for a grade and a written report submitted.
Chemical Physics Option Students must consult with their Chemistry advisor before electing this option.
- 1. Lower-division requirements (74-75 units)
CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA and CHEM 1HLA, CHEM 01HB and CHEM 01HLB, CHEM 01HC and CHEM 1HLC), CHEM 008A and CHEM 08LA, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC)
MATH 010A, MATH 010B, MATH 046
PHYS 040A, PHYS 040B, PHYS 040C, and PHYS 041C
- 2. Upper-division requirements (45 units)
A minimum grade of “C-” for any upper- division course used to fulfill the require- ments for the Chemical Physics option.
- b) Sixteen (16) units of upper-division
course work in Mathematics or Physics (110 or above excluding 190 series)
on physical chemistry research (4 units). 4 additional units of CHEM 197 or 199 can be used to replace the CHEM 114 requirement, subject to advisor approval. Environmental Chemistry Option Students must consult with their Chemistry advisor before electing this option.
- 1. Lower-division requirements (71 units)
CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA and CHEM 1HLA, CHEM 01HB and CHEM 1HLB, CHEM 01HC and CHEM 1HLC), CHEM 005, CHEM 008A and CHEM 08LA, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC)
MATH 010A, MATH 010B, MATH 046
- 2. Upper-division requirements (49-50 units)
A minimum grade of “C-” for any upper-di- vision course used to fulfill the require- ments for the Environmental Chemistry option.
CHEM 136/ENSC 136/ENTX 136/SWSC 136, CHEM 114 or CHEM 140, CHEM 150A, CHEM 191
or GEO 137
- d) Two additional courses from CHEM 113,
CHEM 150B, CHEM 166, CHEM 197, CHEM 199, ENSC 100, ENSC 101, ENSC 102, ENSC 140/SWSC 140, ENSC 163, ENTX 101, GEO 132, GEO 157 (4 units total from CHEM 197 and/or CHEM 199)
Chemistry with Education Focus Option
Students must consult with their Chemistry advisor before electing this option
- 1. Lower Division Requirements (74 – 75
units)
A) CHEM 001A, CHEM 001B, CHEM 001C, CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA, CHEM 01HB, CHEM 01HC and CHEM 1HLA, CHEM 1HLB, CHEM 1HLC), CHEM 005, CHEM 008A and CHEM 08LA, CHEM 008B and CHEM 08LB, CHEM 008C and CHEM 08LC (or CHEM 08HA and CHEM 08HLA, CHEM 08HB and CHEM 08HLB, CHEM 08HC and CHEM 08HLC)
B) MATH 009A, MATH 009B, MATH 009C, MATH 010A, and two of the following: MATH 010B, MATH 031, MATH 046
C) PHYS 040A, PHYS 040B, PHYS 040C
D) EDUC 003
- 2. Upper Division Requirements (53 – 55
units) A minimum grade of “C- “for any upper-division course used to fulfill the requirements for the Chemistry with Edu- cation Focus option.
A) CHEM 110A, CHEM 110B, CHEM 111, CHEM 113, CHEM 150A, CHEM 125W, CHEM 191 B) EDUC 105, EDUC 162 and one course from EDUC 132 or EDUC 147
C) Two laboratory courses from CHEM 114 or CHEM 140, CHEM 166 or CHEM 155, BCH 162
D) One course from BCH 100, BCH 110A, CHEM 143
E) One course from CHEM 135, CHEM 136, CHEM 150B, CHEM 197 or CHEM 199 (4 units total allowed)
Undergraduate Research is strongly encouraged for students with the requisite ability. Students wishing to participate in this activity should consult Chemistry faculty, their Chemistry advisor, or check: ugr.ucr.edu. Sample Program Student programs are planned on an indi- vidual basis with their advisors, and there is considerable flexibility in the sequence in which courses required for the major are tak- en. For example, PHYS 040A, PHYS 040B, PHYS 040C can be started equally well during either the freshman or sophomore year. The sample program is typical for a well-prepared entering freshman who seeks the B.S. degree.
Freshman Year Fall Winter Spring
CHEM 001A, CHEM 001B, CHEM 001C, CHEM 01LA, CHEM 01LB, CHEM 01LC (or CHEM 01HA and CHEM 1HLA, CHEM 01HB and CHEM 1HLB, CHEM 01HC and CHEM 1HLC)
4,1 4,1 4,1
MATH 009A, MATH 009B, MATH 009C 4 4 4
ENGL 001A, ENGL 001B, ENGL 001C 4 4 4
Elective (optional) 4
Total Units 17 18 18
Sophomore Year Fall Winter Spring
CHEM 008A, CHEM 008B, CHEM 008C CHEM 008LA, CHEM 008LB, CHEM 008LC
4 4 4
MATH 010A, MATH 010B, MATH 031, MATH 046 4 4 4
CHEM 005 5
Electives 4 8
Total Units 13 17 16
Junior Year Fall Winter Spring
CHEM 110A, CHEM 110B, CHEM 113 4 4 4
Biological Science w/Lab 4
CHEM 143 3
CHEM 191 1
Electives 4 4 8
Total Units 13 15 17
Senior Year Fall Winter Spring
CHEM 166 4
Electives 12 8 4
Total Units 12 12 12
Minor
The minor in Chemistry consists of 28 upper-division units in chemistry.
- 1. Of the specified upper-division units, a
minimum of 16 units must be unique to the minor and may not be used to satisfy major requirements.
- 2. At least one of the courses used to satisfy
the 28 units must be in CHEM 125W, CHEM 111, CHEM 140 or CHEM 166 (courses which include laboratory work).
- 3. No more than 4 units of 190-199 courses
may be used in fulfilling the upper-divi- sion units for a minor.
All of the upper-division courses in chemistry have a prerequisite of CHEM 001A, CHEM 001B, CHEM 001C, CHEM 01LA, CHEM 01LB, CHEM 01LC, or CHEM 01HA and CHEM 1HLA, CHEM 01HB and CHEM 1HLB, CHEM 01HC and CHEM 1HLC and most have CHEM 005 as a prerequisite.
Students with a minor in Chemistry should consult with their Chemistry advisor to con- struct a specific program consistent with their career goals.
See Minors under the College of Natural and Agricultural Sciences in the Colleges and Programs section of this catalog for additional information on minors.
Graduate Program
The Chemistry Department offers the M.S. and Ph.D. degrees in Chemistry.
Fields of specialization (subdisciplines) are an- alytical chemistry, inorganic chemistry, organic chemistry, and physical chemistry. Research is also carried out in bioanalytical, bioinorganic, bioorganic, and biophysical chemistry and in chemical physics, environmental/atmospheric, organometallic chemistry, and neuroscience. For additional information on the latter, please see Neuroscience Graduate Program in the Programs and Courses section of this catalog.
Admission All applicants must submit scores from the GRE General Test. A score from the Advanced Chemistry GRE is not required for admission. It is strongly recommended, however, that applicants submit this score in order to receive maximum consideration for fellowships. The department normally considers applications for teaching and research assistantships at the same time as fellowships; therefore, students are strongly encouraged to complete their ap- plications for admission and support as early as possible. Normally applications for fellow- ships are awarded by February for students entering in the following fall quarter. Although most students begin in the fall quarter, stu- dents may begin their studies in the winter or spring quarter.
Orientation Examinations Admitted students must, at the beginning of their first quarter in residence, take orien- tation examinations. The examinations are normally given during two consecutive days starting up to one week prior to the first day of instruction. Although a notice of the times and places of these examinations is sent to each student admitted to regular graduate status in chemistry, it is the student’s responsibility to be on the campus early enough to check the bulletin boards in Chemical Sciences for this information. Students take these examina- tions in the four subdisciplines: analytical, inorganic, organic, and physical chemistry. The purpose of these examinations is to assess the student’s undergraduate preparation. The results permit the faculty to determine the course program that will most effectively aid the students’ development in their chosen subdisciplines.
Master’s Degree
The Department of Chemistry offers the M.S. degree in Chemistry.
Requirements are:
- 1. Satisfactory performance in orientation
examinations in analytical, inorganic, organic, and physical chemistry
- 2. General university requirements and
departmental requirements for either Plan I or Plan II.
Plan I (Thesis) Students must take at least 36 units of approved courses and graduate research of which five regular lecture courses in the CHEM 200-249 series (CHEM 110A or CHEM 110B, CHEM 113, CHEM 125, and CHEM 150A or CHEM 150B may apply under certain circumstances). A maximum of 12 units of seminar courses (CHEM 250-259) and a maximum of 12 units of graduate research; (but not those numbered CHEM 260-289) may apply towards the 36 units. Students must complete a thesis, and a final oral examination on the thesis may be required.
Plan II (Comprehensive Examination) Students must complete at least 36 units of approved courses of which at least 18 must be in regular lecture courses numbered CHEM 200-249 (CHEM 110A or CHEM 110B, CHEM 113, CHEM 125, and CHEM 150A or CHEM 150B may apply under certain circumstances) and up to 12 units of graduate seminar courses num- bered CHEM 250-259. Those numbered CHEM 260-289 are specifically excluded.
Doctoral Degree
The Department of Chemistry offers the Ph.D. degree in Chemistry.
The requirements are orientation examina- tions in analytical, inorganic, organic, and physical chemistry; general university require- ments; and departmental requirements.
Program of Study The departmental committee on graduate study determines a program of study on the basis of the students’ performance on the ori- entation examinations and a consideration of their subdisciplines. For students with a nor- mal B.S. level preparation, the typical course pattern for each subdiscipline is as follows:
- 1. Analytical (a minimum of three courses
selected from CHEM 221A, CHEM 221B, CHEM 221C, CHEM 221D, CHEM 221E, CHEM 221F plus two other courses selected from CHEM 200-249)
- 2. Inorganic (a minimum of three courses
selected from CHEM 231A, CHEM 231B, CHEM 231C, CHEM 231D plus two other courses selected from CHEM 200-249)
- 3. Organic (a minimum of three courses se-
lected from CHEM 211A, CHEM 211B, CHEM 211C, CHEM 211D, CHEM 211E plus two other courses selected from CHEM 200-249)
- 4. Physical (a minimum of three courses
selected from CHEM 201A, CHEM 201B, CHEM 201C, CHEM 201D, CHEM 201E plus two other courses selected from CHEM 200-249)
Professional Development Training
- 1. All students must take 1 quarter of CHEM 401
(Professional Development in Chemistry).
- 2. All students must take 1 quarter of CHEM 402
(Chemical Laboratory Safety).
- 3. Each quarter, all students in residence must
enroll in:
CHEM 250 (Graduate Seminar in Chemistry) and one from the following list based on the student’s subdis- cipline:
CHEM 251 (Graduate Seminar in Analytical Chemistry)
CHEM 252 (Graduate Seminar in Inorganic Chemistry)
CHEM 253 (Graduate Seminar in Organic Chemistry)
CHEM 254 (Graduate Seminar in Physical Chemistry)
Second Year Research Evaluation Students seeking advancement to candi- dacy for the Ph.D. degree must undergo a Second-Year Research Evaluation (SYRE) by the end of the student’s fourth quarter of residency. This examination consists in writing a proposal based on the student’s dissertation research and defending it before a committee of faculty members. The SYRE is designed to test the student’s development as a researcher and provide feedback to the student about the progress toward candidacy. A negative outcome on the SYRE notifies the student that significant improvements will be required to pass the qualifying exam, but it does not di- rectly impact the student’s academic standing.
Oral Qualifying Examination This examination consists in part of defending an original proposition and is designed to test the extent of the candidates’ development and their breadth of knowledge in chemistry and related fields.
Dissertation and Final Oral Examination After completing the dissertation research, students must submit a written copy of the dissertation for approval by the student’s dis- sertation committee. The dissertation research is then defended in a formal, public seminar presentation, followed by questioning of the candidate by the dissertation committee.
Students must complete at least six quarters in residence in the UC with a GPA of 3.00 or better in all 100- and 200-level course work related to the degree. Teaching Requirement Normally requires three quarters of service as a teaching assistant, or equivalent.
Normative Time to Degree 15 quarters
Courses
- CHEM 001: Preparation For General Chemistry (2 units)
- CHEM 001A: General Chemistry (4 units)
- CHEM 001B: General Chemistry (4 units)
- CHEM 001C: General Chemistry (4 units)
- CHEM 01HA: Honors General Chemistry (4 units)
- CHEM 01HB: Honors General Chemistry (4 units)
- CHEM 01HC: Honors General Chemistry (4 units)
- CHEM 01LA: General Chemistry Laboratory (1 units)
- CHEM 01LB: General Chemistry Laboratory (1 units)
- CHEM 01LC: General Chemistry Laboratory (1 units)
- CHEM 001W: Preparation For General Chemistry (3 units)
- CHEM 003: Concepts of Chemistry (4 units)
- CHEM 005: Quantitative Analysis (5 units)
- CHEM 008A: Organic Chemistry (3 units)
- CHEM 008B: Organic Chemistry (3 units)
- CHEM 008C: Organic Chemistry (3 units)
- CHEM 08HA: Honors Organic Chemistry (3 units)
- CHEM 08HB: Honors Organic Chemistry (3 units)
- CHEM 08HC: Honors Organic Chemistry (3 units)
- CHEM 08LA: Organic Chemistry Laboratory (1 units)
- CHEM 08LB: Organic Chemistry Laboratory (1 units)
- CHEM 08LC: Organic Chemistry Laboratory (1 units)
- CHEM 13HA: Honors Discussion For Organic Chemistry (1 units)
- CHEM 13HB: Honors Discussion For Organic Chemistry (1 units)
- CHEM 13HC: Honors Discussion For Organic Chemistry (1 units)
- CHEM 091: Freshman Seminar: What Chemists Do (1 units)
- CHEM 092: Introduction to Undergraduate Research in Chemistry (1 units)
- CHEM 095: Explorations in Molecular Science (1 units)
- CHEM 097H: Freshman Honors Project: Introduction to Research (1 to 4 units)
- CHEM 109: Survey of Physical Chemistry (4 units)
- CHEM 110A: Physical Chemistry: Chemical Thermodynamics (4 units)
- CHEM 110B: Physical Chemistry: Introduction to Statistical Mechanics and Kinetics (4 units)
- CHEM 111: Physical Chemistry Laboratory (4 units)
- CHEM 113: Physical Chemistry: Introduction to Quantum Chemistry (4 units)
- CHEM 114: Advanced Physical Chemistry Laboratory (4 units)
- CHEM 125W: Instrumental Methods (3 units)
- CHEM 135: Atmospheric Chemistry (4 units)
- CHEM 136: Chemistry of Natural Waters (4 units)
- CHEM 140: Environmental Chemistry Laboratory (4 units)
- CHEM 143: Chemical Biology (3 units)
- CHEM 150A: Inorganic Chemistry (4 units)
- CHEM 150B: Inorganic Chemistry (4 units)
- CHEM 155: Advanced Inorganic Chemistry: Synthesis and Methods (4 units)
- CHEM 166: Advance Organic Chemistry: Synthesis and Methods (4 units)
- CHEM 190: Special Studies (1 to 5 units)
- CHEM 191: Seminar in Chemistry Careers (1 units)
- CHEM 197: Research For Undergraduates (1 units)
- CHEM 198I: Individual Internship (1 to 12 units)
- CHEM 199: Senior Research (1 to 4 units)
- CHEM 199H: Senior Honors Research (1 to 5 units)
- CHEM 201A: Advanced Physical Chemistry: Quantum Mechanics (3 units)
- CHEM 201B: Advanced Physical Chemistry: Quantum Mechanics and Spectroscopy (3 units)
- CHEM 201C: Advanced Physical Chemistry: Elementary Statistical Mechanics (3 units)
- CHEM 201D: Advanced Physical Chemistry: Thermodynamics (3 units)
- CHEM 201E: Advanced Physical Chemistry: Kinetics (3 units)
- CHEM 202: Advanced Instrument Design (2 units)
- CHEM 203: Nanoscience and Nanotechnology (3 units)
- CHEM 206A: Introduction to Computational Quantum Chemistry (3 units)
- CHEM 206B: Modeling Chemical and Biochemical Molecules (3 units)
- CHEM 207: Chemical Group Theory (3 units)
- CHEM 208: Interdisciplinary Overview of Current Issues in Semiconductor Processing (3 units)
- CHEM 209M: Magnetic Resonance (3 units)
- CHEM 209S: Potential Surfaces (3 units)
- CHEM 209W: Laser Chemistry and Spectroscopy (3 units)
- CHEM 209Y: Nonlinear Coherent Spectroscopy (3 units)
- CHEM 209Z: Surface Chemistry (3 units)
- CHEM 211A: Structure and Mechanism in Organic Chemistry (3 units)
- CHEM 211B: Advanced Organic Chemistry: Reactions and Mechanism (3 units)
- CHEM 211C: Advanced Synthetic Analysis (3 units)
- CHEM 211D: Spectrometry in Organic Structure Analysis (3 units)
- CHEM 211E: Advanced Organic Reactions (3 units)
- CHEM 216: Physical Organic Chemistry (3 units)
- CHEM 217: Polymers: Synthesis and Characterization (3 units)
- CHEM 221A: Advanced Analytical Chemistry: Separation Science (3 units)
- CHEM 221B: Advanced Analytical Chemistry: Optical Spectroscopy (3 units)
- CHEM 221C: Advanced Analytical Chemistry: Electrochemistry (3 units)
- CHEM 221D: Advanced Analytical Chemistry: Mass Spectroscopy (3 units)
- CHEM 221E: Advanced Analytical Chemistry: Introduction to Bioanalytical Chemistry (3 units)
- CHEM 221F: Advanced Analytical Chemistry: Advanced Chemical Biology (3 units)
- CHEM 222: Fundamentals of Heterogeneous Catalysis (4 units)
- CHEM 223: Nature of the Chemical Bond (3 units)
- CHEM 229 (E-Z): Advanced Topics in Analytical Chemistry (2 units)
- CHEM 229M: Analysis of Atmospheric Chemicals (3 units)
- CHEM 229N: Nanoscale Analyses (3 units)
- CHEM 229P: Fourier Transform in Chemical Analysis (2 units)
- CHEM 229Q: Nuclear Magnetic Resonance Spectrometry (3 units)
- CHEM 229R: Fourier Transform Infrared Spectrometry (3 units)
- CHEM 229S: Mass Spectrometry (3 units)
- CHEM 229T: Luminescence Spectroscopy (3 units)
- CHEM 229U: Chemometrics (3 units)
- CHEM 229W: Environmental Analytical Chemistry (3 units)
- CHEM 229X: Electrochemistry at Ultramicroelectrodes (3 units)
- CHEM 229Z: Separation Science (3 units)
- CHEM 231A: Structure and Bonding in Inorganic Chemistry (3 units)
- CHEM 231B: Reactivity and Mechanism in Inorganic and Organometallic Chemistry (3 units)
- CHEM 231C: Solid State and Materials in Inorganic Chemistry (3 units)
- CHEM 231D: Experimental and Computational Solid State and Materials Chemistry (3 units)
- CHEM 239 (E-Z): Adv Topics: Inorganic Chemistry (2 to 3 units)
- CHEM 239O: Molecular Structure By Diffraction Methods (3 units)
- CHEM 239S: Theory and Molecular Modeling (3 units)
- CHEM 239T: Fullerenes, Nanotubes, and Carbon-Based Materials (3 units)
- CHEM 239X: Modern Applications of Transition Metals in Organic Synthesis (3 units)
- CHEM 242: Combinatorial Chemistry and Chemical Genomics (3 units)
- CHEM 245: Chemistry and Physics of Aerosols (4 units)
- CHEM 246: Fate and Transport of Chemicals in the Environment (4 units)
- CHEM 250: Graduate Seminar in Chemistry (1 units)
- CHEM 251: Graduate Seminar in Analytical Chemistry (2 units)
- CHEM 252: Graduate Seminar in Inorganic Chemistry (2 units)
- CHEM 253: Graduate Seminar in Organic Chemistry (2 units)
- CHEM 254: Graduate Seminar in Physical Chemistry (2 units)
- CHEM 256: Chemistry of Nanostructured Materials (2 units)
- CHEM 258: Seminar in Surface Science (1 units)
- CHEM 259: Bioanalytical Chemistry (2 units)
- CHEM 260: Organic and Organometallic Methodology and Synthesis (2 units)
- CHEM 261: Scanning Probe Microscopy in Surface Science (2 units)
- CHEM 262: Ultrafast Dynamics in Condensed Matter (2 units)
- CHEM 263: Analysis and Synthesis at the Chemistry-Biology Interface (2 units)
- CHEM 264: Novel Synthesis in Inorganic Chemistry (2 units)
- CHEM 265: Raman Spectroscopy of Biological Systems (2 units)
- CHEM 266: Molecular Recognition and Catalysis (2 units)
- CHEM 267: Organic Electronic Materials (2 units)
- CHEM 269: New Trends in Main Group Chemistry (2 units)
- CHEM 270: Theoretical Quantum Chemistry: Methods and Applications (2 units)
- CHEM 271: Design, Synthesis, and Applications of Highly Conjugated Organic Systems (2 units)
- CHEM 272: Gaseous Ion Chemistry (2 units)
- CHEM 273: Bioanalytical Nuclear Magnetic Resonance Spectroscopy (2 units)
- CHEM 274: Chemical Biology (2 units)
- CHEM 275: Bioorganic Chemistry of Nucleic Acids (2 units)
- CHEM 276: The Nanocrystal-Ligand Interface (2 units)
- CHEM 277: Surface Chemistry (2 units)
- CHEM 278: Nuclear Magnetic Resonance: Theory, Techniques, and Applications (2 units)
- CHEM 279: Molecular Spectroscopy (2 units)
- CHEM 280: Chemistry and Biochemistry of Gaseous Molecules (2 units)
- CHEM 281: Interface Between Heteroatom and Transition Metal Chemistry (2 units)
- CHEM 282: Elementary Processes in Atmospheric Chemistry (2 units)
- CHEM 283: Development of Inorganic Solid State Materials (2 units)
- CHEM 284: Biological Mass Spectrometry (2 units)
- CHEM 285: Bio-Inspired Materials and Chemical Sensors (2 units)
- CHEM 286: Time-Resolved Spectroscopy and Microscopy and Dynamics in Complex Systems (2 units)
- CHEM 287: Modeling Molecular Recognition (2 units)
- CHEM 288: Bioanalytical Applications of Nuclear Magnetic Resonance (nmr) and Mass Spectrometry (ms) (2 units)
- CHEM 289: Special Topics in Neuroscience (2 units)
- CHEM 296: Special Topics Seminar (2 units)
- CHEM 297: Directed Research (1 to 6 units)
- CHEM 299: Research For Thesis Or Dissertation (1 to 12 units)
- CHEM 301: Oral Presentations in Chemistry (1 units)
- CHEM 302: Teaching Practicum (1 units)
- CHEM 401: Professional Development in Chemistry (1 units)
- CHEM 402: Chemical Laboratory Safety (1 units)