Lasers in Kinetics

Chem 111

Chemical Kinetics

PES

Lecturer:

Dr. Kalju Kahn
Office: PSB-N 2623
Office hours: Fri (10:30-11:30 PM) or by appointment
Phone: 893-6157
E-mail: kalju@chem.ucsb.edu
Web site: http://www.chem.ucsb.edu/~kalju

Mission statement

To teach principles of reaction kinetics and catalysis. Topics covered include the laws and theories governing rates of chemical reactions and reaction mechanisms in the gas phase, in solution, and at the solid-liquid interface. Emphasis is placed on modern experimental approaches to study kinetics in complex chemical and biochemical systems. Analysis of experimental data is introduced. Computational approaches to estimate rates of chemical reactions and study the mechanism of catalysis are discussed.

Schedule

      Lecture:        MWF 1:00-1:50   Place: HSSB 1215	  
      Computer Lab:   Open access	Place:  Chem 1153

Syllabus General information about the course PDF
Textbook "Principles of Chemical Kinetics, 2nd ed" by James E. House, (2007). $40 (Amazon)
History Course website for Chem 111 (Fall 2006) Link
Upload Submit your assignments as MS Word or PDF files Link
Notes Supplementary Graphics: Week 1 PDF
Mathematica Mathematica Explained by Prof. Horia Metiu Link
Kinetics Online Textbook Chapters by Prof. Horia Metiu Link
Exams Midterm I Preparation Guide PDF
Exams Sample Questions from 2004 Midterm Exam PDF
Exams Midterm I Key PDF
Exams Midterm II (May 28) Preparation Guide PDF
Exams Midterm II Key PDF
Exams Point Distribution: Before Final PDF
Final Final Preparation Guide PDF
Final Lineshape Generation File "Lineshape_pub.pdf" PDF
Final NMR Data: Boiling N2 TEXT
Final NMR Data: "Melting" CO2 TEXT
Final NMR Data: Room temperature TEXT
Final NMR Data: Boiling water TEXT

Literature Required reading in PDF Acrobat
Relaxation Microsecond Folding of the Cold Shock Protein Measured by a Pressure-Jump Technique (Jacob et. al., 1999) PDF
Relaxation Discussion Questions: (Jacob et al, 2003) PDF
SVD Kinetic and Spectroscopic Characterization of Hydroperoxy Compound in the Reaction of Native Myoglobin with Hydrogen Peroxide (Egawa et al, 2003) PDF
SVD Discussion Questions: (Egawa et al, 2003) PDF

Literature Supplemental reading in PDF Acrobat
Relaxation The temperature-jump technique for the study of fast reactions in solution (Crooks, 1983) PDF
Relaxation Laser temperature jump induced protein refolding (Gruebele, Sabelko, Ballew and Ervin, 1998) PDF
Relaxation Submicrosecond real-time fluorescence sampling: application to protein folding (Ervin, Sabelko, and Gruebele, 2000) PDF
Reversible Decomposition of hydrogen iodide (Kistiakowsky, 1928) PDF
Gas Phase Kinetic Measurements Using Flow Tubes: C. J. Howard PDF
Gas Phase Kinetics of Elementary Radical Reactions in the Gas Phase: F. Kaufman PDF
TST The Development of Transition State Theory: Laidler and King PDF
SVD Application of Multivariate Resolution Methods to Study of Biochemical and Biophysical Processes (Jaumot et al, 2004) PDF
SVD Deconvolutions based on SVD and the Pseudoinverse: a Guide for Beginners (Hendler and Shrager, 1994, 2004) PDF
NMR NMR Lecture Slides from Wednesday (Dahlquist) PDF
NMR NMR Lecture Slides (for CHEM 112L course, Kahn, 2004) PDF
NMR Introduction to NMR: Book Chapter by Dr. T. L. James PDF
NMR Bloch Equation in NMR: Lecture Notes by Dr. A. S. Edison PDF
NMR N,N-Dimethylacetamide rotational barrier by Jarek et. al. PDF
NMR Spin Saturation Transfer: Manual PDF

Tutorials and Homework

Some Tutorials are provided only as PDF so that you can practice typing in commands into Mathematica. Others are provides as Mathematica Notebooks. Save these in your hard disk and use Mathematica to run the commands. Alternatively, you may use a free program MathReader to examine the content of Notebooks.

Mathematica Tutorials and Assignments in PDF and NoteBook (NB) Acrobat MathReader
Mathematica General Introduction to Mathematica PDF NB
First-Order Kinetics Solving Differential Equations with Mathematica PDF NB
First-Order Kinetics Simulation and Least-Squares Fitting; Data Import PDF-v4 PDF-v6 NB (ver 4) NB (ver 6)
Reaction Order Differential Method using Finite Differences PDF-v4 PDF-v6 NB (ver 4) NB (ver 6)
Homework 1 Analysis of Kinetic Data: Reaction Order PDF
Homework 1 Key Analysis of Kinetic Data: Reaction Order PDF-v6 NB-v6
Reversible Reactions First Order Process, k1 = k2, no B initially PDF-v4
PDF-v6
NB-v4
NB-v6
Reversible Reactions First Order Process, k1 different from k2, B initially present PDF-v4
PDF-v6
NB-v4
NB-v6
Reversible Reactions Kinetics and Thermodynamics: Equilibrium Constant PDF-v4 PDF-v6
Reversible Reactions Temperature Dependence of Reaction Equilibrium PDF
Relaxation Methods Temperature Jump: Kinetics of Relaxation PDF
2nd-Order Kinetics Second-order irreversible reactions PDF NB
3rd-Order Kinetics Third-order irreversible reactions PDF NB
Reversible Rx Mixed order rev. A + A = P reaction: Concentrations (1) PDF NB
Reversible Rx Mixed order rev. A + A = P reaction: Concentrations (2) PDF NB
Reversible Rx Mixed order rev. A + A = P reaction: Reaction Extent PDF NB
Reversible Rx Second order reversible A + A = P + Q reaction PDF NB
Reversible Rx Mixed and second order reversible reactions PDF NB
Homework 2 Mixed and Second Order Reversible Reactions PDF
Homework 2 Key Mixed and Second Order Reversible Reactions PDF
Consecutive Rx Solving Coupled Differential Equations: A -> B -> C PDF NB
Consecutive Rx Least-Squares Analysis of Data: A -> B -> C Model PDF-v4 PDF-v6 NB-v4 NB-v6
Mathematica Introduction to Linear Algebra with Mathematica (Orig) PDF NB
Mathematica Introduction to Linear Algebra with Mathematica (New) PDF NB
Mathematica Analysis of Noisy Multi-wavelength Absorbance Data:
A -> B
PDF NB Ver6 NB Ver4
Mathematica Generation and SVD Analysis of Noisy Absorbance Data:
A -> B
PDF NB Ver5 NB Ver4
NMR Description of NMR as Energy Absorption Process PDF NB
NMR Description of NMR by Vector Formalism: Bloch Equation PDF NB
NMR Chemical Exchange: Forsen-Hoffman double resonance PDF NB Ver 6
NB Ver 4
NMR Chemical Exchange: Line Shape Analysis PDF NB Ver 6
NB Ver 4

Useful science links

Electronic Journals at UCSB
Google Scholar Search Engine
Periodic Table of the Elements
Professional Reference Shelf

UCSB links

UCSB General Catalog
UCSB Campus Map
UCSB Gold Login
UCSB Umail Access
UCSB Environmental Health and Safety


Course materials by Dr. Kalju Kahn, Department of Chemistry and Biochemistry, UC Santa Barbara. ©2004-2006.
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