Now showing items 938-957 of 1379

    • 5.311 Introductory Chemical Experimentation, Fall 2005 

      Schrenk, Janet; Berkowski, Kimberly; Gheorghiu, Mircea (2005-12)
      5.311 is the first of a three-term laboratory subject sequence for chemistry majors. Experimental work emphasizes development of fundamental laboratory skills and techniques: volumetric and colorimetric analysis; nuclear ...
    • 5.32 Intermediate Chemical Experimentation, Spring 2003 

      Gheorghiu, Mircea; Klibanov, Alexander (2003-06)
      5.32 involves more advanced experimental work than 5.310 or 5.311. The course emphasizes organic synthesis assisted by chiral catalysis, purification, and analysis of organic compounds employing such methods as IR, 1D and ...
    • 5.33 Advanced Chemical Experimentation and Instrumentation, Fall 2002 

      Gheorghiu, Mircea D. (2002-12)
      Advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry illustrated through molecular spectroscopy. Instruction and practice in the written and oral presentation ...
    • 5.33 Advanced Chemical Experimentation and Instrumentation, Fall 2005 

      Gheorghiu, Mircea D.; Tokmakoff, Andrei (2005-12)
      Advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry illustrated through molecular spectroscopy. Instruction and practice in the written and oral presentation ...
    • 5.33 Advanced Chemical Experimentation and Instrumentation, Fall 2007 

      Gheorghiu, Mircea; Tokmakoff, Andrei (2007-12)
      5.33 focuses on advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry, illustrated through molecular spectroscopy. The written and oral presentation of experimental ...
    • 5.44 Organometallic Chemistry, Fall 2004 

      Fu, Gregory (2004-12)
      This course examines important transformations of organotransition-metal species with an emphasis on basic mechanisms, structure-reactivity relationships, and applications in organic synthesis.
    • 5.451 Chemistry of Biomolecules I, Fall 2005 

      O’Connor, Sarah (2005-12)
      5.451 is a half-semester introduction to natural product biosynthetic pathways. The course covers the assembly of complex polyketide, peptide, terpene and alkaloid structures. Discussion topics include chemical and biochemical ...
    • 5.46 Organic Structure Determination, Spring 2004 

      Jamison, Timothy F. (2004-06)
      Applications of 1D and 2D <SUP>1</SUP>H and <SUP>13</SUP>C NMR spectroscopy to organic structure determination. This course covers modern and advanced methods of elucidation of the structures of organic molecules, including ...
    • 5.46 Organic Structure Determination, Spring 2007 

      Simpson, Jeff; Jamison, Timothy F. (2007-06)
      This course covers modern and advanced methods of elucidation of the structures of organic molecules, including NMR, MS, and IR (among others). The fundamental physical and chemical principles of each method will be ...
    • 5.60 Thermodynamics & Kinetics, Spring 2005 

      Bawendi, Moungi Gabriel, 1961-; Griffin, Robert Guy (2005-06)
      This subject deals primarily with equilibrium properties of macroscopic systems, basic thermodynamics, chemical equilibrium of reactions in gas and solution phase, and rates of chemical reactions.
    • 5.60 Thermodynamics & Kinetics, Spring 2007 

      Bawendi, Moungi Gabriel, 1961-; Nelson, Keith A. (2007-06)
      This subject deals primarily with equilibrium properties of macroscopic systems, basic thermodynamics, chemical equilibrium of reactions in gas and solution phase, and rates of chemical reactions.
    • 5.61 Physical Chemistry, Fall 2004 

      Griffin, Robert Guy; Nelson, Keith A. (2004-12)
      Introductory quantum chemistry; particles and waves; wave mechanics; atomic structure and the Periodic Table; valence and molecular orbital theory; molecular structure; and photochemistry. From the course home page: Course ...
    • 5.61 Physical Chemistry, Fall 2013 

      Van Voorhis, Troy; Field, Robert (2013-12)
      This course presents an introduction to quantum mechanics. It begins with an examination of the historical development of quantum theory, properties of particles and waves, wave mechanics and applications to simple ...
    • 5.62 Physical Chemistry II, Spring 2004 

      Nelson, Keith A.; Steinfeld, Jeffrey I. (2004-06)
      Elementary statistical mechanics; transport properties; kinetic theory; solid state; reaction rate theory; and chemical reaction dynamics.
    • 5.68J / 10.652J Kinetics of Chemical Reactions, Spring 2003 

      Steinfeld, Jeffrey; Green Jr., William (2003-06)
      This course deals with the experimental and theoretical aspects of chemical reaction kinetics, including transition-state theories, molecular beam scattering, classical techniques, quantum and statistical mechanical ...
    • 5.72 Statistical Mechanics, Spring 2008 

      Cao, Jianshu (2008-06)
      This course discusses the principles and methods of statistical mechanics. Topics covered include classical and quantum statistics, grand ensembles, fluctuations, molecular distribution functions, other concepts in equilibrium ...
    • 5.73 Introductory Quantum Mechanics I, Fall 2002 

      Field, Robert (2002-12)
      5.73 covers fundamental concepts of quantum mechanics: wave properties, uncertainty principles, Schrodinger equation, and operator and matrix methods. Basic applications of the following are discussed: one-dimensional ...
    • 5.74 Introductory Quantum Mechanics II, Spring 2003 

      Tokmakoff, Andrei (2003-06)
      Time-dependent quantum mechanics and spectroscopy. Topics covered include perturbation theory, two-level systems, light-matter interactions, relaxation in quantum systems, correlation functions and linear response theory, ...
    • 5.74 Introductory Quantum Mechanics II, Spring 2005 

      Tokmakoff, Andrei (2005-06)
      Time-dependent quantum mechanics and spectroscopy. Topics covered include perturbation theory, two-level systems, light-matter interactions, relaxation in quantum systems, correlation functions and linear response theory, ...
    • 5.74 Introductory Quantum Mechanics II, Spring 2007 

      Tokmakoff, Andrei (2007-06)
      Time-dependent quantum mechanics and spectroscopy. Topics covered include perturbation theory, two-level systems, light-matter interactions, relaxation in quantum systems, correlation functions and linear response theory, ...