Manchester University
- Page ID
- 537438
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\(\newcommand{\avec}{\mathbf a}\) \(\newcommand{\bvec}{\mathbf b}\) \(\newcommand{\cvec}{\mathbf c}\) \(\newcommand{\dvec}{\mathbf d}\) \(\newcommand{\dtil}{\widetilde{\mathbf d}}\) \(\newcommand{\evec}{\mathbf e}\) \(\newcommand{\fvec}{\mathbf f}\) \(\newcommand{\nvec}{\mathbf n}\) \(\newcommand{\pvec}{\mathbf p}\) \(\newcommand{\qvec}{\mathbf q}\) \(\newcommand{\svec}{\mathbf s}\) \(\newcommand{\tvec}{\mathbf t}\) \(\newcommand{\uvec}{\mathbf u}\) \(\newcommand{\vvec}{\mathbf v}\) \(\newcommand{\wvec}{\mathbf w}\) \(\newcommand{\xvec}{\mathbf x}\) \(\newcommand{\yvec}{\mathbf y}\) \(\newcommand{\zvec}{\mathbf z}\) \(\newcommand{\rvec}{\mathbf r}\) \(\newcommand{\mvec}{\mathbf m}\) \(\newcommand{\zerovec}{\mathbf 0}\) \(\newcommand{\onevec}{\mathbf 1}\) \(\newcommand{\real}{\mathbb R}\) \(\newcommand{\twovec}[2]{\left[\begin{array}{r}#1 \\ #2 \end{array}\right]}\) \(\newcommand{\ctwovec}[2]{\left[\begin{array}{c}#1 \\ #2 \end{array}\right]}\) \(\newcommand{\threevec}[3]{\left[\begin{array}{r}#1 \\ #2 \\ #3 \end{array}\right]}\) \(\newcommand{\cthreevec}[3]{\left[\begin{array}{c}#1 \\ #2 \\ #3 \end{array}\right]}\) \(\newcommand{\fourvec}[4]{\left[\begin{array}{r}#1 \\ #2 \\ #3 \\ #4 \end{array}\right]}\) \(\newcommand{\cfourvec}[4]{\left[\begin{array}{c}#1 \\ #2 \\ #3 \\ #4 \end{array}\right]}\) \(\newcommand{\fivevec}[5]{\left[\begin{array}{r}#1 \\ #2 \\ #3 \\ #4 \\ #5 \\ \end{array}\right]}\) \(\newcommand{\cfivevec}[5]{\left[\begin{array}{c}#1 \\ #2 \\ #3 \\ #4 \\ #5 \\ \end{array}\right]}\) \(\newcommand{\mattwo}[4]{\left[\begin{array}{rr}#1 \amp #2 \\ #3 \amp #4 \\ \end{array}\right]}\) \(\newcommand{\laspan}[1]{\text{Span}\{#1\}}\) \(\newcommand{\bcal}{\cal B}\) \(\newcommand{\ccal}{\cal C}\) \(\newcommand{\scal}{\cal S}\) \(\newcommand{\wcal}{\cal W}\) \(\newcommand{\ecal}{\cal E}\) \(\newcommand{\coords}[2]{\left\{#1\right\}_{#2}}\) \(\newcommand{\gray}[1]{\color{gray}{#1}}\) \(\newcommand{\lgray}[1]{\color{lightgray}{#1}}\) \(\newcommand{\rank}{\operatorname{rank}}\) \(\newcommand{\row}{\text{Row}}\) \(\newcommand{\col}{\text{Col}}\) \(\renewcommand{\row}{\text{Row}}\) \(\newcommand{\nul}{\text{Nul}}\) \(\newcommand{\var}{\text{Var}}\) \(\newcommand{\corr}{\text{corr}}\) \(\newcommand{\len}[1]{\left|#1\right|}\) \(\newcommand{\bbar}{\overline{\bvec}}\) \(\newcommand{\bhat}{\widehat{\bvec}}\) \(\newcommand{\bperp}{\bvec^\perp}\) \(\newcommand{\xhat}{\widehat{\xvec}}\) \(\newcommand{\vhat}{\widehat{\vvec}}\) \(\newcommand{\uhat}{\widehat{\uvec}}\) \(\newcommand{\what}{\widehat{\wvec}}\) \(\newcommand{\Sighat}{\widehat{\Sigma}}\) \(\newcommand{\lt}{<}\) \(\newcommand{\gt}{>}\) \(\newcommand{\amp}{&}\) \(\definecolor{fillinmathshade}{gray}{0.9}\)- CHEM 111 and CHEM 113 (General Chemistry I and II)
- Textbook for CHEM 111 (General Chemistry I) and CHEM 113 (General Chemistry II) at Manchester University.
- Front Matter
- 1: Chemistry Uses Specific Mathematical Tools
- 2: Atoms Make Up Ionic and Covalent Compounds
- 3: Chemical Composition Involves Fixed Atomic Ratios
- 4: Quantum Mechanics Describes Atomic Structure
- 5: Models for Chemical Bonding and Shape
- 6: Intermolecular Interactions Drive Physical Properties
- 7: The Gas Phase is Different
- 8: Thermodynamics Describes the Flow of Energy
- 9: Processes Start Out Under Kinetic Control
- 10: Processes End Up At Equilibrium
- 11: Acids and Bases Have Common Properties and Reactions
- 12: Ionic Compounds Have Common Properties and Reactions
- 13: Redox Reactions Describe The Movement of Electrons
- 14: Atomic Nuclei Can Change
- Back Matter
- CHEM 235: Analytical Chemistry (Davis)
- An introduction to volumetric, photometric, chromatographic, potentiometric and gravimetric analytical techniques for CHEM 235 students at Manchester University.
- Front Matter
- 1: All Measurements Are Uncertain
- 2: The Return of Stoichiometry
- 3: Acid-Base Equilibria Affect Solution Conditions
- 4: There Are Other Titration Methods!
- 5: Electrochemical Instrumental Analysis
- 6: Beyond Beer's Law- Quantitative Spectroscopic Analysis
- 7: Mass Spectrometry
- 8: Analysis and Separation of Mixtures
- 9: Solubility Equilibria
- Back Matter
- CHEM 342: Physical Chemistry II (Davis)
- Principles of chemical thermodynamics and statistical thermodynamics, with application to pure substances and mixtures. It also applies the principles of chemical kinetics and dynamic equilibrium theory to a variety of chemical applications, including electrochemistry and spectroscopy.
- Manchester University Physical Chemistry I (CHEM 341)
- Textbook for CHEM 341 at Manchester University (Physical Chemistry I). Foundations of quantum mechanics for describing atomic structure, molecular motion and chemical bonding, with specific applications to spectroscopy and chemical reactivity. Prerequisite(s): CHEM 113 (General Chemistry II), MATH 122 (Calculus II).
- Welcome!
- 1: Experiments That "Broke" (Classical) Physics
- 2: New Game, New Rules (Postulates of Quantum Mechanics)
- 3: First QM System (Particle on a Line/Particle in a Box)
- 4: QM for Rotational and Vibrational Motion
- 5: Rotational and Vibrational Spectroscopy
- 6: One-Electron Atoms and Ions
- 7: So You Can't Solve the Schrodinger Equation Exactly...What Next? (Approximation Methods)
- 8: Electronic Spectroscopy
- 9: Diatomic Molecules
- 10: Polyatomic Molecules
- 11: Computational Quantum Chemistry
- 12: A Quantum Mechanical Approach to Electronic Spectroscopy
- Back Matter

