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Table of contents

Home Abstract Introduction to the concepts and tools in physics with the help of demonstration experiments: mechanics of point-like and ridged bodies, periodic motion and mechanical waves. Objective The concepts and tools in physics, as well as the methods of an experimental science are taught. Content Mechanics motion, Newton's laws, work and energy, conservation of momentum, rotation, gravitation, fluids Periodic Motion and Waves periodic motion, mechanical waves, acoustics.

Lecture notes The lecture follows the book "Physics" by Paul A. Literature Paul A. Tipler and Gene P. Mosca, Physics for Scientists and Engineers , W. Keller Abstract Introduction to calculus in one dimension. Building simple models and analysing them mathematically. Functions of one variable: the notion of a function, of the derivative, the idea of a differential equation, complex numbers, Taylor polynomials and Taylor series.

The integral of a function of one variable.

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Objective Introduction to calculus in one dimension. Content Functions of one variable: the notion of a function, of the derivative, the idea of a differential equation, complex numbers, Taylor polynomials and Taylor series. Literature G. Thomas, M. Weir, J.

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Akveld: Analysis I vdf L. Objective Discuss fundamentals of computer architecture, languages, algorithms and programming with an eye to their application in the area of chemistry, biology and material science. Lecture notes Available in English , distributed at first lecture Literature See: www. For more information about the lecture: www.

Information about the practical course will be given on the first day. Chemical Engineering Bachelor. Bachelor Studies Programme Regulations Compulsory Subjects First Year Examinations. General Chemistry Inorganic Chemistry I. Introduction to the chemistry of ionic equilibria: Acids and bases, redox reactions, formation of coordination complexes and precipitation reactions. Understanding and describing ionic equilibria from both a qualitative and a quantitative perspective. Chemical equilibrium and equilibrium constants, mono- and polyprotic acids and bases in aqueous solution, calculation of equilibrium concentrations, acidity functions, Lewis acids, acids in non-aqueous solvents, redox reactions and equilibria, Galvanic cells, electrode potentials, Nernst equation, coordination chemistry, stepwise formation of metal complexes, solubility.

Copies of the course slides as well as other documents will be provided as pdf files via the moodle platform. General Chemistry Organic Chemistry I.

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Data For Inorganic And Organic Compounds Daten Fur Anorganische Und Organische Verbindungen

Introduction to Organic Chemistry. Introduction to the structures of organic compounds as well as the structural and energetic basis of organic chemistry. Introduction to the history of organic chemistry, introduction to nomenclature, learning of classical structures and stereochemistry: isomerism, Fischer projections, CIP rules, point groups, molecular symmetry and chirality, topicity, chemical bonding: Lewis bonding model and resonance theory in organic chemistry, description of linear and cyclic conjugated molecules, aromaticity, Huckel rules, organic thermochemistry, learning of organic chemistry reactions, intermolecular interactions.

General Chemistry Physical Chemistry I. Atomic structure and structure of matter; Atomic orbitals and energy levels; Quantum mechanical atom model; Chemical bonding; Equations of state. Atomic structure and structure of matter: atomic theory, elementary particles, atomic nuclei, radioactivity, nuclear reactions.

Equations of state: ideal gases. Physics I. Introduction to the concepts and tools in physics with the help of demonstration experiments: mechanics of point-like and ridged bodies, periodic motion and mechanical waves.


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The concepts and tools in physics, as well as the methods of an experimental science are taught. Mechanics motion, Newton's laws, work and energy, conservation of momentum, rotation, gravitation, fluids Periodic Motion and Waves periodic motion, mechanical waves, acoustics. Paul A. Freeman and Company. Mathematical Foundations I: Analysis A. Introduction to calculus in one dimension. Introduction to Computer Science. Discuss fundamentals of computer architecture, languages, algorithms and programming with an eye to their application in the area of chemistry, biology and material science.

See: www. Laboratory Courses. Qualitative analysis determination of cations and anions , acid-base-equilibria pH- values, titrations, buffer , precipitation equilibria gravimetry, potentiometry, conductivity , redoxreactions syntheses, redox-titrations, galvanic elements , metal complexes syntheses, complexometric titration analysis of measured values, states of aggregation vapour pressure, conductivity, calorimetry.

Qualitative analysis simple cation and anion separation process, determination of cations and anions , acid-base-equilibria strengths of acids and bases, pH- and pKa-values, titrations, buffer systems, Kjeldahl determination , precipitation equilibria gravimetry, potentiometry, conductivity , oxidation state and redox behaviour syntheses , redox-titrations, galvanic elements , metal complexes syntheses of complexes, ligand exchange reactions, complexometric titration analysis of measured values measuring error, average value, error analysis , states of aggregation vapour pressure , characteristics of electrolytes conductivity measurements , thermodynamics calorimetry.

The general aim for the students of the practical course in general chemistry is an introduction in the scientific work and to get familiar with simple experimental procedures in a chemical laboratory. In general, first experiences with the principal reaction behaviour of a variety of different substances will be made. The chemical characteristics of these will be elucidated by a series of quantitative experiments alongside with the corresponding qualitative analyses.

In order to get an overview of classes of substances as well as some general phenomena in chemistry suitable experiments have been chosen. In the second part of the practical course, i. Compulsory Subjects Examination Block I. Inorganic Chemistry I. Complexes of the transition metals: structure, bonding, spectroscopic properties, and synthesis.

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Introduction to the binding theory in complexes of the transition metals. Interpretation of structure, bonding, and spectroscopic properties. General synthetic strategies. The chemical bond overview. Symmetry and group theory. Electronic spectra of coordination compounds Tanabe-Sugano diagrams. Coordination numbers and isomers in complexes.

Dynamic phenomena stereochemical nonrigidity. Complexes and kinetics. Auflage, Organic Chemistry I. Chemical reactivity and classes of compounds. Eliminations, fragmentations, chemistry of aldehydes and ketones hydrates, acetals, imines, enamines, nucleophilic addition of organometallic compounds, reactions with phosphorus and sulfur ylides; reactions of enolates as nucleophiles and of carboxylic acid derivatives.

Aldol reactions. Acquisition of a basic repertoire of synthetic methods including important reactions of aldehydes, ketones, carboxylic acids and carboxylic acid derivatives, as well as eliminations and fragmentations. Particular emphasis is placed on the understanding of reaction mechanisms and the correlation between structure and reactivity. A deeper understanding of the concepts presented during the lecture is reached by solving the problems handed out each time and discussed one week later in the exercise class. A pdf file of the printed lecture notes is provided online.

Supplementary material may be provided online. No set textbooks.


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  8. Optional literature will be proposed at the beginning of the class and in the lecture notes. Introduction to Chemical Reaction Kinetics. Fundamental concepts: rate laws, elementary reactions and composite reactions, molecularity, reaction order.

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    Experimental methods in reaction kinetics. Simple chemical reaction rate theories. Reaction mechanisms and complex kinetic systems, chain reactions. Homogeneous catalysis and enzyme kinetics.

    Organic Compounds