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17/04/2013 · Nature Chemical Biology ..
This module aims to develop the knowledge of both organic chemistry and medicinal chemistry in organic chemical reactivity as well as the basic mechanisms of drug addiction. The module deals with the methodology of organic synthesis following concepts dealt with at Level 4 to include important organic chemistry topics such carbanion reactivity of carbonyl compounds, the reactions of aromatic and heteroaromatic compounds, stereochemistry, asymmetric synthesis and retrosynthesis. In addition, the module deals with complex biological response, drug design and the role within the pharmaceutical industry. The use of spectroscopic techniques structure elucidation is also studied.
No. COURSES FOR MASTER IN INDUSTRIAL CHEMISTRY
ORGANIC CHEMISTRY (CY-400)
Stereochemistry: Chirality, molecular dissymmetry, optical activity, racemic modifications and their resolution, geometrical and conformational isomerism.
Reaction Mechanism, Structure and Reactivity: Types of reactions, reaction intermediates and their stability, energy requirement of reactions.
Substitution Reactions: Nucleophilic Substitution (SN) Reactions: SN2, SN1 and SNi reactions(mechanism and stereochemistry).Aromatic Electrophilic Substitution Reactions: Concept of aromaticity, arenium ion mechanism, orientation and reactivity.
Addition to Carbon- Carbon Multiple Bonds: Mechanism and stereochemical aspects.
Elimination (E) Reactions:The E1, E2 and α, ß mechanisms, orientation, reactivity. INORGANIC CHEMISTRY (CY–401)
Atomic Structure: Atomic structure theories, Schrödinger wave equation and its applications.
Periodic Table: Electronic configuration, periodicity, group trends.
Bonding in s and p Block Elements: General characteristics, types of chemical bonds, lattice energy, valence bond theory, molecular orbital theory, wave equations of molecules, Valence Shell Electron Pair Repulsion (VSEPR) theory, hybridization.
d-Block Elements: General characteristics, coordination compounds, Crystal field theory (CFT), Molecular orbital theory (MOT), substitution and redox reaction mechanisms, Trans-Effect, complexes synthesis, stability, magnetic properties and electronic absorption spectra of complexes, d2-d8 ions energy level diagram, charge transfer spectra, calculation of ms, ms+L, meff and their relationship.
Chemistry of Lanthanide and Actinide Elements: General characteristics and comparison of two series. Physical Chemistry (CY – 402)
Chemical Equilibrium: Spontaneous chemical reactions and equilibrium, effects of external stress on equilibria (Le Chatelier's Principle), the reaction quotient, relationship between Kc and Kp, heterogeneous equilibria, nature of solubility equilibria, distribution law and its validity, application of the distribution law to the selected systems like solvent extraction.
chemistry are now taught retrosynthesis as part of ..
Plant Growth Regulators: Naturally occurring plant harmones: Auxins, Gibberellins (Introduction, occurrence, physiological properties, isolation, biosynthesis, synthesis, and structure activity relationship).
Fatty lipids and Prostaglandin (Hydroxy and Ketohydroxy fatty acids): Identification and extraction, biogenesis and metabolism of prostaglandin, stereochemistry, physical methods of characterization, chemical degradation studies. PAINT AND SURFACE COATINGS (CY-515)
Paint & Coatings: Basics of paint and coating, composition and their function.
Coating Types: Oil-based coatings, cellulose-based coatings, vinyls, phenolics, acrylics, polyesters, polyurethanes, bituminous coatings, silicone-modified coatings, polyureas, powder coatings, nano-coatings, self-healing coatings, recent new development in paints and coatings.
Coating Formulation: Principles of coating formulation, important factors of coating formulation, testing of coatings and its parameters, preparation of technical data sheets.
Adhesion of Coating: Principle of adhesion, understanding of adhesion and cohesion, description of substrates, testing of Adhesion.
Paint Rheology: Introduction, fundamental of measuring paint rheology, paint rheology during manufacture and storage. PAINT FAILURE ANALYSIS (CY-516)
Trouble Shooting: Common paint film defects, causes of paint defects.
Common Failure Modes: Mechanical stress, internal stress, chemical attack, weathering stress, osmotic blistering, electroendosmotic blistering, application-related problems, case studies of paint and coating failures.
Types of Failures: Adhesion, flexibility and impact resistance, solvent resistance, weathering resistance, chemical resistance, Freeze–Thaw, application variables.
Analytical Methods: Infrared Spectroscopy (IR), Gas Chromatography (GC), Gel Permeation Chromatography (GPC), Ion Chromatography, Scanning Electron Microscopy (SEM), Differential Scanning Calorimetry (DSC), miscellaneous methods of analysis. CORROSION CHEMISTRY (CY-517)
Corrosion Thermodynamics and Kinetics:: Gibbs free energy, Nernst equation, hydrogen electrode, standard hydrogen scale, the oxygen electrode, differential aeration cell ,the emf and galvanic series, liquid junction potentials, reference electrodes, polarization diagrams of corroding metals, influence of polarization on corrosion rate, calculation of corrosion rates.
Corrosion in Different Environments: Atmospheric corrosion, natural and sea water corrosion, corrosion in soils, reinforced concrete corrosion, microbes and biofouling, corrosion in petroleum industry.
Forms of Corrosion: Uniform corrosion, galvanic corrosion, concentration cell corrosion, pitting corrosion, crevice corrosion, filiform corrosion, intergranular corrosion, stress corrosion cracking, corrosion fatigue, fretting corrosion, erosion-corrosion, de-alloying, hydrogen damage, microbial corrosion, cavitation, exfoliation corrosion.
Corrosion Control: Design, material selection, protective coatings, inhibitors, galvanic protection.
Corrosion Testing: Test methods, testing procedures, electrochemical testing, cathodic protection monitoring, monitoring of process plants and other environments, corrosion auditing.
Nitrogen Fertilizers: Urea, ammonium nitrate, ammonium sulfate, non-pressure nitrogen solutions, aqua ammonia, anhydrous ammonia, ammonium thiosulfate, sulfur-coated urea, urea-formaldehydes, Isobutydinediurea(IBDU), polymer-coated urea.
Phosphorus fertilizers: Diammonium phosphate, mono-ammonium phosphate, ammonium polyphosphate, concentrated superphosphate.
Potassium Fertilizers: Potassium chloride, potassium sulfate, potassium-magnesium, sulfate, potassium nitrate.
Sulfur, Calcium and Magnesium Fertilizers: Micronutrient fertilizers, using micronutrient fertilizers, applying fertilizers, solubility of fertilizers: liquid vs.
Retrosynthesis algorithms take as ..
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