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This course introduces the principles of photochemistry, pericyclic reactions, and alkaloids, including their types, mechanisms, classifications, and structural features. It develops the ability to apply these concepts to solve competitive exam problems, analyze reaction mechanisms, and elucidate the constitution and synthesis of alkaloids. The course also strengthens analytical and problem-solving skills by exploring the formulation, interpretation, and practical significance of photochemical and pericyclic reactions in organic chemistry.

This course introduces the fundamental principles of thermodynamics, phase equilibria, phase rule, colligative properties, group theory, catalysis, and adsorption. It covers the theoretical concepts, mathematical relationships, symmetry operations, and applications associated with these topics in physical chemistry. The course develops students' ability to apply thermodynamic principles, analyze physicochemical phenomena, interpret phase behavior and molecular symmetry, and evaluate the role of catalysis and adsorption in chemical processes.

This course introduces the principles of stereochemistry, including configuration, conformation, chirality, and stereoisomerism, along with the chemistry of carbonyl compounds, carboxylic acids, active methylene compounds, ethers, thio ethers, thiols, and alkaloids. It covers the nomenclature, structure, properties, reactions, synthesis, and applications of these organic compounds, emphasizing reaction mechanisms and stereochemical aspects. The course develops students' ability to represent molecular structures, analyze organic reactions, evaluate chemical reactivity, and understand the structural and biological significance of alkaloids and related organic compounds.