| Year I |
Semester I |
Communicative English Language, General Physics, General Psychology, Mathematics for Natural Sciences,
Logic and Critical Thinking, Physical Fitness, and Geography of Ethiopia and the Horn
|
Practical language proficiency, fundamental laws governing matter and energy, scientific principles of mind and behavior,
essential quantitative tools like calculus and linear algebra for scientific inquiry, sound reasoning and argumentation,
physical health and wellness, and environmental and human characteristics of the region.
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| Semester II |
Communicative English Language, Anthropology of Ethiopian Societies, General Biology, Introduction to Emerging Technologies,
Economics, Moral and Civic Education, and General Chemistry
|
Practical proficiency for academic and social interaction, cultural diversity, social structures, and historical context of Ethiopia's ethnic groups,
fundamental principles of life (cell structure, genetics, evolution, ecology), basics and impact of technologies like AI, IoT, and blockchain,
resource allocation, production, and consumption at micro and macro levels, ethical reasoning, democratic values, and civic responsibility.
|
| Year II |
Semester I |
Analytical Chemistry, Practical Analytical Chemistry, Mechanics and Heat for Chemists, Inclusiveness,
Applied Mathematics I for Chemists, and Introductory Statistics
|
Theory and hands-on methods to separate, identify, and quantify chemical substances,
laws of classical mechanics and thermodynamics, concepts of diversity and inclusion,
and mathematical/statistical tools for scientific problem-solving (calculus, linear algebra, probability, and inference).
|
| Semester II |
Inorganic Chemistry, Organic Chemistry I, Practical Organic Chemistry I, Chemical Thermodynamics,
Global Trends, Electricity and Magnetism for Chemists, and Applied Mathematics II for Chemists
|
Structure, properties, and transformation of matter, bonding and reactions of elements,
carbon compound chemistry and functional groups, laws of energy and entropy, principles of electromagnetism,
and their relation to atomic structure, bonding, and spectroscopy, as well as international and global issues.
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| Year III |
Semester I |
Instrumental Analysis I, Practical Instrumental Analysis I, Inorganic Chemistry II, Practical Inorganic Chemistry I,
Kinetics and Electrochemistry, Practical Physical Chemistry I, Industrial Chemistry I, and Applied Mathematics III for Chemists
|
Modern analytical techniques (spectroscopy, chromatography), transition metal and coordination chemistry,
kinetics and electrochemistry, industrial chemical processes, and applied mathematics (differential equations, multivariate calculus).
|
| Semester II |
Organic Chemistry II, Practical Organic Chemistry II, Instrumental Analysis II, Practical Instrumental Analysis II,
Inorganic Chemistry III, Practical Inorganic Chemistry II, Industrial Chemistry II, Industrial Attachment,
and Research Method and Scientific Writing
|
Structure, synthesis, and spectroscopy of organic and inorganic compounds,
advanced analytical instrumentation, industrial operations, professional field experience,
and skills for designing, analyzing, and presenting scientific research.
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| Year IV |
Semester I |
Physical Organic Chemistry, Practical Organic Chemistry III, Quantum Chemistry, Chemistry of Consumer Products,
Elective I, and Entrepreneurship and Business Development
|
Mechanisms and kinetics of organic reactions, advanced synthesis and spectroscopic analysis,
quantum mechanics applications in chemistry, composition and safety of consumer products,
and entrepreneurship—identifying market opportunities, business planning, and innovation.
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| Year IV |
Semester II |
Statistical Thermodynamics and Surface Chemistry, Practical Physical Chemistry II, Real Sample Analysis,
Environmental Chemistry and Toxicology, Introduction to Material Chemistry, Biochemistry, and Elective II
|
Molecular-to-macroscopic thermodynamics, surface chemistry, advanced sample analysis,
environmental and toxicological chemistry, material synthesis and structure-property relationships,
and biochemical processes involving biological macromolecules.
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