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CCMAS Course Search

Browse BRIDGE's courses under the National Universities Commission's Core Curriculum Minimum Academic Standards (CCMAS) — Nigeria's unified benchmark curriculum for every accredited program. Search by course title, code, faculty or programme to see full descriptions, learning outlines and credit-hour loads.

4,624
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10
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168
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Faculty: Engineering and Technology × Clear all filters
Showing 781–790 of 1,630 courses
PGE 306 3
Engineering and Technology  ·  B.Eng. Petroleum and Gas Engineering
At the end of this course, the students should be able to: 1. explain the basic principles of measuring pressure, temperature and volume; 2. describe how flow parameters are controlled; and 3. apply and analyse results o...
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Applications for thermometers, pressure gauges, thermocouples, flow meters, and manometers in gas systems. Construction and operation of simple pipelines using steel and plastic pipes. Determination of rate of heat flow and thermal efficiency of burners and furnaces and boilers. Chemical composition and flue gas analysis. Gas chromatograhpy, mass spectrometer and sampling system. 400 Level GET 402 Engineering Project I (2 Units: C; PH 90) Learning Outcomes At the end of this course, the students should be able to: 1. Complete the design phase of a complex engineering problem sourced from industry or community during the SIWES III programme. 2. Demonstrate the connection between engineering product-making and the theoretical courses they have learned following the applicable industry best practices. Course Contents In the second semester of the 400-level students, preferably in groups, work from the university on the identified industry or organization to tackle industry complex engineering problems. Theoretical issues may be provided by the department faculty or industry experts. During the vacation, students will now work full time with the organisation/industry on the project as part of the SIWES III. The students can also go beyond the department and engage in multidisciplinary undertakings. Literature survey, review of existing systems etc. must be achieved to a satisfactory extent. GET 404 Engineering Valuation and Appraisal (2 Units: C; LH 30) Learning Outcomes At the end of this course, the students should be able to: 1. Identify at least three (3) objectives of engineering valuation work, valuer's primary duty and responsibility and valuation terminologies. 2. Describe at least four (4) Valuer's obligation to his or her client, to other valuers, and to the society. 3. Demonstrate with example the engineering valuation methods, valuation standards, and practices. 4. Prepare engineering valuation and appraisal reports and review 5. Discuss expert witnessing and ethics in valuation. 6. Determine price, cost, value, depreciation and obsolescence in real property, personal property, personal property, machinery and equipment, oil, gas, mines, and quarries valuation.
GNG 407 2
Engineering and Technology  ·  B.Eng. Natural Gas Engineering
At the end of this course, the students should be able to: 1. explain the basic testing methods for determining the distribution of particulate matter in air and gaseous emissions, combustion emissions for solid, liquid...
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Basic thermodynamics, steam power cycles, gas turbine cycles and combined cycles, cooling towers and condensers, ideal engines cycles, refrigeration and heat pumps. Industrial air pollution monitoring particulate and gaseous emissions. Combustion and emission calculations for solid, liquid and gaseous fuels or wastes
BME 214 2
Engineering and Technology  ·  B.Eng. Biomedical Engineering
Students should be able to: 1. demonstrate an understanding of fundamental biochemistry principles, including topics specific to chemistry and biochemistry; 2. explain the properties and biological functions of the major...
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Review of general chemistry: chemical elements and the periodic table; electronic configuration, electronic orbital, valency of atoms, and types of chemical bonds; metals and non-metals; acids and bases, highlighting Lewis Conception; carbon, sp3 hybridization, the tetrahedron and covalent bond; functional groups; water and its special properties. Introduction of the cell and hierarchy of organisation of living things: macromolecules, organelles, cells, tissues; organs, systems and organism. Amino acids, proteins; the peptide bond and polypeptides; proteins as biological catalysts, immune agents and structural molecules. Carbohydrates; the glycosidic bond; relationship of photosynthesis and tissue respiration; carbohydrate as storage molecule of easily accessible metabolic energy. Fatty acids and lipids: the ester bond of lipids and triglycerides; fat as efficient energy storage molecule. Nucleic acids and nucleotides: DNA and RNA as polymers of nucleotides; the phosphodiester bond; gene and genetic information transcription and translation.
BIO 101 3
Engineering and Technology  ·  B.Eng. Wood Products Engineering
Students should be able to: explain the characteristics of living and non-living things; outline the taxonomy of living organisms – microbes, plants including field and herbarium methods, animals including vertebrates an...
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Characteristics of living and non-living things. Scientific methods to biology concepts. Taxonomy of living organisms – microbes, plants including field and herbarium methods, animals including vertebrates and invertebrates. Morphology and life cycles of phyla and plant kingdoms. Cell concepts, structure, organization, functions, and chemical and physical characteristics. Cells, tissues and organ systems, and organisms. Elements of biological chemistry – cellular metabolism - aspects of organic, inorganic and physical chemistry relevant to biology. Elements of ecology and types of habitats
BIO 101 3
Engineering and Technology  ·  B.Eng. Biomedical Engineering
Students should be able to: 1. explain the characteristics of living and non-living things; 2. outline the taxonomy of living organisms – microbes, plants including field and herbarium methods, animals including vertebra...
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Characteristics of living and non-living things. Scientific methods to biology concepts. Taxonomy of living organisms – microbes, plants including field and herbarium methods, animals including vertebrates and invertebrates. Morphology and life cycles of phyla and plant kingdoms. Cell concepts, structure, organization, functions, and chemical and physical characteristics. Cells, tissues and organ systems, and organisms. Elements of biological chemistry – cellular metabolism - aspects of organic, inorganic and physical chemistry relevant to biology. Elements of ecology and types of habitats
CHM 101 2
Engineering and Technology  ·  B.Eng. Wood Products Engineering
At the end of this course, the students should be able to: define atom, molecules and chemical reactions; discuss the modern electronic theory of atoms; write electronic configurations of elements on the periodic table;...
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Atoms, molecules, elements and compounds, and chemical reactions. Modern electronic theory of atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridisation and shapes of simple molecules. Valence forces; Structure of solids. Chemical equations and stoichiometry; chemical bonding and intermolecular forces, kinetic theory of matter. Elementary thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts. Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101 2
Engineering and Technology  ·  B.Eng. Water Resources Engineering
At the end of this course, the students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
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Atoms, molecules, elements and compounds, and chemical reactions. Modern electronic theory of atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridisation and shapes of simple molecules. Valence forces; Structure of solids. Chemical equations and stoichiometry; chemical bonding and intermolecular forces, kinetic theory of matter. Elementary thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts. Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101 2
Engineering and Technology  ·  B.Eng. Telecommunications Engineering
At the end of this course, the students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
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Atoms, molecules, elements and compounds, and chemical reactions. Modern electronic theory of atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridisation and shapes of simple molecules. Valence forces; Structure of solids. Chemical equations and stoichiometry; chemical bonding and intermolecular forces, kinetic theory of matter. Elementary thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts. Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101 2 1 institution need this
Engineering and Technology  ·  B.Eng. Systems Engineering
At the end of this course, the students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
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Atoms, molecules, elements and compounds, and chemical reactions. Modern electronic theory of atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridisation and shapes of simple molecules. Valence forces; Structure of solids. Chemical equations and stoichiometry; chemical bonding and intermolecular forces, kinetic theory of matter. Elementary thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts. Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101 2
Engineering and Technology  ·  B.Eng. Structural Engineering
At the end of this course, the students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
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Atoms, molecules, elements and compounds, and chemical reactions. Modern electronic theory of atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridisation and shapes of simple molecules. Valence forces; Structure of solids. Chemical equations and stoichiometry; chemical bonding and intermolecular forces, kinetic theory of matter. Elementary thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts. Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
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