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BRIDGE BRIDGE Diaspora BRIDGE

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
Courses
10
Faculties
168
Programmes
Showing 1131–1140 of 4,624 courses
GET 101 1
Engineering and Technology  ·  B.Eng. Aerospace Engineering
At the end of this course, the students should be able to: 1. differentiate between science, engineering and technology, and relate them to innovation; 2. distinguish between the different cadres of engineering – enginee...
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History, evolution and philosophy of science. engineering and technology. The engineering profession – engineering family (engineers, technologists, technicians and craftsmen), professional bodies and societies. Engineers' code of conduct and ethics, and engineering literacy. Sustainable development goals (SDGs), innovation, infrastructures and nation building - economy, politics, business. Safety and risk analysis in engineering practice. Engineering competency skills – curriculum overview, technical, soft and digital skills. Guest seminars and invited lectures from different engineering professional associations.
GET 101 1
Engineering and Technology  ·  B.Eng. Automotive Engineering
At the end of this course, the students should be able to: 1. differentiate between science, engineering and technology, and relate them to innovation; 2. distinguish between the different cadres of engineering – enginee...
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History, evolution and philosophy of science. engineering and technology. The engineering profession – engineering family (engineers, technologists, technicians and craftsmen), professional bodies and societies. Engineers' code of conduct and ethics, and engineering literacy. Sustainable development goals (SDGs), innovation, infrastructures and nation building - economy, politics, business. Safety and risk analysis in engineering practice. Engineering competency skills – curriculum overview, technical, soft and digital skills. Guest seminars and invited lectures from different engineering professional associations.
GET 101 1
Engineering and Technology  ·  B.Eng. Agricultural and Biosystems Engineering
At the end of this course, the students should be able to: 1. differentiate between science, engineering and technology, and relate them to innovation; 2. distinguish between the different cadres of engineering – enginee...
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History, evolution and philosophy of science. engineering and technology. The engineering profession – engineering family (engineers, technologists, technicians and craftsmen), professional bodies and societies. Engineers' code of conduct and ethics, and engineering literacy. Sustainable development goals (SDGs), innovation, infrastructures and nation building - economy, politics, business. Safety and risk analysis in engineering practice. Engineering competency skills – curriculum overview, technical, soft and digital skills. Guest seminars and invited lectures from different engineering professional associations.
MTE 506 2
Engineering and Technology  ·  B.Eng. Metallurgical Engineering
At the end of this course, the students should be able to: 1. situate engineering failure analysis under the broader field of forensic engineering; 2. explain the principles of manufacturing and mechanical metallurgy and...
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Application of the principles of manufacturing and mechanical metallurgy to the analysis of failed components; destructive tests (hardness test, compressive test, tensile test, fatigue test, impact test, creep test) and non-destructive test (such as magnetic, resonance, eddy current effect) of metallic materials; analytical techniques such as optical microscopy, scanning electron microscopy (SEM), transmission electron microscopy (TEM) and scanning transmission electron microscopy (STEM), and high-resolution photography for characterisation of microstructure and fractographic failures; appropriate methods to gather data, analyse the data and draw valid conclusions therefrom.
CEE 303 2
Engineering and Technology  ·  B.Eng. Environmental Engineering
At the end of this course, the students should be able to: 1. plan subsurface exploration; 2. acquire the fundamental knowledge engineering geologic characterization of soil and rock types especially in Nigeria; 3. prepa...
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Basic principles of physical and structural geology with emphasis on topics related to civil engineering - the study of minerals, rocks and soil types, load formation, techniques of air- photo interpretations, and geological mapping. Introduction to geology of Nigeria. Application of geological principles to engineering and environmental problems such as water supply, site investigation - dams, geologic hazards, slope processes, earthquakes, subsidence, and the engineering properties of geologic materials. Preparation and interpretation of engineering geology report. This course should be supported with laboratory on basic geologic identification and mapping techniques.
CEE 303 2
Engineering and Technology  ·  B.Eng. Civil Engineering
Upon completion of the course, students should be able to: 1. describe the engineering properties of rock and soil materials; 2. identify the geological factors affecting the performance and functioning of a facility on...
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Geology structures and mapping; rocks and minerals; stratigraphy - time scale - fossils and their importance with special reference to Nigeria. Introduction to the geology of Nigeria; engineering applications - water supply, site investigations for dams, dykes and so on.
GET 203 3 1 institution need this
Engineering and Technology  ·  B.Eng. Electronic Engineering
Students should be able to: 1. apply mastery of the use of projections to prepare detailed working drawing of objects and designs; 2. develop skills in parametric design to aid their ability to see design in the optimal...
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Projection of lines, auxiliary views and mixed projection. Preparation of detailed working production drawing; semi-detailed drawings, conventional presentation methods. Solid, surface and shell modeling. Faces, bodies and surface intersections. Component-based design. Component assembly and motion constraints. Constrained motions and animation. Introduction to electronics modeling. Electronics board layout preparation, Component libraries and Schematic design. Parametric modeling and adaptive design. Simulation for material optimization. Designing for manufacturing. Additive and subtractive manufacturing. Production for 3-D printing, Laser cutting and CNC machinery.Arrangement of engineering components to form a working plant (Assembly Drawing of a Plant).
GET 203 3
Engineering and Technology  ·  B.Eng. Structural Engineering
Students should be able to: 1. apply mastery of the use of projections to prepare detailed working drawing of objects and designs 2. develop skills in parametric design to aid their ability to see design in the optimal s...
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Projection of lines, auxiliary views and mixed projection. Preparation of detailed working production drawing; semi-detailed drawings, conventional presentation methods. Solid, surface and shell modeling. Faces, bodies and surface intersections. Component-based design. Component assembly and motion constraints. Constrained motions and animation. Introduction to electronics modeling. Electronics board layout preparation, Component libraries and Schematic design. Parametric modeling and adaptive design. Simulation for material optimization. Designing for manufacturing. Additive and subtractive manufacturing. Production for 3-D printing, Laser cutting and CNC machinery.Arrangement of engineering components to form a working plant (Assembly Drawing of a Plant).
GET 203 3
Engineering and Technology  ·  B.Eng. Railway Engineering
Students should be able to: 1. apply mastery of the use of projections to prepare detailed working drawing of objects and designs; 2. develop skills in parametric design to aid their ability to see design in the optimal...
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Projection of lines, auxiliary views and mixed projection. Preparation of detailed working production drawing; semi-detailed drawings, conventional presentation methods. Solid, surface and shell modeling. Faces, bodies and surface intersections. Component-based design. Component assembly and motion constraints. Constrained motions and animation. Introduction to electronics modeling. Electronics board layout preparation, Component libraries and Schematic design. Parametric modeling and adaptive design. Simulation for material optimization. Designing for manufacturing. Additive and subtractive manufacturing. Production for 3-D printing, Laser cutting and CNC machinery. Arrangement of engineering components to form a working plant (Assembly Drawing of a Plant).
GET 203 3
Engineering and Technology  ·  B.Eng. Materials Engineering
Students should be able to: 1. apply mastery of the use of projections to prepare detailed working drawing of objects and designs; 2. develop skills in parametric design to aid their ability to see design in the optimal...
View learning outline
Projection of lines, auxiliary views and mixed projection. Preparation of detailed working production drawing; semi-detailed drawings, conventional presentation methods. Solid, surface and shell modeling. Faces, bodies and surface intersections. Component-based design. Component assembly and motion constraints. Constrained motions and animation. Introduction to electronics modeling. Electronics board layout preparation, Component libraries and Schematic design. Parametric modeling and adaptive design. Simulation for material optimization. Designing for manufacturing. Additive and subtractive manufacturing. Production for 3-D printing, Laser cutting and CNC machinery. Arrangement of engineering components to form a working plant (Assembly Drawing of a Plant).
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