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.
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Programme: B.Eng. Wood Products Engineering ×
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of 47 courses
GET 201
3
Students will be able to: discuss the fundamental concepts of electricity and electrical d.c. circuits; state, explain and apply the basic d.c. circuit theorems; explain the basic a.c. circuit theory and apply to solutio...
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Fundamental concepts: Electric fields, charges, magnetic fields. current, B-H curves Kirchhoff’s
laws, superposition. Thevenin, Norton theorems, Reciprocity, RL, RC, RLC circuits. DC, AC
bridges, Resistance, Capacitance, Inductance measurement, Transducers, Single phase
circuits, Complex j - notation, AC circuits, impedance, admittance, susceptance.
GET 207
3
Students will acquire the ability to: explain the fundamental principles of applied mechanics, particularly equilibrium analysis, friction, kinematics and momentum; identify, formulate, and solve complex engineering prob...
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Forces, moments, couples. Equilibrium of simple structures and machine parts. Friction.
First and second moments of area; centroids. Kinematics of particles and rigid bodies in
plane motion. Newton's laws of motion. Kinetic energy and momentum analyse
WPE 306
2
1 institution need this
At the end of this course, the students should be able to: describe how wood is formed, know the principal cell types and their function in wood; relate the anatomy and cell wall structure of wood to its physical and mec...
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Structure of woods and its influence on wood properties; gross characteristics of wood;
macro and microscopic features of hardwoods. Wood and water interactions. General
consideration of physical and mechanical properties of wood. Identifications of Nigeria wood
at the macroscopic level.
GST 111
2
At the end of this course, students should be able to: identify possible sound patterns in English Language; list notable language skills; classify word formation processes; construct simple and fairly complex sentences...
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Sounds and sound patterns in English Language (vowels and consonants, phonetics and
phonology). English word classes (lexical and grammatical words, definitions, forms,
functions, usages, collocations). Major word formation processes; the sentence in English
(types: structural and functional). Grammar and usage (tense, concord and modality). Reading
and types of reading, comprehension skills, 3RsQ. Logical and critical thinking; reasoning
methods (logic and syllogism, inductive and deductive argument, analogy, generalisation and
explanations). Ethical considerations, copyright rules and infringements. Writing activities
(pre-writin (brainstorming and outlining). Writing (paragraphing, punctuation and expression).
post- writing (editing and proofreading). Types of writing (summary, essays, letter, curriculum
vitae, report writing, note-making, etc. Mechanics of writing. Information and Communication
Technology in modern language learning. Language skills for effective communication. The
art of public speaking.
GET 211
3
At the end of the course, the students should be able to: describe and apply computing, software engineering knowledge, best practices, and standards appropriate for complex engineering software systems; develop competen...
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Introduction to computers and computing; computer organisation – data processing, memory,
registers and addressing schemes; Boolean algebra; floating-point arithmetic; representation
of non-numeric information; problem-solving and algorithm development; coding (solution
design using flowcharts and pseudo codes). Data models and data structures; computer
software and operating system; computer operators and operators precedence; components
of computer programs; introduction to object oriented, structured and visual programming;
use of MATLAB in engineering applications. ICT fundamentals, Internet of Things (IoT).
Elements of software engineering.
MTH 101
2
At the end of the course students should be able to: define and explain set, subset, union, intersection, complements, and demonstrate the use of Venn diagrams; solve quadratic equations; solve trigonometric functions; i...
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Elementary set theory, subsets, union, intersection, complements, Venn diagrams. Real
numbers, integers, rational and irrational numbers. Mathematical induction, real sequences
and series, theory of quadratic equations, binomial theorem, complex numbers, algebra of
complex numbers, the argand diagram. De-Moiré’s theorem, nth roots of unity. Circular
measure, trigonometric functions of angles of any magnitude, addition and factor formulae.
MTH 102
2
At the end of the course, students should be able to: identify the types of rules in differentiation and integration; recognise and understand the meaning of function of a real variable, graphs, limits and continuity; so...
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Functions of a real variable, graphs, limits and idea of continuity. The derivative, as limit of
rate of change. Techniques of differentiation, maxima and minima. Extreme curve sketching,
integration, definite integrals, reduction formulae, application to areas, volumes (including
approximate integration: Trapezium and Simpson's rule).
GET 101
1
At the end of this course, the students should be able to: differentiate between science, engineering and technology, and relate them to innovation; distinguish between the different cadres of engineering – engineers, te...
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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 102
2
At the end of this course, the students should be able to: have a good grasp of design thinking and be obsessed with the determination to apply such to solving simple everyday and also complex problems; recognise the fun...
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Introduction to design thinking and engineering graphics. First and third angle orthogonal
projections. Isometric projections; sectioning, conventional practices, conic sections and
development. Freehand and guided sketching – pictorial and orthographic. Visualisation and
solid modelling in design, prototyping and product-making. User interfaces in concrete
terms. Design, drawing, animation, rendering and simulation workspaces. Sketching of 3D
objects. Viewports and sectioning to shop drawings in orthographic projections and
perspectives. Automated viewports. Sheet metal and surface modelling. Material selection
and rendering. This course will use latest professional design tools such as fusion 360, solid
works, solid edge or equivalent.
GET 502
2
Students will be able to: describe and explain the basic concept, sources and aspects of law; describe and explain the major differences between the various categories of law, courts and legal jurisdictions; describe and...
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Common Law: its history, definition, nature and division. Legislation, codification
interpretation. Equity: definition and its main spheres. Law of contracts for Engineers: Forms
of contract and criteria for selecting contractors; offer, acceptance, communication
termination of contract. Terms of Contracts; suppliers’ duties – Damages and other Remedies.
Termination/cancellation of contract Liquidation and Penalties; exemption clauses, safety and
risk. Health and Safety. Duties of employers towards their employees. Duties imposed on
employees. Fire precautions act. Design for safety. General principles of criminal law. Law of
torts: definition, classification and liabilities. Patents: requirements, application, and
infringement. Registered designs: application, requirements, types and infringement.
Company law. Labour law and Industrial Law. Business registration.