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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.

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Programme: B.Eng. Information and Communication Engineering × Clear all filters
Showing 31–40 of 51 courses
ICE 519 2
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
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The project work is to commence in this first phase. The preliminary sections of the project report as well as literature review are to be submitted and graded at this stage.
ICE 529 3
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
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The project work is to be completed in this second phase. Each student is to submit a proper written report (banded three printed copies, and a CD-ROM of electronic copy). The project is presented and defended at a seminar. Students may choose to work on individual design projects or team design projects. These projects consist of largely industry-sponsored projects as part programming, CAD/CAM application (turning problem, surface milling, machining of curved surfaces). Minimum Academic Standards Equipment Recommended List of Minimum Equipment s| Description of Equipment Remarks n Networking Laboratory 1 D3000: Virtual Instrument Platform 2 D3000 9.0: Experimental Master PCB 3 D3000 21.1: AM Communications PCB 4 D3000 21.2: Superhet Receiver PCB 5 D3000 21.4: Digital Communications PCB Or Equivalent 6 D3000 21.5: PAM PCB 7 D3000 21.5: PCM PCB NTX-1 42.000: Global, Local, Wired, Wireless Networking Training 8 Stand 9 D-Link Switch 10 Cisco 1 900 Router 11 D-Link Router 12 IEEE ComSoc Digital Library Transmission Line Laboratory 1 CT1 Modicom 1: Signal sampling and reconstruction module 2 CT2 Modicom 2: Time Division Multiplexer PAM module 3 CT3.1: PCM Transmitter System 4 CT3.2: PCM Reciever System 5 CT4 Modicom 4: Delta Modulation module CT5.1 and CT5.2 Modicom 5: Data conditioning and carrier 6 modulation system Or Equivalent 7 CT7: Audio Input Module 8 CT8: Audio Output Module 9 CT20 Anacom1.1;1.2; 2: Industry Analogue Communication Module 10 CT30: Transmission Line Trainer 11 PS20: Power Supply 12 FG2: Function Generator 13 OSC1: Oscilloscope Fiber Optics Laboratory 1 Modicom 6: Fiber-optic Transceiver System 2 NTC-1 03.000: Fiber-optic Communication Training Stand Or Equivalent 3 Pulse Semiconductor Laser 4 Photodiode Current Meter 5 Continuous Semiconductor Laser 6 Current Generator 7 Fast Photo Detector 8 Stand-to-study Photo Detector Operation 9 Optical Fiber Splicing Kit Microwave Laboratory 1 CT60: Microwave Communication Trainer – Transceiver Probe 2 Spectrum Analyzer: 9kHz – 3GHz 3 Indoor TV Antenna 4 NTC-1 04: Radio Engineering and Telecommunication with MPMS Staffing Academic Staff The NUC guidelines on staff/student ratio of 1:15 for Engineering and Technology departments shall apply. However, there should be a minimum of six full-time equivalents of Staff in the department. There is need to have a reasonable number of Staff with doctoral degrees as well as sufficient industrial experience. With a minimum load of 15 Units per semester for students and a minimum of six full-time equivalent of staff in each programme, staff should have a maximum of 15 contact hours per week for lectures, tutorials, practical’s and supervision of projects. NUC requirement encourages all academic staff to have PhD degrees; hence appointment of academic staff is preferably to the Lecturer cadre. Only in exceptional cases are candidates with great promise appointed to Graduate Assistant and Assistant Lecturer positions for the purpose of being developed to the Lecturer cadre as registered PhD candidates. Academic Support Personnel Teaching Assistant/Demonstrators to help lecturers in the conduct of tutorials, practical’s and field work. This category of personnel is not expected to be regular staff as they are to be paid on the basis of approved hourly rate. Administrative Support Staff The services of the administrative support staff are indispensable in the proper administration of the departments and faculty offices. It is important to recruit very competent senior staff that are computer literate. Technical Support Personnel The services of technical support staff, which are indispensable in the proper running of laboratories and workshop/studios are required. It is important to recruit very competent senior technical staff to maintain teaching and research equipment. They are also to undergo regular training to keep them abreast of developments in equipment operation and maintenance. The minimum of academic staff to technical staff ratio of 5:1 should be maintained. Minimum Number of Staff Subject to the general standards specified by NUC; 1. there should be a minimum of two PhDs and four M.Eng degree holders full-time academic staff to mount the programme; 2. each workshop or laboratory should have an adequate number of staff with the right mix, such that each unit or section in that workshop or laboratory can run efficiently; and 3. there should be an adequate number of administrative staff of the appropriate caliber for the office of the Head of Department to run. Library In addition to the university and faculty libraries, the programme must have a departmental library well equipped with specialised books and journals in both physical collections and E-collections (E-Resources) of various types. Various field and research reports of the programme must also be available in the library for staff, students and researchers. The library must be connected to subscribed repository of: 1. Institutions (national and international) 2. Open access sources (Agora, Science direct, OARE, HINARI amongst others). 3. Professional Bodies’ E-learning platforms. 4. Relevant international organisations. The library must also have adequate facilities for reading, lending services and reservation of specialized materials. Classrooms, Laboratories, Workshops, Clinics and Offices The ICE programme shall adopt NUC recommendations for physical space requirement as presented below: Academic Size (m2) Head of Department’s Office 18.50 Professor’s Office 18.50 Tutorial Teaching Staff Space 13.50 Other Teaching Staff Space 7.00 Technical Staff Space 7.00 Science Staff Research Laboratory 16.50 Engineering Staff Research Laboratory 14.50 Seminar Space per student 1.85 Drawing Office Space (A.O. Board) (Per Student) 4.60 Drawing Office Space (A.I. Board) (Per Student) 3.70 Laboratory Space 7.50 Non-Academic Secretarial Space 7.00 Office Facilities The requirements for office accommodation are: S/No Office No in Facilities Room 1. HOD/Professor 1 Table, chairs, A/C, filing cabinet, bookshelves, computer unit, Secretary and facilities. 2. Reader/ 1 Table, chairs, A/C, filing cabinet, bookshelves, Associate Professor computer unit. 3. Senior Lecturer 1 Table, chairs, A/C, filing cabinet, bookshelves, computer unit. 4. Lecturer I 2 Table, chairs, A/C, filing cabinet, bookshelves, 5. Lecturer II 3 computer unit. B.Eng. Industrial and Production
PHY 101 2
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
On completion, the students should be able to: 1. identify and deduce the physical quantities and their units; 2. differentiate between vectors and scalars; 3. describe and evaluate motion of systems on the basis of the...
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Space and time; units and dimension, vectors and scalars, differentiation of vectors: displacement, velocity and acceleration; kinematics; Newton’s laws of motion (inertial frames, impulse, force and action at a distance, momentum conservation); relative motion; application of Newtonian mechanics; equations of motion; conservation principles in physics, conservative forces, conservation of linear momentum, kinetic energy and work, potential energy, system of particles, centre of mass; rotational motion; torque, vector product, moment, rotation of coordinate axes and angular momentum. Polar coordinates; conservation of angular momentum; circular motion; moments of inertia, gyroscopes and precession; gravitation: Newton’s law of gravitation, Kepler’s laws of planetary motion, gravitational potential energy, escape velocity, satellites motion and orbits.
PHY 103 2
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
On completion, the students should be able to: 1. explain the concepts of heat and temperature and relate the temperature scales; 2. define, derive and apply the fundamental thermodynamic relations to thermal systems; 3....
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Heat and temperature, temperature scales; gas laws; general gas equation; thermal conductivity; first Law of thermodynamics; heat, work and internal energy, reversibility; thermodynamic processes; adiabatic, isothermal, isobaric; second law of thermodynamics; heat engines and entropy, Zero’s law of thermodynamics; kinetic theory of gases; molecular collisions and mean free path; elasticity; Hooke's law, Young's shear and bulk moduli; hydrostatics; pressure, buoyancy, Archimedes' principles; Bernoullis equation and incompressible fluid flow; surface tension; adhesion, cohesion, viscosity, capillarity, drops and bubbles.
PHY 107 1
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
On completion, the student should be able to: 1. conduct measurements of some physical quantities; 2. make observations of events, collect and tabulate data; 3. identify and evaluate some common experimental errors; 4. p...
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This introductory course emphasizes quantitative measurements. Experimental techniques. The treatment of measurement errors. Graphical analysis. The experiments include studies of meters, the oscilloscope, mechanical systems, electrical and mechanical resonant systems, light, heat, viscosity, etc. (covered in PHY 101, 102, 103 and PHY 104). However, emphasis should be placed on the basic physical techniques for observation, measurements, data collection, analysis, and deduction.
PHY 108 1
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
On completion, the student should be able to: 1. conduct measurements of some physical quantities; 2. make observations of events, collect and tabulate data; 3. identify and evaluate some common experimental errors; 4. p...
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This practical course is a continuation of PHY 107 and is intended to be taught during the second semester of the 100 level to cover the practical aspect of the theoretical courses that have been covered with emphasis on quantitative measurements, the treatment of measurement errors, and graphical analysis. However, emphasis should be placed on the basic physical techniques for observation, measurements, data collection, analysis and deduction.
ICE 411 1
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
1. At the end of this course, the students should be able to give practical expression to the topics learned in the various ICE courses offered during the semester/session.
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The Laboratory Practical covers topics in some 400 level courses.
ICE 101 2
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
At the end of this course, students should be able to: 1. explain the historical perspective to information and communication systems; 2. give account of the evolution of communication systems, technologies and architect...
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Basic introduction to information and communications system. Brief historical development of communications: telegraph, telephony, radio, satellite, data, optical and mobile communications, facsimile. Block diagram of a typical communication system. An elementary account of the types of transmission for different communication systems. Introduction to Television Systems: principle of operation of analogue and digital TV systems. Evolution of mobile radio communications. A basic cellular system. GSM Architecture. Examples of mobile radio systems. Trends in cellular radio and personal communications. Nigerian Communications Act and Nigerian Communications Commission. 200 Level
GST 112 2
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
At the end of this course, students should be able to: 1. analyse the historical foundation of Nigerian cultures and arts in pre-colonial times; 2. identify and list the major linguistic groups in Nigeria; 3. explain the...
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Nigerian history, culture and art up to 1800 (Yoruba, Hausa and Igbo peoples and cultures; peoples and cultures of the minority ethnic groups). Nigeria under colonial rule (advent of colonial rule in Nigeria; colonial administration of Nigeria). Evolution of Nigeria as a political unit (amalgamation of Nigeria in 1914; formation of political parties in Nigeria; nationalist movement and struggle for independence). Nigeria and challenges of nation building (military intervention in Nigerian politics; Nigerian Civil War). Concepts of trade and economics of self- reliance (indigenous trade and market system; indigenous apprenticeship system among Nigerian peoples; trade, skill acquisition and self-reliance). Social justice and national development (definition and classification of law); Judiciary and fundamental rights. Individuals, norms and values (basic Nigerian norms and values, patterns of citizenship acquisition; citizenship and civic responsibilities; indigenous languages, usage and development; negative attitudes and conducts [Cultism, kidnapping and other related social vices]). Re-orientation, moral and national values (The 3Rs – Reconstruction, Rehabilitation and Re-orientation; re-orientation strategies: Operation Feed the Nation (OFN), Green Revolution, Austerity Measures, War Against Indiscipline and Corruption(WAIC), Mass Mobilization for Self-Reliance, Social Justice and Economic Recovery (MAMSER), National Orientation Agency (NOA). Current socio-political and cultural developments in Nigeria.
GST 312 2
Engineering and Technology  ·  B.Eng. Information and Communication Engineering
At the end of this Course, students should be able to: 1. analyse the concepts of peace, conflict and security; 2. list major forms, types and root causes of conflict and violence; 3. differentiate between conflict and t...
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The concepts of peace, conflict and security in a multi-ethnic nation. Types and theories of conflicts: ethnic, religious, economic, geo-political Conflicts; structural conflict theory, realist theory of conflict, frustration-aggression conflict theory; root causes of conflict and violence in Africa: indigene and settlers phenomenon, boundaries/boarder disputes, political disputes, ethnic disputes and rivalries, economic inequalities, social disputes, nationalist movements and agitations; selected conflict case studies – Tiv-Junkun, ZangoKartaf, chieftaincy and land disputes, etc. Peace building, management of conflicts and security: Peace & Human Development. Approaches to Peace & Conflict Management (religious, government, community leaders, etc.). Elements of peace studies and conflict resolution: Conflict dynamics assessment Scales: Constructive & Destructive. Justice and Legal framework: Concepts of Social Justice; The Nigeria Legal System. Insurgency and terrorism. Peace mediation and peace keeping. Peace and Security Council (international, national and local levels). Agents of conflict resolution – Conventions, Treaties Community Policing: Evolution and Imperatives. Alternative Dispute Resolution (ADR) (dialogue,. arbitration, negotiation, collaboration, etc). The roles of international organizations in conflict resolution ((a) The United Nations, UN and its conflict resolution organs. (b) The African Union & Peace Security Council (c) ECOWAS in peace keeping). The media and traditional institutions in peace building. Managing post- conflict situations/crises: Refugees. Internally Displaced Persons (IDPs);the role of NGOs in post-conflict situations/crises.
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