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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.

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168
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Faculty: Computing × Programme: B.Sc. Information Systems × Clear all filters
Showing 21–30 of 32 courses
INS 305 2
Computing  ·  B.Sc. Information Systems
At the end of this course, students should be able to: 1. explain the concepts, principles and techniques of management; 2. explain the evolution of management theories; and 3. demonstrate the application of the concepts...
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Definition of management; needs for theory and technique of management. Managerial transformation process, evolution of management theory. Theories of management. Management functions. Management by objective. Securing productivity at work. Criteria for locating bad management and group conflicts in organisation. INS 311 E-Business System Development (2 Units C: LH 15; PH 45) Learning Outcomes At the end of this course, students should be able to: 1. explain e-business application design and development; 2. explain security challenges of e-business applications; and 3. describe ethical issues and social impact of web application solutions. Course Contents Developing e-business applications and web sites using currently popular software packages, web authoring and development tools. The business processes enabled by integrating information systems, telecommunications and internet-based technologies. e-security challenges. Ethical and social impact of web application solutions. Lab work: Practical exercises on how to creating websites and develop electronic business applications. Practise on how to secure the developed electronic business application.
CSC 308 3
Computing  ·  B.Sc. Information Systems
At the end of this course, students should be able to 1. recognise operating system types and structures; 2. describe OS support for processes and threads; 3. recognise CPU scheduling, synchronisation, and deadlock; 4. r...
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Fundamentals of operating systems design and implementation. History and evolution of operating systems. Types of operating systems. Operating system structures. Process management: processes, threads, CPU scheduling, process synchronisation. Memory management and virtual memory. File systems; I/O systems; Security and protection; Distributed systems; Case studies. Lab work: Practical hands-on engagement to facilitate understanding of the material taught in the course. All the process, memory, file and directory management issues will be demonstrated under the LINUX operating system. Also UNIX commands will be briefly discussed. Alternatively, hands-on exposure may be through the use of operating systems developed for teaching, like TempOS, Nachos, Xinu or MiniOS. Another possibility is through programming exercises that implement and simulate algorithms taught. Simulation of CPU scheduling algorithms, producer-consumer problem, memory allocation algorithms, file organisation techniques, deadlock algorithms and disk scheduling algorithms. 400 Level
GST 312 2
Computing  ·  B.Sc. Information Systems
At the end of the 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 te...
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Concepts of Peace, Conflict and Security in a multi-ethnic nation. Types and Theories of Conflicts: Ethnic, Religious, Economic, Geopolitical 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/border disputes; Political disputes; Ethnic disputes and rivalries; Economic Inequalities; Social disputes; Nationalist Movements and Agitations; Selected Conflict Case Studies – Tiv-Junkun; Zango Kartaf, 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 & Security Council (International, National and Local levels) Agents of Conflict resolution – Conventions, Treaties Community Policing: Evolution and Imperatives. Alternative Dispute Resolution, ADR. Dialogue b). Arbitration, c). Negotiation d). Collaboration, etc. Roles of International Organisations 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. Media and Traditional Institutions in Peace Building. Managing Post-Conflict Situations/Crisis: Refugees. Internally Displaced Persons, IDPs. The role of NGOs in Post-Conflict Situations/Crisis
GST 212 2
Computing  ·  B.Sc. Information Systems
At the end of this course, students should be able to 1. know the basic features of philosophy as an academic discipline; 2. identify the main branches of philosophy & the centrality of logic in philosophical discourse;...
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Scope of philosophy; notions, meanings, branches and problems of philosophy. Logic as an indispensable tool of philosophy. Elements of syllogism, symbolic logic— the first nine rules of inference. Informal fallacies, laws of thought, nature of arguments. Valid and invalid arguments, logic of form and logic of content — deduction, induction and inferences. Creative and critical thinking. Impact of philosophy on human existence. Philosophy and politics, philosophy and human conduct, philosophy and religion, philosophy and human values, philosophy and character molding, etc.
COS 102 2
Computing  ·  B.Sc. Information Systems
At the end of this course, students should be able to: 1. explain problem solving processes; 2. demonstrate problem solving skills; 3. describe the concept of algorithms development and properties of algorithms; 4. discu...
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Introduction to the core concepts of computing. Problems and problem-solving. The identification of problems and types of problems (routine problems and non-routine problems). Method of solving computing problems (introduction to algorithms and heuristics). Solvable and unsolvable problems. Solution techniques of solving problems (abstraction, analogy, brainstorming, trial and error, hypothesis testing, reduction, literal thinking, means- end analysis, method of focal object, morphological analysis, research, root cause analysis, proof, divide and conquer). General Problem-solving process. Solution formulation and design: flowchart, pseudocode, decision table, decision tree. Implementation, evaluation and refinement. Programming in C, Python etc. Lab Work: Use of simple tools for algorithms and flowcharts; writing pseudocode; writing assignment statements, input-output statements and condition statements; demonstrating simple programs using any programming language (Visual Basic, Python, C) 200 Level
INS 401 2
Computing  ·  B.Sc. Information Systems
At the end of this course, students should be able to: 1. describe project management planning; 2. describe project scheduling; 3. explain management of project resources; 4. discuss project procurement, monitoring and e...
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Introduction to Project Management. The Project Management Lifecycle. Project Execution, Control and Closure. Project management and systems development or acquisition. The project management context, technology and techniques. Project management processes. Managing Project Teams: Project team planning, Leadership in project management. Power and conflict in project teams. Communication among project stakeholders. Scope management. Managing Project Scheduling: Common problems in project scheduling. Resource management. Project quality management. Managing project risk and tools for managing project risk. Managing Project Procurement: Alternatives to systems development, External acquisition, Outsourcing-domestic and offshore, Steps in the procurement process. Project auditing.
COS 409 2
Computing  ·  B.Sc. Information Systems
At the end of this course, students should be able to: 1. describe research, types, approaches, significance of research, research methods, research process, criteria and strategy for good research; 2. discuss the princi...
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Foundations of Research. Types of Research. Research Approaches. Significance of Research. Research Methods versus Methodology. Research Process. Criteria and Strategy for Good Research. Principles of Scientific Research. Scientific investigation. Problem Formulation and Its Techniques. Developing Research Proposal and Research Plan. Formulation of Research Questions and Hypothesis Testing. Developing Research Proposal and Research Plan. Literature Review. Procedure for Reviewing Related Relevant Studies. Methods for Collection of Primary and Secondary Data. Elicitation Techniques - Questionnaires, Interviewing, Ethnography, etc. Guidelines for Constructing Data Instruments. Methods of AnalysingData in Computing and Related Disciplines. System Design: Architectural design, input design, process design, output design. Use case analysis, sequence diagram, activity diagram, deployment diagram, etc.Types of Reports. Technical Report Writing. Layout and Mechanics of Writing a Research Report. Standard Techniques for Research Documentation. Interpretation and Presentation of Results. How to Cite Referenced Works and Prepare References and Bibliography.
STA 121 3
Computing  ·  B.Sc. Information Systems
Upon the completion of these courses, the students should be able to: 1. be able to differentiate population from sample as well as point from interval estimate; 2. be able to test for hypothesis concerning population me...
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Population and samples. Random sampling distributions, estimation (Point and interval) and Tests of hypotheses concerning population mean and proportion (one and two large sample cases). Regression and correlation. Elementary time series analysis.
INS 399 3
Computing  ·  B.Sc. Information Systems
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Students are attached to private and public organisations for a period of three months with a view to making them acquire practical experience and to the extent possible, develop skills in all areas of computing. Students are supervised during the training period and shall be expected to keep records designed for the purpose of monitoring their performance. They are also expected to submit a report on the experience gained and defend their reports.
INS 299 3
Computing  ·  B.Sc. Information Systems
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Students are attached to private and public organisations for a period of three months with a view to making them acquire practical experience and to the extent possible, develop skills in all areas of computing. Students are supervised during the training period and shall be expected to keep records designed for the purpose of monitoring their performance. They are also expected to submit a report on the experience gained and defend their reports. 300 Level
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