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 2391–2400
of 4,624 courses
PHY 108
1 Unit(s) (PH 45)
At the end of the course, students 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 erro...
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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.
PHY 108
1 Unit(s) (PH 45)
At the end of the course, students 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 erro...
View learning outline
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.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures in Plant Biology, students should be able to: 1. explain cells structure and organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general r...
View learning outline
Cell structure and organisation. functions of cellular organelles. characteristics and classification
of living things. chromosomes, genes their relationships and importance. General reproduction.
Interrelationships of organisms (competitions, parasitism, predation, symbiosis, commensalisms,
mutualism, saprophytism). Heredity and evolution (introduction to Darwinism and Lamarckism,
Mendelian laws, explanation of key genetic terms). Elements of ecology and types of habitat.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures in Plant Biology, students should be able to: 1. explain cells structure and organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general r...
View learning outline
Cell structure and organisation. functions of cellular organelles. characteristics and classification
of living things. chromosomes, genes their relationships and importance. General reproduction.
Interrelationships of organisms (competitions, parasitism, predation, symbiosis,
commensalisms, mutualism, saprophytism). Heredity and evolution (introduction to Darwinism
and Lamarckism, Mendelian laws, explanation of key genetic terms). Elements of ecology and
types of habitat.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures in Plant Biology, students should be able to: 1. explain cells structure and organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general r...
View learning outline
Cell structure and organisation. functions of cellular organelles. characteristics and classification
of living things. chromosomes, genes their relationships and importance. General reproduction.
Interrelationships of organisms (competitions, parasitism, predation, symbiosis, commensalisms,
mutualism, saprophytism). Heredity and evolution (introduction to Darwinism and Lamarckism,
Mendelian laws, explanation of key genetic terms). Elements of ecology and types of habitat.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures in Plant Biology, students should be able to: 1. explain cells structure and organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general r...
View learning outline
Cell structure and organisation. functions of cellular organelles. characteristics and classification
of living things. chromosomes, genes their relationships and importance. General reproduction.
Interrelationships of organisms (competitions, parasitism, predation, symbiosis, commensalisms,
mutualism, saprophytism). Heredity and evolution (introduction to Darwinism and Lamarckism,
Mendelian laws, explanation of key genetic terms). Elements of ecology and types of habitat.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures in Plant Biology, students should be able to: 1. explain cell structure and organisation; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general rep...
View learning outline
Cell structure and organisation. functions of cellular organelles. characteristics and classification
of living things. chromosomes, genes their relationships and importance. General reproduction.
Interrelationships of organisms (competitions, parasitism, predation, symbiosis,
commensalisms, mutualism, saprophytism). Heredity and evolution (introduction to Darwinism
and Lamarckism, Mendelian laws, explanation of key genetic terms). Elements of ecology and
types of habitat.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures in Plant Biology, students should be able to: 1. explain cells structure and organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general r...
View learning outline
Cell structure and organisation. functions of cellular organelles. characteristics and classification
of living things. chromosomes, genes their relationships and importance. General reproduction.
Interrelationships of organisms (competitions, parasitism, predation, symbiosis, commensalisms,
mutualism, saprophytism). Heredity and evolution (introduction to Darwinism and Lamarckism,
Mendelian laws, explanation of key genetic terms). Elements of ecology and types of habitat.
BIO 102
2 Unit(s) (LH 30)
At the end of the lectures in Introductory Ecology, students should be able to: 1. List the characteristics, methods of identification and classification of viruses, bacteria and fungi; 2. state the unique characteristic...
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Basic characteristics, identification and classification of viruses, bacteria and fungi. A generalised
survey of the plant and animal kingdoms based mainly on the study of similarities and differences
in the external features. Ecological adaptations. Briefs on physiology to include nutrition,
respiration, circulatory systems, excretion, reproduction, growth and development.
BIO 102
2 Unit(s) (LH 30)
At the end of the lectures in Introductory Ecology, students should be able to: 1. List the characteristics, methods of identification and classification of viruses, bacteria and fungi; 2. state the unique characteristic...
View learning outline
Basic characteristics, identification and classification of viruses, bacteria and fungi. A generalised
survey of the plant and animal kingdoms based mainly on the study of similarities and differences
in the external features. Ecological adaptations. Briefs on physiology to include nutrition,
respiration, circulatory systems, excretion, reproduction, growth and development.