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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Faculty: Allied Health Sciences ×
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BIO 101
2 Unit(s) (LH 30)
At the end of this course, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4...
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 this course, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4...
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, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4. d...
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, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4. d...
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 organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general re...
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 Lamarkism.
Mendelian laws. Explanation of key genetic terms), elements of ecology and types of habitats.
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 organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general re...
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 Lamarkism.
Mendelian laws. Explanation of key genetic terms), elements of ecology and types of habitats.
BIO 101
2 Unit(s) (LH 30)
At the end of lectures, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4. d...
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, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4. d...
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, students should be able to: 1. explain cell’s structure and organisations; 2. summarise functions of cellular organelle; 3. characterise living organisms and state their general reproduction; 4. d...
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 organisations; 2. summarise functions of cellular organelles; 3. characterise living organisms and state their general re...
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 Lamarkism.
Mendelian laws. Explanation of key genetic terms), elements of ecology and types of habitats.