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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.

4,624
Courses
10
Faculties
168
Programmes
Showing 1071–1080 of 4,624 courses
MTH 103 2
Engineering and Technology  ·  B.Eng. Telecommunications Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
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(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 103 2
Engineering and Technology  ·  B.Eng. Petroleum Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
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(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 103 2
Engineering and Technology  ·  B.Eng. Petroleum and Gas Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
View learning outline
(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 103 2
Engineering and Technology  ·  B.Eng. Mechanical Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
View learning outline
(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 103 2
Engineering and Technology  ·  B.Eng. Chemical Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
View learning outline
(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 103 2
Engineering and Technology  ·  B.Eng. Biomedical Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
View learning outline
(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 103 2
Engineering and Technology  ·  B.Eng. Automotive Engineering
At the end of the course, students should be able to: 1. solve some vectors in addition and multiplication; 2. calculate force and momentum; and 3. solve differentiation and integration of vectors.
View learning outline
(Pre-requisite –MTH 101) Geometric representation of vectors in 1-3 dimensions, components, direction cosines. Addition, scalar, multiplication of vectors, linear independence. Scalar and vector products of two vectors. Differentiation and integration of vectors with respect to a scalar variable. Two- dimensional co-ordinate geometry. Straight lines, circles, parabola, ellipse, hyperbola. Tangents, normals. Kinematics of a particle. Components of velocity and acceleration of a particle moving in a plane. Force, momentum, laws of motion under gravity, projectiles and resisted vertical motion. Elastic string and simple pendulum. Impulse, impact of two smooth spheres and a sphere on a smooth surface.
MTH 101 2 Unit(s) (LH 30)
Allied Health Sciences  ·  B. DT Dental Therapy
At the end of the course students should be able to: 1. explain basic definition of Set, Subset, Union, Intersection, Complements and use of Venn diagrams; 2. solve quadratic equations; 3. solve trigonometric functions;...
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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. 200 Level
MTH 101 2 Unit(s) (LH 30)
Allied Health Sciences  ·  B. EHS Environmental Health Science
At the end of the course students should be able to: 1. explain basic definition of Set, Subset, Union, Intersection, Complements and use of Venn diagrams; 2. solve quadratic equations; 3. solve trigonometric functions;...
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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. 200 Level
EVM 202 3
Environmental Sciences  ·  B.Sc./B.Tech. Environmental Management
At the end of this course, students should be able to: 1. explain the elements of environmental management; 2. know the types and causes of major environmental issues; and 3. learn how to reduce and prevent occurrences o...
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Introduces environmental issues, regulations, and types of pollutants. Covers issues related to air pollution, including how air pollution can be controlled and the quality of indoor air. Discusses the problems of pollution in water and methods to control it. It also examines the different types of solid waste, such as hazardous, medical, and nuclear, as well as treatment techniques for each; focusing on pollution prevention in areas such as health, safety, and accident prevention; energy conservation; and waste reduction. It also examines how environmental risks are perceived and communicated, and how individuals can be educated about them
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