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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FMJ 351
2
At the end of the course, students should be able to: 1. ability to engage metal casting and direct same; 2. Understand safety measures; and 3. ability to make moulds.
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An introductory course to foundry practice, the furnace and melting techniques, equipment and
tools for ferrous and non-ferrous metal casting and principles of modelled cast products. Studio
practice focuses on industrial metal casting processes, emphasizing shell mould and investment
mould casting, sand casting, cores, core prints, core boxes, moulds; i.e., sand moulding;
green/damp moulds, skin dry moulds, and skin dry moulds.
FAD 202
2
At the end of the course, the students should be able to: 1. draw with ease at any object placed before him/her (without the use of ruler, T-Square, set square); attempt rapid and illustrate quickly without minimal mista...
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This course expands on the fundamental covered in Introduction to Freehand Drawing.
Composition of objects is introduced, with emphasis on relationship parts, proportion and enter
play of light. Variety of media is used to execute studio exercises in which students are expected
to demonstrate mastery of the techniques of image creation.
FAA 121
2
At the end of this course, students should be able to: 1. understand the language of vision as the building blocks of art and design; 2. appreciate the language of vision in the processes of making art and designing; 3....
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This course introduces basic vocabularies of visual arts, emphasizing elements and principles of
design, the nature of colour and colour theories, and the means to visual expression. The aim is
to open the dynamics of the creative process and thinking by exploring and developing
concepts that rely on various artistic mediums in two- and three-dimensional spheres for
specialists and non-specialists alike.
FAA 122
2
At the end of this course, students should be able to: 1. understand the language of vision or the elements of design in the right sequence, with line in a direction encases shape, space, size, value colour and texture;...
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The studio and professional practice ethics are an introduction to the nature and content of art
and design disciplines. The course provides a hands-on studio experience in visual arts options
in two and three-dimensional design. Learning activities incorporate critical and evaluative
successions where the students demonstrate how the elements and principles of design
function in their respective assignments
CHM 101
3
At the end of this course, the students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the Modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
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Atoms, molecules, elements and compounds and chemical reactions. Modern electronic theory of
atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridization
and shapes of simple molecules. Valence Forces; Structure of solids. Chemical equations and
stoichiometry; Chemical bonding and intermolecular forces, kinetic theory of matter. Elementary
thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts.
Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101
3
At the end of this course, the students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the Modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
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Atoms, molecules, elements and compounds and chemical reactions. Modern electronic theory of
atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridization
and shapes of simple molecules. Valence Forces; Structure of solids. Chemical equations and
stoichiometry; Chemical bonding and intermolecular forces, kinetic theory of matter. Elementary
thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts.
Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101
3
1 institution need this
At the end of this Course, the Students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the Modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
View learning outline
Atoms, molecules, elements and compounds and chemical reactions. Modern electronic theory of
atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridization
and shapes of simple molecules. Valence Forces; Structure of solids. Chemical equations and
stoichiometry; Chemical bonding and intermolecular forces, kinetic theory of matter. Elementary
thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts.
Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101
3
At the end of this Course, the Students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the Modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
View learning outline
Atoms, molecules, elements and compounds and chemical reactions. Modern electronic theory of
atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridization
and shapes of simple molecules. Valence Forces; Structure of solids. Chemical equations and
stoichiometry; Chemical bonding and intermolecular forces, kinetic theory of matter. Elementary
thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts.
Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 101
3
1 institution need this
At the end of this Course, the Students should be able to: 1. define atom, molecules and chemical reactions; 2. discuss the Modern electronic theory of atoms; 3. write electronic configurations of elements on the periodi...
View learning outline
Atoms, molecules, elements and compounds and chemical reactions. Modern electronic theory of
atoms. Electronic configuration, periodicity and building up of the periodic table. Hybridization
and shapes of simple molecules. Valence Forces; Structure of solids. Chemical equations and
stoichiometry; Chemical bonding and intermolecular forces, kinetic theory of matter. Elementary
thermochemistry; rates of reaction, equilibrium and thermodynamics. Acids, bases and salts.
Properties of gases. Redox reactions and introduction to electrochemistry. Radioactivity.
CHM 102
3
; At the end of this course, the students should be able to 1. state the importance and development of organic chemistry; 2. define fullerenes and its applications; 3. discuss electronic theory; 4. determine the qualitat...
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Historical survey of the development and importance of Organic Chemistry; Fullerenes as fourth
allotrope of carbon, uses as nanotubes, nanostructures, Nano chemistry. Electronic theory in
organic chemistry. Isolation and purification of organic compounds. Determination of structures
of organic compounds including qualitative and quantitative analysis in organic chemistry.
Nomenclature and functional group classes of organic compounds. Introductory reaction
mechanism and kinetics. Stereochemistry. The chemistry of alkanes, alkenes, alkynes, alcohols,
ethers, amines, alkyl halides, nitriles, aldehydes, ketones, carboxylic acids and derivatives. The
chemistry of selected metals and non-metals. Comparative chemistry of group IA, IIA and IVA
elements. Introduction to transition metal chemistry.