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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GLY 821
3
Generation; propagation; reception and recording of seismic pulses; operation of refraction and reflection surveys.
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Generation; propagation; reception and recording of seismic pulses; operation of refraction and reflection surveys; Data acquisition; reduction and processing velocity determination; preparation of time and geological sections; Case studies in seismic surveys; Types of logs and information obtainable from them; Self potential; induction; resistivity; Sonic and Cement band; radiation; temperature; micro-resistivity and others; Quantitative log interpretation and determination of rock parameters
GPY 807
3
The propagation of elastic wave through solids.
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The propagation of elastic wave through solids; The effect of boundaries between different media; The Raypath method; Detection of ground motion and the theories of mechanical and electrical seismographs; Advance refraction techniques to exploration; Data acquisition in modern reflection practice sources: Explosive and implosive; airgun; sparker and others; Recording system: Source and detector arrays VIBROSETS; Marine seismic methods; Seismic signal Analysis; Refraction Seismic interpretation; Specialized interpretation techniques of reflection seismic data (land and sea); Velocity Spectra; Velocity determination; Static Migration; Synthetic Seismogram technique; Industrial seismic Data processing
PHY 816
3
General introduction: Energy bands; free and localized levels scattering.
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General introduction: Energy bands; free and localized levels scattering; Electronic transitions; recombination; trapping lifetime; Maxwellian distribution function Boltzmann's equation; continuity and conductivity equation; Carrier injection into semiconductors; Ambipolar flow; 'field-free' diffusion; Current flows in semiconductors: contacts blocking and injecting; p-n junction; Application to device technology