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4 course outlines found

1

EARTHSCI 771

: Advanced Engineering Geology
2023 Semester Two (1235)
Advanced engineering geology focused on engineering practice. Interpretation of in-situ testing and laboratory test data (including groundwater) for the derivation of design parameters for input into numerical modeling software. The topics covered include, but are not limited to, design and analysis of site investigation, advanced core logging, slope stability analysis, rock fall assessment, introduction to numerical modeling, liquefaction and seismic hazard assessment for engineering design.
Subject: Earth Sciences
No pre-requisites or restrictions
2

EARTHSCI 771

: Advanced Engineering Geology
2022 Semester One (1223)
Advanced engineering geology focused on engineering practice. Interpretation of in-situ testing and laboratory test data (including groundwater) for the derivation of design parameters for input into numerical modeling software. The topics covered include, but are not limited to, design and analysis of site investigation, advanced core logging, slope stability analysis, rock fall assessment, introduction to numerical modeling, liquefaction and seismic hazard assessment for engineering design.
Subject: Earth Sciences
No pre-requisites or restrictions
3

EARTHSCI 771

: Advanced Engineering Geology
2021 Semester One (1213)
Advanced engineering geology focused on engineering practice. Interpretation of in-situ testing and laboratory test data (including groundwater) for the derivation of design parameters for input into numerical modeling software. The topics covered include, but are not limited to, design and analysis of site investigation, advanced core logging, slope stability analysis, rock fall assessment, introduction to numerical modeling, liquefaction and seismic hazard assessment for engineering design.
Subject: Earth Sciences
No pre-requisites or restrictions
4

EARTHSCI 771

: Advanced Engineering Geology
2020 Semester One (1203)
Advanced engineering geology focused on engineering practice. Interpretation of in-situ testing and laboratory test data (including groundwater) for the derivation of design parameters for input into numerical modeling software. The topics covered include, but are not limited to, design and analysis of site investigation, advanced core logging, slope stability analysis, rock fall assessment, introduction to numerical modeling, liquefaction and seismic hazard assessment for engineering design.
Subject: Earth Sciences
Restriction: GEOLOGY 771