Course ID: SOL101 | Credits: 4 PDH | Format: PDF
Publication Source: NRCS
Course Description: Explores bioengineering methods for slope stabilization using vegetative and structural practices, emphasizing environmental compatibility and practical field applications.
Course ID: ERS101 | Credits: 5 PDH | Format: PDF
Publication Source: Original Courseware by Donald W. Parnell, PE
Course Description: Examines the engineering principles, design considerations, and structural types of earth retaining walls, including cantilevered, anchored, and gravity walls.
Course ID: MSD101 | Credits: 1 PDH | Format: PDF
Publication Source: Illinois Geological Survey 
Course Description: Outlines the causes and consequences of mine subsidence, examining how abandoned underground mines can lead to surface deformation and structural damage to homes.
Course ID: IGT101 | Credits: 4 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Details common field testing methods for geotechnical investigations, including cone penetration, pressuremeter, and vane shear tests used to evaluate soil behavior under stress.
Course ID: BLI101 | Credits: 4 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Explains how to interpret boring logs produced during geotechnical explorations, including stratigraphy, soil descriptions, and groundwater observations.
Course ID: SDS101 | Credits: 4 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Provides an overview of drilling techniques and soil sampling protocols essential for characterizing subsurface conditions in support of foundation and geotechnical design.
Course ID: RCK101 | Credits: 1 PDH | Format: PDF
Publication Source: USDA (NRCS)
Course Description: Introduces field methods for identifying and classifying rock materials based on visual and manual inspection techniques used in civil and agricultural engineering.

Course ID: GWI101 | Credits: 2 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Describes methods for detecting, measuring, and interpreting groundwater conditions during subsurface investigations, including piezometers and water table mapping.
Course ID: LTS101 | Credits: 4 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Covers laboratory procedures used to determine the engineering properties of soil and rock samples, including classification, strength, compressibility, and permeability tests.
Course ID: USS101 | Credits: 2 PDH | Format: PDF
Publication Source: US Corp of Engineers 
Course Description: Explains techniques for collecting soil samples from underwater environments, addressing equipment selection, sediment integrity, and procedural controls.
Course ID: FND101 | Credits: 5 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Investigates the reuse of recycled foundry sand in civil projects such as road base, embankments, and structural fill, with emphasis on environmental and engineering performance.
Course ID: VML101 | Credits: 4 PDH | Format: PDF
Publication Source: US Corp of Engineers 
Course Description: Discusses acceptable vegetation types, inspection challenges, and maintenance strategies to ensure structural integrity and compliance with federal levee policies.
Course ID: LDC101 | Credits: 1 PDH | Format: PDF
Publication Source: US Corp of Engineers
Course Description: Offers a concise summary of levee construction methods, including foundation preparation, compaction standards, and material selection practices.
Course ID: BAL101 | Credits: 1 PDH | Format: PDF
Publication Source: US Corp of Engineers 
Course Description: Focuses on the selection, management, and environmental evaluation of borrow areas for levee construction, emphasizing geotechnical suitability.
Course ID: FRZ101 | Credits: 1 PDH | Format: PDF
Publication Source: US Corp of Engineers 
Course Description: Details the challenges and specialized equipment required for extracting soil samples from permafrost and seasonally frozen soils.
Course ID: GTX101 | Credits: 5 PDH | Format: PDF
Publication Source: US Corp of Engineers
Course Description: Provides an overview of geotextile applications in engineering, including filtration, separation, reinforcement, and erosion control in infrastructure projects.
Course ID: SGI101 | Credits: 3 PDH | Format: PDF
Publication Source: USDA NRCS 
Course Description: Discusses complex geotechnical challenges in streambank stabilization, including piping, slope failure, and toe scour, along with design solutions.
Course ID: VRW101 | Credits: 1 PDH | Format: PDF
Publication Source: USDA NRCS 
Course Description: Outlines the principles for combining vegetation and rock to construct retaining walls that provide slope stability while enhancing ecological function.