Course ID: PDC101 | Credits: 8 PDH | Format: PDF
Publication Source: USDA 
Course Description: Presents the design principles, site selection criteria, construction procedures, and maintenance guidelines necessary for the successful implementation of functional pond systems in rural and agricultural settings.
Course ID: RMH101 | Credits: 2 PDH | Format: PDF
Original Courseware: Original courseware by Harlan Bengtson, PhD, PE 
Course Description: Teaches use of the Rational Method for estimating peak discharge, including Excel-based solutions for stormwater runoff calculations in small watersheds.
Course ID: GDR101 | Credits: 1 PDH | Format: PDF
Publication Source: USDA NRCS
Course Description: Introduces the hydrological and engineering considerations for artificial recharge systems, including infiltration basins and injection wells.
Course ID: WSF101 | Credits: 2 PDH | Format: PDF
Publication Source: USDA NRCS
Course Description: Describes hydrologic modeling, climatology, and statistical tools used to project seasonal and long-term water supply availability for agricultural and municipal planning.

Course ID: SWL101 | Credits: 5 PDH | Format: PDF
Publication Source: USDA NRCS 
Course Description: Provides technical guidance on identifying, evaluating, and developing groundwater sources for agricultural or domestic use, including spring capture and well construction.
Course ID: GWH101 | Credits: 9 PDH | Format: PDF
Publication Source: US Corp of Engineers 
Course Description: Offers a comprehensive introduction to groundwater movement, aquifer behavior, and related geotechnical design factors affecting water resource engineering.
Course ID: WDS101 | Credits: 4 PDH | Format: PDF
Publication Source: USDA NRCS
Course Description: Covers planning, drilling, and outfitting of wells and development of springs for sustainable water supply, including quality protection and long-term viability.
Course ID: WEL101 | Credits: 6 PDH | Format: PDF
Publication Source: US Corp of Engineers
Course Description: Details the engineering design, construction specifications, and effectiveness of pressure relief wells in controlling uplift and seepage in flood control structures.
Course ID: BGP101 | Credits: 2 PDH | Format: PDF
Publication Source: US EPA 
Course Description: Discusses the principles of groundwater vulnerability and outlines strategies for protecting water quality from contamination through land use controls and BMPs.
Course ID: HR1101 | Credits: 4 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Introduces basic hydrologic principles including the water cycle, rainfall measurement, and runoff estimation for transportation and drainage design.
Course ID: HFA101 | Credits: 5 PDH | Format: PDF
Publication Source: US FHWA 
Course Description: Covers statistical analysis techniques for evaluating flood recurrence intervals and peak discharge events critical to infrastructure design.
Course ID: PFU101 | Credits: 3 PDH | Format: PDF
Publication Source: US FHWA
Course Description: Focuses on estimating peak runoff at locations without historical gauge data using regression equations and basin characteristic analysis.
Course ID: WSY101 | Credits: 2 PDH | Format: PDF
Publication Source: USDA NRCS
Course Description: Details techniques to estimate water yield from rural and agricultural watersheds based on rainfall, soil conditions, land use, and evapotranspiration.
Course ID: CCF101 | Credits: 2 PDH | Format: PDF
Publication Source: USDA NRCS
Course Description: Describes structural and non-structural methods to modify stream flow characteristics for erosion control, habitat enhancement, or flood reduction.
Course ID: HYD101 | Credits: 4 PDH | Format: PDF
Publication Source: NRCS
Course Description: Introduces fundamental hydrologic processes in stream environments, including runoff generation, flow regimes, and catchment responses.