Roller-Compacted Concrete : 5 PDH
$30.00
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- Define roller-compacted concrete and distinguish it from conventional concrete and embankment materials in terms of composition and application
- Evaluate the suitability of materials, including aggregates, cementitious substances, and admixtures, for RCC construction
- Design RCC mixture proportions to meet structural and performance criteria based on strength, durability, and workability requirements
- Apply best practices for RCC placement, compaction, and construction using specialized equipment and techniques
- Implement quality assurance and quality control procedures throughout the RCC construction process
- Analyze the performance of RCC structures post-construction with respect to watertightness, durability, and structural integrity
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 20 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies five (5) hours of professional development (PDH).
Related Courses
Pennsylvania-Electrical Engineering Package: 24 PDH
$144.00Original price was: $144.00.$80.00Current price is: $80.00. Add to cartFive Electrical Engineering courses plus Pennsylvania Rules, Regulations & Ethics course that will earn 24 PDH guaranteed to be accepted by the Pennsylvania State Board of Professional Engineers, Land Surveyors, and Geologists.Instructor: Juan Pesante, PEPennsylvania – Rules, Regulations and Ethics for Professional Engineers: 3 PDH
In this course the student will study the Pennsylvania State Board of Professional Engineers, Land Surveyors, and Geologists Statutes & Regulations, including Professional Engineering Ethics.
Analysis of National Charging infrastructure for Electric Vehicles: 3 PDH
This courses addresses the fundamental question of how much plug-in electric vehicle (PEV) charging infrastructure is needed in the United States to support both plug-in hybrid electric vehicles (PHEVs) and battery electric vehicles (BEVs). In this course the student will understand PEV charging infrastructure requirements and analyze a range of plausible scenarios that consider the relationship between the evolution of the PEV fleet and charging infrastructure.
Compressed Air Energy Storage and Pumped Storage Hydropower Concepts: 4 PDH
In this course the student will understand understand current Compressed Air Energy Storage (CAES) and Pumped Storage Hydropower (PSH) technologies and explore future advances of this technology by examining the feasibility of a variety of different concepts.
Energy Storage Technology Cost and Performance: 4 PDH
In this course the student will understand a variety of different energy storage technologies and explore their advantages and disadvantages with an in-depth cost and performance comparison. This course follows the report: Energy Storage Technology and Cost Characterization Report, published by the U.S. Department of Energy (DOE).
Electrical Storage Guide for Electrical Engineers: 5 PDH
This course provides a thorough overview of current electrical storage technologies including batteries, flywheels, compressed air energy storage (CAES), and pumped storage hydropower (PSH) and is a how-to guide for engineers to aid in the selection, procurement, installation, and/or operation of stationary energy storage systems in today’s electric grid.
Electrification-Power System Evolution and Infrastructure Development: 5 PDH
In this course the student will understand Electrification, the shift from non-electric to electric sources of energy at the point of final consumption, and an analysis of the potential impacts of widespread electrification on the evolution of the U.S. electricity system. This course follows the guide: Electrification Futures Study: Scenarios of Power System Evolution and Infrastructure Development for the United States, published by the National Renewable Energy Laboratory.
Preview Course: Pennsylvania Rules, Regulation and Ethics
Preview Course: Analysis of National Charging infrastructure for Electric Vehicles
Preview Course: CAES and PSH Concepts
Preview Course: Energy Storage Technology Cost and Performance
Preview Course: Electrical Storage Guide for Electrical Engineers
Preview Course: Electrification-Power System Evolution and Infrastructure DevelopmentVirginia-Civil Engineering Package #2: 16 PDH
$96.00Original price was: $96.00.$64.00Current price is: $64.00. Add to cartThree Civil Engineering courses plus Virginia Laws, Rules, & Ethics course that will earn 16 PDH guaranteed to be accepted by the Virginia APELSCIDLA Board.Instructor: Raymond Bosek, PEVirginia – Laws, Rules, and Ethics for Professional Engineers: 3 PDH
In this course the student will study the Virginia State APELSCIDLA Board Laws and Regulations, including Professional Engineering Ethics.
Accident and Operational Safety Analysis: 4 PDH
In this course the student will understand the fundamental concepts of accident dynamics, accident prevention, and accident analysis. The student will learn the theoretical bases of safety management and accident analysis, and the practical application of a Safety Management framework for an organization.
Gravel Road Construction: 4 PDH
It is estimated that over a third of the 4.09 million miles of roadway in the United States are not paved. These are typically unpaved gravel or dirt roads, and they’re mostly located throughout rural areas and communities where the volume of traffic is so low that paving and maintaining a paved road is not economically feasible. In this course the student will understand basic concepts in designing and maintaining gravel surfaced roads and essential tips to ensure lasting performance.
Residential Structural Design: 5 PDH
In this course the student will understand the basics of residential construction and design, residential structural design concepts and design loads for residential buildings and to gain an understanding of modern design methods and concepts for light-frame homes, apartments, and townhouses.




