Florida-Structural Engineering Package: 18 CEH
$120.00 Original price was: $120.00.$80.00Current price is: $80.00.
- Florida Laws & Rules (Course #0010038)
- Florida Ethics (Course #0010039)
- Remaining hours in Area of Practice
Florida Laws & Rules for Professional Engineers: 1 CEH
Preview Course: Florida Laws and Rules
- Florida Approved Course #0010038
- Approved Course for February 28, 2025 Renewal Deadline
- This course satisfies the one (1) hour laws and rules requirement
In this course the student will study the Florida Board of Professional Engineers Laws and Rules, including Professional Engineering Ethics. This course consists of four sections, 1) Florida Rules: Rules adopted, amended, or repealed during the immediate preceding biennium, 2) Florida Statutes: Changes to Chapter 455, 3) Florida Statutes: Changes to Chapter 471, and 4) Disciplinary Cases Review.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- The engineer's guidelines for practicing within Florida's laws and rules
- Florida Rules: Rules adopted, amended, or repealed during the immediate preceding biennium
- Florida Statutes: Changes to Chapter 455
- Florida Statutes: Changes to Chapter 471
- Disciplinary Cases Review
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 11 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 1 continuing education hour (CEH).
Florida Ethics for Professional Engineers: 1 CEH
Preview Course: Florida Ethics
- Florida Approved Course #0010039
- Approved Course for February 28, 2023 Renewal Deadline
- This course satisfies the one (1) hour ethics requirement
The primary objective of this course is to familiarize the student with the standards of professional behavior for adherence to the highest principles of ethical conduct as well as apply those principles in reviewing real case studies.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- The engineer’s duty to protect the public
- The engineer’s duty to make objective and truthful statements
- The engineer’s duty to limit practice to his or her field of competence
- The engineer’s duty to maintain client confidentiality
- The engineer’s responsibility to the profession
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 10 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 2 continuing education hours (CEH).
Cost Benefit of ICF: 2 PDH
This online course is based on a guide that provides cost comparisons of ICF construction to standard residential wood-frame construction, a comprehensive cost analysis of the monthly costs of home ownership for wood-frame and ICF homes, and a detailed discussion regarding many of the structural and energy performance benefits gained through the use of ICFs.
The student must take a multiple-choice quiz consisting of ten (10) questions at the end of this course to earn PDH credits.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- Become familiar with ICF construction
- Be made aware of the many benefits gained through the use of ICF construction
- Comparative performance and cost comparison of ICF home vs wood frame home
- Structral safety and hazard mitigation
- Energy cost comparison of ICF home
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 10 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 2 professional development hours (PDH) of continuing education.
Design of Commercial Buildings to Mitigate Terrorist Attacks: 4 PDH
This course provides guidance to engineers in methods to mitigate the effects of hazards resulting from terrorist attacks on new buildings. While focusing primarily on explosive attacks and design strategies to mitigate the effects of explosions, the course also addresses design strategies to mitigate the effects of chemical, biological and radiological attacks. In addition to the applicability to the design of new commercial office, retail, multi-family residential, and light-industrial buildings, many of the concepts presented are also applicable to other building types and/or existing buildings.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- Design strategies to enhance life safety of building occupants
- Incremental steps to produce fully developed security measures
- Multi-disciplinary approach to security design
- Complex trade-offs required when designing security into a building
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 4 professional development hours (PDH) of continuing education.
Design of Heavy Duty Concrete Floor Slabs on Grade: 3 PDH
This course describes the criteria for the design of concrete floor slabs on grade in buildings for heavy loads. Concrete floor slabs on grade are often subjected to heavy loads in buildings such as wall loads, stationary live loads and moving loads. The entire design procedure is based on a working stress concept. This course will provide the student with the criteria needed to design concrete floor slabs on grade subjected to heavy loads. Design examples are shown to aid in understanding the course material.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- The steps required to design a heavy duty concrete floor slab
- How to determine floor slab requirements for wall loads, stationary wall loads and moving loads
- How to investigate the subgrade and environmental conditions relevant to the design
- How to determine the modulus of subgrade reaction for various soils
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 15 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 3 professional development hours (PDH) of continuing education.
Hurricane Mitigation: Summary Report On Building Performance: 3 PDH
After major hurricane disasters, the Federal Emergency Management Agency (FEMA) dispatches Building Performance Assessment Teams (BPATs) to evaluate the successes and failures of buildings to withstand the wind and flood forces of these storms. The teams document the results of their evaluations in building performance assessment reports. This 3-hour online course summarizes the BPAT reports for Hurricane Katrina.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- Describe the building and foundation types typically used in coastal areas
- Illustrate the ability of various building and foundation types to withstand coastal surge, riverine flood, and hurricane winds
- Explain design and construction practices that can reduce building damage in hurricanes
- Describe construction practices that can reduce building damage in hurricanes
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 15 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 3 professional development hours (PDH) of continuing education.
Deterioration of Concrete: 2 PDH
A basic understanding of the underlying causes of concrete deficiencies is essential to performing meaningful evaluations which lead to the proper selection of the method or technique used to successfully repair concrete. Symptoms or observations of a deficiency must be differentiated from the actual cause of the deficiency, and it is imperative that causes and not symptoms be addressed in repairs. Deterioration of concrete is an extremely complex subject since, in most cases, the damage detected will be the result of more than one mechanism.
In this course, the student will review Chapter 3, Causes of Distress and Deterioration of Concrete from Engineer Manual (EM) 1110-2-2002, “Engineering and Design – Evaluation and Repair of Concrete Structures” published by the U.S. Army Corp of Engineers (issued 30 June 1995). This course is most relevant to engineers wishing to attain knowledge on the most common causes of problems in concrete. The course also provides a brief description of the basic mechanism of each common problem, a description of the typical symptoms that would be observed during a visual inspection, and suggests preventative methods or techniques to prevent further damage.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- Common causes of concrete deterioration
- Symptoms of concrete distress and deterioration that can be found during visual inspections
- Preventative measures to reduce or eliminate further concrete degradation.
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 10 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 2 professional development hours (PDH) of continuing education.
Structural Design Criteria For Structures Other Than Buildings: 2 PDH
This two hour online course establishes structural design criteria for structures other than buildings, furnishes design guidance for various types of structures, and identifies special considerations with regard to certain materials in specific applications. Structures other than buildings which are covered in this course include the following: bridges; dock and harbor facilities; drainage structures; bulk material structures; water and wastewater structures; and mechanical, electrical, and communication structures. The course materials are based entirely on the Technical Manual TM 5-809-6/AFM 88-3 of Joint Departments of the Army and Air Force USA: Structural Design Criteria for Structures Other Than Buildings.
SPECIFIC KNOWLEDGE OR SKILL OBTAINED
This course teaches the following specific knowledge and skills:
- Know the common building materials used in construction
- Types of structures used in transportation, water & electrical distribution
- Support requirements for mechanical systems and bulk materials
- Design criteria for various types of structures
- Identify special considerations with regard to certain materials in specific applications.
CERTIFICATE OF COMPLETION
You will be able to immediately print a certificate of completion after passing a 15 question multiple-choice quiz. The quiz can be retaken unlimited times until a passing grade of 70% or better is earned. This course satisfies 2 professional development hours (PDH) of continuing education.
Preview Course: Florida Ethics
Preview Course: Cost Benefit of ICF
Preview Course: Design of Commercial Buildings to Mitigate Terrorist Attacks
Preview Course: Design of Heavy Duty Concrete Floor Slabs on Grade
Preview Course: Hurricane Mitigation
Preview Course: Deterioration of Concrete
Preview Course: Structural Design Other Than BuildingsSelect “Preview Course” to view prior to purchaseSelect “Add to Cart” to purchase
Related Courses
Nevada-Electrical Engineering Package: 30 PDH
$180.00Original price was: $180.00.$90.00Current price is: $90.00. Add to cartSix Electrical Engineering courses plus Nevada Ethics and Statutes & Codes course that will earn 30 PDH guaranteed to be accepted by the Nevada Board of Licensure of Professional Engineers and Professional Land Surveyors.Instructor: Juan Pesante, PENevada – Ethics including NV Laws and Rules for Professional Engineers: 4 PDH
This course satisfies the Nevada continuing education requirement of two (2) professional development hours in professional ethics and one (1) professional development hour in provisions of NAC 625 & NRS 625, (ref. Nevada Administrative Code 625.40)In this course the student will study two ethics courses including the Nevada State Board of Professional Engineers and Land Surveyors Statutes and Codes. A total of thirty (30) questions will test his or her understanding of the subject.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.
Best Practices for O&M of Photovoltaic and Energy Storage Systems: 5 PDH
In this course the student will understand how to reduce the cost and improve the effectiveness of operations and maintenance (O&M) for photovoltaic (PV) systems and combined PV and energy storage systems. The course follows the guide: Best Practices for O&M of Photovoltaic and Energy Storage Systems 3rd edition, published by the National Renewable Energy Laboratory.
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.
Preview Course: Nevada Ethics, Statutes & Codes
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 Development
Preview Course: Best Practices for O&M of Photovoltaic and Energy Storage Systems
Preview Course: Analysis of National Charging infrastructure for Electric VehiclesVirginia-Civil Engineering Package: 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.
Stress and Strain in Soils: 4 PDH
In this course the student will understand the properties and mechanics of soils and accurately calculate the stresses and deformations of soil masses.
Engineering Description of Soils and Rocks: 4 PDH
In this course the student will understand the engineering characteristics of soils and rocks and to how to properly identify and classify to develop a subsurface profile for site evaluations.
Slope Stability in Embankments and Structures: 5 PDH
In this course the student will understand the design of slope stability in embankments and structures and how to recognize, analyze, and solve slope instability issues encountered.