Agenda

Webinar instructions will be emailed before the date of the webinar.

Please log into the webinar 15 – 30 minutes before start time.

Friday, December 17, 2021
8:30 am – 4:30 pm CST (incl. a 60-min break)

 

Presented by
Jeffrey L. Snyder, PE

Agenda
Soil Investigation and Classification
Properties of soil
• Importance of recognizing soil properties
• Formation of soils
• Types of soils
Soil investigation
• Site reconnaissance
• Geology and visual observations
• Drilling and boring
• Test pits
• Establishing appropriate investigational methods
• Obtaining and reviewing geotechnical reports

Reviewing Hydraulic and Mechanical Properties of Soils
Soil permeability
Compressibility of soil
Soil hydraulics
• Saturation, hydraulic gradient, and conductivity
Drained and undrained shear strength
• Vertical and lateral earth pressure
Stress and failure in soils

Determining and Increasing Bearing Capacity
Calculating bearing capacity
Bearing capacity of shallow foundations
Bearing capacity of piers and piles
Increasing bearing capacity
• Draining and compaction
• Soil improvement

Determining and Increasing Slope Stability
Natural and engineered slopes
Reviewing basic concepts of slope stability
Understanding slope failures
Impact of surface water and groundwater
Examining slope stabilization methods
• Unloading
• Draining and compaction
• Reinforcement
• Soil improvement

 

 Webinar Instructions

All attendees must log-on through their own email – attendees may not watch together if they wish to earn continuing education credit. HalfMoon Education Inc. must be able to prove attendance if either the attendee or HalfMoon Education Inc. is audited.

Certificates of completion can be downloaded in PDF form upon passing a short quiz. A link to the quiz will be sent to each qualifying attendee immediately after the webinar. The certificate can be downloaded from the Results page of the quiz upon scoring 80% or higher.

Webinars are presented via GoToWebinar, an easy-to-use application that can be run on most systems and tablets. Instructions and login information will be provided in an email sent close to the date of the webinar. It is highly recommended that you download, install and test the application before the webinar begins by clicking on the link in the email.

GoToWebinar App requirements:
Windows 7 – 10 or Mac OSX Mavericks (10.9) – macOS Catalina (10.15)

Web Browser:
The two most recent version of the following browsers:
Google Chrome, Mozilla Firefox, Apple Safari, Microsoft Edge
Internet Explorer v11 (or later) with Flash enabled


Internet connection:
 Minimum of 1Mbps       Hardware: 2GB RAM or more

For more information, visit the Support section at www.gotowebinar.com

Credits

Professional Engineers:
6.5 PDHs

Architects:
6.5 HSW CE Hours

AIA:    (AIA credits only available for attending live Webinar)
6.5 LU|HSW

Landscape Architects:
6.5 HSW CE Hours

LA CES:    (LA CES credits only available for attending live Webinar)
6.5 HSW PDHs

 

Continuing Education Credit Information

Soil Mechanics, Bearing Capacity and Slope Stabilization
This webinar is open to the public and offers 6.5 PDHs to professional engineers and
6.5 HSW continuing education hours to architects licensed in all states. It offers 6.5 HSW continuing education hours to landscape architects in all states, except Florida, New Jersey, and North Carolina.

HalfMoon Education is an approved continuing education sponsor for engineers in Florida (Provider No. 0004647), Indiana (License No. CE21700059), Maryland, New Jersey (Approval No. 24GP00000700) and North Carolina (S-0130). HalfMoon Education is deemed an approved continuing education sponsor for New York engineers and architects via its registration with the American Institute of Architects Continuing Education System (Regulations of the Commissioner §68.14(i)(2) and §69.6(i)(2)). Other states do not preapprove continuing education providers or courses.

The American Institute of Architects Continuing Education System has approved this course for 6.5 LU|HSW (Sponsor No. J885). Only full participation is reportable to the AIA/CES.

The Landscape Architecture Continuing Education System has approved this course for 6.5 HSW PDHs. Only full participation is reportable to the LA CES.

Completion certificates will be awarded to participants who complete this event, respond to prompts and earn a passing score (80%) on the quiz that follows the presentation (multiple attempts allowed).

Speakers

Jeffrey L. Snyder, PE

Senior Geotechnical Engineer at GHD Services, Inc.

Mr. Snyder is a geotechnical professional for transportation, commercial, industrial and municipal projects throughout the upper Midwest including in Ohio, Michigan, Illinois, Indiana, Pennsylvania, and Kentucky. He provides analyses and recommendations for shallow and deep foundation systems as well as landslide evaluation and remediation. He has co-authored several papers on lateral loading behavior of driven pile foundations. Mr. Snyder earned his B.S. and M.S. degrees in Civil Engineering from Brigham Young University.

AIA Info

AIA Provider Statement:

HalfMoon Education Inc. is a registered provider of AIA-approved continuing education under Provider Number J885. All registered AIA/CES Providers must comply with the AIA Standards for Continuing Education Programs. Any questions or concerns about this provider of learning program may be sent to AIA/CES (cesupport@aia.org or (800) AIA 3837, Option 3).

This learning program is registered with AIA/CES for continuing professional education. As such, it does not include content that may be deemed or construed to be an approval or endorsement by the AIA of any material of construction or any method or manner of handling, using, distributing, or dealing in any material or product.

AIA continuing education credit has been reviewed and approved by AIA/CES. Learners must complete the entire learning program to receive continuing education credit. AIA continuing education Learning Units earned upon completion of this course will be reported to AIA/CES for AIA members. Certificates of Completion for both AIA members and non-AIA members are available upon request.

Course Title: Soil Mechanics, Bearing Capacity and Slope Stabilization

Delivery Method: Live Online

Course Description: This 6.5 hour live lecture presentation examines soil investigation and classification, hydraulic and mechanical properties of soils, determining and increasing bearing capacity, and determining and increasing slope stability.

Learning Objectives:

Learning Objective 1:
Learners will be able to describe the need to need to understand the properties of soil on particular development soils and value of conducting soil investigations to determine the appropriate type and design of that foundation, which will ensure its longevity and safety.

Learning Objective 2:
Learners will be able to articulate the need to understand the hydraulic and mechanical properties of site soils so that soil compressibility and drainage can be considered for foundation design.

Learning Objective 3:
Learners will be able to calculate soil bearing capacities for shallow foundations, piers and piles, and they will be able to explain how to increase bearing capacity through draining, compaction, and soil improvement.

Learning Objective 4:
Learners will be able to differentiate the stability of natural and engineered slopes, explain why slopes fail, and describe slope stabilization methods to avoid slope failure and landslides.

LUs: 6.5                                                                                              LU Type: LU|HSWs.

Prerequisites: Familiarity with site development and earthwork

Advance Preparation: None

Program Level: Intermediate

Course Expiration Date: 09/05/2022

Complaint Resolution Policy:

Complaints regarding this course can be emailed to tcase@halfmoonseminars.org or by calling (715) 835-5900. A HalfMoon Education representative will respond within 72 hours to resolve the complaint, which will include, but not limited to, access to another CE activity at no or reduced cost or a full or partial refund. Each instance will be resolved on a case-by-case situation.