The Impact of Wood Use on North American Forests (Print Course)

Consumers are increasingly interested in understanding the environmental impact of the products they use. This course will help you understand how the choice of building materials can have profound impacts on local and global ecosystems, as well as on consumer preferences. “Green building” practices have expanded beyond operational energy efficiency to include factors such as minimizing the embodied carbon impact of a built structure along the supply chain.

As a result, wood’s role as a sustainable building material has become increasingly important. Compared to nonrenewable materials such as steel and concrete, wood is renewable and stores carbon throughout the lifetime of the material. Wood also uses less fossil fuel than substitutable materials (e.g., steel and concrete) across the supply chain, from harvest to manufacturing, transport, installation, maintenance, and disposal or recycling. Procurement of wood building materials from sustainably managed forests creates a sustainably built environment and also supports forest biodiversity, soil and water health, wildlife habitat, social and economic goals, etc.

This course will demonstrate how using wood as a building material contributes to forest sustainability, especially in the context of climate change mitigation and adaptation.

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Resilient Wood Construction: Designing for Earthquakes and High Winds (Print Course)

Resilience is a key component of building design when addressing both seismic and wind design. Properly designed and constructed wood structures that comply with building code requirements are resilient, performing with minimal damage while protecting occupants during both seismic and high wind events.

This course will look at how wood-frame Lateral Force Resisting Systems (LFRS), that resist wind and seismic loads, can contribute to resistance in the built environment.

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Innovating Beauty: New Solutions in Steel Siding for Architecture & Design

A new high performance architectural steel siding is giving the design community an opportunity to deliver an authentic wood look - without the maintenance.

Read more about these siding options and how one luxury condominium project achieved this aesthetic.

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Exploring the Connection Between Net Positive, Carbon Neutrality, and the Water-Energy Nexus (Print Course)

Achieving carbon neutrality and protecting the world's water supply are vital to the AEC industry because of the significant impact buildings have on the environment and occupant health. The structures that we live, work, and commune in use a vast amount of the energy and water consumed on the planet for building operations and maintenance.


Over the past two decades more and more organizations, from private companies to federal governments, have taken steps to minimize their impact on the environment and, more recently, on society's wellbeing as a whole. This has been accomplished through sustainable building design, social accountability, and ethical economic practices. This course will discuss a Net Positive approach to design and business operations.

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Innovating Beauty: Sophisticated New Solutions in Architectural Steel Siding

A new high performance architectural steel siding is giving builders and developers the opportunity to deliver an authentic wood look - without the maintenance.

Read more about these siding options and how one luxury condominium project achieved this aesthetic.

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Exploring How Open Web Floor Trusses Optimize Construction

Floor trusses are the ideal structural system for single family, multi-family, and other commercial builds due to their inherent design flexibilities, optimized construction advantages, and exceptional strength. Each floor truss is designed and engineered for the unique and specific project. Open-web floor trusses create downstream value through faster and safer on-site installation, efficient MEP installations, and additional opportunities for reduced material costs.


This course will demonstrate project benefits when utilizing open web floor trusses and discuss how they can improve your next project.

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Leveraging High-Efficiency Propane Systems in Zero Net Energy Homes

There is a misconception that zero net energy (ZNE) means all-electric, but in fact, propane has the ability to provide a clean, efficient, and affordable energy solution for both builders and their customers. This course will discuss how ZNE fits into the country’s energy landscape and how mixed-fuel homes featuring propane can be leveraged to meet ZNE homeowners’ energy and lifestyle demands.

The course will explore design strategies architects can use to achieve zero net energy homes and case studies where propane’s versatility and low-carbon output were harnessed to achieve resiliency, sustainability, and performance in ZNE builds.

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The Environmental Impacts of Building Materials – Comparing Concrete, Wood, and Steel

This On Demand CEU is a recorded presentation from a previously live webinar event. The impact of building materials on the environment continues to grow in importance within the construction industry. In addition to performance, budget and aesthetics, design professionals are now being asked to evaluate the environmental burdens of their design choices. Measuring the impacts of buildings, assemblies and products can be complex. Every design decision, from material and product selection to envelope design and construction can have an impact on the environment and the methods used to evaluate those decisions are still not widely understood.


This presentation will address critical issues the design professional should consider when evaluating the environmental impacts of building materials to maximize performance and deliver lasting value.

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Architectural Polymers: Best Practices for Architectural Specifications

Presented by Fernando Pages, this presentation serves as a resource and primer for product specification and complements the book Architectural Design for Traditional Neighborhoods published by the Vinyl Siding Institute (VSI) in 2019.


This course aims to provide design professionals full control of the design’s aesthetic outcome with polymeric sidings, trim, and ornamentation, respecting the architectural style, target market, and project budget. These specifications will refer to traditional architectural features in the language of art.


This effort aims to put the power of good design details and recommended installation practices within the architectural designer’s easy reach.

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Steel - Timber Hybrid High-Rise Buildings: Trends, Drivers, Challenges

This presentation will examine the recent trend toward steel-timber hybrids – as a subset of the wider trend toward mass timber – in high rise buildings.

It will overview where this is happening, and what the advantages and challenges are, focusing on some of the key case studies employing such systems.

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