Increasing Access to Power in the Classroom

Most students use mobile electronics to learn. Seventy percent of students are taking notes on laptops instead of paper, Steelcase Research reveals. In higher education, this number is even larger, as 95 percent of institutions allow mobile devices in classrooms. With that, students are more often finding themselves in difficult situations where they’re watching their smartphone, laptop and tablet batteries drain without an accessible power outlet nearby. Not surprisingly, 20 percent of college students say it is difficult to charge their devices on campus. While schools are attempting to be “bring-your-own-device friendly,” their classrooms and other campus spaces lack the easy connection to available electricity.

Installing power sources can be costly and time consuming. Traditional construction methods like trenching, coring and raising floors can render classrooms unusable for extended periods of time. Often the cost is prohibitive. An alternative solution can be found in ultra-thin power grids laid seamlessly under carpet. This option is designed to provide learning spaces with power where and when students and instructors need it. Unlike other techniques, it requires no upheaval of existing structures and is a simpler and cost-efficient power distribution system.

As we ask how we can better meet students’ needs, we need to consider the spaces they are using. Instead of making students go to the power source, let’s bring the power to them and create more efficient, less distracting learning environments.

>> Through evidence-based design, technology and innovative solutions, Steelcase Education is focused on helping schools, colleges and universities create the most effective, rewarding and inspiring active learning environments to meet the evolving needs of students and educators.

This article originally appeared in the issue of .

Featured

  • TCU Marks Campus Expansion Milestone

    Texas Christian University in Fort Worth, Texas, recently held a topping-out ceremony to mark progress on a major campus expansion effort including four new residential facilities and a five-story parking garage, according to a news release.

  • Wold Completes Geothermal Projects at Two Minnesota Schools

    Wold Architects & Engineers recently announced that it has completed two geothermal expansion projects for Mounds View Public Schools in Shoreview, Minn., according to a news release. The work at Highview Middle School and Irondale High School serves the district’s long-term goal of reducing energy costs and dependency on non-renewable fuel sources, as well as improving building performance.

  • Designing for Every Mind

    Learning environments have the power to shape not just what students know, but who they become. When a school is designed with genuine empathy—for the full range of ways students think, sense, and engage with the world—it becomes more than a building. It becomes a catalyst for growth, confidence, and belonging. That is the animating idea behind neurodiverse design, and it is one that is transforming how more architects and designers are thinking about school design.

  • Year-Round Schools Require Year-Round Indoor Air Quality Planning

    While many schools are out for the summer, year-round schools follow a more “balanced” schedule with shorter, more frequent breaks spaced throughout the school year. Even though this offers educational benefits, these facilities have less downtime for building maintenance. This can become an issue when facilities managers overlook the importance of routine HVAC maintenance and air duct cleaning services.