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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Creating a Collaborative Innovation Space for Students

In this session, we will discuss a process that any campus can use for creating a place for students to generate ideas and solve problems.
Abstract: In this session, we will discuss a process that any campus can use for creating a place for students to generate ideas and solve problems such as researching needs, crafting vision, planning spaces and services, piloting programs, and designing spaces. You will learn how to identify student needs; make a case for purposeful programming, services, and space that support innovation and problem-solving; and possess greater comfort with risk-taking and ambiguity as well as deliver mission-critical activities.

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Planning for Higher Education Journal

Published
July 1, 2017

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Collaborative Spaces Transform Teaching, Amplify Learning, and Maximize Resources

A wide range of interactive, hands-on, and socially enhanced settings provide space for the most effective and dynamic teaching and learning in higher education today.

From Volume 45 Number 4 | July–September 2017

Abstract: Leers Weinzapfel Associates recently talked with campus planners and facilities directors nationwide about the big issues driving campus planning. Rapidly evolving pedagogies are demanding radical rethinking of effective teaching and learning spaces. Better use and optimal configuration of these venues is key as the stereotypical “sage on the stage” mode of instruction rapidly expands through a wide range of interactive, hands-on, and socially enhanced settings. Several examples of the firm’s work—the University of Massachusetts Amherst John W. Olver Design Building, the University of Arkansas (Fayetteville) Stadium Drive Residence Hall, and the Wentworth Institute of Technology (Boston) Multipurpose Academic Building—substantiate these findings in practice.

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Planning for Higher Education Journal

Published
July 1, 2017

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Enhancing the Student Experience in the Sciences

The Pennsylvania State University Creates a Nucleus for Student Education and Advising

Science education and science student retention are improved by transforming an underutilized campus space into an Academic Support Center that colocates critical undergraduate academic services.

From Volume 45 Number 4 | July–September 2017

Abstract: A critical concern of universities today is ensuring that students remain in their selected major and graduate promptly. In addition, there has been a renewed emphasis on scientific education presented to non-science majors. Through the renovation of the Ritenour Building, Penn State’s Eberly College of Science created an Academic Support Center as a hub of advising and assistance for prospective students, science majors, and science education. The center’s layout provides opportunities to share knowledge of science teaching with advising staff and the online learning department. The design of this space has been crafted to enhance these retention and educational goals.

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Planning for Higher Education Journal

Published
July 1, 2017

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Teaching, Learning, Doing in Collaborative Spaces

The intermingling of undergraduate students with grad students, post-docs, faculty, and commercial interests in one innovative facility results in better academic experiences.

From Volume 45 Number 4 | July–September 2017

Abstract: Makerspaces designed for collaborative learning are appearing on campuses throughout the United States, including at Drexel University. These spaces succeed because they permit students to collaborate, observe, and learn from professors and peers. Unique to the Drexel project is the intermingling of engineering undergraduates, graduate students, post-docs, faculty, and commercial interests in one facility with laboratories, machine-shop equipment, and informal study areas. Facilities that give students great visibility into nearby research, contain areas where they can take breaks without leaving the building, and lend themselves to informal encounters with peers, faculty, and others result in better academic experiences for undergraduates.

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Planning for Higher Education Journal

Published
July 1, 2017

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University-Industry Collaborations Are Driving Creation of Next-Generation Learning Space

New spaces, ranging from fabrication and prototyping studios to innovation districts, reflect a growing entrepreneurship and maker culture and give students the tools they need to succeed in a rapidly evolving marketplace.

From Volume 45 Number 4 | July–September 2017

Abstract: Industry and academia are partnering like never before as entrepreneurship and maker culture become more important to our economy and a regular fixture in higher education curricula. With the influx of allied industry partnerships, evolving pedagogies, entrepreneurship programs, and a maker culture comes a pressing need for new spaces, ranging from fabrication and prototyping studios to innovation districts devoted to new kinds of research partnerships. Schools like the University of Washington, Babson College, and Arizona State University are leading the way on new collaborations. In this article, Sasaki planners and urban designers examine how design disruption will guide the development of campuses that enable 21st-century teaching, learning, and research paradigms.

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Planning for Higher Education Journal

Published
July 1, 2016

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Designing Innovative Campuses for Tomorrow’s Students

Campus design and architecture will be the prime catalysts for transforming universities into our society’s engines of growth.

From Volume 44 Number 4 | July–September 2016

Abstract: “Designing Innovative Campuses For Tomorrow’s Students” explores increasing investment by higher education institutions in new programs and facilities that boost on-campus innovation and entrepreneurship. This trend is a response, in part, to the changing expectations and demands of Millennial and Generation Z students and their future employers. The impact of this movement, though, goes far beyond those constituencies—changing everything from campus housing to the economic development role of higher education institutions. The examples of Clemson University’s Watt Family Innovation Center and the University of Florida’s Infinity Hall are provided to illustrate the scope of influence and success of these changes.

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Planning for Higher Education Journal

Published
October 1, 2014

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Does Space Matter?

Assessing the Undergraduate “Lived Experience” to Enhance Learning

Developing an understanding of the lived student experience in relation to physical space is critical in order for designers to create spaces that work for the mobile, fast-paced, and multifaceted lives of university students.

From Volume 43 Number 1 | October–December 2014

Abstract: Student learning takes place both inside and outside of the classroom, yet a general understanding of student-user experiences in spaces outside of a classroom and the effect of those spaces on student experiences is limited. A collaborative research project conducted by the Georgia Institute of Technology and Herman Miller, Inc., aimed to understand the modes of use and behaviors among students at the G. Wayne Clough Undergraduate Learning Commons (Clough Commons). In particular, researchers wanted to study the relationship between physical space and the user experience in that space. Researchers referred to this as the “lived experience” of Clough Commons. The research took place over the course of a semester, and methods included the application of digital ethnography tools, observation, walk-up user interviews, and analysis of existing building-use data. From our research, we developed 11 use modes that describe the user activities and behaviors in Clough Commons. The use modes are meant to help designers take a more empathetic approach to design and problem solving by understanding the lived experiences of students within physical spaces. Use modes can also uncover opportunities for improving the environment to best serve student engagement and interaction. In this article, we discuss the use modes and design recommendations from our research at Clough Commons and how they may be applicable to other learning environments.

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