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Planning for Higher Education Journal

Published
October 1, 2018

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Designing for STEM

California Community Colleges Are Helping Shape the STEM Workforce of the Future

Community colleges are developing sophisticated simulation laboratories, makerspaces, and innovation centers to prepare students to successfully enter the STEM workforce and meet the needs of high-tech employers.

From Volume 47 Number 1 | October–December 2018

Abstract: The demand for graduates and technicians in the academic fields of science, technology, engineering, and mathematics (STEM) is influencing the design of specialized educational facilities in community colleges. Community colleges are increasingly aligning their academic programs to the specific economic development priorities and projected demand for skilled labor in the geographic regions they serve. It is expected that partnerships with local industry will increasingly shape curriculum development and facilities design. This trend is rapidly developing in California, where community colleges are incorporating sophisticated simulation laboratories, makerspaces, and innovation centers outfitted with advanced infrastructure and equipment, along with spaces that support the full spectrum of competencies required for graduates to succeed in the STEM labor market.

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Planning for Higher Education Journal

Published
October 1, 2017

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The Value of Higher Education Academic Makerspaces for Accreditation and Beyond

Institutions of higher education are incorporating makerspaces and skills on their campuses in support of institutional goals and accreditation requirements.

From Volume 46 Number 1 | October–December 2017

Abstract: Over the last decade, many academic institutions, from elementary schools to universities, have added academic makerspaces to their campuses. This development has enabled students and faculty to come together and collaborate, design, fabricate, and learn in shared spaces. This article describes how the creation and incorporation of academic makerspaces in a university learning ecosystem can help achieve accreditation. Specific examples are drawn from ABET’s engineering accreditation criteria. The article also explores how academic makerspaces can enhance teaching objectives and student outcomes by providing a space for learning technological skills within social contexts in interdisciplinary communities of practice.

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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
January 1, 2017

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Innovation in the University of the West Indies

Practical Road Map for Enhancing Both Organizational and Research-Based Innovation

Developing an innovation ecosystem and infrastructure to support both institutional and research-driven innovations can lead to wealth creation at the university, country, and regional levels.

From Volume 45 Number 2 | January–March 2017

Abstract: This article explores how the University of the West Indies can become economically sustainable and relevant by using its human capital to generate wealth and develop strong linkages between academia, the private sector, and governments. It makes a clear distinction between institutional and research-driven innovations, listing examples and best practices found throughout the university. Further, it presents a practical road map for enhancing both organizational- and research-based innovations within the university while aligning its vision of becoming an innovative institution with government policies and the private sector agenda. It also proposes key performance indicators to benchmark innovations at the university that can be emulated by other tertiary level institutions regionally and internationally.

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Planning for Higher Education Journal

Published
January 1, 2017

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Crafting an Innovation Landscape

The Innovation Landscape Framework is a tool for the integrated planning of initiatives that support innovation across campuses.

From Volume 45 Number 2 | January–March 2017

Abstract: As efforts to stimulate innovation spring up across campuses, institutions need a comprehensive planning framework for the integrated planning of initiatives that support innovation. The campus can be viewed as an Innovation Landscape, and settings for collaborative creative activity—both physical and virtual—can infuse the campus fabric and become part of the daily experience of users. The Innovation Landscape Framework is a tool to help coordinate physical planning with organizational initiatives, engage a wide range of stakeholders, and enable a more widespread culture of innovation.

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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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