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Planning for Higher Education Journal

Published
July 1, 2019

Middle Skills Education

Planners Are Reimagining Ways to Meld Instruction and Industry

Many jobs of the future will require more than a high school diploma but less than a four-year degree. How should we prepare the next generation of employees?

From Volume 47 Number 4 | July–September 2019

Abstract: Middle skills education, personalized curriculum, and student-directed training are playing an increasingly integral role in higher education. A new generation of students is already likely to hold different educational expectations and desires than their predecessors. Accommodating those trends means planners, architects, and higher education administrators will need to think differently about how they train skilled workers for the most needed professions.

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Planning for Higher Education Journal

Published
October 1, 2018

Out of the Shadows

Science and Technology Buildings Emerge as Campus Experience Hubs

To prepare students for 21st-century careers, recent capital investments are placing science and technology at the center of campus, with new facilities designed as both social and learning spaces.

From Volume 47 Number 1 | October–December 2018

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Planning for Higher Education Journal

Published
January 1, 2018

Design-Build Delivers Added Value to the University of North Georgia

Design-build delivery helps higher education institutions control costs, streamline processes and communications, and more efficiently and effectively meet project objectives.

From Volume 46 Number 2 | January–March 2018

Abstract: The design-build delivery approach, in which design and construction services are contracted through a single entity, has the potential to help higher education institutions control costs, streamline processes and communications, and more efficiently and effectively meet project objectives. This article examines the relationship between the University of North Georgia and design-build firm Pond, describing the process of design-build and highlighting two projects, the replacement of a dining hall floor and the renovation of a science classroom. The success of these projects demonstrates the benefits of integration and collaboration inherent in the design-build model.

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Planning for Higher Education Journal

Published
July 1, 2017

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, 2017

Changing the Future of Health Care

The University of North Dakota’s New School of Medicine and Health Sciences

Designed and built for collaborative, interdisciplinary education through a highly engaged process, this building transforms health care education and health care for the entire state.

From Volume 45 Number 4 | July–September 2017

Abstract: With North Dakota experiencing a significant shortage in all health care-related fields, the University of North Dakota School of Medicine and Health Sciences replaced its aging facility with a new school in order to (1) increase enrollment by 25 percent, (2) attract and retain top-tier faculty and staff, (3) encourage inter-professional collaboration, (4) colocate all eight medical, health sciences, and basic sciences in one building, and (5) retain more in-state graduates. The facility is now a shared collaborative learning environment, the result of the university “rethinking everything” about how it delivered health sciences education.

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Planning for Higher Education Journal

Published
July 1, 2017

Lessons Learned from Strategic Planning for Improved Teaching and Learning in Developing Economies

U.S. institutions have much to learn from the major transformations of teaching and learning achieved by higher education institutions in developing economies faced with limited funding and inhospitable environments.

From Volume 45 Number 4 | July–September 2017

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Planning for Higher Education Journal

Published
July 1, 2017

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

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

Strategies to Successfully Navigate the Design of STEM Facilities

A Case Study at the University of Mississippi

Successfully planning interdisciplinary, inter-college STEM facilities requires a special set of tools to navigate the challenges that arise when dealing with a diverse set of users.

From Volume 45 Number 4 | July–September 2017

Abstract: Colleges and universities are increasingly planning interdisciplinary, inter-college STEM facilities and need tools to address the special challenges that arise when dealing with a diverse set of users. This article discusses the importance of articulating a STEM vision as a means to prioritize building program components while maintaining project goals. It describes effective strategies for organizing diverse user groups, anticipating potentially challenging group dynamics, in a programming process that yields consensus about common goals and shared resources. It discusses layout strategies that support the mission of the building and an approach to STEM building governance that is independent of a particular college or department. The University of Mississippi is used as a case study.

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