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Planning for Higher Education Journal

Published
July 17, 2025

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Co-Locate and Consolidate to Create Connected Campuses

Grow in Place Rather Than Add More Space Where Students Will Succeed

You can share spaces, support services, staffing, and technology systems within your institution and with external partners. This reduces costs while improving outcomes such as retention, graduation, and career placement rates.

From Volume 53 Number 3 | April–June 2025

Abstract: Colleges and universities have a traditional way to meet new needs. When there is a new research initiative, degree program, or student support function, institutions add space. Despite good intentions, their siloed structures, poor strategic planning, and history of continuous expansion mean that institutions adapt by adding. The result: Campuses are overbuilt and underutilized. Instead of shared spaces and seamless, supportive experiences, we’re left with sprawling campuses and spiraling costs. With enrollments, research funding, and our climate all changing, it’s time for a new model and a new mantra: Grow in place rather than add more space.

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Conference Presentations

Published
May 20, 2025

Educational Programs and Community Partnerships for Skilled Trades Pathways

Abstract: Skilled trades education programs provide a viable and equitable option for students who choose not to pursue a four-year degree. Program expansion into high schools through career and technical education promotes these pathways even further for completion and success. This session will show how Howard Community College (HCC) is responding to labor shortages in skilled trades occupations by creating educational programs and partnerships to provide additional access to high-quality jobs that offer family-sustaining wages and benefits. Join us to discover new approaches to education and partnerships that address equity gaps in economic and professional opportunities in our communities.

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Conference Presentations

Published
May 20, 2025

Reimagining Science and Engineering Programs through the Living Masterplan

Abstract: Science and engineering programs continue to grow and attract funding. Strategic planning can maximize new and repurposed space for STEM programs to address aging infrastructure, changing research, evolving student needs, and an uncertain future. To build stakeholder consensus and develop an achievable plan, we'll define key metrics behind the best use of existing space and showcase how specific data-driven tools and analytics transform traditional planning into a living masterplan. By applying a living masterplan and embracing data-driven tools, you'll be able to reach stakeholder consensus sooner and develop more efficient plans that are both implementable and adaptable to future changes.

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Conference Presentations

Published
May 20, 2025

Revitalizing Mid-20th-century Campus Buildings for 21st-century Science

Abstract: Many institutions have legacy STEM facilities that no longer support their teaching, research, and sustainability goals. The University of Virginia's (UVA) Gilmer Hall and Chemistry Building project provides valuable insight into planning and operating a major renovation for STEM disciplines. This project has strategically repositioned UVA's main science buildings for better outcomes in teaching, research, and high-performance sustainability. Come learn how to balance cost, function, aesthetics, and sustainability in developing the most effective planning and design solutions for major STEM renovations, as well as actively manage these facilities to fully leverage their new capabilities.

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Planning for Higher Education Journal

Published
April 30, 2025

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Colocating Dissimilar Academic Programs

A School of Nursing and a School of Engineering Align for Mutually Beneficial Outcomes

Respecting mission-oriented mutual goals, two schools at Hofstra University shaped an improbable pedagogical partnership through cross-functional collaboration and data-informed decision-making.

From Volume 53 Number 2 | January–March 2025

Abstract: Administrators at colleges and universities across the country face mounting concerns over enrollment rates, curricular rigor, and climbing real estate costs. These challenges are particularly daunting for liberal arts institutions, many of which have pivoted or are pivoting to STEM programs out of necessity. Cross-disciplinary colocation strategies can enhance hands-on learning opportunities while optimizing spatial and financial resources. This article explores the planning approach to forming mutually successful partnerships between dissimilar academic programs through mission-oriented cross-functional collaboration, including examples of tools and processes for data-informed decision-making.

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Conference Presentations

Published
April 7, 2025

Making and Measuring Equitable Economic Impact

Abstract: Regional economic growth is often central to an institution's mission, with co-benefits for learning and research. Effective, equitable industry and government partnerships can open student internship and job opportunities, translate research into community benefits and prosperity, build town-gown synergy, and draw more students, faculty, and resources. In this session, our panel will outline strategies for building effective industry and government partnerships as well as measuring, improving, and communicating results. We'll show you how to find and build partnerships that genuinely, equitably deepen economic impact and student opportunities; critically examine results; make changes to optimize impact; and demonstrate your success.

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Conference Presentations

Published
April 7, 2025

Small College, Big Ambition: Delivering STEM Environments for Tomorrow

Abstract: Campus science and tech buildings are crucial for research, hands-on learning, and development of a skilled STEM workforce. Institutions, and small colleges in particular, must leverage these campus resources to stay competitive while facing the impact of birth rate drops. This session will explore creative solutions for bringing state-of-the-art science and technology environments to your college campus in the race to recruit and prepare students for careers in a technology-driven society. Join us to learn how other mid-sized, regional colleges have solved the problem of creating consensus, space programming, and the institution's role in delivering successful, modern STEM learning environments.

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Conference Presentations

Published
April 7, 2025

Beyond the Campus Core: Developing a Flexible Off-campus Innovation Center

Abstract: With campus space at a premium and industry investment on the rise, institutions are developing flexible research facilities beyond their core campus to accommodate evolving technology. The key to maximizing these spaces lies in integrated planning and design. This session is an exploration of the planning process behind Carnegie Mellon University's (CMU) new Robotics Innovation Center (CMU-RIC), an ambitious off-campus facility that includes aerial, aquatic, and outdoor robotics testing spaces. We'll investigate how a collaborative planning and design process aligned diverse stakeholder interests and identified core priorities in the development of a highly-adaptable research facility.

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Conference Presentations

Published
April 3, 2025

Leveraging New Campus Development for Community Empowerment

Abstract: Affordable and accessible higher education is key to upward mobility and community transformation, especially for many rural and remote suburban communities that have limited access to resources. In this session, we'll explore the potential synergies between existing community colleges and their satellite locations. How can institutions drive community-engaged development in places that really need it? Is it better to build on existing assets or to build new? Discover how a community charted its own path toward a new college campus by organizing, passing a bond, and ultimately developing a tech-enabled, high flex learning environment with community space.

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Conference Presentations

Published
October 23, 2024

Reimagining Clippinger: Adaptive Reuse of an OU Post-war Science Building

Since Ohio University's (OU) Clippinger Laboratory was built in 1967 higher education has changed dramatically: scientific research, instruction, and the students themselves.
Abstract: Since Ohio University's (OU) Clippinger Laboratory was built in 1967 higher education has changed dramatically: scientific research, instruction, and the students themselves. Through several examples over the 10-year period of Clippinger's reimagining, this session will examine a process for rethinking a building's vision, developing space needs, and responding to changing times so that the building can continue to serve the College of Arts and Sciences into the future. Come learn a set of adaptive reuse tools to guide planning and design, including alignment of program and capacity, compliance with regulations, and achieving sustainability and environmental goals.

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