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Example Plans

Published
January 5, 2024

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Example Plans

Published
August 8, 2023

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Example Plans

Published
April 20, 2023

Master Plan

Public Doctoral/Research University (Michigan, United States)

Campus master plan document for a STEM-focused institution, deeply aligned with its strategic plan.

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Planning for Higher Education Journal

Published
April 19, 2023

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The Fourth Industrial Revolution

Align Strategic, Physical, and Capital Planning for the Next Generation of Students

Michigan Technological University used active stakeholder engagement, frequent reviews, and vigorous discussion to develop its aspirational master plan.

From Volume 51 Number 3 | April–June 2023

Abstract: Profound technological changes are occurring today, and universities need to prepare our students to work and live in this new world. Michigan Technological University (Michigan Tech) is addressing the future of technology in society, academia, and the campus through our Tech Forward Strategic Plan, a bold enrollment and retention initiative, an aggressive capital campaign, and a dynamic hiring initiative. Our aspirational campus master plan, developed in partnership with SmithGroup, an integrated design firm, integrates and supports these initiatives and goals. Active stakeholder engagement, frequent reviews, and vigorous discussion allowed us to craft a campus master plan aligning strategic, physical, and capital planning that supports and drives the university’s 2035 Vision.

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Report

Published
October 26, 2022

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Smart Building, Smart Campus

This is a SCUP Fellow Research Project Final Report for the 2019–2020 program. This report explores the hypothesis that user-centered design would better address STEM student needs and could increase the likelihood of a broader adoption of remote labs.
Abstract: “Will innovative environments like a smart building expand STEM education and reach more underrepresented groups? If technology can support remote work, then why haven’t the previous proofs of concept become fully adopted?” The author pursued these questions through her SCUP Fellows research, exploring the hypothesis that user-centered design would better address STEM student needs and could increase the likelihood of a broader adoption of remote labs. Although the COVID-19 pandemic required a hard pivot in her research plan, she was able to leverage the world's new focus on remote activities and work with students to design a prototype mobile application for a digital, interactive twin of a STEM building on campus.

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Example Plans

Published
May 31, 2022

Master Plan

Detailed campus master plan documentation for the institution’s innovation campus.
Abstract: Detailed campus master plan documentation for the Texas A&M University’s RELLIS innovation campus, located 15 minutes from the main campus in College Station.

From the executive summary:
“The 2018 RELLIS Campus Master Plan is a planning effort that focuses on supporting The Texas A&M University System as a national leader in high-tech research, innovation, training, and technological development. Key aspects of this plan focus on supporting and guiding campus organization, buildout development, open space networks, facility programming, and improving social amenities located within the campus. Issues considered in this 20-year planning horizon anticipate enrollment growth, increased teaching and research demands, future transportation needs, sustainability, and economic growth. A campus-wide advisory committee included multiple stakeholders which helped shape the strategic goals that will guide the physical development of the campus during the life of the 2018 master plan. The changes presented in this plan are intended to transform the largely undeveloped 1,877 acres of land into a multi-institutional research, testing, and workforce development campus that directly benefits society at large. The 2020 update to this plan reflects additional study and progress on the campus as of December 31, 2019.”

Contents:
  • Introduction (includes approach and timeline)
  • Background
  • The Vision
  • Plan Elements
  • Infrastructure Plan
  • Guidelines
  • Signage and Wayfinding
  • Appendices

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Planning for Higher Education Journal

Published
May 25, 2022

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Scaling Active Learning Classrooms

Adopt 11 Best Practices to Transform Existing Spaces to Support Student Success

A large-scale study uncovered factors that led to successful scaling of active learning spaces and pedagogical approaches in colleges and universities.

From Volume 50 Number 3 | April–June 2022

Abstract: Active learning has been a growing trend in higher education for decades based on its positive impact on student learning and success. Colleges and universities have invested resources into expanding this teaching approach by using active learning classrooms (ALCs). But why have some institutions been successful at rapidly growing their ALCs and learning spaces, while others have struggled? This article, focusing on the higher education arena, summarizes the best practices from a large-scale study that uncovered factors that led to successful scaling of learning spaces and pedagogical approaches in colleges and universities.

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Conference Recordings

Published
July 12, 2021

Campus Tour | University of Hawaii at Manoa

This tour will showcase the University of Hawaii’s flagship campus and the unique challenges the university faces with regard to long-term planning, campus redevelopment, and designing in a tropical environment.
Abstract: This tour will showcase the University of Hawaii’s flagship campus and the unique challenges the university faces with regard to long-term planning, campus redevelopment, and designing in a tropical environment. The tour will then focus on the university’s new Life Sciences Building, which consolidated various departments in aging facilities into new state-of-art teaching and research laboratories. This building was one of the first major design-build projects on campus. We will discuss the challenges that were encountered and how each was solved.

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Conference Recordings

Published
July 12, 2021

Bringing it to the City

Career Boosts, Innovation, and Entrepreneurship

Come learn how to develop strategic partnerships among university, developer, and consultant stakeholders at your institution as well as optimize site development for long-term improvements in recruitment, retention, and revenue.
Abstract: Applying interdisciplinary planning to cultivate entrepreneurship research and innovation can boost student retention and drive revenue; it can also help students in art and design fields find lasting career success. Arizona State University has developed processes to bolster entrepreneurship and innovation while revitalizing downtown Phoenix's cultural scene, resulting in a mutually beneficial town and gown development of collaboration hubs. Come learn how to develop strategic partnerships among university, developer, and consultant stakeholders at your institution as well as optimize site development for long-term improvements in recruitment, retention, and revenue.

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Webinar Recordings

Published
April 20, 2021

A Different Kind of SMART

Using Performance-Oriented Metrics to Redefine Success in a Forward-Focused Research Lab

In this presentation, we discuss how to identify and select appropriate metrics—equally focused on education and research—for evaluating “SMART” research laboratories.
Abstract: “SMART” built environments usually refer to buildings with embedded technologies that allow them to run as efficiently as possible. Yet for research institutions, that definition should be expanded beyond efficiency to include metrics that are used to quantify research productivity and accomplishments. The expected useful life of the building and individual labs, research dollars generated per square foot, intellectual property generated, and successful recruitment and retainment of researchers are but a few bottom line-oriented measures that colleges and universities use. By embracing the business side of higher education, architects can create even smarter built environments.

In this presentation, we discuss how to identify and select appropriate metrics for institutions that are equally focused on education and research. What objective and subjective measures can be considered? Are these metrics applicable in our new (hopefully) post-COVID reality? How are institutions reallocating space in this new reality? How do we redefine the future of “smart” higher education research facilities?

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