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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

Academic Plan

Multiple Locations

This academic plan document enumerates the institution’s academic goals and strategies, with special focus on generating or enhancing interdisciplinary connections between the primary academic themes.

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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
October 27, 2021

Setting the Stage for World-class Surgical Innovation and Training

Discover how you can coordinate with students, faculty, and industry leaders to plan flexible spaces in your institution's existing facilities that evolve alongside educational and industry trends.
Abstract: When campus space is limited and new construction is undesirable, institutions can transform their existing spaces into flexible and adaptable environments for a long-lasting solution. The Surgical Innovation and Technology Laboratory at the University of Illinois-Chicago demonstrates peak flexibility in its design, enabling users to shift seamlessly between activities, innovations, and industry partners without reconfiguring space layouts. Discover how you can coordinate with students, faculty, and industry leaders to plan flexible spaces in your institution's existing facilities that evolve alongside educational and industry trends.

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Conference Recordings

Published
October 27, 2021

From Siloed to Sustainable

How the Connected Campus Builds Long-term Value and Agility

In this session, you'll learn how to combine digital and physical environments, promote diversity and inclusion, and implement flexibility within campus spaces to prepare your institution for a more blended world.
Abstract: Campus spaces and what they offer play a vital role in student success. By making organizational and operational changes, these spaces can better respond to transformational shifts in higher education. In order to build long-term value and agility in physical campus space, we must connect academia with industry, teaching with research, student affairs with academic affairs, online with on-campus experiences, and capital with operational planning. In this session, you'll learn how to combine digital and physical environments, promote diversity and inclusion, and implement flexibility within campus spaces to prepare your institution for a more blended world.

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Conference Recordings

Published
October 27, 2021

How an Unprecedented Year Changed the Game for Campus Planning

We'll present a campus planning proof case that Columbia College Chicago conducted during the pandemic, illustrating an evolved approach with tools and methods you can use to optimally prepare your institution for an unknown future.
Abstract: Institutions are expanding the purpose, process, and outcomes of campus master planning as a vehicle for shaping a resilient, agile, and equitable future in the wake of the pandemic. This session will detail how a comprehensive process, involving stakeholder engagement, facility assessment, analytics, financial scenarios, prioritization, and real estate optimization can position institutions for long-term success. We'll present a campus planning proof case that Columbia College Chicago conducted during the pandemic, illustrating an evolved approach with tools and methods you can use to optimally prepare your institution for an unknown future.

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Conference Recordings

Published
October 27, 2021

Keynote | STEM Continuum

Education to Industry

This keynote panel is a collaborative exploration of forward-thinking strategies for STEM outreach, education, and application.
Abstract:

This keynote panel is a collaborative exploration of forward-thinking strategies for STEM outreach, education, and application. Come join the panelists for an engaging discussion about their current experience in building and running facilities in K-12 schools, higher education, and industry as well as how their strategies for flexibility are bridging these different phases in the STEM continuum.

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Conference Recordings

Published
October 27, 2021

Regionalism, Ecology, and Field-based Learning in the Ozark Mountains

Come learn about the project's site challenges, regionalism advocacy, community partnerships, and STEM educational frameworks.
Abstract: Post-pandemic, it is increasingly important for institutions to create innovative new outdoor learning environments. This session will share a project that defines field-based learning, planning, and design methodologies that reflect the natural regional ecology of the Ozark Mountain landscape. In addition to providing hands-on, field-based immersion for graduate students and researchers the project also brought about new community partnerships for STEM education. Come learn about the project's site challenges, regionalism advocacy, community partnerships, and STEM educational frameworks.

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