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Conference Presentations

Published
May 20, 2025

Collaborative Town and Gown Solutions for Pedestrian Safety on Campus

Abstract: Nationwide rising crashes involving pedestrians impact the safety of your campus community. This session will cover applicable and scalable strategies Virginia Commonwealth University (VCU) is using to create a safer campus for pedestrians while exploring the unique challenges of pedestrian and driver safety on urban university and medical campuses. We'll share best practices from peers, a data-driven approach for cost-effective solutions, and a town and gown collaboration framework to help foster a culture of safety. Join us to begin developing a list of pedestrian safety measures and identify the necessary stakeholders for implementing these safety measures.

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Webinar Recordings

Published
September 18, 2024

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Managing Change While Moving Things Forward: An Institutional Response to Artificial Intelligence

How do you provide a safe space for authentic and inclusive dialogue while addressing a contentious topic in higher education?
Abstract: How do you provide a safe space for authentic and inclusive dialogue while addressing a contentious topic in higher education? How do you provide the opportunity and education needed for your campus community to recalibrate their thinking when a response is needed right away? We worked through these issues in the development of an Artificial Intelligence institutional statement and department guidelines at our art and design institution. It wasn’t easy, and we’re still learning, but our case study might provide change management strategies you can use at your own institution.

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Conference Presentations

Published
July 23, 2024

Best Practices for Campuswide Mobility Planning

Recent years have seen mobility pattern shifts, new micromobility devices, such as e-scooters and e-bikes, and surging traffic deaths. Higher education campuses are uniquely placed to implement best-practice pedestrian and bicycle infrastructure, but they face different opportunities and constraints.
Abstract: Recent years have seen mobility pattern shifts, new micromobility devices, such as e-scooters and e-bikes, and surging traffic deaths. Higher education campuses are uniquely placed to implement best-practice pedestrian and bicycle infrastructure, but they face different opportunities and constraints. This session will discuss how Northwestern University and Illinois Medical District approach transportation challenges and strategies for campus mobility planning and policy development around adapting and improving safety. Come delve into these two campuses' mobility planning efforts to discover best practices for planning processes, policy language, infrastructure design, and integrated implementation and operations strategies.

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Planning for Higher Education Journal

Published
May 29, 2024

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Stakeholder Engagement Paves the Journey from Learning to Employment

Future Nurses ‘See’ Their Success in a Revitalized Corporate Building

Planners for West Coast University connected with stakeholders to solicit input and gain consensus on decisions. The result is a technology-rich building and academic program that helps nursing students achieve their objectives

From Volume 52 Number 3 | April–June 2024

Abstract: Planners for West Coast University connected with stakeholders to solicit input and gain consensus on decisions. The result is a technology-rich building and academic program that helps nursing students achieve their objectives

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Planning for Higher Education Journal

Published
May 13, 2024

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‘Agile’ Design for the Future-Ready Campus

Optimize the HyFlex Learning Experience to Enhance Engagement

‘Agile’ project management is an iterative methodology emphasizing collaboration, user feedback, and small, rapid initiatives to adapt quickly and efficiently to change.

From Volume 52 Number 3 | April–June 2024

Abstract: The Hybrid-Flexible (HyFlex) classroom allows students to choose between in-person and online participation, leveraging technology and ensuring digital equity. This article underscores the HyFlex model’s role in enhancing educational accessibility, engagement, and resilience; expanding institutional reach; and adapting to demographic shifts and technological advancements. By embracing “Agile” project management principles and a continuous improvement mindset, institutions can create effective, inclusive learning environments that cater to a wide range of student needs, improving learning outcomes and institutional competitiveness in a rapidly evolving educational landscape.

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Conference Presentations

Published
March 5, 2024

Planning the AI Pipeline: Attracting Students With Three Future-focused Projects

Rapidly changing users and technology paired with long project timelines requires institutions to think ahead and implement innovative strategies for creating new, high-end engineering facilities.
Abstract: Rapidly changing users and technology paired with long project timelines requires institutions to think ahead and implement innovative strategies for creating new, high-end engineering facilities. Campus facilities must be nimble and ready to support multiple types of students. At the forefront of the AI technology revolution, George Mason University is undertaking large construction projects to serve a spectrum of undergraduate, masters, and doctoral students and create ecosystems of academic, industry, government, and community users. We’ll share planning strategies for AI technology learning spaces, practical solutions for designing future-focused facilities, and ways of promoting collaboration and connection across multiple communities.

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Planning for Higher Education Journal

Published
December 20, 2023

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AI and HI Working

Collaborative Intelligence Can Significantly Improve Student Success

As the AI tools get smarter and as HI skills continue to enhance planning, higher education should continue to explore what leading campuses have already accomplished.

From Volume 52 Number 1 | October–December 2023

Abstract: For the past 20 years, higher education has invested heavily in improving student success, using new data and analytics systems, tools, and practices. Improvements and progress across higher education have mostly failed to meet expectations. But the arrival of next-generation artificial intelligence (AI) provides an exceptional opportunity. By combining AI with human intelligence (HI), we can create a powerful collaborative intelligence that can be embedded in learning processes, tools, and practices, enterprise-wide. AI can accelerate the long-overdue transformation of higher education. This article describes how to combine AI and HI in collaborative intelligence to significantly improve student success.

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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

Sustainability Plan

Public (British Columbia, Canada)

Abstract: “In 2013 TRU established ‘increasing sustainability’ as one of its five strategic priorities for 2014-2019. This Strategic Sustainability Plan (SSP) is aligned with the university’s strategic plan, and provides a focus for TRU’s efforts toward sustainability over the same period. The SSP is comprehensive in nature, and includes more than 130 recommended strategies across four key focus areas: Operations & Planning, Advocacy & Engagement, Learning, and Administration. The SSP is intended to provide a framework for each TRU department and operational unit to incorporate sustainability initiatives into their own planning processes (the structure of the plan is illustrated on the opposing page). . . . Unlike some strategic documents, the plan takes a comprehensive approach of documenting strategies over the next 5 years. These strategies are not all the responsibility of one department or office, but rather are shared among many. This comprehensive approach will allow each office or department to see where and how it can play a role in TRU’s sustainability journey.”

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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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