SCUP
 

Learning Resources

Your Higher Education Planning Library

Combine search terms, filters, institution names, and tags to find the vital resources to help you and your team tackle today’s challenges and plan for the future. Get started below, or learn how the library works.

FOUND 37 RESOURCES

REFINED BY:

  • Tags: Interdisciplinary Learning EnvironmentsxFlexible Learning Spacesx

Clear All
ABSTRACT:  | 
SORT BY:  | 
Planning for Higher Education Journal

Published
August 13, 2020

Featured Image

De-Densifying Classrooms in the COVID-19 Era

A Scalable and Accurate Non-Linear Model Projects New Distanced Space Capacities

Columbia College Chicago’s “logistic growth model,” a mathematical model that is adaptable to highly variable campus spaces, gives priority to human-centered solutions while also promoting physical and emotional well-being. It can flexibly accommodate instructors, teaching assistants, and students for different pedagogical uses and within different types of facilities.

From Volume 48 Number 4 | July–September 2020

Abstract: Campus space planning generally involves the use of linear models that apply a simple square-foot-per-person calculation to determine capacities for different room sizes. Most return-to-campus strategies following the easing of COVID-19 shelter-in-place restrictions involve modification of these models, increasing square-footage-per-person to accommodate six feet of distancing. This provides reasonable upper and lower capacity estimates, but it does not yield accurate estimates across different room sizes and room types. Columbia College Chicago has developed a non-linear model that is both scalable and accurate, resulting in estimates that match test fits across all observed spaces.

Member Price:
Free  | Login

Member-only Resource

Join now to have access

Conference Presentations

Published
March 8, 2020

2020 North Atlantic Regional Conference | March 2020

Hampshire College

Reinvention for a Sustainable Future

In this session, Hampshire College provides a model for how resource-limited campuses can leverage their sustainability assets to support curricular and community transformation.
Abstract: Many institutions struggle to promote liberal arts education in today's changing world. Hampshire College provides a model for how resource-limited campuses can leverage their sustainability assets to support curricular and community transformation. Hampshire is reinventing itself for a sustainable future, using its environmental assets (a campus farm and living building) to support a new transdisciplinary curriculum and student experience. This session will help you leverage environmental assets in applied transdisciplinary learning to prepare students for a sustainable future.

Member Price:
$35  | Login

Non-Member Price:
Free

Conference Presentations

Published
October 28, 2019

2019 North Central Regional Conference | October 2019

Revitalization

Planning Adaptable Spaces for a Growing Campus Community

We will share how the renovation of The Ohio State University’s Biomedical and Materials Science Engineering Complex’s managed project objectives to achieve the best use of space, phased construction, budget, and sustainability goals.
Abstract: The Ohio State University (OSU) strategically planned and designed research and academic spaces for their growing College of Engineering program. This phased renovation and addition to existing laboratories within a prominent campus core provided OSU with a contextual gateway as well as essential research and academic space to support growing enrollment. We will share how the Biomedical and Materials Science Engineering Complex’s (BMEC) renovation required diligent management of project objectives to achieve the best use of space, phased construction, budget, and sustainability goals for a signature project.

Member Price:
Free

Non-Member Price:
Free

Conference Presentations

Published
July 14, 2019

2019 Annual Conference | July 2019

Increase Student Participation in Planning to Create More Equitable Spaces

Abstract: Designing equitable spaces is an important part of closing the achievement gap between white students and students of color. Using Critical Race Theory (CRT) in facilities planning is a way to step back, reflect, and look for ways our current environments—and the processes used to create them—hinder or discourage students of color. Students leaders and the project coordinator will share how Portland Community College (PCC) has applied CRT and participatory action research to foreground the leadership and insights of students in campus planning and design.

Member Price:
Free

Non-Member Price:
Free

Conference Presentations

Published
July 14, 2019

2019 Annual Conference | July 2019

Learning Spaces of the Future

Personal Learning and Neurodiversity

Abstract: All learners are different. These differences—also known as neurodiversity—impact learning. Fortunately, the design of learning spaces does not have to be one-size-fits-all. We will discuss how learning spaces can be flexible and easily adapted to students' needs across the spectrum of neurodiversity, whether or not they are on the autism spectrum, manage learning disabilities, or have a mental health condition. Come learn how flexible learning space design can improve the experience of all learners.

Member Price:
Free

Non-Member Price:
Free

Conference Presentations

Published
July 14, 2019

2019 Annual Conference | July 2019

Ensuring Research Resilience Through Programmatic and Facilities Alignment

Abstract: Interdisciplinary scientific research is the new normal in academia. Campus planning for interdisciplinary research requires special tools and analytics that align the needs of increasingly diverse research environments with existing facilities capabilities and new characterizations of research neighborhoods. To remain relevant within the world-wide scientific community, campuses must free research space planning from traditional boundaries in order to promote collaborative synergies. This session will introduce new analytical assessment tools, organizational principles, and planning strategies supporting interdisciplinary research. Come learn how to create an open-ended, actionable, and living planning document that ensures long-term relevance and viability.

Member Price:
Free

Non-Member Price:
Free

Conference Presentations

Published
March 20, 2019

2019 Mid-Atlantic Regional Conference | March 2019

Inspiration, Realization, and Cross-disciplinary Success

Centers for Experiential Learning and Innovation

Leaders involved in the planning, design, operation, and evolution of two successful STEM and innovation centers will share the most impactful decisions affecting the long-term success of their work, including how location, governance, funding, programming, and promotion influence dynamic interdisciplinary results.
Abstract: This session will explore in-depth case studies of two interdisciplinary centers for STEM learning, innovation, and entrepreneurship, one at a leading liberal arts college (Washington and Lee University), and the other at a large research university (Virginia Commonwealth University). Leaders involved in the planning, design, operation, and evolution of two successful STEM and innovation centers will share the most impactful decisions affecting the long-term success of their work, including how location, governance, funding, programming, and promotion influence dynamic interdisciplinary results.

Member Price:
Free

Non-Member Price:
Free

Planning for Higher Education Journal

Published
July 1, 2017

Featured Image

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.

Member Price:
Free  | Login

Member-only Resource

Join now to have access

Planning for Higher Education Journal

Published
July 1, 2017

Featured Image

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.

Member Price:
Free  | Login

Member-only Resource

Join now to have access

Planning for Higher Education Journal

Published
July 1, 2017

Featured Image

The Challenge of Making Buildings Flexible

How to Create Campuses That Adapt to Changing Needs

How can buildings be both flexible and concrete? The answer is critical as institutions try to keep up with rapid changes in technology, curriculum, teaching techniques, and demographics.

From Volume 45 Number 4 | July–September 2017

Abstract: How can buildings be both flexible and concrete? It’s a contradiction in terms and a huge challenge facing university planners and facility managers as they try to keep up with rapid changes in technology, curriculum, teaching techniques, and student demographics. This article explores some of these trends in education and how construction techniques are evolving to meet the need for reconfigurable spaces.

Member Price:
Free  | Login

Member-only Resource

Join now to have access