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Conference Presentations

Published
March 20, 2019

2019 Mid-Atlantic Regional Conference | March 2019

Not Your Typical Classroom

Modalities in Medical Education

This session will explore current and emerging approaches for medical teaching environments that enhance learning outcomes as well as inventive ways of leveraging building infrastructure for maximum functionality.
Abstract: Allied health facilities are evolving into active, problem-based learning laboratories. High fidelity manikins, sophisticated equipment, augmented reality, virtual anatomy, innovation labs, and community clinics are transforming medical education spaces. This session will explore current and emerging approaches for medical teaching environments that enhance learning outcomes as well as inventive ways of leveraging building infrastructure for maximum functionality. You will learn about current modalities and how they are shaping allied health facilities in different case studies along with challenges and opportunities associated with new and renovated facilities.

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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Different Models for Delivering Engineering Facilities

We will demonstrate how SNHU benchmarked engineering schools, helping SNHU envision their idea for a new school and identify state-of-the-art learning environments.
Abstract: Southern New Hampshire University (SNHU) started an engineering program when they purchased Daniel Webster College and inherited a strong aeronautics program, students, and faculty looking for a new educational home. SNHU, well-known for online education programs, continues to develop its traditional campus through its new College of Engineering, Technology and Aeronautics, which they planned to accommodate multiple modalities reflecting 2019 and beyond as well as exemplify academic rigor. We will demonstrate how SNHU benchmarked engineering schools, helping SNHU envision their idea for a new school and identify state-of-the-art learning environments.

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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Creating a Collaborative Innovation Space for Students

In this session, we will discuss a process that any campus can use for creating a place for students to generate ideas and solve problems.
Abstract: In this session, we will discuss a process that any campus can use for creating a place for students to generate ideas and solve problems such as researching needs, crafting vision, planning spaces and services, piloting programs, and designing spaces. You will learn how to identify student needs; make a case for purposeful programming, services, and space that support innovation and problem-solving; and possess greater comfort with risk-taking and ambiguity as well as deliver mission-critical activities.

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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Facilities That Support Peer-to-Peer Learning for Tomorrow’s Students

In this session, we will focus on both in-depth and high-level overviews of four new projects and how they specifically address STEM students' evolving space needs, including needs particular to first-generation and underrepresented minority students.
Abstract: Pedagogies, study needs, and socialization habits are changing as student bodies become more diverse. Planners and architects must respond with new, more responsive spaces to create successful facilities. In this session, we will focus on both in-depth and high-level overviews of four new projects and how they specifically address STEM students' evolving space needs, including needs particular to first-generation and underrepresented minority students. Find out what's working at Amherst College’s newly opened Science Center and discover innovative designs for types and configurations of learning spaces at several new undergraduate STEM facilities.

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Planning for Higher Education Journal

Published
January 1, 2018

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College Campus Landscapes Within a Learning Ecosystem

College campus landscapes may help restore student attentional capacity for learning when intentionally viewed as educational resources or integrated with academic content.

From Volume 46 Number 2 | January–March 2018

Abstract: College campus landscapes are touted as symbols of “greenness,” displaying trees, vegetation, and flowering bushes for aesthetic appeal. Features such as a lawn to sit on between classes or a tree to gather under for course sessions may collectively and purposefully enhance student capacity for cognitive functioning and information processing or, simply, “learning.” In a place of learning where virtual environments and campus landscapes coexist, attention is an essential element of perceptual and cognitive operations. A key goal of the study described in this article is to better understand how to leverage regular and purposeful interactions with campus landscapes to help restore student attentional capacity for learning.

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Planning for Higher Education Journal

Published
October 1, 2017

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The Value of Higher Education Academic Makerspaces for Accreditation and Beyond

Institutions of higher education are incorporating makerspaces and skills on their campuses in support of institutional goals and accreditation requirements.

From Volume 46 Number 1 | October–December 2017

Abstract: Over the last decade, many academic institutions, from elementary schools to universities, have added academic makerspaces to their campuses. This development has enabled students and faculty to come together and collaborate, design, fabricate, and learn in shared spaces. This article describes how the creation and incorporation of academic makerspaces in a university learning ecosystem can help achieve accreditation. Specific examples are drawn from ABET’s engineering accreditation criteria. The article also explores how academic makerspaces can enhance teaching objectives and student outcomes by providing a space for learning technological skills within social contexts in interdisciplinary communities of practice.

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Planning for Higher Education Journal

Published
July 1, 2017

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University-Industry Collaborations Are Driving Creation of Next-Generation Learning Space

New spaces, ranging from fabrication and prototyping studios to innovation districts, reflect a growing entrepreneurship and maker culture and give students the tools they need to succeed in a rapidly evolving marketplace.

From Volume 45 Number 4 | July–September 2017

Abstract: Industry and academia are partnering like never before as entrepreneurship and maker culture become more important to our economy and a regular fixture in higher education curricula. With the influx of allied industry partnerships, evolving pedagogies, entrepreneurship programs, and a maker culture comes a pressing need for new spaces, ranging from fabrication and prototyping studios to innovation districts devoted to new kinds of research partnerships. Schools like the University of Washington, Babson College, and Arizona State University are leading the way on new collaborations. In this article, Sasaki planners and urban designers examine how design disruption will guide the development of campuses that enable 21st-century teaching, learning, and research paradigms.

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Planning for Higher Education Journal

Published
July 1, 2017

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Collaborative Spaces Transform Teaching, Amplify Learning, and Maximize Resources

A wide range of interactive, hands-on, and socially enhanced settings provide space for the most effective and dynamic teaching and learning in higher education today.

From Volume 45 Number 4 | July–September 2017

Abstract: Leers Weinzapfel Associates recently talked with campus planners and facilities directors nationwide about the big issues driving campus planning. Rapidly evolving pedagogies are demanding radical rethinking of effective teaching and learning spaces. Better use and optimal configuration of these venues is key as the stereotypical “sage on the stage” mode of instruction rapidly expands through a wide range of interactive, hands-on, and socially enhanced settings. Several examples of the firm’s work—the University of Massachusetts Amherst John W. Olver Design Building, the University of Arkansas (Fayetteville) Stadium Drive Residence Hall, and the Wentworth Institute of Technology (Boston) Multipurpose Academic Building—substantiate these findings in practice.

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Planning for Higher Education Journal

Published
July 1, 2017

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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.

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Planning for Higher Education Journal

Published
July 1, 2017

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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.

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