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Planning for Higher Education Journal

Published
September 1, 2004

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Research Space: Who Needs It, Who Gets It, Who Pays for It?

An overview of research space management in the United States, based on interviews with senior administrators, Internet documents, and the authors’ vast experience, identifies important trends that need attention.

From Volume 33 Number 1 | September–November 2004

Abstract: Today, the amount of space devoted to research at research universities exceeds that of classrooms and class laboratories. This research space portfolio presents important policy and management challenges. As stewards of this portfolio, universities must address issues of funding the construction of research facilities, equipping and maintaining them, allocating and accounting for space used for research, and managing, in broadest terms, the physical and administrative infrastructure in which research is conducted. As this article illustrates, managing the balance between the growing demand for and the supply of research space is complicated. To address the issues of research space, universities have developed a variety of space management methods to fit their unique research missions, priorities, and operational culture. This article provides important insights into this little studied aspect of higher education space planning. The article is an overview of research space management across the U. S. on general campuses and in health science centers. It is based on interviews with senior administrators in selected research universities conducted specifically for this study, information about research space management available on university documents on the Internet, and on the work of Ira Fink and Associates, Inc. in programming research facilities on a multitude of campuses nationwide.

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Planning for Higher Education Journal

Published
March 1, 2003

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Environmental Management Systems: A Framework for Planning Green Campuses

Employing environmental management systems can help institutions address campus environmental impacts by providing a structure for assessing and improving the sustainability of all facets of campus operations.

From Volume 31 Number 3 | March–May 2003

Abstract: Drawing on recent survey data from the National Wildlife Federation and other publications, this article explains what an environmental management system is and identifies its components; examines how environmental management systems have been applied and adapted to higher education settings; reports on trends in implementation; and illustrates how the environmental management system can help in planning green campuses. It addresses such issues as environmental policy, training, compliance, performance evaluation, staffing, and assessment within the higher education context.

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Planning for Higher Education Journal

Published
March 1, 2003

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The Road Less Traveled: Sustainable Transportation for Campuses

The high costs of parking expansion have propelled many institutions toward a transportation demand management strategy to shift many trips from single occupant automobiles to other modes of travel.

From Volume 31 Number 3 | March–May 2003

Abstract: This article provides a survey of innovative approaches to campus transportation in the United States. The high costs of parking expansion have propelled many institutions toward a transportation demand management strategy, using parking pricing, transit passes for students and employees, and investment in bicycle infrastructure to shift many trips from single-occupant automobiles to other modes of travel. These institutions have experienced multiple benefits, including lower transportation costs, lower environmental impacts, and improved community relations.

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Planning for Higher Education Journal

Published
April 1, 1999

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Benchmarking: A New Approach to Space Planning

An alternative approach uses space benchmarking and faculty head count for predicting space needs.

From Volume 27 Number 3 | Spring 1999

Abstract: Examines traditional assumptions underlying space management and proposes an alternative approach to projecting space use. Specifically, the author recommends making projections based on space per faculty rather than space per student, and then comparing these projections with the space allocation at peer institutions. Problems with traditional methods of space allocation are discussed, as is the process of implementing this approach and identifying comparable institutions.

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