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 25 RESOURCES

REFINED BY:

  • Tags: Science Technology Engineering and Math (STEM)xAdministrative Program Reviewx

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

Published
July 1, 2017

Featured Image

From Innovation to Impact

How Higher Education Can Evaluate Innovation’s Impact and More Precisely Scale Student Support

Rigorously evaluating the impact of innovative student success initiatives is key in meeting institutional goals for student outcomes, resource allocation, and return on investment.

From Volume 45 Number 4 | July–September 2017

Abstract: Institutions are managing numerous student success initiatives simultaneously, but they lack the necessary data and infrastructure to evaluate outcomes. They also struggle to clearly link a particular initiative to a specific individual outcome. Using prediction-based propensity score matching (PPSM), a methodology compliant with the U.S. Department of Education’s What Works Clearinghouse’s requirements, we facilitated the analysis of key initiatives to measure efficacy, ensuring that outcomes of students participating are compared to control students with similar propensity. The recent work explored in this article helps two institutions understand the impact of their innovation and more precisely scale student support.

Member Price:
Free  | Login

Member-only Resource

Join now to have access

Planning for Higher Education Journal

Published
July 1, 2017

Featured Image

Enhancing the Student Experience in the Sciences

The Pennsylvania State University Creates a Nucleus for Student Education and Advising

Science education and science student retention are improved by transforming an underutilized campus space into an Academic Support Center that colocates critical undergraduate academic services.

From Volume 45 Number 4 | July–September 2017

Abstract: A critical concern of universities today is ensuring that students remain in their selected major and graduate promptly. In addition, there has been a renewed emphasis on scientific education presented to non-science majors. Through the renovation of the Ritenour Building, Penn State’s Eberly College of Science created an Academic Support Center as a hub of advising and assistance for prospective students, science majors, and science education. The center’s layout provides opportunities to share knowledge of science teaching with advising staff and the online learning department. The design of this space has been crafted to enhance these retention and educational goals.

Member Price:
Free  | Login

Member-only Resource

Join now to have access

Planning for Higher Education Journal

Published
October 1, 2012

Featured Image

Creating a Place for Introductory Mathematics

Academic Needs Drive Adaptive Reuse Project

Sometimes thinking outside the box requires designing within the box—be that box a university prerequisite or a campus facility.

From Volume 41 Number 1 | October–December 2012

Abstract: This article describes the planning process undertaken at a large, regional comprehensive university to create a space within existing buildings aimed at improving student success in introductory mathematics. It demonstrates the need for integrated planning grounded in academic priorities and student success models.

Member Price:
Free  | Login

Member-only Resource

Join now to have access

Planning for Higher Education Journal

Published
October 1, 2007

Featured Image

“A Moment of Grace”

Integrating Sustainability into the Undergraduate Curriculum

The author examines how four institutions—Northern Arizona University, Emory University, Berea College, and Ithaca College—are incorporating sustainability into their curricula.

From Volume 36 Number 1 | October–December 2007

Abstract: The sustainability movement in higher education has made considerable headway in the areas of research, campus operations, and community outreach, but has been less successful in bringing about curricular reform. To promote greater thinking about sustainability in the undergraduate curriculum, this essay explores three main questions: What are the implications of sustainability for higher education? What are some noteworthy examples of institutions incorporating sustainability into the curriculum? And, what can we learn from their experiences? The author advocates implementation of a "third order" learning model, emphasizing deep learning, a participative process which takes the form of continual exploration through practice.

Member Price:
Free  | Login

Member-only Resource

Join now to have access