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Description

Academic libraries seek to engage people with information resources and maximize use of library spaces. When users increasingly rely on digital rather than print resources, libraries respond by shifting space usage from stacks to user working and reading spaces. How then do we, as academic library professionals, best keep print

Academic libraries seek to engage people with information resources and maximize use of library spaces. When users increasingly rely on digital rather than print resources, libraries respond by shifting space usage from stacks to user working and reading spaces. How then do we, as academic library professionals, best keep print collections on public view and maximize user engagement?

In this whitepaper, we focus on fostering engagement with print resources among\nlibrary users, particularly with open stack print collections and users within the local community. We advocate moving toward a more flexible, more user-focused service that makes library collections easier to understand and to use. Libraries need to work with their surrounding communities in the further development and presentation of their collections. We offer a flexible, a la carte approach to transforming open stack academic library print collection management. We have developed a three-tiered system of potential approaches and actions for academic libraries to foster engagement with their collections. We also include materials and tools to help guide individual libraries towards a data-driven approach to print curation that may be tailored to their local context. We hope that these approaches and tools aid academic libraries in helping users engage in meaningful dialogues with print resources.

As part of a $50,000 planning grant from the Andrew W. Mellon Foundation, the analysis is aimed at fostering engagement with print resources among library users, particularly with open stack print collections and users within the local community. "The Future of the Academic Library Print Collection: A Space for Engagement" explores a three-tiered system of potential approaches and actions for academic libraries to foster engagement with their collections, and includes materials and tools to help guide individual libraries towards a data-driven approach to print curation that may be tailored to their local context.

Created2017-10
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Description

This paper describes how Arizona State University Library used creativity and novel approaches to collections design and implementation processes to select open stack print books for a newly renovated academic research library. Using results from a workshop focused on rethinking the future of print within educational learning and research environments,

This paper describes how Arizona State University Library used creativity and novel approaches to collections design and implementation processes to select open stack print books for a newly renovated academic research library. Using results from a workshop focused on rethinking the future of print within educational learning and research environments, the Collections Services and Analysis unit within Arizona State University Library performed a series of experiments to better understand the purpose and use of print collections within 21st century library design. The authors describe the creative processes used in collections design and three types of selection approaches that invited engagement with open stacks. These three types were: small browsing collections co-curated with community members, a medium-sized print collection selected for student engagement, and a large research collection selected using a novel data analysis of four factors affecting the likelihood of potential use. Using more than one million volumes as the basis for selection, approximately 185,000 volumes were installed in the renovated library through a complex implementation across four library locations. The authors discuss the key role that creativity played in the approaches, methods, and results of these efforts and offer recommendations for collection management teams seeking to maximize their pursuit of community engagement with print collections within contemporary academic library spaces.

ContributorsMcAllister, Lorrie (Author) / Laster, Shari (Author) / Dang, Tammy (Author) / Pattni, Emily (Author) / Arizona State University. Library (2017- ) (Issuing body) / Andrew W. Mellon Foundation (Contributor)
Created2024-06
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Description

Utilizing algebraic problem solving specifically, we demonstrate how teachers of students with ASD can apply research-based practices so that their students can more readily acquire mathematical skills.

ContributorsCleary, Shannon (Author)
Created2015-08-15
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Description
In this paper, we examine Handgun Control Inc. and the National Rifle Association’s contributions to mobilizations, for and against gun control. As with any social and political movement, we find these two opposing networks, the proponents of gun control and the anti-gun control groups, utilizing each other’s frames, actions and

In this paper, we examine Handgun Control Inc. and the National Rifle Association’s contributions to mobilizations, for and against gun control. As with any social and political movement, we find these two opposing networks, the proponents of gun control and the anti-gun control groups, utilizing each other’s frames, actions and policies as a way of countering the opposition and advancing their own agendas.
ContributorsHernandez, Carolina (Author) / Montgomery, Alexandria (Author)
Created2015-08-09
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Description
The research shows that vegetation height differentially affects surface temperature at the residential parcel-level. Vegetation of 5m-10m height is correlated to mitigation of extreme temperatures, lowering daytime surface temperatures and raising nighttime surface temperatures. Vegetation of 1.5m-5m height lowered daytime surface temperatures to a lesser magnitude than vegetation of taller

The research shows that vegetation height differentially affects surface temperature at the residential parcel-level. Vegetation of 5m-10m height is correlated to mitigation of extreme temperatures, lowering daytime surface temperatures and raising nighttime surface temperatures. Vegetation of 1.5m-5m height lowered daytime surface temperatures to a lesser magnitude than vegetation of taller height. Results imply that planners and landscape designers should consider strategically arranging buildings and vegetation to maximize shading and cooling benefit.
ContributorsJia, Jessica (Author)
Created2015-07-14
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DescriptionJournal Article
ContributorsYoder, Allyson (Author)
Created2015-06-18