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This research paper examines the close relationships between the visual arts and music and the implications of curatorial practice upon the work of conductors. While some conductors consider suitability the prime (or only) factor in determining which music to perform, curators use many more criteria. Five elements of exhibition design

This research paper examines the close relationships between the visual arts and music and the implications of curatorial practice upon the work of conductors. While some conductors consider suitability the prime (or only) factor in determining which music to perform, curators use many more criteria. Five elements of exhibition design are particularly germane to musicians including setting, subject matter, visual weight, compositional direction, and narrative. Each of these five elements is discussed in terms of its impact on concert design with a goal of providing additional criteria to the conductor when planning concerts. Three concert experiences, designed with these principles in mind, are presented as examples. Upon consideration of the elements of exhibition design separately and corporately, one arrives at a new appreciation of the concert as a unified experience--capable of being much more than the sum of its parts. The aim of effective concert design is to eliminate unintentional communication--to present music in the most complimentary manner possible. To this end, this study has implications for conductors at all levels.
ContributorsHoughtalen, Brandon (Author) / Hill, Gary W. (Thesis advisor) / Bailey, Wayne A (Committee member) / Ericson, John Q (Committee member) / Feisst, Sabine M (Committee member) / Russell, Timothy W (Committee member) / Arizona State University (Publisher)
Created2012
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The present study explored the use of augmented reality (AR) technology to support cognitive modeling in an art-based learning environment. The AR application used in this study made visible the thought processes and observational techniques of art experts for the learning benefit of novices through digital annotations, overlays, and side-by-side

The present study explored the use of augmented reality (AR) technology to support cognitive modeling in an art-based learning environment. The AR application used in this study made visible the thought processes and observational techniques of art experts for the learning benefit of novices through digital annotations, overlays, and side-by-side comparisons that when viewed on mobile device appear directly on works of art.

Using a 2 x 3 factorial design, this study compared learner outcomes and motivation across technologies (audio-only, video, AR) and groupings (individuals, dyads) with 182 undergraduate and graduate students who were self-identified art novices. Learner outcomes were measured by post-activity spoken responses to a painting reproduction with the pre-activity response as a moderating variable. Motivation was measured by the sum score of a reduced version of the Instructional Materials Motivational Survey (IMMS), accounting for attention, relevance, confidence, and satisfaction, with total time spent in learning activity as the moderating variable. Information on participant demographics, technology usage, and art experience was also collected.

Participants were randomly assigned to one of six conditions that differed by technology and grouping before completing a learning activity where they viewed four high-resolution, printed-to-scale painting reproductions in a gallery-like setting while listening to audio-recorded conversations of two experts discussing the actual paintings. All participants listened to expert conversations but the video and AR conditions received visual supports via mobile device.

Though no main effects were found for technology or groupings, findings did include statistically significant higher learner outcomes in the elements of design subscale (characteristics most represented by the visual supports of the AR application) than the audio-only conditions. When participants saw digital representations of line, shape, and color directly on the paintings, they were more likely to identify those same features in the post-activity painting. Seeing what the experts see, in a situated environment, resulted in evidence that participants began to view paintings in a manner similar to the experts. This is evidence of the value of the temporal and spatial contiguity afforded by AR in cognitive modeling learning environments.
ContributorsShapera, Daniel Michael (Author) / Atkinson, Robert K (Thesis advisor) / Nelson, Brian C (Committee member) / Erickson, Mary (Committee member) / Arizona State University (Publisher)
Created2016