![]() The software applications written in response to this opportunity therefore make strong use of interactivity in the reconnaissance exploration of example datasets. It draws on the immense potential of the human user for feature detection through connecting scientific data formats to computer graphics technologies. The research described in this thesis aims to apply a novel set of technical resources to visualization in the geosciences. Such data visualizations are critical in the geosciences given the need to draw meaning from time-varying, spatial or volumetric data, and given the increasing size of the datasets available for analysis of the natural, physical world. They facilitate the formation of scientific knowledge about the physical world, based on underlying observations of diverse kinds, through representations that are understood by practitioners of the relevant discipline area. Visual displays are a formidable means of conveying information to the human brain.
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