Characteristics of Models for Representation of Mathematical Structure in Typesetting Applications and the Cognition of Digitally Transcribing Mathematics

Abstract

The digital typesetting of mathematics can present many challenges to users, especially those of novice to intermediate experience levels. Through a series of experiments, we show that two models used to represent mathematical structure in these typesetting applications, the 1-dimensional structure based model and the 2-dimensional freeform model, cause interference with users' working memory during the process of transcribing mathematical content. This is a notable finding as a connection between working memory and mathematical performance has been established in the literature. Furthermore, we find that elements of these models allow them to handle various types of mathematical notation with different degrees of success. Notably, the 2-dimensional freeform model allows users to insert and manipulate exponents with increased efficiency and reduced cognitive load and working memory interference while the 1-dimensional structure based model allows for handling of the fraction structure with greater efficiency and decreased cognitive load.

Author Keywords: mathematical cognition, mathematical software, user experience, working memory

    Item Description
    Type
    Contributors
    Creator (cre): Quinby, Francis
    Thesis advisor (ths): Burr, Wesley S.
    Thesis advisor (ths): Pollanen, Marco
    Degree committee member (dgc): Reynolds, Michael G.
    Degree granting institution (dgg): Trent University
    Date Issued
    2020
    Date (Unspecified)
    2020
    Place Published
    Peterborough, ON
    Language
    Extent
    135 pages
    Rights
    Copyright is held by the author, with all rights reserved, unless otherwise noted.
    Local Identifier
    TC-OPET-10809
    Publisher
    Trent University
    Degree