Physics Webpages Create Barriers to Participation for People with Disabilities

Background: While there have been numerous calls to increase the participation of people with disabilities in STEM, many postsecondary institutions are not equipped to support students with disabilities. We examined the accessibility of 139 webpages from 73 postsecondary institutions in the USA that contained information about the undergraduate physics curriculum and graduate research programs. We selected these webpages as they are common entry points for students interested in pursuing a physics degree. We used Tenon and Mac OS X’s VoiceOver software to assess the level of accessibility of these webpages as measured by alignment with the Web Content Accessibility Guidelines (WCAG) 2.0. Results: We found that only one webpage had minimal accessibility errors (i.e., 10 errors), while the other webpages had numerous accessibility errors. Five specific error types accounted for the majority of all errors. The five most common errors were related to information, structure, and relationships of content (1.3.1 Level A; 39.7%); text alternatives for non-text content (1.1.1 Level A; 27.0%); information about link purpose (2.4.4 Level A; 14.7%); capability to resize text (1.4.4 Level AA; 10.0%); and information about the name, role, and value of user interface components (4.1.2 Level A; 11.2%). Conclusions: We present and describe the five common accessibility errors we identified in the webpages in our sample, suggest solutions for these errors, and provide implications for students with disabilities, instructors and staff, institutional administration, and the broader physics community.

Focus: AI and Disability/Outliers
Source: International Journal of STEM Education
Redability: Expert
Type: PDF Article
Open Source: No
Keywords: Accessibility, Webpage accessibility, STEM, Physics Education, Americans with Disabilities Act, Section 508, Disability studies
Learn Tags: Design/Methods Disability Education Ethics Fairness Solution
Summary: In this paper, five common accessibility errors identified on university physics webpages are presented, solutions for these errors are suggested, and the implications of these errors are discussed.