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Book part
Publication date: 9 November 2023

Sabeehah Ravat

In the binary sex-segregated space of professional sports, sex-gender diversity is met with suspicion, derision and exclusion. In the United States, along with widespread…

Abstract

In the binary sex-segregated space of professional sports, sex-gender diversity is met with suspicion, derision and exclusion. In the United States, along with widespread anti-trans policies at various societal levels, legislations and regulations are being pushed to limit or eliminate transgender athletes from competing in all levels of sports. However, little scholarship has considered the implications of the presence of nonbinary athletes, those who identify outside the spectrum of man and woman, beyond the conversation of a ‘third gender’ category in sport. In this chapter, I seek to examine how nonbinary athletes embody disobedience by challenging the binary categorization of sex-gender within professional sports. I explore the racialized embodiment of sex and gender in professional women's sports, specifically WNBA player Layshia Clarendon. I explore how disobedience is employed to incite resistance against the narrow sex-gender categories that are forced upon athletes. Finally, I argue that embodied disobedience provides a key pathway for nonbinary athletes to undermine the regulatory nature of sex-gender categorization in sport. Particularly, nonbinary athletes may seek medical and social forms of gender affirmation, while simultaneously embodying disobedience by continuing to actively participate in professional sports categories in which they may not neatly fit.

Details

Trans Athletes’ Resistance
Type: Book
ISBN: 978-1-80382-364-5

Keywords

Open Access
Article
Publication date: 27 July 2023

Andrea Kő, Gábor Tarján and Ariel Mitev

This paper aims to provide a maturity model for information security awareness (MMISA), based on the literature, expert interviews and feedback. In addition to developing the…

805

Abstract

Purpose

This paper aims to provide a maturity model for information security awareness (MMISA), based on the literature, expert interviews and feedback. In addition to developing the MMISA, the authors investigate the role of the three decisive factors that affect ISA maturity level: risk management mechanism, organizational structure and ISA.

Design/methodology/approach

The research methodology is a combined one; qualitative and quantitative methods were applied, including surveying the literature, interviews and developing a survey to collect quantitative data about decisive factors that affect ISA maturity level. The authors perform a variance-based partial least squares-structural equation modeling (PLS-SEM) investigation of the relationships between these factors.

Findings

The investigation of decisive factors of ISA maturity levels revealed that if the authors identify a strong risk assessment mechanism (through a documented methodology and reliable results), the authors can expect a high level of ISA. If there is a well-defined organizational structure with clear responsibilities, this supports the linking of a risk management mechanism with the level of ISA. The connection between organizational structure and ISA maturity level is supported by ISA activities: an increased level of awareness actions strengthens an organizational structure via the best practices learned by the staff.

Originality/value

The main contribution of the proposed MMISA model is that the model offers controls and audit evidence for maturity levels. Beyond that, the authors distinguish in the MMISA model controls supporting knowledge and controls supporting attitude, emphasizing that this is not enough to know what to do, but the proper attitude is required too. The authors didn't find any other ISA maturity model which has a similar feature. The contribution of the authors' work is that the authors provide a method for solving this complex measurement problem via the MMISA, which also offers direct guidance for the daily practices of organizations.

Details

Information Technology & People, vol. 36 no. 8
Type: Research Article
ISSN: 0959-3845

Keywords

Article
Publication date: 7 February 2024

Rajesh Shah, Blerim Gashi, Vikram Mittal, Andreas Rosenkranz and Shuoran Du

Tribological research is complex and multidisciplinary, with many parameters to consider. As traditional experimentation is time-consuming and expensive due to the complexity of…

Abstract

Purpose

Tribological research is complex and multidisciplinary, with many parameters to consider. As traditional experimentation is time-consuming and expensive due to the complexity of tribological systems, researchers tend to use quantitative and qualitative analysis to monitor critical parameters and material characterization to explain observed dependencies. In this regard, numerical modeling and simulation offers a cost-effective alternative to physical experimentation but must be validated with limited testing. This paper aims to highlight advances in numerical modeling as they relate to the field of tribology.

Design/methodology/approach

This study performed an in-depth literature review for the field of modeling and simulation as it relates to tribology. The authors initially looked at the application of foundational studies (e.g. Stribeck) to understand the gaps in the current knowledge set. The authors then evaluated a number of modern developments related to contact mechanics, surface roughness, tribofilm formation and fluid-film layers. In particular, it looked at key fields driving tribology models including nanoparticle research and prosthetics. The study then sought out to understand the future trends in this research field.

Findings

The field of tribology, numerical modeling has shown to be a powerful tool, which is both time- and cost-effective when compared to standard bench testing. The characterization of tribological systems of interest fundamentally stems from the lubrication regimes designated in the Stribeck curve. The prediction of tribofilm formation, film thickness variation, fluid properties, asperity contact and surface deformation as well as the continuously changing interactions between such parameters is an essential challenge for proper modeling.

Originality/value

This paper highlights the major numerical modeling achievements in various disciplines and discusses their efficacy, assumptions and limitations in tribology research.

Peer review

The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-03-2023-0076/

Details

Industrial Lubrication and Tribology, vol. 76 no. 2
Type: Research Article
ISSN: 0036-8792

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