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TexGen: Innovations in Mechanical Engineering Research

Fully Rationalized Tsai-Wu Failure Criterion for Transversely Isotropic Materials (2022)

TexGen introduces a groundbreaking perspective on the traditional Tsai-Wu failure criterion for transversely isotropic materials. This research work, led by Shuguang Li, delves deeply into the quadratic function of the original criterion, shedding light on troublesome coefficients linked to interactive terms. By leveraging analytic geometry, the authors provide a fully rationalized approach that enhances the understanding and application of failure criteria in material science. The exploration of these concepts, outlined in the book chapter in 'Double-Double: a new perspective in the manufacture and design of composites,' published by Stanford & JEC, marks a significant advancement in the field.

Air-Cooling of a Hollow High-Speed Permanent Magnet Rotor (2019)

Another remarkable endeavor by TexGen researchers, Peter Connor, Alessandro La Rocca, Zeyuan Xu, Michele Degano, Carol Eastwick, Stephen Pickering, and Christopher Gerada, focuses on the air-cooling mechanisms for high-speed permanent magnet rotors. This presentation at the 2019 IEEE International Electric Machines and Drives Conference explores computational fluid dynamics and conjugate heat transfer analysis for optimizing both internal and external cooling paths within the hollow rotor. With a specific emphasis on mitigating magnet losses in high-speed applications, the study offers valuable insights into enhancing the efficiency and performance of these critical components in engineering systems.


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TexGen: Advancing Hearing Research and Innovation

The effect of stimulus duration on preferences for gain adjustments when listening to speech

In the realm of personalization of hearing-aid fittings, adjusting gain to suit individual preferences is crucial. Researchers have investigated the impact of stimulus duration on preferences for gain adjustments when listening to speech. By utilizing brief sentences as stimuli, they determined the minimum adjustments necessary to elicit consistent preferences. This study, published in the International Journal of Audiology, sheds light on the intricate balance required in optimizing hearing-aid fittings for varying speech durations.

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TexGen - Revolutionizing Textile Development Through Computational Modeling

Conceptualizing Anti-Racist Pedagogies Within Experimental Music's Community of Practice

The article discusses the importance of addressing power dynamics within communities of practice (COPs). It highlights the research gap in understanding racial dynamics within COPs and emphasizes the role of anti-racist pedagogies in the context of experimental music. The study provides insights into the need for inclusivity and diversity in educational settings.

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TexGen: Revolutionizing Soil Sciences with Advanced Technology Solutions

Introduction to TexGen

TexGen is a groundbreaking technology solution that is reshaping the field of Soil Sciences. By leveraging advanced computational methods and cutting-edge algorithms, TexGen offers researchers a powerful tool to analyze and understand complex soil systems in unprecedented detail. This innovative platform enables users to generate realistic virtual soil samples, simulate various environmental conditions, and explore the intricate interactions between soil components. With TexGen, researchers can delve into the microscopic world of soils, uncovering hidden patterns and insights that were previously inaccessible.

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Enhancing Psychosocial Intervention for Dementia: Evaluation and Usability of Technologies

Evaluation of Technologies for Psychosocial Intervention

The chapter 'Evaluation of technologies and products for psychosocial intervention and support for and with people living with dementia' delves into the techniques and methodologies used in evaluating designs created collaboratively under the 'Designing for people with Dementia' (MinD) program. Expanding on the MinD program, this chapter encompasses a wider array of tools catering to formative evaluation to enhance the psychosocial well-being of dementia patients. It focuses on how technology can be leveraged to provide effective intervention strategies and support for individuals living with dementia.

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TexGen: Revolutionizing Materials Engineering with Advanced Textile Structures

Introduction to TexGen

TexGen is an innovative software platform developed to revolutionize materials engineering, specifically focusing on advanced textile structures. This cutting-edge technology offers a powerful set of tools and capabilities that enable engineers and designers to create, analyze, and optimize complex textile architectures for a wide range of applications.

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