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Eman Alasadi

Eman Alasadi

· Assistant Professor of Instruction

University of Texas at Austin · Chemistry

Active 2023–2024

h-index2
Citations154
Papers55 last 5y
Funding—

Academic metrics are sourced from OpenAlex and public funding records; values may differ from Google Scholar.

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Research topics

  • Computer Science
  • Artificial Intelligence
  • Chemistry
  • Sociology
  • Cognitive science
  • Physical chemistry
  • Psychology
  • Engineering ethics
  • Stereochemistry
  • Engineering

Selected publications

  • Generative AI in Education and Research: Opportunities, Concerns, and Solutions

    Journal of Chemical Education · 2023 · 398 citations

    1st authorCorresponding

    In this article, we discuss the role of generative artificial intelligence (AI) in education. The integration of AI in education has sparked a paradigm shift in teaching and learning, presenting both unparalleled opportunities and complex challenges. This paper explores critical aspects of implementing AI in education to advance educational goals, ethical considerations in scientific publications, and the attribution of credit for AI-driven discoveries. We also examine the implications of using…

  • Multimodal Generative Artificial Intelligence Tackles Visual Problems in Chemistry

    Journal of Chemical Education · 2024 · 27 citations

    1st authorCorresponding

    The introduction of multimodal capabilities in large language models (LLMs) marks a significant advancement in the field of artificial intelligence (AI). In particular, the ability to process and interpret visual data, including complex graphs and plots frequently encountered in chemistry, expands the potential of these models. This integration of text and image processing allows multimodal AI to tackle a broader range of problems, especially in areas where visual information is central to under…

  • Lanmodulin’s EF 2–3 Domain: Insights from Infrared Spectroscopy and Simulations

    ACS Chemical Biology · 2024 · 8 citations

    1st authorCorresponding

    luminescence measurements, explore these results, suggesting a competition between water-lanthanide and carboxylate-lanthanide interactions in the EF 2-3 domain. These results underscore the role of the core helical bundle of the protein architecture in influencing binding affinities and communication between the metal-binding sites in the full-length protein.

  • Ion effects on minimally hydrated polymers: hydrogen bond populations and dynamics

    Soft Matter · 2024-01-01 · 7 citations

    articleOpen access1st author

    ) increase hydrogen bond populations and accelerate hydrogen bond dynamics, with anions having more pronounced effects compared to cations. These effects can be attributed to the complex interplay between ion hydration shells and the polymer matrix, where larger ions with diffuse charge distributions are less efficiently solvated, leading to a more pronounced disruption of the local hydrogen bonding network. Additionally, increased overall water content results in a significant slowdown of dynam…

  • Investigating the structural and dynamical basis for ion affinity in the ion-binding sites of signaling proteins

    Biophysical Journal · 2023-02-01

    articleOpen access1st authorCorresponding

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