William A. Gunderson
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Associate Professor
Also affiliated: Northwestern University (2014–2016); University of Minnesota (2008); Emory University (2012); Oregon Health & Science University (2012); Illinois College (2015); University of California, Irvine (2008); Purdue University West Lafayette (2006); University of California San Diego (2006); Northwestern University (2014); University of Virginia (2021); Carnegie Mellon University (2006–2015)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
William A. Gunderson is an Associate Professor at Hendrix College. His research interests include the application of electron spin resonance spectroscopy to study oxygen and oxidation-reduction processes. He has also investigated molecular structure, nitrogen fixation, and catalysis using molecular models. Gunderson's work has involved the study of manganese and organometallic compounds, as well as oxygenases.
His recent publications include work on a low-cost, Arduino-controlled fluorometer, the integration of rubric-based metacognitive reflection to improve scientific research presentations, and the integration of modularity for mass customization of IoT wireless sensor systems. Gunderson has a h-index of 14, with 22 total publications and 987 total citations. He has collaborated with Julie Gunderson, Laura J. MacDonald, Adam De Groodt, and Nancy Velazquez, all from Hendrix College.
Metrics
- h-index: 14
- Publications: 22
- Citations: 1,028
Positions
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Associate Professor 2016–presentHendrix College Chemistry ORCID
Selected Publications
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The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer (2021)
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Integrating Rubric-Based Metacognitive Reflection to Improve Scientific Research Presentations (2021)
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Design and Implementation of Three-Dimensional Printable Optomechanical Components (2020)
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Developing Oral Presentation Skills in Undergraduate Researchers (2019)
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Quantitative Binding of Divalent Metal Ions to DNA Hairpin Loops (2019)
Collaboration Network
Top Collaborators
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- Design and Implementation of Three-Dimensional Printable Optomechanical Components
- Integrating Rubric-Based Metacognitive Reflection to Improve Scientific Research Presentations
- Quantitative Binding of Divalent Metal Ions to DNA Hairpin Loops
- Developing Oral Presentation Skills in Undergraduate Researchers
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- Design and Implementation of Three-Dimensional Printable Optomechanical Components
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- Design and Implementation of Three-Dimensional Printable Optomechanical Components
- Quantitative Binding of Divalent Metal Ions to DNA Hairpin Loops
- Design and Implementation of Three-Dimensional Printable Optomechanical Components
- Integrating Rubric-Based Metacognitive Reflection to Improve Scientific Research Presentations
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
- The Fluorino: A Low-Cost, Arduino-Controlled Fluorometer
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