140:. Her father was a physicist and her mother a high school principal. Thompson was encouraged by one of her friends to take a class in physics, and enjoyed it so much she decided to study it at university. She was the youngest person in Delaware to get her skydiving license.
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molecules in random sites across the graphene layers. The process of adsorbing hydroxide causes the carbon – carbon bonds to extend, which can result in static buckling. During her graduate studies, she became more interested in teaching and doing physics outreach.
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start to form. She has shown that the nanowires extend more in the presence of gold, and that nano-flowers only form in the presence of oxygen. She reported that ripples in graphene sheets can be understood by considering the adsorption of
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and published by
Physics Central, followed a middle school student (Lucy Hene) with laser-related superpowers. These included being able to pass through transparent surfaces, change colors depending on her levels of energy and play
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as well as the formation of ripples in sheets of graphene. The silicon nanowire tips form nano-flowers when in the presence of different gases. In the nano-flower formation process, the nanowires extend, and intricate patterns of
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for her graduate studies, where she studied pattern formation in buckled membranes using computational modeling. She worked under the supervision of
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is an
American physicist, popular science writer, and head of the Office of Education and Public Outreach at
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in the Centre for
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as Head of Public
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Thompson-Flagg, R. C.; Moura, M. J. B.; Marder, M. (2009).
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as Head of the Office of
Education and Public Outreach.
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Fire, Ice, and
Physics: The science of Game of Thrones
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247:. Cambridge, Massachusetts: MIT Press.
120:in 2019. She was elected Fellow of the
516:"Spectra Takes on San Diego Comic-Con"
346:Flowers in three dimensions and beyond
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23:Rebecca Caroline Thompson
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159:that form at the tip of
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485:"PhysicsQuest: Spectra"
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592:"Rebecca C. Thompson"
235:Selected publications
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147:. She moved to the
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106:. Her first book,
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271:References
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225:MIT Press
171:hydroxide
124:in 2016.
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