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This is a sample blog post. Lorem ipsum I can’t remember the rest of lorem ipsum and don’t have an internet connection right now. Testing testing testing this blog post. Blog posts are cool.
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Short description of portfolio item number 1
Short description of portfolio item number 2
Published in Royal Society Interface, 2021
Used a robotic model of a flapping insect with elastic energy storage to uncover the effects of inertial, elastic, aerodynamic, and other damping forces on the efficiency of flapping insects - and robots
Published in Proceedings of the Royal Society B, 2021
Experiments show that hawkmoths blasted with a gust of air control their recovery in part by changing the frequency at which they flap their wings
Published in IEEE International Conference on Robotics and Automation (ICRA), 2022
Made robots that flapped autonomously - with no control input - by designing a feedback law based on the dynamics of stretch-activated insect flight muscle
Published in Biology Letters, 2022
A biomechanics model based on measurements of biological material properties and careful consideration of insect anatomy says that the hawkmoth Manduca sexta flaps its wing much faster than it would if it were trying to be as energy efficient as possible
Published in IEEE International Conference Intelligent Robots and Systems (IROS), 2022
Developed a novel carbon-fiber and silicone flapping robot transmission for more robust centimeter-scale flying robots
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Lynch, J., Gau J., Sponberg, S., Gravish, N., (2019, Mar. 4-8)“Robophysical investigation series-elastic flapping wings. APS March Meeting, Boston, MA, USA
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Lynch, J., Gau J., Sponberg, S., Gravish, N., (2020, Jan. 3-7). Resonance Properties of Insect-Inspired Series-Elastic Flapping Wings. Society of Integrative and Comparative Biology (SICB) Annual Meeting, Austin, TX, USA
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Lynch, J., Gau J., Sponberg, S., Gravish, N., (2020, Mar. 2–6). Springs and Wings: Robophysical investigation of unsteady flapping wing dynamics. APS March Meeting, Virtual
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Lynch, J., Gau, J., Sponberg, S., Gravish, N., (2021, Jan. 2). Dimensional analysis reveals limits on peak efficiency of flapping wing flight due to structural damping. Society of Integrative and Comparative Biology (SICB) Annual Meeting 2021, Virtual
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Lynch, J., Gau, J., Sponberg, S., Gravish, N., (2021, Mar. 15). Synchronous and asynchronous regimes of actuation in robophysical spring-wing systems. APS March Meeting, Virtuale
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Undergraduate course, University 1, Department, 2014
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Workshop, University 1, Department, 2015
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