Research Papers

  • E. Ginder, S. Omata, K. Svadlenka. "Variational Approach to Hyperbolic Free Boundary Problems."
    SpringerBriefs in Mathematics, https://doi.org/10.1007/978-981-19-6731-3_1 (2023).

  • B. Dúzs, G. Holló, H. Kitahata, E. Ginder, N. J. Suematsu, I. Lagzi, I. Szalai. "Appearance and suppression of Turing patterns under a periodically forced feed." Commun. Chem., 6, 3, doi: https://doi.org/10.1038/s42004-022-00800-6 (2023).

  • E. Ginder, G. Holló, I. Lagzi, N. Suematsu. "Electric field assisted motion of a mercury droplet." Scientific Reports, 11(1):2753. doi: 10.1038/s41598-020-80375-1. PMID: 33531526; PMCID: PMC7854757, (2021).

  • Y. Akagawa, E. Ginder, S. Koide, S. Omata, K. Svadlenka. "A Crank-Nicolson type minimization scheme for a hyperbolic free boundary problem." Discrete & Continuous Dynamical Systems - Series B, (2021) 1-22.

  • E. Ginder, A. Katayama. "On the inclusion of damping terms in the hyperbolic MBO algorithm."
    Advanced Studies in Pure Mathematics, 81 (2019), 1-12.

  • E. Ginder, R. Kanai. "A variational approach to the inverse imaging of composite elastic materials."
    arXiv:1903.05835, (2019).

  • E. Ginder, K. Kayahara, M. Kuze, M. Nagayama, S. Nakata, H. Nishimori. "Syncronization of self-propelled soft pendulums."
    Soft Matter, 14 (2018), 3791-3798.

  • E. Ginder, T. Minomo, M. Nagayama, S. Nakata, H. Yamamoto. "Traveling pulse solutions in a point mass model of diffusing particles." Computer Methods in Materials Science, 17 No. 2 (2017), 111-121.

  • E. Ginder, K. Svadlenka. "Wave-type threshold dynamics and the hyperbolic mean curvature flow."
    Japan Journal of Industrial and Applied Mathematics, 33 No. 2 (2016), 501-523.

  • E. Ginder, A. Katayama, K. Svadlenka. "On an approximation method for hyperbolic mean curvature flow."
    RIMS Kokyuroku, (2016).

  • E. Ginder, K. Svadlenka. "On an approximation scheme for oscillatory interfacial motions."
    Proceedings of the 40th Sapporo Symposium on Partial Differential Equations, (2015), 90-96.

  • E. Ginder, K. Svadlenka. 「変分法による界面運動のシミュレーション」
    Invited article for 「計算工学」20 No. 3 (2015), 17-20. (in Japanese)

  • E. Ginder, K. Svadlenka. "Wave-type threshold dynamics and the hyperbolic mean curvature flow."
    arXiv:1505.01963, (2015).

  • E. Ginder, S. Omata, K. Svadlenka. "A variational method for multiphase volume-preserving interface motions."
    Journal of Computational and Applied Mathematics, 257 (2014), 157–179.

  • E. Ginder, K. Svadlenka. "On an algorithm for curvature-dependent interfacial acceleration."
    JSCES, 19, (2014).

  • E. Ginder, K. Svadlenka. "The discrete Morse flow for volume-controlled membrane motions."
    Advances in Mathematical Sciences and Applications, 22 No. 1 (2012), 205-223.

  • E. Ginder, S. Omata, K. Svadlenka. "A variational method for multiphase area-preserving interface motions."
    arXiv:1204.6128, (2012).

  • E. Ginder, S. Omata, K. Svadlenka. "On a minimizing movement for diffusion-generated interfacial motions."
    RIMS Kokyuroku, No. 1791 (2012), 189-195.

  • E. Ginder, S. Omata, K. Svadlenka.「体積を保存する多相平均曲率流の数値計算」
    計算工学講演会論文集, 16, (2011). (in Japanese)

  • E. Ginder, S. Omata, K. Svadlenka. "A variational method for diffusion-generated area-preserving interface motion."
    Theoretical and Applied Mechanics Japan, 60 (2011), 265-270.

  • E. Ginder. "Construction of solutions to heat-type problems with time-dependent volume constraints."
    Advances in Mathematical Sciences and Applications, 20 No. 2 (2010), 467-482.

  • E. Ginder, K. Svadlenka. "A variational approach to a constrained hyperbolic free boundary problem."
    Nonlinear Analysis, 71 (2009), 1527-1537.

  • N. Giansiracusa, E. Ginder, K. Hemmi. "For Whom the Booth Tolls."
    The COMAP Mathematical Contest in Modeling (2005), 1-21. (Honorable mention)

  • N. Giansiracusa, E. Ginder, M. Polakowski. "Fe-Fi-Fo-Thumb."
    The COMAP Mathematical Contest in Modeling (2004), 1-18. (Meritorious winner)

  • J. Armstrong, S. Brumby, E. Ginder, C. Leovy, C. Plesko. "Applications of Machine Learning Techniques in Digital Processing of Images of the Martian Surface."
    Proc. SPIE (2002), 82-91.