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files/bibliography-sage.bib

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@@ -5877,3 +5877,181 @@ @article{chen2024polygnn
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url = {https://www.sciencedirect.com/science/article/pii/S0924271624003691},
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author = {Zhaiyu Chen and Yilei Shi and Liangliang Nan and Zhitong Xiong and Xiao Xiang Zhu},
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}
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@article{besginow2022constraining,
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title={Constraining Gaussian processes to systems of linear ordinary differential equations},
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author={Besginow, Andreas and Lange-Hegermann, Markus},
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journal={Advances in Neural Information Processing Systems},
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volume={35},
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pages={29386--29399},
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year={2022},
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note={https://proceedings.neurips.cc/paper_files/paper/2022/file/bcef27c5825d1ed8757290f237b2d851-Paper-Conference.pdf}
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}
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@article{Denny01012024,
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author = {J. K. Denny},
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title = {Schedules and Waitlists and Integer Programs, Oh My!},
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journal = {Mathematics Magazine},
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volume = {97},
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number = {1},
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pages = {50--57},
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year = {2024},
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publisher = {Taylor \& Francis},
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doi = {10.1080/0025570X.2023.2284419},
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url = {https://doi.org/10.1080/0025570X.2023.2284419}
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}
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@article{Charest20102023,
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author = {Allen Charest, Ben Coté and Ward Heilman},
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title = {The Invisible Solutions of the Rubik’s Cube},
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journal = {Mathematics Magazine},
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volume = {96},
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number = {5},
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pages = {508--515},
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year = {2023},
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publisher = {Taylor \& Francis},
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doi = {10.1080/0025570X.2023.2266345},
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url = {https://doi.org/10.1080/0025570X.2023.2266345}
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}
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@book{mcleman2022explorations,
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title={Explorations in Number Theory},
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author={McLeman, Cam and McNicholas, Erin and Starr, Colin},
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year={2022},
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publisher={Springer}
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}
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@book{poodiack2022squigonometry,
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title={Squigonometry: The Study of Imperfect Circles},
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author={Poodiack, Robert D and Wood, William E},
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year={2022},
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publisher={Springer}
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}
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@article{melistas2023divisibility,
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title={A divisibility related to the Birch and Swinnerton-Dyer conjecture},
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author={Melistas, Mentzelos},
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journal={Journal of Number Theory},
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volume={245},
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pages={150--168},
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year={2023},
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publisher={Elsevier}
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}
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@misc{gualdi2023limit,
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title={Limit heights and special values of the Riemann zeta function},
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author={Roberto Gualdi and Martín Sombra},
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year={2023},
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eprint={2304.01966},
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archivePrefix={arXiv},
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primaryClass={math.NT}
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}
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@article {Ettahri-Ramare-Surel*19,
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AUTHOR = {Ettahri, S. and Ramar\'{e}, O. and Surel, L.},
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TITLE = {Fast multi-precision computation of some {E}uler products},
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JOURNAL = {Math. Comp.},
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FJOURNAL = {Mathematics of Computation},
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VOLUME = {90},
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YEAR = {2021},
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NUMBER = {331},
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PAGES = {2247--2265},
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ISSN = {0025-5718},
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MRCLASS = {11Y60},
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MRNUMBER = {4280300},
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DOI = {10.1090/mcom/3630},
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NOTE = {https://ramare-olivier.github.io/Maths/mcom3630.pdf},
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}
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@article {Ramare*20a,
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AUTHOR = {Ramar\'{e}, O.},
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TITLE = {Accurate computations of {E}uler products over primes in
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arithmetic progressions},
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JOURNAL = {Funct. Approx. Comment. Math.},
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FJOURNAL = {Uniwersytet im. Adama Mickiewicza w Poznaniu. Wydzia\l
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Matematyki i Informatyki. Functiones et Approximatio
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Commentarii Mathematici},
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VOLUME = {65},
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YEAR = {2021},
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NUMBER = {1},
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PAGES = {33--45},
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ISSN = {0208-6573}, MRCLASS = {11Y60 (05A15 11N13)},
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MRNUMBER = {4311494},
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DOI = {10.7169/facm/1853},
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NOTE = {https://ramare-olivier.github.io/Maths/FA1853.pdf},
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}
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@Misc{Ramare*21-s,
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author = {O. Ramar\'e},
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title = {{Sage}: {C}omputing {L}attice {I}nvariant {E}uler {P}roducts
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{L}ibrary},
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url =
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{https://ramare-olivier.github.io/Maths/LatticeInvariantEulerProducts-06.sage},
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year = {2020}
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}
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@book {Ramare*22-0,
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AUTHOR = {Ramar\'e, Olivier},
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TITLE = {Excursions in {M}ultiplicative {N}umber {T}heory},
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SERIES = {Birkh\"{a}user Advanced Texts: Basler Lehrb\"{u}cher.
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[Birkh\"{a}user Advanced Texts: Basel Textbooks]},
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NOTE = {With the collaboration of P. Moree and A. Sedunova},
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PUBLISHER = {Birkh\"{a}user/Springer, Cham},
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ISSN = {1019-6242},
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YEAR = {[2022] \copyright 2022},
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PAGES = {xxii+338},
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}
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@article {MR3881305,
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AUTHOR = {Birkandan, Tolga and G\"{u}zelg\"{u}n, Ceren and \c{S}irin, Elif and Can
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Uslu, Mustafa},
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TITLE = {Symbolic and numerical analysis in general relativity with
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open source computer algebra systems},
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JOURNAL = {Gen. Relativity Gravitation},
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FJOURNAL = {General Relativity and Gravitation},
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VOLUME = {51},
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YEAR = {2019},
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NUMBER = {1},
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PAGES = {Paper No. 4, 22},
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ISSN = {0001-7701},
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MRCLASS = {83-04},
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MRNUMBER = {3881305},
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DOI = {10.1007/s10714-018-2486-x},
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URL = {https://doi.org/10.1007/s10714-018-2486-x},
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}
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@article{natarajan2021conformal,
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title={Conformal evolution of phantom dominated final stages of the universe in higher dimensions},
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author={Natarajan, S and Chandramohan, R},
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journal={Canadian Journal of Physics},
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volume={99},
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number={1},
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pages={1--9},
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year={2021},
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publisher={NRC Research Press 1840 Woodward Drive, Suite 1, Ottawa, ON K2C 0P7}
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}
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@book{zimmermann2018computational,
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title={Computational mathematics with SageMath},
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author={Zimmermann, Paul and Casamayou, Alexandre and Cohen, Nathann and Connan, Guillaume and Dumont, Thierry and Fousse, Laurent and Maltey, Fran{\c{c}}ois and Meulien, Matthias and Mezzarobba, Marc and Pernet, Cl{\'e}ment and others},
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year={2018},
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publisher={SIAM}
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}
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@article{shermanske2017modern,
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title={Modern cryptography and elliptic curves: A beginner's guide},
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author={Shermanske, T},
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journal={Providence, Rhode Island: American Mathematical Society},
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year={2017}
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}
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@book{corry2018divisors,
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author = {Scott Corry and David Perkinson},
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title = {Divisors and Sandpiles: An Introduction to Chip-Firing},
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year = {2018},
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publisher = {American Mathematical Society},
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}
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library-publications.html

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@@ -551,6 +551,7 @@ <h2>Articles</h2>
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<li>Ben Salisbury and Travis Scrimshaw. Using rigged configurations to model $B(\infty)$. Sém. Lothar. Combin., volume 78B, pages Art. 34,12, 2017.</li>
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<li>Anne Schilling. <a href="http://arxiv.org/abs/1405.2966">Richard Stanley through a crystal lens and from a random angle</a>. in: The Mathematical Legacy of Richard P. Stanley, AMS 2016, pages 287--299, 2017.</li>
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<li>Travis Scrimshaw. <a href="https://arxiv.org/abs/1607.03232">Rigged configurations as tropicalizations of loop Schur functions</a>. J. Integrable Syst., volume 2, number 1, pages xyw015,24, 2017.</li>
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<li>T Shermanske. Modern cryptography and elliptic curves: A beginner's guide. Providence, Rhode Island: American Mathematical Society, 2017.</li>
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<li>Elizabeta Šamec, Krešimir Fresl, and Maja Baniček. Increasing efficiency of iterative application of the force density method. Građevinar, volume 69, number 12., pages 1075--1084, 2017.</li>
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<li>Thibault Manneville. Fan Realizations for Some 2-Associahedra. Experimental Mathematics, volume 27, number 4, pages 377--394, 2017-03.</li>
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<li>Q.-R. Wang and Z.-C. Gu. {Towards a complete classification of fermionic symmetry protected topological phases in 3D and a general group supercohomology theory}. ArXiv e-prints, 2017-03.</li>
@@ -569,6 +570,7 @@ <h2>Articles</h2>
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<li>Anne M. Ho. Unlocking Ideas: Using Escape Room Puzzles in a Cryptography Classroom. PRIMUS, volume 28, number 9, pages 835--847, 2018-08.</li>
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<li>M. Adamoudis, Konstantinos Draziotis, and Dimitrios Poulakis. <a href="https://link.springer.com/chapter/10.1007/978-3-030-21363-3_2">Enhancing an Attack to DSA Schemes</a>. CAI 2019. Springer Nature, Lecture Notes in Computer Science, volume 11545, pages 1--13, 2019.</li>
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<li>Daniel J Bernstein and Bo-Yin Yang. Fast constant-time gcd computation and modular inversion. IACR Transactions on Cryptographic Hardware and Embedded Systems, pages 340--398, 2019.</li>
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<li>Tolga Birkandan, Ceren Güzelgün, Elif Şirin, and Mustafa Can Uslu. <a href="https://doi.org/10.1007/s10714-018-2486-x">Symbolic and numerical analysis in general relativity with open source computer algebra systems</a>. Gen. Relativity Gravitation, volume 51, number 1, pages Paper No. 4, 22, 2019.</li>
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<li>John Cremona and Ariel Pacetti. On elliptic curves of prime power conductor over imaginary quadratic fields with class number 1. Proceedings of the London Mathematical Society, volume 118, number 5, pages 1245--1276, 2019.</li>
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<li>Emre Can Sertöz. <a href="https://doi.org/10.1090/mcom/3430">Computing periods of hypersurfaces</a>. Mathematics of Computation, volume 88, number 320, pages 2987--3022, 2019-04.</li>
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<li>Xiang Fan. <a href="http://dx.doi.org/10.1017/S0004972719000674">Permutation polynomials of degree 8 over finite fields of odd characteristic</a>. Bulletin of the Australian Mathematical Society, volume 101, number 1, pages 40--55, 2019-07.</li>
@@ -586,17 +588,24 @@ <h2>Articles</h2>
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<li>John E Cremona and Nuno Freitas. Global methods for the symplectic type of congruences between elliptic curves. Revista Matem{á}tica Iberoamericana, 2021.</li>
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<li>John E Cremona, John W Jones, Andrew V Sutherland, and John Voight. The L-Functions and Modular Forms Database. Notices of the American Mathematical Society, volume 68, number 9, 2021.</li>
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<li>JE Cremona and Filip Najman. <i>Q</i>-curves over odd degree number fields. Research in Number Theory, volume 7, number 4, pages 1--30, 2021.</li>
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<li>S. Ettahri, O. Ramaré, and L. Surel. <a href="https://ramare-olivier.github.io/Maths/mcom3630.pdf">Fast multi-precision computation of some {E}uler products</a>. Math. Comp., volume 90, number 331, pages 2247--2265, 2021.</li>
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<li>Louis Gagnon, Marco Morandini, and Stéphane Fournier. <a href="https://jacm.scu.ac.ir/article_16704.html">Parametric Optimization of a Cyclogiro Aircraft Design for Efficient Hover with Aeroelastic Considerations</a>. Journal of Applied and Computational Mechanics, 2021.</li>
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<li>Ðorđe Klisura. Embedding Non-planar Graphs: Storage and Representation. Proceedings of the 2021 7th Student Computer Science Research Conference. Pages 57, 2021.</li>
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<li>S Natarajan and R Chandramohan. Conformal evolution of phantom dominated final stages of the universe in higher dimensions. Canadian Journal of Physics, volume 99, number 1, pages 1--9, 2021.</li>
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<li>O. Ramaré. <a href="https://ramare-olivier.github.io/Maths/FA1853.pdf">Accurate computations of {E}uler products over primes in arithmetic progressions</a>. Funct. Approx. Comment. Math., volume 65, number 1, pages 33--45, 2021.</li>
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<li>L. Alanís-López, E. Artal, C. Bonatti, X. Gómez-Mont, M. González Villa, and P. Portilla Cuadrado. <a href="https://doi.org/10.1016/j.indag.2022.02.007">On a quadratic form associated with a surface automorphism and its applications to Singularity Theory</a>. Indag. Math. (N.S.), volume 33, number 4, pages 816--843, 2022.</li>
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<li>E. Artal and J. Wahl. <a href="http://dx.doi.org/10.5427/jsing.2022.24e">Fundamental group of rational homology disk smoothings of surface singularities</a>. J. Singul., volume 24, pages 126--144, 2022.</li>
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<li>Andreas Besginow and Markus Lange-Hegermann. <a href="https://proceedings.neurips.cc/paper_files/paper/2022/file/bcef27c5825d1ed8757290f237b2d851-Paper-Conference.pdf">Constraining Gaussian processes to systems of linear ordinary differential equations</a>. Advances in Neural Information Processing Systems, volume 35, pages 29386--29399, 2022.</li>
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<li>Konstantinos Draziotis, V. Martidis, and S. Tiganourias. <a href="https://arxiv.org/abs/2002.07095">Product Subset Problem : Applications to number theory and cryptography</a>. Analysis, Cryptography and Information Science. World Scinetific, Computers and Operations Research, volume 10, pages 91-115, 2022.</li>
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<li>Kwankyu Lee. Base Field Extension of {AG} Codes for Decoding. IEEE Transactions on Information Theory, volume 68, number 6, pages 3740--3743, 2022.</li>
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<li>Alan Garfinkel, Steve Bennoun, Eric Deeds, and Blaire Van Valkenburgh. Teaching Dynamics to Biology Undergraduates: the UCLA Experience. Bulletin of Mathematical Biology, volume 84, 2022-03.</li>
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<li>M. Adamoudis and Konstantinos Draziotis. <a href="http://arxiv.org/abs/2203.09620">Message recovery attack to NTRU using a lattice independent from the public key</a>. Advances in Mathematics of Communication (to appear), 2023.</li>
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<li>Ben Coté Allen Charest and Ward Heilman. <a href="https://doi.org/10.1080/0025570X.2023.2266345">The Invisible Solutions of the Rubik’s Cube</a>. Mathematics Magazine, volume 96, number 5, pages 508--515, 2023.</li>
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<li>K. A. Draziotis and G. Rizos. <a href="https://arxiv.org/abs/2303.08973">Cryptographic Primitives based on Compact Knapsack</a>. arXiv preprint arXiv:2303.08973, 2023.</li>
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<li>Sinan Kapçak. SageMath Tools for Stability and Bifurcation for Discrete Dynamical Systems. In Saber Elaydi, Mustafa R. S. Kulenović, and Senada Kalabušić (ed.). Advances in Discrete Dynamical Systems, Difference Equations and Applications. Springer International Publishing, pages 283--297, 2023.</li>
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<li>Mentzelos Melistas. A divisibility related to the Birch and Swinnerton-Dyer conjecture. Journal of Number Theory, volume 245, pages 150--168, 2023.</li>
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<li>Zhaiyu Chen, Yilei Shi, Liangliang Nan, Zhitong Xiong, and Xiao Xiang Zhu. <a href="https://www.sciencedirect.com/science/article/pii/S0924271624003691">{PolyGNN}: Polyhedron-based graph neural network for {3D} building reconstruction from point clouds</a>. ISPRS Journal of Photogrammetry and Remote Sensing, volume 218, pages 693-706, 2024.</li>
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<li>J. K. Denny. <a href="https://doi.org/10.1080/0025570X.2023.2284419">Schedules and Waitlists and Integer Programs, Oh My!</a>. Mathematics Magazine, volume 97, number 1, pages 50--57, 2024.</li>
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<li>Matthias Köppe. The Reformation of Sage. In Kevin Buzzard, Alicia Dickenstein, Bettina Eick, Anton Leykin, and Yue Ren (ed.). Mathematical Software -- ICMS 2024. Springer Nature Switzerland, pages 3--11, 2024.</li>
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</ol>
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@@ -699,12 +708,17 @@ <h2><a name="books"></a>Books</h2>
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<li>Richard Taillet. Optique géométrique. De Boeck Superieur, 2017.</li>
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<li>John Harris, Karen Kohl, and John Perry. Peering into Advanced Mathematics through Sage-colored Glasses. Lulu, 2017-11.</li>
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<li>Matthias Beck and Raman Sanyal. <a href="https://www.springer.com/engineering/computational+intelligence+and+complexity/book/978-3-319-01966-6">Combinatorial reciprocity theorems</a>. American Mathematical Society, 2018.</li>
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<li>Scott Corry and David Perkinson. Divisors and Sandpiles: An Introduction to Chip-Firing. American Mathematical Society, 2018.</li>
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<li>Ben McKay. <a href="https://github.com/Ben-McKay/concrete-algebra">Concrete Algebra</a>. 2018.</li>
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<li>Paul Zimmermann, Alexandre Casamayou, Nathann Cohen, Guillaume Connan, Thierry Dumont, Laurent Fousse, François Maltey, Matthias Meulien, Marc Mezzarobba, Clément Pernet, Nicolas M. Thiéry, Erik Bray, John Cremona, Marcelo Forets, Alexandru Ghitza, and Hugh Thomas. Computational mathematics with {S}age{M}ath. Society for Industrial and Applied Mathematics (SIAM), Philadelphia, PA, 2018.</li>
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<li>Paul Zimmermann, Alexandre Casamayou, Nathann Cohen, Guillaume Connan, Thierry Dumont, Laurent Fousse, François Maltey, Matthias Meulien, Marc Mezzarobba, Clément Pernet, and others. Computational mathematics with SageMath. SIAM, 2018.</li>
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<li>Leon Silva, Marcelo Santos, and Ricardo Machado. <a href="https://loja.sbm.org.br/index.php/elementos-de-computac-o-matematica-com-sagemath.html">Elementos de Computação Matemática com SageMath</a>. Brazilian Mathematical Society, 2019.</li>
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<li>Gregory Bard. <a href="http://www.sage-para-estudiantes.com/">Sage para Estudiantes de Pregrado</a>. online, 2020.</li>
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<li>Ryan B. Hayward. Hex: A Playful Introduction. MAA Press, 2022.</li>
718+
<li>Cam McLeman, Erin McNicholas, and Colin Starr. Explorations in Number Theory. Springer, 2022.</li>
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<li>Robert D Poodiack and William E Wood. Squigonometry: The Study of Imperfect Circles. Springer, 2022.</li>
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<li>Sinan Kapçak. <a href="https://nesinkoyleri.org/wp-content/uploads/2023/06/sagemath_kitap_20230510.pdf">SageMath ile Matematik</a>. Nesin Yayınevi, 2023.</li>
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<li>Olivier Ramaré. Excursions in {M}ultiplicative {N}umber {T}heory. Birkh\"{a}user/Springer, Cham, [2022] \copyright 2022.</li>
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</ol>
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</div>
@@ -771,10 +785,12 @@ <h2>Preprints</h2>
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<li>Vincent Delecroix, Johannes Schmitt, and Jason van Zelm. <a href="https://arxiv.org/abs/2002.01709">admcycles -- a Sage package for calculations in the tautological ring of the moduli space of stable curves</a>. arXiv:2002.01709, 2020.</li>
772786
<li>Darij Grinberg. <a href="http://www.cip.ifi.lmu.de/~grinberg/algebra/petriesym.pdf">Petrie symmetric functions</a>. https://arxiv.org/abs/2004.11194, 2020.</li>
773787
<li>Darij Grinberg. <a href="http://www.cip.ifi.lmu.de/~grinberg/t/19fco/n/n.pdf">Enumerative Combinatorics</a>. lecture notes, work in progress, 2020.</li>
788+
<li>O. Ramaré. <a href="https://ramare-olivier.github.io/Maths/LatticeInvariantEulerProducts-06.sage">{Sage}: {C}omputing {L}attice {I}nvariant {E}uler {P}roducts {L}ibrary</a>. 2020.</li>
774789
<li>Johannes Schmitt and Jason van Zelm. <a href="https://arxiv.org/abs/1808.05817">Intersections of loci of admissible covers with tautological classes</a>. arXiv:1808.05817 [math.AG], 2020.</li>
775790
<li>Fabian Gabel, Dennis Gallaun, Julian Großmann, Marko Lindner, and Riko Ukena. <a href="http://arxiv.org/abs/2104.00711">Finite section method for aperiodic Schrödinger operators</a>. arXiv:2104.00711, 2021.</li>
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<li>H. W. Braden and Linden Disney-Hogg. <a href="https://arxiv.org/abs/2208.13692">Bring's Curve: Old and New</a>. arXiv:2208.13692, 2022.</li>
777792
<li>Trevor Karn, George Nasr, Nicholas Proudfoot, and Lorenzo Vecchi. <a href="http://arxiv.org/abs/2202.06938">Equivariant {K}azhdan-{L}usztig theory of paving matroids</a>. arXiv:2202.06938, 2022.</li>
793+
<li>Roberto Gualdi and Martín Sombra. Limit heights and special values of the Riemann zeta function. 2023.</li>
778794
<li>Kazunori Iwaki. Infinite families of standard Cappell-Shaneson spheres. 2024.</li>
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</ol>
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