13 citations to https://www.mathnet.ru/rus/tmf8384
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V. V. Monakhov, A. V. Kozhedub, “Multidimensional Spinors, Invariant Form, and the Dirac Equation”, Phys. Part. Nuclei, 54:3 (2023), 480
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Dmitry Shirokov, “Development of the Method of Averaging in Clifford Geometric Algebras”, Mathematics, 11:16 (2023), 3607
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С. П. Кузнецов, В. В. Мочалов, В. П. Чуев, “О теореме Паули в алгебрах Клиффорда нечетной размерности”, Вестн. Удмуртск. ун-та. Матем. Мех. Компьют. науки, 32:1 (2022), 44–61
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Marchuk N.G., Shirokov D.S., “Local Generalization of Pauli'S Theorem”, Azerbaijan J. Math., 10:1 (2020), 38–56
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С. П. Кузнецов, В. В. Мочалов, В. П. Чуев, “О теореме Паули в алгебрах Клиффорда”, Изв. вузов. Матем., 2019, № 11, 16–31 ; S. P. Kuznetsov, V. V. Mochalov, V. P. Chuev, “On Pauli's theorem in Clifford algebras”, Russian Math. (Iz. VUZ), 63:11 (2019), 13–27
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Kuznetsov S.P., Mochalov V.V., Chuev V.P., “On Pauli'S Theorem in the Clifford Algebra R-1,R-3”, Adv. Appl. Clifford Algebr., 29:5 (2019), UNSP 103
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D. S. Shirokov, “Clifford algebras and their applications to Lie groups and spinors”, Proceedings of the XIXth International Conference on Geometry, Integrability and Quantization, eds. I. Mladenov, A. Yoshioka, Inst. Biophysics & Biomedical Engineering Bulgarian Acad. Sciences, 2018, 11–53
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N. Bizi, Ch. Brouder, F. Besnard, “Space and time dimensions of algebras with application to Lorentzian noncommutative geometry and quantum electrodynamics”, J. Math. Phys., 59:6 (2018), 062303, 12 pp.
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D. S. Shirokov, “Classification of Lie algebras of specific type in complexified Clifford algebras”, Linear Multilinear Algebra, 66:9 (2018), 1870–1887
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D. S. Shirokov, “Method of averaging in Clifford algebras”, Adv. Appl. Clifford Algebr., 27:1, SI (2017), 149–163