B. Ya. Kazarnovskii, “Multiplikativnaya teoriya peresechenii i kompleksnye tropicheskie mnogoobraziya”, Izv. RAN. Ser. matem., 71:4 (2007), 19–68
B. Ya. Kazarnovskii, “Mnogogranniki Nyutona, inkrementy i korni sistem matrichnykh funktsii konechnomernykh predstavlenii”, Funkts. analiz i ego pril., 38:4 (2004), 22–35
B. Ya. Kazarnovskii, “c-veery i mnogogranniki Nyutona algebraicheskikh mnogoobrazii”, Izv. RAN. Ser. matem., 67:3 (2003), 23–44
B. Ya. Kazarnovskii, “Distribution of zeros of functions with exponential growth”, Mat. Sb., 215:3 (2024), 70–79; Sb. Math., 215:3 (2024), 355–363
2022
2.
B. Ya. Kazarnovskii, “The quasi-algebraic ring of conditions of $\mathbb C^n$”, Izv. RAN. Ser. Mat., 86:1 (2022), 180–218; Izv. Math., 86:1 (2022), 169–202
3.
Dmitri Akhiezer, Boris Kazarnovskii, “Crofton formulae for products”, Mosc. Math. J., 22:3 (2022), 377–392
4.
B. Ya. Kazarnovskii, “How many roots of a system of random Laurent polynomials are real?”, Mat. Sb., 213:4 (2022), 27–37; Sb. Math., 213:4 (2022), 466–475
2021
5.
B. Ya. Kazarnovskii, A. G. Khovanskii, A. I. Esterov, “Newton polytopes and tropical geometry”, Uspekhi Mat. Nauk, 76:1(457) (2021), 95–190; Russian Math. Surveys, 76:1 (2021), 91–175
B. Ya. Kazarnovskii, “On the product of cocycles in a polyhedral complex”, Izv. RAN. Ser. Mat., 81:2 (2017), 97–128; Izv. Math., 81:2 (2017), 329–358
8.
Dmitri Akhiezer, Boris Kazarnovskii, “An estimate for the average number of common zeros of Laplacian eigenfunctions”, Tr. Mosk. Mat. Obs., 78:1 (2017), 145–154; Trans. Moscow Math. Soc., 78 (2017), 123–130
B. Ya. Kazarnovskiĭ, A. G. Hovanskiĭ, “The tropical Noetherity and Gröbner bases”, Algebra i Analiz, 26:5 (2014), 142–163; St. Petersburg Math. J., 26:5 (2015), 797–811
B. Ya. Kazarnovskii, “On the Action of the Complex Monge–Ampère Operator on Piecewise Linear Functions”, Funktsional. Anal. i Prilozhen., 48:1 (2014), 19–29; Funct. Anal. Appl., 48:1 (2014), 15–23
B. Ya. Kazarnovskii, “Action of the complex Monge–Ampère operator on piecewise-linear functions and exponential tropical varieties”, Izv. RAN. Ser. Mat., 78:5 (2014), 53–74; Izv. Math., 78:5 (2014), 902–921
B. Ya. Kazarnovskii, “Newton Polytopes, Increments, and Roots of Systems of Matrix Functions for Finite-Dimensional Representations”, Funktsional. Anal. i Prilozhen., 38:4 (2004), 22–35; Funct. Anal. Appl., 38:4 (2004), 256–266
B. Ya. Kazarnovskii, “Truncation of systems of polynomial equations, ideals and varieties”, Izv. RAN. Ser. Mat., 63:3 (1999), 119–132; Izv. Math., 63:3 (1999), 535–547
B. Ya. Kazarnovskii, “Newton polyhedra and the Bezout formula for matrix-valued functions of finite-dimensional representations”, Funktsional. Anal. i Prilozhen., 21:4 (1987), 73–74; Funct. Anal. Appl., 21:4 (1987), 319–321
B. Ya. Kazarnovskii, “Newton polyhedra and zeros of systems of exponential sums”, Funktsional. Anal. i Prilozhen., 18:4 (1984), 40–49; Funct. Anal. Appl., 18:4 (1984), 299–307
V. I. Arnol'd, F. M. Borodich, O. A. Gelfond, Yu. S. Ilyashenko, B. Ya. Kazarnovskii, V. A. Kirichenko, A. B. Sossinski, V. A. Timorin, M. A. Tsfasman, S. Yu. Yakovenko, “Askold Georgievich Khovanskii”, Mosc. Math. J., 7:2 (2007), 169–171
2000
22.
B. Ya. Kazarnovskii, “Letter to the editors”, Izv. RAN. Ser. Mat., 64:1 (2000), 224; Izv. Math., 64:1 (2000), 221