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Venkov, A. & Skriganov, M. M. (1979). Weyl's formula in the spectral theory of automorphic functions. Functional Analysis and Its Applications, 13, 54-55. https://doi.org/10.1007/BF01076443
Venkov, A. (1978). A formula for the Chebyshev psi function. Russian Academy of Sciences. Mathematical Notes, 23, 271-274. https://doi.org/10.1007/BF01786954
Venkov, A. (1979). The Selberg trace formula for SL(3,Z). Journal of Soviet Mathematics, 12, 384-424. https://doi.org/10.1007/BF01097187
Venkov, A. (1976). On Selberg's trace formula for SL(3, Z). Soviet Mathematics. Doklady, 17, 683-687.
Venkov, A., Kalinin, V. L. & Faddeev, L. D. (1977). A nonarithmetic derivation of the Selberg trace formula. Journal of Soviet Mathematics, 8, 171-199. https://doi.org/10.1007/BF01084954
van Kooten Niekerk, K., Buhl, H., Niekerk, K. V. K. (red.) & Buhl, H. (red.) (2004). Introduction: Comprehending Complexity. I The Significance of Complexity: Approaching a Complex World Through Science, Theology and the Humanities (s. 3-20). Ashgate.
van der Vleuten, E., de Hoop, E., van der Straeten, J., Ayumbah Akallah, J., Chatterjee, A., Heymann, M. & Kumar, P. (2025). Roundtable: Global Histories of Technology in Worlds of Environmental Change. Technology and Culture, 66(1), 11-37. https://doi.org/10.1353/tech.2025.a951049
Urbina, J. U. M. & Schmiegel, J. (2015). Modelling turbulent time series by BSS-processes. I M. Podolskij, R. Stelzer , S. Thorbjørnsen & A. Veraart (red.), The Fascination of Probability, Statistics and their Applications: In Honour of Ole E. Barndorff-Nielsen (s. 29-52). Springer. https://doi.org/10.1007/978-3-319-25826-3_3
Tzaneteas, T. & Sigal, I. M. (2013). On Abrikosov Lattice Solutions of the Ginzburg-Landau Equation. Mathematical Modelling of Natural Phenomena, 8(5), 190-205. https://doi.org/10.1051/mmnp/20138512
Twiller, J. W., Andersen, K. & Sivertsen, A. (2024). An efficient integer programming model for solving the master planning problem of container vessel stowage. I A. Garrido, C. D. Paternina-Arboleda & S. Voß (red.), Computational Logistics - 15th International Conference, ICCL 2024, Proceedings (Bind 15168, s. 236-253). Springer. https://doi.org/10.1007/978-3-031-71993-6_16
Tubbenhauer, D. (2014). Virtual Khovanov homology using cobordisms. Journal of Knot Theory and Its Ramifications, 23(9), Artikel 1450046. https://doi.org/10.1142/S0218216514500461
Trottner, L., Aeckerle-Willems, C. & Strauch, C. (2023). Concentration analysis of multivariate elliptic diffusions. Journal of Machine Learning Research, 24(106), 1-38. Artikel 106. https://www.jmlr.org/papers/volume24/22-0666/22-0666.pdf
Toft, P. A. & Nielsen, K. H. (2021). Den foranderlige ekspedition. I P. A. Toft & K. H. Nielsen (red.), Dansk Ekspeditionshistorie 1945-2020, bd. 3: Kold krig, afkolonisering og nye horisonter (s. 6-17). Gad.
Tiepner, A. (2024). Statistical inference for stochastic partial differential equations from local measurements. [Ph.d.-afhandling, Aarhus Universitet]. Aarhus University.
Thygesen, L. C., Andersen, G. S. & Andersen, H. (2005). A philosophical analysis of the Hill criteria. J. Epidemiol. Community Health, 59, 512-516.
Thøstesen, J. D. (2023). Local Behavior and Graphical Models for Stochastic Processes. [Ph.d.-afhandling, Aarhus Universitet]. Aarhus Universitet.
Thórisdóttir, Ó. & Kiderlen, M. (2012). Wicksell's Problem in Local Stereology. Centre for Stochastic Geometry and advanced Bioimaging, Aarhus University. CSGB Research Reports Nr. 05