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Thesis
Bagchus, Nina (2023) Diagonal magnetic gradient design for cost-effective noise reduction in motion encoded MRI. Bachelor's Thesis, Applied Mathematics.
Castellano Gomez, Irene (2023) Modelling traffic flow using DAEs. Bachelor's Thesis, Applied Mathematics.
De Boni Yamashiro, Mateo Kazuo (2023) A Fourier-Series representation of periodic orbits in the Lid-Driven Cavity. Bachelor's Thesis, Applied Mathematics.
Gao, Ting (2023) Implicit Finite Difference Method For Pricing Two- Asset Options. Bachelor's Thesis, Applied Mathematics.
Jong, Remco de (2023) Equilibria in network congestion games. Bachelor's Thesis, Applied Mathematics.
Kuzmenko, Darina (2023) Switched nonlinear DAEs in electrical circuit theory. Bachelor's Thesis, Applied Mathematics.
Mandeville, Milène (2023) Average Surface Roughness for 2-Dimensional Atmospheric flow. Bachelor's Thesis, Applied Mathematics.
Mishra, Siddhanta (2023) The Effect of Change in Temperature and Rainfall upon the Spread of Malaria. Bachelor's Thesis, Applied Mathematics.
Peroš, Noah (2023) Sensitivity Analysis using the Adjoint State Method. Bachelor's Thesis, Applied Mathematics.
Repášová, Michaela (2023) Adaptive time stepping strategies; Lowering computational complexity of numerical solutions for a cardiovascular model. Bachelor's Thesis, Applied Mathematics.
Sardjoepersad, Julian (2023) Neuromodulation of Spiking and Bursting Behavior. Bachelor's Thesis, Applied Mathematics.
Tamba, Leonardus (2023) Regularity Tests for Pattern DAEs. Bachelor's Thesis, Applied Mathematics.
Vliet, Ilse van (2023) Exact solutions to the time-dependent harmonic oscillator using Hermite polynomials. Bachelor's Thesis, Applied Mathematics.
Wasiljew, Maria (2023) Signal separation of dual tracer PET scans. Bachelor's Thesis, Applied Mathematics.
Yoo, Yeaho (2023) Solution theory for Time-Varying Leontief model. Bachelor's Thesis, Applied Mathematics.
Zambelli, Lorenzo (2023) Chorin-Temam Method with Variable Time Stepping. Bachelor's Thesis, Applied Mathematics.
Zheng, Qingna (2023) Comparison between the Finite Volume Method and the Finite Element Method for the heat conduction problem. Bachelor's Thesis, Applied Mathematics.