Covers the theory and computation of matrix functions, focusing on computing f(A) and particularly e^A, with special attention to the matrix exponential and common examples of matrix functions.
Explores the Radiative Transport Equation in tissue optics, covering radiance, photon distribution, and numerical solutions like Monte Carlo simulations.
Explores the Diffusion Approximation method for solving the RTE in tissue optics, emphasizing its limitations and applications, along with the practical aspects of Monte Carlo simulations.