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Related lectures (29)
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Linear Algebra: Matrix Representation of Linear Applications
Explores matrix representation of linear applications, emphasizing eigenvalues and bases.
Linear Systems in 2D: Stability
Explores stability in linear 2D systems, covering fixed points, vector fields, and phase portraits.
Smart Sensing Labels and RFID Systems
Covers the development of smart sensing labels and RFID systems for perishable goods traceability.
Cayley-Hamilton Theorem
Covers the Cayley-Hamilton theorem, demonstrating matrix self-satisfaction and validity of introduced processes.
Linear Algebra: Matrices and Linear Applications
Covers matrices, linear applications, vector spaces, and bijective functions.
Linear Matrix Inequalities: Stability and Optimization
Explores stability analysis for linear time-varying and switched systems using Lyapunov theory and Linear Matrix Inequalities.
Lie Algebra: Representations
Explores Lie algebra representations, emphasizing SU(2) and traceless matrices, explained by Alfredo Glioti.
Density Operator: Matrix to the System State
Explores density operator matrix transformation in quantum physics and the implications of measuring the system, leading to state collapse.
Reduced Density Matrices: System+Environment
Covers the concept of density matrices and the system-environment interaction.
Linear Transformations: Matrices and Kernels
Covers linear transformations, matrices, kernels, and properties of invertible matrices.