Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Computing leading eigenvalues of the transfer operator
Graph Chatbot
Related lectures (30)
Previous
Page 3 of 3
Next
Introduction to Electronic Structure Methods: Quantum Mechanics Repetition
Covers electronic structure calculations using quantum mechanics and introduces fundamental concepts in computational quantum chemistry.
Subspaces, Spectra, and Projections
Explores subspaces, spectra, and projections in linear algebra, including symmetric matrices and orthogonal projections.
Stability: Poles, Zeros, and Control
Covers stability, poles, zeros, and control in dynamic systems, emphasizing the importance of observability.
Iterative Methods: Linear Systems
Covers iterative methods for solving linear systems and discusses convergence criteria and spectral radius.
Linear Operators: Basis Transformation and Eigenvalues
Explores basis transformation, eigenvalues, and linear operators in inner product spaces, emphasizing their significance in Quantum Mechanics.
Embeddability Theorem
Covers the l2-embeddability theorem, isometric embeddings, positive semidefinite matrices, and eigenvalues computation.
Eigenvalues and Stability
Explores eigenvalues, stability, eigenvectors, and error estimation techniques in linear systems.
Diagonalization of Symmetric Matrices
Explores the diagonalization of symmetric matrices through orthogonal decomposition and the spectral theorem.
Relations, Sequences and Summations
Covers strings, countable sets, cardinality, and the concept of countability, exploring the countability of various sets and Cantor diagonalization.
Exponential of Operators and Matrices
Covers the exponential of operators and matrices, commutation properties, Jordan normal form, and linear algebra concepts related to linear operators and eigenvalue problems.