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
Continuous Symmetries; Parity Symmetry
Graph Chatbot
Related lectures (31)
Time Reversal Symmetry
Explores time reversal symmetry, invariance under parity, eigenstates, and spin in quantum physics.
Wigner Theorem; Translation Symmetry
Explores the Wigner theorem, translation symmetry, eigenstates, and wave functions in quantum physics.
Discrete Symmetries: Introduction
Introduces discrete symmetries in Quantum Field Theory and discusses their implications in nature and interactions.
Symmetry Elements & Operations
Covers symmetry elements, point groups, and mathematical symmetry operations.
The Schur Lemma: Physical Interpretation
Explores the physical interpretation of the Schur lemma in quantum physics.
General Transformations
Covers the concept of general transformations in quantum mechanics.
Symmetry & Group Theory
Covers the fundamental concepts of symmetry and group theory.
Discrete Symmetries Introduction
Introduces the concept of discrete symmetries in Quantum Field Theory and their impact on particles and anti-particles.
Discrete Symmetries Introduction
Introduces discrete symmetries, operators, and tetraquarks in quantum field theory.
Lemma of Schur: Group Repetition Theory
Explores irreducible and reducible representations in group repetition theory and the lemma of Schur in quantum physics.
Symmetry Operations in Materials Science
Covers symmetry operations in materials science, including rotations and helical axes.
Discrete Symmetries: P and T
Covers the introduction to Parity (P) and Time Reversal (T) symmetries in Quantum Mechanics.
Symmetries in Particle Physics
Explores symmetries in particle physics, covering parity, charge conjugation, fermion quantum numbers, chirality, and their applications in understanding particle interactions.
Symmetry and Group Theory: Exercise Set 3
Covers Exercise Set 3 on Symmetry and Group Theory, focusing on chiral molecules, point groups, conjugacy, and group properties.
The Dirac equation and spin
Explores the interpretation of energy degeneracy, non-commutativity, spin operators, helicity, and discrete symmetries in the Dirac equation.
Group Representations Theory Application Overview
Covers the application of group representations theory in quantum physics.
Introduction to Group Representations Theory
Introduces group representations theory in quantum physics, covering symmetries, perturbation theory, and energy state degeneracy.
Spin-Statistics Theorem
Explores the Spin-Statistics Theorem, discussing particle permutation, indistinguishability, and bosons vs. fermions.
Principles of Quantum Physics
Covers the principles of quantum physics, focusing on tensor product spaces and entangled vectors.
Projectors on Invariant Subspaces
Covers projectors on invariant subspaces in quantum physics and their applications.
Previous
Page 1 of 2
Next