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
Quantum Physics: Historical Introduction and Schtenger-Lach Experiment
Graph Chatbot
Related lectures (30)
Quantum Mechanics: Sidney Coleman's Lecture
Explores Sidney Coleman's humorous take on Quantum Mechanics, emphasizing deterministic evolution and the challenges of interpreting quantum reality.
Quantum Mechanics: Jacobi Identity and Gauge Invariance
Explores Jacobi identity, gauge invariance, and conservation laws in quantum mechanics and classical physics.
Quantum Mechanics: Potential Jump and Tunnel Effect
Explores quantum mechanics' potential jump and tunnel effect, discussing unbound states, transmission regimes, and particle behavior at potential barriers.
Finite Potential Well: Tunnel Effect
Explores the particle in a finite potential well, tunnel effect, and time-dependent Schrödinger equation.
Entanglement: Bell Inequalities
Explores entanglement and Bell inequalities, discussing correlations between particles and constraints on hidden variable theories.
Bell Test: Distinguishing Physical Theories
Introduces the Bell test, exploring conclusions from local causality and quantum theory.
Quantum Bosons: Second Quantification
Explores perturbation theory, proper states, undegenerated states, and problem-solving in quantum bosons.
Approximation: Polynomial
Covers orders of magnitude in physics and polynomial approximation for simplifying complex functions.
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.
Computational Quantum Physics
Covers numerical solutions to Schrödinger equations, quantum Monte Carlo simulations, tensor networks, quantum algorithms, and machine-learning approaches.
Previous
Page 2 of 2
Next