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
Eigenstates in Non-Infinite Well Potential
Graph Chatbot
Related lectures (31)
Quantum Mechanics: Particle in a Box
Explores quantum mechanics, emphasizing the harmonic oscillator and particle confinement in a box.
Quantum Wells: Coupled Quantum States and Energy Levels
Covers quantum wells, coupled states, energy levels, and the implications for molecular formation.
Quantum Physics: Wave Nature and Measurement Interpretation
Explores wave nature, Schrödinger's equation solutions, and quantum measurement interpretation.
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.
Quantum Mechanics: Particle in a Box
Covers the quantum mechanics of a particle in a confined box and its energy levels.
Advanced General Chemistry I: Quantum Mechanics Principles
Introduces the principles of quantum mechanics, focusing on particle confinement and energy quantization.
Principles of Quantum Mechanics: Wave-Particle Dualism
Explores the wave-particle dualism in quantum mechanics and the quantification of energy levels in atoms.
Quantum Mechanics: Harmonic Oscillator and Molecular Interactions
Discusses the harmonic oscillator in quantum mechanics and its implications for molecular interactions and energy levels.
Solutions of the Schrodinger Equation
Explores solutions of the Schrodinger Equation for different systems and discusses wave-particle duality, energy states, and quantum effects.
Classical and Quantum Mechanics: Foundations and Applications
Explores classical and quantum mechanics, covering observables, momentum, Hamiltonian, and the Schrödinger equation, as well as quantum chemistry and the Schrödinger's cat experiment.
Quantum Mechanics: Principles and Wave Functions
Explores quantum mechanics principles, wave functions, energy quantization, and particle confinement in a box.
The Step Potential: Quantum Mechanics Basics
Delves into quantum mechanics basics, exploring the step potential and continuity equations for probability density.
Quantum Mechanics: Composite Systems and Angular Momentum
Explores quantum mechanics concepts applied to composite systems and angular momentum, emphasizing the importance of understanding the basics.
Quantum Chemistry: Fundamentals of Quantum Mechanics
Covers the fundamentals of quantum mechanics and the behavior of particles at the quantum level.
Independent Time Perturbations
Explores independent time perturbations in quantum mechanics and the Brillouin-Wigner method.
Quantum Wells: Understanding Potential and Wave Functions
Discusses quantum wells, potential steps, tunneling effects, and their applications in quantum mechanics and electronic devices.
Harmonic Oscillator: Energy States
Explores the harmonic oscillator, energy conservation, wave packet spread, and dispersion effects in quantum physics.
Quantum Principles: Atoms and Molecules
Covers the application of quantum principles to the behavior of atoms and molecules, focusing on energy levels and molecular formation.
Time-Independent Perturbations 2
Explores time-independent perturbations in quantum mechanics and their effects on energy levels and eigenstates.
Quantum Mechanics: State Systems
Covers the fundamentals of quantum mechanics, focusing on state systems and observable measurements.
Previous
Page 1 of 2
Next