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Quantum Principles: Atoms and Molecules
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Related lectures (35)
Quantum Mechanics: Energy Levels
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Explores energy levels of particles, hydrogen-like atoms, quantum numbers, molecular bonding, and vibrational states.
Principles of Quantum Mechanics: Wave-Particle Dualism
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Explores the wave-particle dualism in quantum mechanics and the quantification of energy levels in atoms.
Quantum Mechanics: Harmonic Oscillator and Molecular Interactions
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Discusses the harmonic oscillator in quantum mechanics and its implications for molecular interactions and energy levels.
Gas Absorption and Molecular Formation: Quantum Concepts
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Covers optical absorption in gases and the formation of molecules, focusing on quantum principles and energy states.
Hydrogen Molecule: Electronic Structure
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Delves into the electronic structure of the hydrogen molecule, including wavefunctions, bonding, energy levels, and molecular orbitals.
Quantum Mechanics: Bohr Model and Energy Quantization
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Discusses the Bohr model of the atom, focusing on electron orbits and energy quantization.
Covalent Bonding: Orbital Stability
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Explores covalent bonding stability and orbital properties in molecules like H₂ and He.
Quantum Wells: Energy Levels and Quantum States
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Covers quantum wells, energy levels, qubits, and harmonic oscillators in quantum physics.
Quantum Wells: Coupled Quantum States and Energy Levels
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Covers quantum wells, coupled states, energy levels, and the implications for molecular formation.
Batteries, Fuel Cells and Electrolysis: Fuels
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Discusses the importance of operating temperature in fuel cells and the process of converting hydrocarbons into syngas.
Membrane Dynamics: Molecular Interactions and Hydrophobic Effect
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Explores molecular interactions, hydrophobic effect, membrane dynamics, and the use of optical tweezers in biological studies.
Deep Neural Network Solution of the Electronic Schrödinger Equation
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Explores deep neural network solutions for the electronic Schrödinger equation and their computational efficiency in many-body physics.
Band Structure: Energy Levels and Fermi Sphere
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Explains energy levels, Fermi sphere, and periodic potentials in different dimensions.
Statistical Mechanics of Liquids
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Explores the statistical mechanics of liquids, covering challenges in modeling, reduced distribution functions, pair correlation function, and scattering.
Quantum Acoustics Experiments
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Delves into quantum acoustics experiments at TU Delft, covering optomechanics, sensing, and ground-state preparation.
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