Schrödinger Equation: Difference between revisions
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{{Quantum Mechanics A}} | {{Quantum Mechanics A}} | ||
In this chapter, we introduce the Schrödinger equation, the most fundamental equation in quantum mechanics. | In this chapter, we introduce the Schrödinger equation, the most fundamental equation in quantum mechanics. Given a Hamiltonian <math>\mathcal{H}</math>, this equation describes how the wave function evolves in time. In [[States, Dirac Bra-Ket Notation|Dirac bra-ket notation]], the Schrödinger equation is | ||
<math>i\hbar\frac{\partial}{\partial t}\left |\psi(t)\right >=\mathcal{H}\left |\psi(t)\right >.</math> | |||
<b>Chapter Contents</b> | <b>Chapter Contents</b> |
Revision as of 11:54, 6 March 2013
In this chapter, we introduce the Schrödinger equation, the most fundamental equation in quantum mechanics. Given a Hamiltonian , this equation describes how the wave function evolves in time. In Dirac bra-ket notation, the Schrödinger equation is
Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle i\hbar\frac{\partial}{\partial t}\left |\psi(t)\right >=\mathcal{H}\left |\psi(t)\right >.}
Chapter Contents