Review of the Schrödinger Wave Equation

Journal Title: IOSR Journal of Applied Chemistry (IOSR-JAC) - Year 2018, Vol 11, Issue 4

Abstract

The objective of this work is to investigate the Schrödinger equation, analyzing the mathematical concepts employed and relating them to other areas of knowledge. In quantum mechanics, the Schrödinger equation is a partial differential equation that describes how the quantum state of a physical system evolves over time. It was formulated in late 1925 and published in 1926 by the Austrian physicist Erwin Schrödinger. In quantum mechanics, the analogue of Newton's law is the Schrödinger equation for the quantum system (usually atoms, molecules, and subatomic particles are free, bound, or located). It is not a simple algebraic equation but, in general, a linear partial differential equation. The solutions to the Schrödinger equation describe not only molecular, atomic, and subatomic systems, but also macroscopic systems.

Authors and Affiliations

Celso Luis Levada, Huemerson Maceti, Ivan José Lautenschleguer

Keywords

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  • EP ID EP414027
  • DOI 10.9790/5736-1104010107.
  • Views 186
  • Downloads 0

How To Cite

Celso Luis Levada, Huemerson Maceti, Ivan José Lautenschleguer (2018). Review of the Schrödinger Wave Equation. IOSR Journal of Applied Chemistry (IOSR-JAC), 11(4), 1-7. https://www.europub.co.uk/articles/-A-414027