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==Abstract==
==Abstract==


The derivation of the ?free particle? Schr?dinger equation, based on an analogy between transverse motion of a string surrounded by a viscous medium and massless field propagation in such a medium, is presented It is found that the Schr?dinger equation corresponds to an approximate field equation in which frictional forces dominate. It is argued that Copenhagen and statistical interpretations are incompatible with the present approach. Possible implications on the interpretation problems, especially determinism at a basic level, are discussed.[[Category:Scientific Paper]]
The derivation of the ?free particle? Schr?dinger equation, based on an analogy between transverse motion of a string surrounded by a viscous medium and massless field propagation in such a medium, is presented It is found that the Schr?dinger equation corresponds to an approximate field equation in which frictional forces dominate. It is argued that Copenhagen and statistical interpretations are incompatible with the present approach. Possible implications on the interpretation problems, especially determinism at a basic level, are discussed.
 
[[Category:Scientific Paper|schr dinger equation]]

Revision as of 13:51, 1 January 2017

Scientific Paper
TitleOn the Schr?dinger Equation
Author(s)S C Tiwari
Keywordsnew derivation of the Schr?, dinger equation, massless fields, deterministic interpretation
Published1989
JournalPhysics Essays
Volume2
Number1
Pages31-36

Abstract

The derivation of the ?free particle? Schr?dinger equation, based on an analogy between transverse motion of a string surrounded by a viscous medium and massless field propagation in such a medium, is presented It is found that the Schr?dinger equation corresponds to an approximate field equation in which frictional forces dominate. It is argued that Copenhagen and statistical interpretations are incompatible with the present approach. Possible implications on the interpretation problems, especially determinism at a basic level, are discussed.