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Showing papers on "Quantum geometry published in 1978"




Journal ArticleDOI
TL;DR: In this article, it is shown that a particle traveling in a helical path gives rise to such a model, which is instructionally advantageous to have a mechanical model which can be described both by the quantum-mechanical formalism and also by derivations from first principles.
Abstract: The wave function ψ in quantum mechanics is a rather abstract quantity with which the physics student often has trouble. It is instructionally advantageous therefore, to have a mechanical model which can be described both by the quantum‐mechanical formalism and also by derivations from ’’first principles.’’ It is shown that a particle traveling in a helical path gives rise to such a model.

8 citations


Journal ArticleDOI
TL;DR: In this paper, it was shown that some insight in how light nuclei rotate can be gained by looking at the flow lines of the quantum mechanical probability, which can be used to estimate the motion of the nuclei.

7 citations


Journal ArticleDOI
TL;DR: In this paper, a simple method of calculating the orthogonal curvilinear coordinate representations of quantum mechanical operators is presented in terms of exterior differential forms, which is a simple way of computing the coordinate representation of quantum operators.
Abstract: A simple method of calculating the orthogonal curvilinear coordinate representations of quantum mechanical operators is presented in terms of exterior differential forms.

4 citations



Journal ArticleDOI
TL;DR: In this paper, the asymptotic behavior of exponential multi-matrix superpropagators is investigated in the context of quantum gravity, and a remarkable property of two point functions is found, which suggests that quantum gravity is ambiguity free.
Abstract: In the context of quantum gravity, the asymptotic behaviour of exponential multi-matrix superpropagators is investigated. By varying the dimension of the matrix field, a remarkable property of two-point functions is found, which suggests that quantum gravity is ambiguity free.

1 citations


Book ChapterDOI
Hans Primas1
01 Jan 1978

1 citations