Heisenberg uncertainty principle: Difference between revisions
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* [[The nature and shape of atoms]] | * [[The nature and shape of atoms]] | ||
* [[Covalent bond]] | * [[Covalent bond]] | ||
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* [[Nonbonded forces]] | |||
* [[Nonbonded interactions]] | |||
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* [[Useful math]] | |||
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Perhaps somewhat controversial takes on the probability interpretations here: | Perhaps somewhat controversial takes on the probability interpretations here: | ||
* [[On the particle wave duality]] | * [[On the particle wave duality]] | ||
* [[On the probability interpretation of quantum mechanics]] | * [[On the probability interpretation of quantum mechanics]] | ||
== External links == | == External links == | ||
Revision as of 15:13, 18 July 2026
There is plenty of information on the topic on the web. So just links for now.
It makes for the volume of atoms not collapsing down any further
and for the energy and strength of covalent bonds
for just two very fundamental consequences.
Related
Perhaps somewhat controversial takes on the probability interpretations here:
External links
- https://en.wikipedia.org/wiki/Uncertainty_principle
- https://en.wikipedia.org/wiki/Exchange_interaction
- https://en.wikipedia.org/wiki/Complete_set_of_commuting_observables
Looking more closely at one observable of a "complete set of commuting observables"
then one or more of the others need to blur further out to compensate for that.
The minimal phase space volume of the Planck quantum cannot be further compressed.