Tensor product/Related Articles: Difference between revisions
Jump to navigation
Jump to search
imported>Daniel Mietchen m (Robot: Creating Related Articles subpage) |
mNo edit summary |
||
(2 intermediate revisions by 2 users not shown) | |||
Line 1: | Line 1: | ||
{{subpages}} | <noinclude>{{subpages}}</noinclude> | ||
==Parent topics== | ==Parent topics== | ||
Line 16: | Line 16: | ||
{{r|Derivation (mathematics)}} | {{r|Derivation (mathematics)}} | ||
{{Bot-created_related_article_subpage}} | |||
<!-- Remove the section above after copying links to the other sections. --> | <!-- Remove the section above after copying links to the other sections. --> | ||
==Articles related by keyphrases (Bot populated)== | |||
{{r|Fourier operator}} | |||
{{r|Oersted (unit)}} | |||
{{r|Dyadic product}} | |||
{{r|Multipole expansion (interaction)}} | |||
{{r|Ring homomorphism}} |
Latest revision as of 16:00, 25 October 2024
- See also changes related to Tensor product, or pages that link to Tensor product or to this page or whose text contains "Tensor product".
Parent topics
Subtopics
Bot-suggested topics
Auto-populated based on Special:WhatLinksHere/Tensor product. Needs checking by a human.
- Derivation (mathematics) [r]: A map defined on a ring which behaves formally like differentiation: D(x.y)=D(x).y+x.D(y). [e]
- Fourier operator [r]: In mathematics, a linear integral operator. [e]
- Oersted (unit) [r]: Unit of magnetic-field strength |H| in the Gaussian system of units; symbol Oe; 1 Oe = 1000/4π A⋅turn/m. [e]
- Dyadic product [r]: The tensor product between two vectors of the same dimension. [e]
- Multipole expansion (interaction) [r]: A mathematical series representing a function that depends on angles, and frequently used in the study of electromagnetic, and gravitational fields, where the fields at distant points are given in terms of sources in a small region. [e]
- Ring homomorphism [r]: Function between two rings which respects the operations of addition and multiplication. [e]