This HTML5 document contains 5 embedded RDF statements represented using HTML+Microdata notation.

The embedded RDF content will be recognized by any processor of HTML5 Microdata.

PrefixNamespace IRI
dctermshttp://purl.org/dc/terms/
n4http://dbkwik.webdatacommons.org/ontology/
n8http://dbkwik.webdatacommons.org/resource/ANu2D0C6GsyIHL7Kt7iYcA==
rdfshttp://www.w3.org/2000/01/rdf-schema#
n5http://dbkwik.webdatacommons.org/memory-alpha/property/
n2http://dbkwik.webdatacommons.org/resource/JTS_7MRdLyC72kTZl6MFvw==
rdfhttp://www.w3.org/1999/02/22-rdf-syntax-ns#
xsdhhttp://www.w3.org/2001/XMLSchema#
n6http://dbkwik.webdatacommons.org/resource/ET5bAQzBxKKt-crQ8UWh8w==
Subject Item
n2:
rdfs:label
Subspatial transkinetic analysis
rdfs:comment
A subspatial transkinetic analysis was a scientific analysis using an algorithm based on subspace harmonics. In 2375, Captain Kathryn Janeway ran a subspatial transkinetic analysis on Torat's sensor data of an interspatial flexure in Devore space, after realizing that each of the wormhole's parameters had a counterpoint in subspace. This allowed her to extrapolate when and where the wormhole would next appear. (VOY: "Counterpoint")
dcterms:subject
n8:
n5:wikiPageUsesTemplate
n6:
n4:abstract
A subspatial transkinetic analysis was a scientific analysis using an algorithm based on subspace harmonics. In 2375, Captain Kathryn Janeway ran a subspatial transkinetic analysis on Torat's sensor data of an interspatial flexure in Devore space, after realizing that each of the wormhole's parameters had a counterpoint in subspace. This allowed her to extrapolate when and where the wormhole would next appear. (VOY: "Counterpoint")