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- Thermotunnel_cooling abstract "Thermotunnel cooling is similar to thermionic emission cooling in that fast moving electrons carry heat across a gap but cannot return due to a voltage difference. The problem with using thermal electrons to carry heat is the fact that, due to the high work function of metals, which are the only practical emitters, the lowest cooling temperate is around 600 °C - clearly not useful except in the most unusual applications. Thermotunnel cooling avoids this problem by making the gap narrow enough that electrons can tunnel across the gap, carrying the heat with them. The problem with this approach has been getting two surfaces near enough that they can tunnel over a large area, yet not touch at any point, which would short the device out preventing it from doing any useful cooling.".
- Thermotunnel_cooling wikiPageExternalLink technology.html.
- Thermotunnel_cooling wikiPageID "3253617".
- Thermotunnel_cooling wikiPageLength "945".
- Thermotunnel_cooling wikiPageOutDegree "7".
- Thermotunnel_cooling wikiPageRevisionID "633508537".
- Thermotunnel_cooling wikiPageWikiLink Category:Cooling_technology.
- Thermotunnel_cooling wikiPageWikiLink Electron.
- Thermotunnel_cooling wikiPageWikiLink Heat.
- Thermotunnel_cooling wikiPageWikiLink Metal.
- Thermotunnel_cooling wikiPageWikiLink Thermionic_emission.
- Thermotunnel_cooling wikiPageWikiLink Voltage.
- Thermotunnel_cooling wikiPageWikiLink Work_function.
- Thermotunnel_cooling wikiPageWikiLinkText "Thermotunnel cooling".
- Thermotunnel_cooling wikiPageUsesTemplate Template:CMP-stub.
- Thermotunnel_cooling subject Category:Cooling_technology.
- Thermotunnel_cooling type Physic.
- Thermotunnel_cooling comment "Thermotunnel cooling is similar to thermionic emission cooling in that fast moving electrons carry heat across a gap but cannot return due to a voltage difference. The problem with using thermal electrons to carry heat is the fact that, due to the high work function of metals, which are the only practical emitters, the lowest cooling temperate is around 600 °C - clearly not useful except in the most unusual applications.".
- Thermotunnel_cooling label "Thermotunnel cooling".
- Thermotunnel_cooling sameAs Q910466.
- Thermotunnel_cooling sameAs Thermotunneling.
- Thermotunnel_cooling sameAs Termotunelado.
- Thermotunnel_cooling sameAs m.091fsb.
- Thermotunnel_cooling sameAs Q910466.
- Thermotunnel_cooling wasDerivedFrom Thermotunnel_cooling?oldid=633508537.
- Thermotunnel_cooling isPrimaryTopicOf Thermotunnel_cooling.