dc.contributor.author | Αντωνίου, Αναστάσιος Γ. | el |
dc.contributor.author | Βαλαμόντες, Σπύρος Ε. | el |
dc.contributor.author | Πάνος, Χρήστος Ν. | el |
dc.contributor.author | Βαλαμόντες, Ευάγγελος Σ. | el |
dc.date.accessioned | 2015-05-17T17:52:41Z | |
dc.date.available | 2015-05-17T17:52:41Z | |
dc.date.issued | 2015-05-17 | |
dc.identifier.uri | http://hdl.handle.net/11400/10614 | |
dc.rights | Αναφορά Δημιουργού-Μη Εμπορική Χρήση-Όχι Παράγωγα Έργα 3.0 Ηνωμένες Πολιτείες | * |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/3.0/us/ | * |
dc.source | http://www.elsevier.com | en |
dc.subject | Design | |
dc.subject | Geometry | |
dc.subject | Mathematical models | |
dc.subject | Numerical methods | |
dc.subject | opacity | |
dc.subject | Speed | |
dc.subject | Σχεδιασμός | |
dc.subject | Γεωμετρία | |
dc.subject | Μαθηματικά μοντέλα | |
dc.subject | Αριθμητικές μέθοδοι | |
dc.subject | Αδιαφάνεια | |
dc.subject | Ταχύτητα | |
dc.title | The turbomolecular pump in molecular state | en |
heal.type | journalArticle | |
heal.classification | Science | |
heal.classification | Physics | |
heal.classification | Επιστήμες | |
heal.classification | Φυσική | |
heal.classificationURI | http://zbw.eu/stw/descriptor/15685-2 | |
heal.classificationURI | http://zbw.eu/stw/descriptor/15669-0 | |
heal.classificationURI | **N/A**-Επιστήμες | |
heal.classificationURI | **N/A**-Φυσική | |
heal.keywordURI | http://id.loc.gov/authorities/subjects/sh2002006371 | |
heal.keywordURI | http://lod.nal.usda.gov/26646 | |
heal.keywordURI | http://id.loc.gov/authorities/subjects/sh85126486 | |
heal.identifier.secondary | DOI: 10.1016/0042-207X(94)00092-1 | |
heal.language | en | |
heal.access | campus | |
heal.publicationDate | 1995-07 | |
heal.bibliographicCitation | ANTONIOU, A.G., VALAMONTES, S.E., PANOS, C.N. & VALAMONTES, E.S. (1995). The turbomolecular pump in molecular state. Vacuum. [online] 46 (7). p. 709-715. Available from: http://www.elsevier.com/[Accessed 16/03/2000] | en |
heal.abstract | A new approach and successful method of studying the turbomolecular vacuum pump. Gaede's equations and Becker's treatment lead to two equations k = f1(u0, s, g) and S = f2(u0, s, g), which connect the compression ratio k and the pumping speed S with the rotational speed u0, the tangent s of the blade's angle and the geometry g of such a pump. The design of a turbomolecular vacuum pump is then possible through its geometry and its losses. | en |
heal.publisher | Elsevier | en |
heal.journalName | Vacuum | en |
heal.journalType | peer-reviewed | |
heal.fullTextAvailability | true |
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