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Matching Records: 6
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High-temperature Solar Cell Development
Document ID: 20050206368
NTRS Full-Text: Click to View  [PDF Size: 816 KB]
Author: Landis, Geoffrey A.; Merritt, Danielle; Raffaelle, Ryne P.; Scheiman, David
Abstract: The vast majority of space probes to date have relied upon photovoltaic power generation. If future hide
Publication Year: 2005
Document Type: Conference Paper
Date Acquired: Sep 06, 2005
Thermionic Emission of Single-Wall Carbon Nanotubes Measured
Document ID: 20050192272
NTRS Full-Text: Click to View  [PDF Size: 159 KB]
Author: Landis, Geoffrey A.; Krainsky, Isay L.; Bailey, Sheila G.; Elich, Jeffrey M.; Landi, Brian J.; Gennett, Thomas; Raffaelle, Ryne P.
Abstract: Researchers at the NASA Glenn Research Center, in collaboration with the Rochester Institute of hide
Publication Year: 2004
Document Type: Technical Report
Date Acquired: Jul 27, 2005
High-Temperature Solar Cell Development
Document ID: 20050214479
NTRS Full-Text: Click to View  [PDF Size: 123 KB]
Author: Landis, Geoffrey A.; Raffaelle, Ryne P.; Merritt, Danielle
Abstract: The vast majority of satellites and near-earth probes developed to date have relied upon hide
Publication Year: 2004
Document Type: Extended Abstract
Date Acquired: Sep 19, 2005
High Temperature Solar Cell Development
Document ID: 20050198948
NTRS Full-Text: Click to View  [PDF Size: 3.1 MB]
Author: Landis, Geoffrey A.; Raffaelle, Ryne P.; Merritt, Danielle
Abstract: The majority of satellites and near-earth probes developed to date have used photovoltaic arrays for hide
Publication Year: 2004
Document Type: Preprint
Report/Patent Number: E-14871
Date Acquired: Aug 10, 2005
Mission Applicability and Benefits of Thin-Film Integrated Power Generation and Energy Storage
Document ID: 20020013362
NTRS Full-Text: Click to View  [PDF Size: 774 KB]
Author: Hoffman, David; Raffaelle, Ryne P.; Landis, Geoffrey A.; Hepp, Aloysius F.
Abstract: This paper discusses the space mission applicability and benefits of a thin-film integrated power hide
Publication Year: 2001
Document Type: Technical Report
Report/Patent Number: NASA/TM-2001-211097, E-12940, IECEC2001-AT-21, NAS 1.15:211097
Date Acquired: Jan 25, 2002
Mission Applicability and Benefits of Thin-Film Integrated Power Generation and Energy Storage
Document ID: 20010092175
Author: Hoffman, David J.; Raffaelle, Ryne P.; Landis, Geoffrey A.; Hepp, Aloysius F.
Abstract: This paper discusses the space mission applicability and benefits of a thin-film integrated power hide
Publication Year: 2001
Document Type: Conference Paper
Report/Patent Number: NASA/TM-2001-211097, E-12940, NAS 1.15:211097, IECEC2001-AT-21
Date Acquired: Oct 05, 2001
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