ExLibris header image
SFX Logo
Title: Seasonal Variability of Deuterium in the Upper Atmosphere of Mars
Source:

Journal of Geophysical Research-Space Physics [2169-9380] Mayyasi, Majd yr:2019


Collapse list of basic services Basic
Full text
Full text available via Wiley Online Library All Journals
GO
Full text available via Wiley Online Library Full Collection 2019
GO
Document delivery
Request document via Library/Bibliothek GO
Users interested in this article also expressed an interest in the following:
1. Stéphane Mazouffre, S. "Electric propulsion for satellites and spacecraft: established technologies and novel approaches." Plasma sources science & technology 25.3 (2016): 1-33028. Link to Full Text for this item Link to SFX for this item
2. Lemmer, K. "Propulsion for CubeSats." Acta astronautica 134 (2017): 231-243. Link to SFX for this item
3. Spangelo, S. "Optimization of CubeSat System-Level Design and Propulsion Systems for Earth-Escape Missions." Journal of spacecraft and rockets 52.4 (2015): 1009-1020. Link to SFX for this item
4. Conversano, Ryan W. "Mission Capability Assessment of CubeSats Using a Miniature Ion Thruster." Journal of spacecraft and rockets 50.5 (2013): 1-12. Link to SFX for this item
5. Parkes, S. "SpaceWire: Spacecraft onboard data-handling network." Acta astronautica 66.1 (2010): 88-95. Link to SFX for this item
6. Kawada, Y. "New micro satellite concept for observation missions." Acta astronautica 46.2 (2000): 159-167. Link to SFX for this item
7. Poghosyan, A. "CubeSat evolution: Analyzing CubeSat capabilities for conducting science missions." Progress in aerospace sciences 88 (2017): 59-83. Link to SFX for this item
8. Guo, J. "Survey of worldwide pico- and nanosatellite missions, distributions and subsystem technology." Acta astronautica 67.7-8 (2010): 854-862. Link to SFX for this item
9. Ciaralli, S. "Results of the qualification test campaign of a Pulsed Plasma Thruster for Cubesat Propulsion (PPTCUP)." Acta astronautica 121 (2016): 314-322. Link to SFX for this item
10. Biever, C. "Thinking inside the box.(CubeSats propulsion development)(Technology)." New Scientist 220.2946 (2013): 21-. Link to SFX for this item
11. Pukniel, A. "The dynamics and control of the CubeSail mission: A solar sailing demonstration." Advances in space research 48.11 (2011): 1902-1910. Link to SFX for this item
12. "Aerospace Research - Spacecraft and Rockets; Investigators at Western Michigan University Report Findings in Spacecraft and Rockets (Mission Analysis for CubeSats with Micropropulsion)." Defense & aerospace week. 106-. Link to SFX for this item
13. "Defining the requirements for the Micro Electric Propulsion systems for small spacecraft missions." Aerospace Conference, 2015 IEEE 1-16. Link to SFX for this item
14. "A requirements-based, bottom-up SLOC estimate and analysis of NASA’s Orion crew exploration vehicle spacecraft flight software." Innovations in systems and software engineering. 10.2: 93-101. Link to SFX for this item
15. "Operability driven space system concept with high leverage technologies." AIP conference proceedings. 1097-1106. Link to SFX for this item
16. "RUNNING IN SPACE." ASEE prism. 25.7: 13-. Link to SFX for this item
17. "Defining the Optimal Requirements for the Liquid Indium Microelectric Propulsion System." Journal of spacecraft and rockets 52.6: 1651-1664. Link to SFX for this item
18. Hudson, J. "Mission Analysis for CubeSats with Micropropulsion." Journal of Spacecraft and Rockets 53.5 (2016): 836-846. Link to SFX for this item
19. Ali, A. "Innovative power management, attitude determination and control tile for CubeSat standard NanoSatellites." Acta astronautica 96.1 (2014): 116-127. Link to SFX for this item
20. Kjellberg, Henri C. "Discretized Constrained Attitude Pathfinding and Control for Satellites." Journal of guidance, control, and dynamics 36.5 (2013): 1301-1309. Link to SFX for this item
View More...
View Less...
Select All Clear All

Expand list of advanced services Advanced