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OMOTENASHI
The Cubesat Mission to Study Solar Particles (Cusp) Walt Downing IEEE Life Senior Member Aerospace and Electronic Systems Society President (2020-2021)
Solar Sail Propulsion for Deep Space Exploration
Space Launch System Program March 1, 2018
Changing Human Spaceflight Exploration Plans
Smallsats Supporting Deep Space Human Exploration
Space Launch System
Nasa's Space Launch System: Deep
Mission Analysis for the EM-1 Cubesats EQUULEUS and OMOTENASHI
Trajectory Design for the JAXA Moon Nano-Lander OMOTENASHI
Enabling a New Generation of Lunar Exploration Stephen D
Human Exploration and Operations Update
NASA's Space Launch System: Opportunities for Small Satellites To
Attitude Determination and Control
Cubesats on Nasa's Space Launch System
JAXA Space Science Programme and International Collaboration
Moon Lagrange Point Exploration Cubesat EQUULEUS Onboard SLS EM-1
Proceedings of Spie
Mission Duration
Top View
Cubesats in Cislunar Space
Overview of Japanese Lunar Cubesats OMOTENASHI
12.2% 119,000 135M Top 1% 154 4,600
ISTS-2017-D-050ⅠISSFD-2017-050
Architecture Trades for Accessing Small Bodies with an Autonomous Small Spacecraft
VACCO Chems™ Micro Propulsion Systems Advances and Experience
Lunar Lander
Micro Propulsion System Summary
SPACE LAUNCH SYSTEM Opportunities for Small Satellites to Deep Space Destinations
Current Mission Set
WXXI Program Guide December 2020
AI and SPACE ROBOTICS TECHNOLOGY at JAXA Takashi Kubota JAXA/ISAS, 3-1-1, Yoshinodai, Chuo-Ku, Sagamihara, 252-5210 Japan, E-Mail:
[email protected]
Space Launch System Artemis I Cubesats: Smallsat Vanguards of Exploration, Science and Technology
Thermal Design and Validation for a 6U Cubesat EQUULEUS Under Constraints Tightly Coupled with Orbital Design and Water Propulsion System
2017-12-04 – Leon-ALKALAI – Cubesats and Smallsats As A
Cubesats Moon Exploration with the Japanese EQUULEUS & OMOTENASHI Nicola Baresi and International Collaborators
Marco: Mars Cube One