P00003 WE PROPOSE THE CONCEPT OF A DEEP SPACE SMALL SPACECRAFT LUNAR ORBITAL MISSION CAPABLE OF CONDUCTING DISCOVERY-CLASS SCIENCE OF UNDERSTANDING THE WATER ON THE MOON BY LEVERAGING NEW LAUNCH OPTIONS, PROPULSION TECHNOLOGY, MINIATURIZATION OF INSTRUMENTATION, AND IMPROVED COMMUNICATIONS. THIS STUDY WILL INVESTIGATE THE EXTENT TO WHICH HIGH-PRIORITY LUNAR DECADAL SURVEY SCIENCE QUESTIONS CAN BE ANSWERED USING A DEEP SPACE SMALL SPACECRAFT. SPECIFICALLY, WE PROPOSE TO DETERMINE THE EXTENT TO WHICH AN EELV SECONDARY PAYLOAD ADAPTER (ESPA)-CLASS MISSION USING SOLAR-ELECTRIC PROPULSION CAN ANSWER QUESTIONS RELATED TO THE PROCESSES BEHIND THE FORMATION, LOSS, EVOLUTION AND SEQUESTRATION OF WATER ON THE MOON. THIS MISSION WILL CHARACTERIZE THE VOLATILES (WATER ICE, OTHER FORMS OF H2O, AND OH) ON AND WITHIN THE SURFACE OF THE MOON. BETTER UNDERSTANDING VOLATILES IN THE INNER SOLAR SYSTEM AND SPECIFICALLY THE MOON IS A HIGH-PRIORITY OBJECTIVE IN THE 2014 NASA SCIENCE PLAN, THE 2013-2022 DECADAL SURVEY AND HAS BEEN THE OBJECTIVE OF SEVERAL CUBESAT MISSIONS TO THE MOON AND IS THE OBJECTIVE OF AT LEAST ONE DISCOVERY MISSION CONCEPT. Funding Only Action ($45k) 2/13/19 Not listed WE PROPOSE THE CONCEPT OF A DEEP SPACE SMALL SPACECRAFT LUNAR ORBITAL MISSION CAPABLE OF CONDUCTING DISCOVERY-CLASS SCIENCE OF UNDERSTANDING THE WATER ON THE MOON BY LEVERAGING NEW LAUNCH OPTIONS PROPULSION TECHNOLOGY MINIATURIZATION OF INSTRUMENTATION AND IMPROVED COMMUNICATIONS. THIS STUDY WILL INVESTIGATE THE EXTENT TO WHICH HIGH-PRIORITY LUNAR DECADAL SURVEY SCIENCE QUESTIONS CAN BE ANSWERED USING A DEEP SPACE SMALL SPACECRAFT. SPECIFICALLY WE PROPOSE TO DETERMINE THE EXTENT TO WHICH AN EELV SECONDARY PAYLOAD ADAPTER (ESPA)-CLASS MISSION USING SOLAR-ELECTRIC PROPULSION CAN ANSWER QUESTIONS RELATED TO THE PROCESSES BEHIND THE FORMATION LOSS EVOLUTION AND SEQUESTRATION OF WATER ON THE MOON. THIS MISSION WILL CHARACTERIZE THE VOLATILES (WATER ICE OTHER FORMS OF H2O AND OH) ON AND WITHIN THE SURFACE OF THE MOON. BETTER UNDERSTANDING VOLATILES IN THE INNER SOLAR SYSTEM AND SPECIFICALLY THE MOON IS A HIGH-PRIORITY OBJECTIVE IN THE 2014 NASA SCIENCE PLAN THE 2013-2022 DECADAL SURVEY AND HAS BEEN THE OBJECTIVE OF SEVERAL CUBESAT MISSIONS TO THE MOON AND IS THE OBJECTIVE OF AT LEAST ONE DISCOVERY MISSION CONCEPT. ($45k) 2/13/19 Not listed WE PROPOSE THE CONCEPT OF A DEEP SPACE SMALL SPACECRAFT LUNAR ORBITAL MISSION CAPABLE OF CONDUCTING DISCOVERY-CLASS SCIENCE OF UNDERSTANDING THE WATER ON THE MOON BY LEVERAGING NEW LAUNCH OPTIONS PROPULSION TECHNOLOGY MINIATURIZATION OF INSTRUMENTATION AND IMPROVED COMMUNICATIONS. THIS STUDY WILL INVESTIGATE THE EXTENT TO WHICH HIGH-PRIORITY LUNAR DECADAL SURVEY SCIENCE QUESTIONS CAN BE ANSWERED USING A DEEP SPACE SMALL SPACECRAFT. SPECIFICALLY WE PROPOSE TO DETERMINE THE EXTENT TO WHICH AN EELV SECONDARY PAYLOAD ADAPTER (ESPA)-CLASS MISSION USING SOLAR-ELECTRIC PROPULSION CAN ANSWER QUESTIONS RELATED TO THE PROCESSES BEHIND THE FORMATION LOSS EVOLUTION AND SEQUESTRATION OF WATER ON THE MOON. THIS MISSION WILL CHARACTERIZE THE VOLATILES (WATER ICE OTHER FORMS OF H2O AND OH) ON AND WITHIN THE SURFACE OF THE MOON. BETTER UNDERSTANDING VOLATILES IN THE INNER SOLAR SYSTEM AND SPECIFICALLY THE MOON IS A HIGH-PRIORITY OBJECTIVE IN THE 2014 NASA SCIENCE PLAN THE 2013-2022 DECADAL SURVEY AND HAS BEEN THE OBJECTIVE OF SEVERAL CUBESAT MISSIONS TO THE MOON AND IS THE OBJECTIVE OF AT LEAST ONE DISCOVERY MISSION CONCEPT. $0 5/25/18 P00002 WE PROPOSE THE CONCEPT OF A DEEP SPACE SMALL SPACECRAFT LUNAR ORBITAL MISSION CAPABLE OF CONDUCTING DISCOVERY-CLASS SCIENCE OF UNDERSTANDING THE WATER ON THE MOON BY LEVERAGING NEW LAUNCH OPTIONS, PROPULSION TECHNOLOGY, MINIATURIZATION OF INSTRUMENTATION, AND IMPROVED COMMUNICATIONS. THIS STUDY WILL INVESTIGATE THE EXTENT TO WHICH HIGH-PRIORITY LUNAR DECADAL SURVEY SCIENCE QUESTIONS CAN BE ANSWERED USING A DEEP SPACE SMALL SPACECRAFT. SPECIFICALLY, WE PROPOSE TO DETERMINE THE EXTENT TO WHICH AN EELV SECONDARY PAYLOAD ADAPTER (ESPA)-CLASS MISSION USING SOLAR-ELECTRIC PROPULSION CAN ANSWER QUESTIONS RELATED TO THE PROCESSES BEHIND THE FORMATION, LOSS, EVOLUTION AND SEQUESTRATION OF WATER ON THE MOON. THIS MISSION WILL CHARACTERIZE THE VOLATILES (WATER ICE, OTHER FORMS OF H2O, AND OH) ON AND WITHIN THE SURFACE OF THE MOON. BETTER UNDERSTANDING VOLATILES IN THE INNER SOLAR SYSTEM AND SPECIFICALLY THE MOON IS A HIGH-PRIORITY OBJECTIVE IN THE 2014 NASA SCIENCE PLAN, THE 2013-2022 DECADAL SURVEY AND HAS BEEN THE OBJECTIVE OF SEVERAL CUBESAT MISSIONS TO THE MOON AND IS THE OBJECTIVE OF AT LEAST ONE DISCOVERY MISSION CONCEPT. Other Administrative Action $0 5/25/18 Not listed WE PROPOSE THE CONCEPT OF A DEEP SPACE SMALL SPACECRAFT LUNAR ORBITAL MISSION CAPABLE OF CONDUCTING DISCOVERY-CLASS SCIENCE OF UNDERSTANDING THE WATER ON THE MOON BY LEVERAGING NEW LAUNCH OPTIONS PROPULSION TECHNOLOGY MINIATURIZATION OF INSTRUMENTATION AND IMPROVED COMMUNICATIONS. THIS STUDY WILL INVESTIGATE THE EXTENT TO WHICH HIGH-PRIORITY LUNAR DECADAL SURVEY SCIENCE QUESTIONS CAN BE ANSWERED USING A DEEP SPACE SMALL SPACECRAFT. SPECIFICALLY WE PROPOSE TO DETERMINE THE EXTENT TO WHICH AN EELV SECONDARY PAYLOAD ADAPTER (ESPA)-CLASS MISSION USING SOLAR-ELECTRIC PROPULSION CAN ANSWER QUESTIONS RELATED TO THE PROCESSES BEHIND THE FORMATION LOSS EVOLUTION AND SEQUESTRATION OF WATER ON THE MOON. THIS MISSION WILL CHARACTERIZE THE VOLATILES (WATER ICE OTHER FORMS OF H2O AND OH) ON AND WITHIN THE SURFACE OF THE MOON. BETTER UNDERSTANDING VOLATILES IN THE INNER SOLAR SYSTEM AND SPECIFICALLY THE MOON IS A HIGH-PRIORITY OBJECTIVE IN THE 2014 NASA SCIENCE PLAN THE 2013-2022 DECADAL SURVEY AND HAS BEEN THE OBJECTIVE OF SEVERAL CUBESAT MISSIONS TO THE MOON AND IS THE OBJECTIVE OF AT LEAST ONE DISCOVERY MISSION CONCEPT. $0 1/12/18