286 results on '"Smart, Marshall"'
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2. Low-temperature performance of electrochemical capacitors using acetonitrile/methyl formate electrolytes and activated carbon fabric electrodes
3. Battery System Design, Testing, and Operation for the Mars Perseverance Rover and Ingenuity Helicopter
4. Battery System Design, Testing, and Operation for the Mars Perseverance Rover and Ingenuity Helicopter
5. The use of lithium-ion batteries for JPL's Mars missions
6. Lithium-ion Batteries for Mars Missions
7. Lithium-ion Batteries for Mars Missions
8. The Development of Advanced High Voltage, High Specific Energy and High Power Li-ion Cells with Improved Low Temperature Performance
9. The Development of Advanced High Voltage, High Specific Energy and High Power Li-ion Cells with Improved Low Temperature Performance
10. Lunar Flashlight Power Subsystem Architecture and Implementation
11. Lunar Flashlight Power Subsystem Architecture and Implementation
12. The Use of High Specific Energy 18650-Size Li-Ion Cells with Good Radiation Tolerance for Missions to the Outer Planets
13. The Use of High Specific Energy 18650-Size Li-Ion Cells with Good Radiation Tolerance for Missions to the Outer Planets
14. Ester and Carbonate-Based Low Temperature Electrolytes in High Specific Energy and High Power 18650 Li-Ion Cells for Future NASA Missions
15. Ester and Carbonate-Based Low Temperature Electrolytes in High Specific Energy and High Power 18650 Li-Ion Cells for Future NASA Missions
16. Batteries for Electric Aviation
17. Batteries for Electric Aviation
18. Aerospace Applications for Primary Batteries
19. Energy storage technologies for extreme environments in NASA missions
20. Energy storage technologies for extreme environments in NASA missions
21. Design of Supercapacitors for Wide Temperature Operation
22. Design of Supercapacitors for Wide Temperature Operation
23. Lithium CFX Batteries for High Radiation Environments
24. Lithium CFX Batteries for High Radiation Environments
25. Battery Fault Tolerance and Safety in High Reliability Autonomous Applications
26. Battery Fault Tolerance and Safety in High Reliability Autonomous Applications
27. Space Lithium‐Ion Cells
28. Planetary Spacecraft Batteries
29. Space Lithium‐Ion Batteries
30. (Invited) Ester and Carbonate-Based Low Temperature Electrolytes for Operation of Lithium-Ion Batteries in Extreme Environments for NASA Missions
31. Low Temperature Rechargeable Li-ion Batteries for Potential Mars Sample Return and Small Robotic Missions
32. Low Temperature Rechargeable Li-ion Batteries for Potential Mars Sample Return and Small Robotic Missions
33. Materials for advanced lithium and lithium-ion batteries for NASA's future missions
34. Materials for advanced lithium and lithium-ion batteries for NASA's future missions
35. Radiation effects on Lithium CFx batteries for future landers
36. Radiation effects on Lithium CFx batteries for future landers
37. Electrolytes for Low Impedance, Wide Operating Temperature Range Lithium-Ion Battery Module
38. Supercapacitors for extreme environmental operations
39. Supercapacitors for extreme environmental operations
40. Factors Limiting Li+ Charge Transfer Kinetics in Li-ion Batteries
41. Factors Limiting Li+ Charge Transfer Kinetics in Li-ion Batteries
42. Primary batteries for emerging deep space exploration missions
43. Primary batteries for emerging deep space exploration missions
44. Batteries for robotic spacecraft
45. Ingenuity Mars Helicopter: From Technology Demonstration to Extraterrestrial Scout
46. Development of new battery chemistries for ocean worlds exploration
47. The development of low temperature Li-Ion electrolytes for past, present and future NASA missions
48. The development of low temperature Li-Ion electrolytes for past, present and future NASA missions
49. Development of new battery chemistries for ocean worlds exploration
50. Power subsystem approach for the Europa mission
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