E 1.99: nas-1.15:89888
|
SP-100 advanced technology program |
1 |
E 1.99: nas-1.15:100109
|
Nuclear powered Mars cargo transport mission utilizing advanced ion propulsion |
1 |
E 1.99: nas-1.15:100164
|
Effect of high-temperature annealing on the microstructure and thermoelectric properties of GaP doped SiGe |
1 |
E 1.99: nas-1.15:100223
|
Small reactor power systems for manned planetary surface bases |
1 |
E 1.99: nas-1.15:100228
|
Small space reactor power systems for unmanned solar system exploration missions |
1 |
E 1.99: nas--1.15:103736
|
A reliability and mass perspective of SP-100 Stirling cycle lunar-base powerplant designs |
1 |
E 1.99:nas-519
|
The disposal of radioactive waste on land |
1 |
E 1.99:nas-ns-3005
|
THE RADIOCHEMISTRY OF FLUORINE, CHLORINE, BROMINE AND IODINE |
1 |
E 1.99:nas-ns-3006
|
THE RADIOCHEMISTRY OF AMERICIUM AND CURIUM |
1 |
E 1.99:nas-ns--3007
|
The radiochemistry of chromium |
1 |
E 1.99:nas-ns-3009
|
THE RADIOCHEMISTRY OF MOLYBDENUM |
1 |
E 1.99:nas-ns-3010
|
THE RADIOCHEMISTRY OF BARIUM, CALCIUM, AND STRONTIUM |
1 |
E 1.99:nas-ns--3015
|
The radiochemistry of zinc |
1 |
E 1.99:nas-ns--3017
|
The radiochemistry of iron |
1 |
E 1.99:nas-ns-3020
|
THE RADIOCHEMISTRY OF THE RARE EARTHS, SCANDIUM, YTTRIUM, AND ACTINIUM |
1 |
E 1.99:nas-ns-3021
|
THE RADIOCHEMISTRY OF TECHNETIUM |
1 |
E 1.99:nas-ns-3029-rev
|
Radiochemistry of ruthenium |
1 |
E 1.99:nas-ns-3030
|
THE RADIOCHEMISTRY OF SELENIUM |
1 |
E 1.99:nas-ns-3030(rev.)
|
RADIOCHEMISTRY OF SELENIUM |
1 |
E 1.99:nas-ns-3031
|
THE RADIOCHEMISTRY OF THE TRANSCURIUM ELEMENTS |
1 |