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  2. Advanced Stirling radioisotope generator - Wikipedia

    en.wikipedia.org/wiki/Advanced_Stirling...

    The advanced Stirling radioisotope generator (ASRG) is a radioisotope power system first developed at NASA's Glenn Research Center. It uses a Stirling power conversion technology to convert radioactive-decay heat into electricity for use on spacecraft .

  3. Stirling radioisotope generator - Wikipedia

    en.wikipedia.org/.../Stirling_radioisotope_generator

    A Stirling radioisotope generator (SRG) is a type of radioisotope generator based on a Stirling engine powered by a large radioisotope heater unit. The hot end of the Stirling converter reaches high temperature and heated helium drives the piston, with heat being rejected at the cold end of the engine.

  4. Radioisotope thermoelectric generator - Wikipedia

    en.wikipedia.org/wiki/Radioisotope...

    Diagram of an RTG used on the Cassini probe. A radioisotope thermoelectric generator (RTG, RITEG), sometimes referred to as a radioisotope power system (RPS), is a type of nuclear battery that uses an array of thermocouples to convert the heat released by the decay of a suitable radioactive material into electricity by the Seebeck effect.

  5. Beta-M - Wikipedia

    en.wikipedia.org/wiki/Beta-M

    The core is also known as radioisotope heat source 90 (RHS-90). In its initial state after manufacture, the generator is capable of generating 10 watts of electricity . [ 3 ] The generator contains the strontium-90 radioisotope, with a heating power of 250W and 1,480 TBq of radioactivity – equivalent to some 280 grams (9.9 oz) of Sr-90. [ 4 ]

  6. GPHS-RTG - Wikipedia

    en.wikipedia.org/wiki/GPHS-RTG

    Diagram of an RTG used on the Cassini probe [1] Diagram of a stack of general-purpose heat source modules as used in RTGs Image of a plutonium RTG pellet glowing red hot.. GPHS-RTG or general-purpose heat source — radioisotope thermoelectric generator, is a specific design of the radioisotope thermoelectric generator (RTG) used on US space missions.

  7. Award-winning radioisotope separation methods at ORNL are ...

    www.aol.com/award-winning-radioisotope...

    Four years ago, Delmau found a way to harvest lanthanide fission products, including promethium-147, which does not exist in nature, from the waste solutions of a plutonium-238 production campaign.

  8. Radioisotope terbium-161 produced at MU Research Reactor ...

    www.aol.com/radioisotope-terbium-161-produced-mu...

    A radioisotope produced at the University of Missouri Research Reactor holds promise for future cancer treatments. Carolyn Anderson and Heather Hennkens are leading the research project into how ...

  9. MHW-RTG - Wikipedia

    en.wikipedia.org/wiki/MHW-RTG

    The Multihundred-watt radioisotope thermoelectric generator (MHW RTG) is a type of US radioisotope thermoelectric generator (RTG) developed for the Voyager spacecraft, Voyager 1 and Voyager 2. [1] The Voyager generators continue to function more than 45 years into the mission.