Radiation Processing of Dust, Asteroids and Moons - What Does It Do and What Can It Tell Us?

Radiation Processing of Dust, Asteroids and Moons - What Does It Do and What Can It Tell Us?

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Radiation Chemistry & Space Weathering 101

7 of 34

7 of 34

Radiation Chemistry & Space Weathering 101

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Radiation Processing of Dust, Asteroids and Moons - What Does It Do and What Can It Tell Us?

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  1. 1 Intro
  2. 2 Organizers
  3. 3 Webinar Format
  4. 4 Today's Speaker
  5. 5 Stars interact with planetary materials
  6. 6 Definitions: ·lonizing Radiation: lons, electrons, and photons containing energy above the target ionization threshold
  7. 7 Radiation Chemistry & Space Weathering 101
  8. 8 Saturnian Magnetosphere Evironm
  9. 9 Electron environment at Mimas
  10. 10 The PacMan Anomalies
  11. 11 MeV Electron Energy Losses in H2O
  12. 12 Sintering of regolith grains
  13. 13 Radiation induced diffusion
  14. 14 Molecular Dynamics Simulation of Elect Excitation in Water Ice
  15. 15 Estimates of spherical grain sintering rat
  16. 16 ROUGH Approximations of Resurfacing
  17. 17 Sintering timescales (Myr) Comparisons with resurfacing rates can constrain surface properties
  18. 18 Determining the Origins of Phobos and Demos
  19. 19 Solar wind sputtering of small bod.
  20. 20 Sputtering and secondary ion detection
  21. 21 Monte Carlo Simulations
  22. 22 Sputtering Experiment
  23. 23 SIMS: Experimental Yields Secondary ion yields for lunar soil exposed to keV energy ions
  24. 24 Relative Secondary lon Yield
  25. 25 Simulated lon Trajectories and Densit
  26. 26 Small body classification
  27. 27 PRISM Mission so to Phobos and Deimos
  28. 28 Formation of pre-biotic molecules in spa
  29. 29 Chiral-specific reactions caused by sp polarized electrons
  30. 30 Spin-polarized LEE Damage of Chiral Molec
  31. 31 Argonne National Laboratory
  32. 32 Amino Acid Damage: Chirality and Magnetization
  33. 33 XPS Characterization of Deposited Film
  34. 34 Cross-section statistical testing

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