110 results on '"Metzger, Philip"'
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2. Erosion rate of lunar soil under a landing rocket, part 1: Identifying the rate-limiting physics
3. Erosion rate of lunar soil under a landing rocket, part 2: Benchmarking and predictions
4. Laser particle sizer for lunar plume-surface interaction studies
5. Economics of in-space industry and competitiveness of lunar-derived rocket propellant
6. How the “Tapestry” of Integrated Provisions in the New Safe Drinking Water Act Can Benefit Small Systems
7. The Cost of Lunar Landing Pads with a Trade Study of Construction Methods
8. Plume-surface Interaction Phenomena Observed in a Scaled Vacuum Microgravity Experiment
9. NASA Lunabotics Robotic Mining Competition 10th Anniversary (2010-2019): Taxonomy and Technology Review
10. Developing a Standard Method to Determine the Rheology of Regolith Simulants
11. Damage to Lunar Orbiting Spacecraft Caused by the Ejecta of Lunar Landers
12. Deep Regolith Cratering and Plume Effects Modeling for Lunar Landing Sites
13. Practical and Economic Rocket Mining of Lunar Ice
14. Laser particle sizer for plume-induced ejecta clouds
15. Numerical estimations of lunar regolith trajectories and damage potential due to rocket plumes
16. Moons are planets: Scientific usefulness versus cultural teleology in the taxonomy of planetary science
17. Rocket Plume Interacting with Mars Soil Particulates
18. Evaluation of Different RANS Turbulence Models for Rocket Plume on Mars Environment
19. Erratum for “Thermal Extraction of Volatiles from Lunar and Asteroid Regolith in Axisymmetric Crank-Nicholson Modeling” by Philip T. Metzger, Kris Zacny, and Phillip Morrison
20. Phobos regolith simulants PGI-1 and PCA-1
21. Practical and Economic Rocket Mining of Lunar Ice
22. NASA Lunabotics Robotic Mining Competition 10th Anniversary (2010–2019): Taxonomy and Technology Review
23. Instant Landing Pads for Lunar Missions
24. Pad for Humanity: Lunar Spaceports as Critical Shared Infrastructure
25. Deep Regolith Cratering and Plume Effects Modeling for Lunar Landing Sites
26. The Damage to Lunar Orbiting Spacecraft Caused by the Ejecta of Lunar Landers
27. Off Earth Landing and Launch Pad Construction—A Critical Technology for Establishing a Long-Term Presence on Extraterrestrial Surfaces
28. Long-Term Commitment to Explore and Sustain our Earth-Moon Environment
29. Furthering Asteroid Resource Utilization in the Next Decade though Technology Leadership
30. Understanding and Mitigating Plume Effects During Powered Descents on the Moon and Mars
31. Cratering and Blowing Soil by Rocket Engines during Lunar Landings
32. Thermal Extraction of Volatiles from Lunar and Asteroid Regolith in Axisymmetric Crank–Nicolson Modeling
33. Robotic Lunar Surface Operations 2
34. Model for asteroid regolith to guide simulant development
35. Thermal extraction of water ice from the lunar surface - A 3D numerical model
36. Numerical Model of Jet Impingement and Particle Trajectories in Extraterrestrial Landing Events Using an Euler-Lagrange Method
37. Simulated asteroid materials based on carbonaceous chondrite mineralogies
38. Commercial lunar propellant architecture: A collaborative study of lunar propellant production
39. Measuring the fidelity of asteroid regolith and cobble simulants
40. The reclassification of asteroids from planets to non-planets
41. Thermal Cycling and the Strength of Primitive Asteroids
42. A phenomenological relationship between vertical air motion and disdrometer derived A - b coefficients
43. Space development and space science together, an historic opportunity
44. Regolith Instability Caused by Gas Diffusion: A Case Study of the Asteroid Redirect Mission
45. Rocket Exhaust Blowing Soil in Near Vacuum Conditions Is Faster than Predicted by Continuum Scaling Laws
46. Automated Additive Construction (AAC) for Earth and Space Using In Situ Resources
47. Analysis of Thermal/Water Propulsion for CubeSats that Refuel in Space
48. Results of the 2015 Workshop on Asteroid Simulants
49. Design, Test, and Simulation of Lunar and Mars Landing Pad Soil Stabilization Built with In Situ Rock Utilization
50. Estimation of Apollo Lunar Dust Transport using Optical Extinction Measurements
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