User contributions for S162901
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29 September 2019
- 15:3515:35, 29 September 2019 diff hist +9 Group2 19-1 Week4 No edit summary
- 15:3415:34, 29 September 2019 diff hist −298 Group2 19-1 Week4 No edit summary
- 15:3315:33, 29 September 2019 diff hist +2,890 Group2 19-1 Week4 No edit summary
- 15:3015:30, 29 September 2019 diff hist +1,214 Group2 19-1 Week4 No edit summary
- 15:2815:28, 29 September 2019 diff hist +3,793 Group2 19-1 Week4 No edit summary
- 15:2015:20, 29 September 2019 diff hist +343 Group2 19-1 Week4 →Communication options via fiber
- 15:1915:19, 29 September 2019 diff hist +4,185 Group2 19-1 Week4 No edit summary
- 15:1515:15, 29 September 2019 diff hist +2,413 Group2 19-1 Week4 No edit summary
- 15:1215:12, 29 September 2019 diff hist +2,773 Group2 19-1 Week4 →Measurability requirements and constraints
- 15:0915:09, 29 September 2019 diff hist +12 Group2 19-1 Week4 →Constraints
- 15:0915:09, 29 September 2019 diff hist +97 Group2 19-1 Week4 →Constraints
- 15:0715:07, 29 September 2019 diff hist −64 Group2 19-1 Week4 →Constraints
- 15:0315:03, 29 September 2019 diff hist +2,475 Group2 19-1 Week4 →Constraints
- 15:0015:00, 29 September 2019 diff hist +29 Group2 19-1 Week4 →User Preferences
- 14:5914:59, 29 September 2019 diff hist +316 Group2 19-1 Week4 →Updated requirements
- 14:5614:56, 29 September 2019 diff hist +418 Group2 19-1 Week4 →Updated requirements
- 14:5314:53, 29 September 2019 diff hist +999 Group2 19-1 Week4 →Updated requirements
- 14:4114:41, 29 September 2019 diff hist −17 m Group2 19-1 Week4 →Updated planning
- 14:4014:40, 29 September 2019 diff hist +286 Group2 19-1 Week4 →Updated planning
- 14:3514:35, 29 September 2019 diff hist +4,763 Group2 19-1 Week4 No edit summary
- 14:3414:34, 29 September 2019 diff hist −1 Group2 19-1 Week4 →Week 4 Logbook
- 14:3314:33, 29 September 2019 diff hist +178 Group2 19-1 Week4 →Communication options via fiber
- 14:3114:31, 29 September 2019 diff hist 0 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:3014:30, 29 September 2019 diff hist +1,675 Group2 19-1 Week4 →Week 4 Logbook
- 14:2914:29, 29 September 2019 diff hist +136 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:2514:25, 29 September 2019 diff hist +26 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:2514:25, 29 September 2019 diff hist −1 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:2414:24, 29 September 2019 diff hist +2,513 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:1814:18, 29 September 2019 diff hist +304 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:1514:15, 29 September 2019 diff hist −305 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:1514:15, 29 September 2019 diff hist +2 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:1314:13, 29 September 2019 diff hist +19 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:0714:07, 29 September 2019 diff hist +10 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:0714:07, 29 September 2019 diff hist −51 Group2 19-1 Week4 →Modelling temperature of the digger
- 14:0414:04, 29 September 2019 diff hist +324 Group2 19-1 Week4 →Modelling temperature of the digger
- 13:5913:59, 29 September 2019 diff hist +542 Group2 19-1 Week4 No edit summary
- 13:5613:56, 29 September 2019 diff hist +191 N File:Heat transfer 10x1 ft digger Ice 10 kW.JPG Steady-state heat transfer model of a steel cylinder with a length of 3.05 m and a radius of .3 m in ice at 100 K. The cylinder contains a 10 kW spherical power source with a radius of .15 m. current
- 13:5413:54, 29 September 2019 diff hist +189 N File:Heat transfer 10x1 digger Ice 200 kW.JPG Steady-state heat transfer model of a steel cylinder with a length of 10 m and a radius of 1 m in ice at 100 K. The cylinder contains a 200 kW spherical power source with a radius of 0.5 m. current
- 13:5213:52, 29 September 2019 diff hist +189 N File:Heat transfer 10x1 digger Ice 100 kW.JPG Steady-state heat transfer model of a steel cylinder with a length of 10 m and a radius of 1 m in ice at 100 K. The cylinder contains a 100 kW spherical power source with a radius of 0.5 m. current
- 13:5113:51, 29 September 2019 diff hist +206 N File:Heat transfer 10x1 digger outside.JPG Steady-state heat transfer model of a steel cylinder with a length of 10 m and a radius of 1 m in 10^-10 atmospheres air at 100 K. The cylinder contains a 1 kW spherical power source with a radius of 0.5 m. current
- 13:4713:47, 29 September 2019 diff hist +4 Group2 19-1 Week4 No edit summary
- 13:4613:46, 29 September 2019 diff hist 0 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4613:46, 29 September 2019 diff hist −6 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4613:46, 29 September 2019 diff hist +6 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4613:46, 29 September 2019 diff hist 0 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4513:45, 29 September 2019 diff hist +6 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4513:45, 29 September 2019 diff hist 0 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4513:45, 29 September 2019 diff hist −1 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa
- 13:4213:42, 29 September 2019 diff hist +7 Group2 19-1 Week4 →Week 4 Logbook
- 13:4113:41, 29 September 2019 diff hist 0 Group2 19-1 Week4 →Physical considerations about the presence of water on Europa