1 00:00:00,240 --> 00:00:04,400 We're launching two 3U CubeSats to go for that five million dollar prize 2 00:00:04,410 --> 00:00:08,840 money for the Cube Quest Challenge. This is a model of one of the two 3U 3 00:00:08,849 --> 00:00:12,870 CubeSats. So our team is a student team here at Cornell University. Our 4 00:00:12,870 --> 00:00:16,920 CubeSat will be riding alongside the Orion capsule that will be in the 5 00:00:16,920 --> 00:00:21,480 secondary payload of the SLS to go on an initial lunar swing by followed by a 6 00:00:21,480 --> 00:00:26,099 capture into lunar orbit. We're developing two new technologies mainly for 7 00:00:26,100 --> 00:00:30,330 this mission. This is where our main thruster is. One is a water electrolysis 8 00:00:30,330 --> 00:00:36,420 propulsion thruster. So we convert the water slowly into a hydrogen-oxygen mixture, then 9 00:00:36,420 --> 00:00:40,440 combust that gas mixture to generate our main thrust. The other new technology 10 00:00:40,440 --> 00:00:44,280 is inexpensive optimal navigation. So this is the Raspberry Pi camera. 11 00:00:44,280 --> 00:00:48,560 To determine where the spacecraft must be and then I'm hoping most of all that the 12 00:00:48,560 --> 00:00:52,080 mission is successful so that we can take the technologies were developing