{"ai_pass_count":4,"analysis_step_count":9,"confidence":0.8740878932570156,"created_at":"2026-08-30T02:06:49.742678+00:00","id":264801,"node_number":"683210","processing_time":2.557295083999634,"recent_steps":["net.store_session","net.llm_structured_analysis","net.rules_detect","net.context_window","callsign.qrz_verify"],"recording_id":280408,"text":"At the ground, it would be about 42,257. Probably a little bit less than that, but also in our 60,000 to 6 kilometers an hour. Now, these are work out for about a 45 degree angle as it's coming in through the atmosphere. I used to work it out to about five degrees, so it was almost coming perpendicular. But realistically, these are coming in about 45 degrees. So that gives you an idea. That's an iron one. Now, and that would have an explosive force, about 10 gigatons of TNT. So, that's just dropping. Now, for a little rock, that would make about a 4.5 mile wide crater, 7.2 kilometers, 1,754 feet deep, 734 meters deep. And the impact as it's coming into the ground, 41,000 and 43,000 to 3 miles an hour. And that's a good idea."}