It doesn't matter. I would bet that there is almost zero Ho-229 data that went into the B-2. It certainly wasn't any input into the wing or control surface design. The B-2 wing and control surfaces did not look at all like the Ho-229. It was designed for stealth and performance, not stability. The higher drag bell shaped lift distribution was not needed or desired here. Stability was handled by quad-redundant computers. It wasn't aerodynamics; thousands of man-hours were put in curvature design to ensure that the radar reflecting nature, fit, and aerodynamic performance were optimized, and, computer driven manufacturing techniques were required. Nothing there was useful from the Ho-229. It wasn't the inlet and exhaust design. Highly complex and advanced analysis was required for aero-performance and signature suppression. How about structure and manufacturing? No, the B-2 is primarily composite structure, which has zero commonality with the welded steel and wood construction of the Ho-229. Avionics/electrical, no way. Hydraulics, no way. Fuel systems, nope. How about the flight control system? No way. The B-2 has electrical activated hydraulic flight control system driven by computers. Cockpit, nope B-2 had a two man cockpit with ejection seats and special windshield. Weapons systems, mmm, no machine guns on the B-2. I cannot think of a single subsystem that benefited from any examination of the Ho-229. Wait, maybe the cooling of the wing section aft exhaust exits contributed. Probably not.
If anything was used it was the B-49. But again, I doubt if anything was actually used because of the above items applied here, too. It is interesting that the B-2 has the exact wingspan of the B-49.
Saying that the B-2 engineers benefited from examining the data from the Ho-229 is equivalent to Airbus 380 engineer getting useful data from examining a DC-3. No, I am sure the group did not expect to learn anything and went just to see an historic aircraft, on government funds.
What do you think they learned and used?