from research import *
s=begin(1373,'Prepare the calendar measure comparison','How can different year counts represent one modeled volume?',{},['Strategy.md §3.3','draft/06b_Keys.md'])
rows=[]
for name,k,d in [('Priestly',E,336),('Prophetic',P,360),('Enochian',J,364)]:
rows.append({'name':name,'factor':str(k),'output_year_measure':d,'year_count_from12558':str(12558*k),'modeled_volume':str(12558*k*d)})
lines=['# Calendar measure comparison','','The original three Keys share one schematic calibration. Different output counts carry the same modeled day-volume.','','| Key | Exact factor | Output year measure | Count from12558 | Modeled volume |','|---|---:|---:|---:|---:|']
lines += [f"| {r['name']} | {r['factor']} | {r['output_year_measure']} | {r['year_count_from12558']} | {r['modeled_volume']} |" for r in rows]
lines+=['','Placement still requires a declared pivot and source route. These schematic year measures do not identify an exact observed tropical year. The original default inventory remains E/P/J; the Sothic H and exact-K 365-day G extensions retain their separate status.','']
a=artifact('draft/Calendar_Measure_Reference.md','\n'.join(lines))
finish(s,{'reference':a,'rows':rows},'A small table now illustrates the shared calibration using the Strategy’s own seed, while distinguishing measure from chronological placement.','Prepare the source-cost summary for the four-part grammar.',{'common_volume':{x['modeled_volume'] for x in rows}=={'4586400'},'three_counts':[x['year_count_from12558'] for x in rows]==['13650','12740','12600']})
Evidence
s1373.py
Edition and provenance
s1373.py
SHA-256 38c18c72b7b2a34737245375f4cb8fc018f523fae6e79815c4ba6149632b1606
C480–C1634/Research_Cycles/C1132_C1431_Recovered/evidence/s1373.py