Hypergendered Logic Source
Hypergendered Logic — Page 91
• a new microanatomical organization; • an organ subregion; • a physiological rhythm; • a developmental timing relation; • a regulatory topology. No specific example is logically forced. 153. Phenotype nature at SF2 Stage 2 adds causal multiplicity plus inherited non-SM1 structure. A phenotype can now be generated from multiple separately identifiable sources or interactions among them. This makes Stage 2 qualitatively different from Stage 1 even if some visible outcome is the same. 154. Phenotype nature at SF3–SF5 These stages introduce increasingly deep source states. A phenotype can become sensitive not merely to primitive PA conditions but to whether prerequisites arrived through particular inherited stage histories. Plausible phenotype classes: • developmental-memory-dependent tissue behavior; • regulation keyed to stage provenance; • interactions between early PA modes and later non-SM inherited sources; • delayed expression of structures already logically available; • threshold behavior triggered by several inheritance layers. 155. Phenotype nature at very high Archwomanhood A very high-stage Archfemale can have biology whose explanation requires a large inheritance DAG. The result can be difficult to predict from ordinary femaleness because ordinary femaleness lacks those causal states. Yet the state is still female-typed. The intended explanatory response is therefore not “this has become alien to female,” but potentially: “We did not previously know that a female-typed developmental architecture could realize this, but the high-order inheritance history shows why it can.” 156. The exact Archmale mirror Everything in §§151–155 has a male counterpart. Ordinary manhood remains broad; SM1 supports irreducible joint-cause male-directed novelty; SM2 supports multiple routes and inherited non-SF1 structure; high SM orders support deep provenance-sensitive male-directed phenotype spaces. 157. Twenty logically deducible facts after the IH revision 1. SF2⇒SF1. 2. SM2⇒SM1. 3. SF2⇒¬SM1. 4. SM2⇒¬SF1. 5. SFn+1⇒SFn for n≥2. 6. SMn+1⇒SMn for n≥2. 7. SFn+1⇒¬SMn. 8. SMn+1⇒¬SFn. 9. SFn⇒HFk for every k<n.
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