# Diff d804785 -> HEAD

56 claims added, 6 changed, +135 moves.

## Added
- `c-01ff83` [derived] Prediction 1's defect is estimand non-identification rather than analyst degrees of freedom, so preregistration is necessary but not sufficient to repair it.
- `c-054976` [derived] Putting the modular flow on the algebra rather than on the state gives a third reading whose atoms are physical frequencies and whose measure is the carrier's power spectrum.
- `c-0672b4` [derived] Under the no-removal convention both unconscious states in c-1702fd's table sit above waking, so fixing the convention makes prediction 1's estimator falsifiable and falsifies its ordering on both arms.
- `c-093950` [derived] Axiom 5.1 holds to ten percent only if the carrier occupies between a quarter and a half of an octave, which is narrower than the band Chapters 6 and 7 require.
- `c-093ed0` [derived] The annealed Sherrington-Kirkpatrick model has an entire free energy and a uniform spin marginal, so plastic couplings give Var_P(q) = 1/N and Axiom 8.1 returns maximal positive valence.
- `c-18bcdb` [derived] The proton reductio requires reading Axiom 4.1 with epsilon free and the state clause inert, and chapter 2 and chapter 12 both state the criterion otherwise.
- `c-236515` [derived] The f-to-the-chi tilt introduced by dividing rather than subtracting the aperiodic background moves atomicity non-monotonically in chi, so it confounds every published state contrast without fixing the sign of any of them.
- `c-2b762e` [derived] Every modular Hamiltonian that is a function of the subject's state alone yields a coherence index that is a unitary invariant of that state, so no intrinsic reading can distinguish two states of the carrier that differ only in the order parameter.
- `c-30a2c9` [derived] Prediction 1 becomes convention-free when stated as a lag-budget Wiener average with no background model, and its state ordering is stable across an eightfold change of frequency resolution.
- `c-322907` [derived] The consonance kernel reproduces Chapter 7's ordering only for delta below about 0.045, which is two to five times narrower than the critical bandwidth Proposition 7.1 sets delta to.
- `c-372585` [derived] The sign of the aperiodic-removed atomicity contrast also depends on the number of spectral averages, so the removal branch is a one-parameter family rather than a convention.
- `c-43d5d7` [posited] Critical scaling in anaesthesia is distinguishable from a steep smooth dose-response only by rate- and scale-stable laws that beat a preregistered pharmacokinetic null.
- `c-537c03` [derived] The cortical electromagnetic field has exactly two screening lengths at 40 Hz, 0.78 nanometres and 252 metres, and equation (4.3)'s mass coefficient is identically zero in between.
- `c-578232` [derived] The multiplicative repair of the coherence index is the exponentiated Bohr mean of the log return probability, which equals the squared Mahler measure of the mass polynomial.
- `c-5832a1` [derived] Sampling the overlap distribution needs N of order a hundred and the area law needs N of order a hundred thousand, so Chapter 8's order parameter and Chapter 4's capacity cannot both be about the same modes.
- `c-5ace06` [derived] Axiom 2.2's six invariants carry the information of its first two, because Tomita-Takesaki and the Bures construction determine three of the rest from the algebra and the state and the sixth is not a function of the pair at all.
- `c-5b7066` [derived] A shared aperiodic fit cannot estimate the coherence index, because it makes one state's value a function of another state that is not being measured.
- `c-5e23bf` [derived] Axiom 5.1's conversion is exact if and only if the carrier's housekeeping entropy production vanishes, so the non-equilibrium repair fixes beta at the bath temperature instead of freeing it.
- `c-64e8e8` [derived] The information capacity of a moment on the corpus's own carrier is about twenty bits per coherence domain, set by Johnson noise rather than by an entropy coefficient.
- `c-6688f8` [derived] The aperiodic-removal branch of prediction 1 couples the state contrast to the bandwidth of the periodic components, a physical nuisance parameter nobody reports, and the no-removal branch does not.
- `c-6a364c` [derived] The limb to amputate is Chapter 5, because the modular apparatus is eliminable from every empirical claim the corpus makes while Chapters 6 and 7 are not.
- `c-6a65f3` [derived] Dmax = 1/4 is attained, by a Random Energy Model at half its critical temperature, so Axiom 8.1 assigns its most negative valence to the least hierarchical landscape.
- `c-6c1280` [derived] The corpus's two readings of the modular Hamiltonian are one operator, differing by the adjoint action of Chapter 4's order parameter and an additive constant.
- `c-6d8880` [derived] Equation (4.2) is evaluated with a pocket four hundred times wider than the collar that defines the pocket, so on the corpus's own criterion a cortex is sixty thousand subjects of twenty degrees of freedom each.
- `c-701341` [derived] Every empirical spectral-atomicity result on this graph divided peak mass by the aperiodic background instead of subtracting it, so all of them estimated atomic mass tilted by f to the power chi.
- `c-75ab3b` [derived] A driven dissipative order parameter has exactly one real amplitude healing length and no phase healing length, so c-6417fa's conclusion holds but its reason and its falsifier do not.
- `c-764532` [derived] The exact defect in equation (9.1) is the Bohr covariance of the two modes' return curves, so multiplicativity requires the detuning to be resolved by the averaging window rather than rational independence of the spectra.
- `c-887a85` [derived] The carrier named in section 4.4 is a linear field, so its minimum set is contractible and section 4.3's defect classification returns no defects.
- `c-88870c` [derived] The cortical electromagnetic field's own memory is fifteen nanoseconds, so it cannot be what holds a hundred-millisecond specious present.
- `c-8abc5b` [derived] The canonical split factor is a functional of the state of the whole, so the split property yields state-relative carving rather than a decomposition into independently-stated parts.
- `c-900d29` [derived] Axiom 5.1's effective temperature puts the 40 Hz carrier at 1.2e-11 quanta while section 5.4 puts it at 1.6e11, so the mode that answers the decoherence objection is not the mode that sets the specious present.
- `c-9705af` [derived] Definition 6.1 normalises by the total spectral mass, so prediction 1's aperiodic-removal step replaces the coherence index with a different quantity larger by 1/(1-c)^2.
- `c-a274ae` [derived] Every displacement of the order parameter is a local unitary on the split factor, so equation (4.2) assigns the same entropy to every state of a subject.
- `c-a4fdbf` [derived] The split-regulated mutual information is strictly decreasing in the collar width in every quantum field theory, so exercise 4.6 has no interior solution.
- `c-a61423` [derived] The cortical field carries exactly the divergence of the current density and nothing else, so the corpus's only field-specific empirical commitment is that solenoidal and closed-field neural activity is phenomenally inert.
- `c-a84242` [derived] The conversion t = hbar beta_eff s requires the carrier state to be invariant under physical time translation, so a non-stationary cortex has no beta_eff at all rather than a frequency-dependent family.
- `c-a9a0c1` [derived] Ephaptic spike entrainment at thirty hertz needs 5.58 mV/mm while the endogenous cortical gamma field is under 0.5 mV/mm, so field feedback at the corpus's carrier frequency is at least eleven-fold below threshold.
- `c-ad00c9` [derived] The cortical sheet is at most five coupling lengths thick, so a short-range cortical spin glass is quasi-two-dimensional and its transition is rounded over a third to two thirds of the temperature axis.
- `c-ad078e` [derived] The area-law term cancels exactly from the Holevo quantity, so equation (4.2) bounds no operational information.
- `c-b12c83` [derived] The spike-wave arm's evidence is overstated by more than thirty orders of magnitude, because its unit of analysis is the episode rather than the animal.
- `c-b18503` [derived] A driven mode's effective temperature is T_bath times one plus the ratio of drive to thermal noise spectra, so Axiom 5.1 has a single beta_eff only if the cortical drive spectrum is proportional to the tissue dissipation spectrum.
- `c-b2de06` [derived] No conformal field theory can select the collar width of equation (4.3), because for concentric regions every functional of the algebras and the vacuum is a function of the ratio of collar to subject size.
- `c-b3cfb0` [derived] Callosotomy does not falsify prediction 8, but it holds the conductor fixed while cutting the source correlation, and the shared coherent region follows the source correlation.
- `c-ba2e19` [derived] For a subject larger than the correlation length the split-regulated mutual information depends on the collar width only in units of that length, so the algebra fixes the collar units and not its value.
- `c-c3e5ca` [derived] Prediction 3's stated test statistic takes the value two-thirds on every point set, including exactly ultrametric ones, so as written it carries no information.
- `c-c829ce` [derived] Every state-intrinsic invariant of the Bures geometry is a function of the state's spectrum alone, because the Bures metric's eigenvalues relative to Hilbert-Schmidt are one over twice the sum of two eigenvalues.
- `c-c85f8b` [derived] Chapter 6's modular spectral measure is the distribution of modular energy, which coincides with a power spectrum only on states supported in the one-quantum sector, and such states are not faithful.
- `c-cc6e22` [derived] Multiple-comparison correction is inert across this graph's entire empirical family, so family-wise error is not what is wrong with it.
- `c-d118a0` [derived] Equation (4.4) states where the noise lives and not how large it is, so it fixes no temperature; the tissue temperature enters the corpus at equation (5.5) instead.
- `c-d23472` [derived] Nine-tenths of the reported gamma coherence between cortical sites is a distance-independent common-source floor, and the part that genuinely decays has a space constant of one to two millimetres.
- `c-d75ec1` [derived] Temporal autocorrelation alone produces a larger ultrametricity excess than a genuine hierarchy does, so prediction 3's within-session windows design cannot identify replica symmetry breaking.
- `c-dc6e09` [derived] A proper open subset of a pocket is not a connected component of the complement of the defect set, so section 4.3 already states the maximality clause.
- `c-e4d27a` [derived] The obstruction to a single modular temperature is the coefficient of variation of the mode effective temperatures, and for a 1/f cortical spectrum it is between 0.76 and 0.99 against a maximum of 1.
- `c-f17516` [derived] The Parisi overlap variance of the Sherrington-Kirkpatrick model peaks at 0.0599, so Axiom 8.1 assigns valence above half its maximum positive value everywhere in the model Chapter 8.5 names.
- `c-f1ed63` [derived] The Uhlmann holonomy of the ambient modular orbit is strictly finer than the modular spectral measure and is trivial exactly when the state is stationary.
- `c-f44888` [derived] Section 5.4's occupancy of 1.6e11 quanta fixes the modular coherence index of the carrier at 3.1e-12 for every state of it, so the answer to the decoherence objection and Definition 6.1 cannot both be about the same mode.

## Changed
- `c-0ea096` contested: no -> **yes**  The number of simultaneously distinguishable phenomenal dist
- `c-37c5e7` contested: no -> **yes**  The split property makes the states of nested regions indepe
- `c-46a841` contested: no -> **yes**  The 1e5 capacity figure is fixed by the correlation length o
- `c-4ac6c1` contested: no -> **yes**  Chronic suffering is non-self-averaging, so repeated samplin
- `c-7fd2e0` contested: no -> **yes**  Order-parameter coherence is inherited by every open subregi
- `c-a51fb6` contested: no -> **yes**  The reference state that makes the coherence index non-trivi

## Removed
- `c-081082` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-12fd6f` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-4a5dd7` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-4d721f` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-593bbc` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-670e8c` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-804aad` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-88c729` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-a0956b` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-cada2e` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-db9aee` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
- `c-ecbeef` Conventional digital hardware does not support the split inclusions, modular flow and coherent field regions that Axiom 4.1 requires.
