Nuprl Lemma : face-one-eq-1
∀[H:j⊢]. ∀[z:{H ⊢ _:𝕀}]. ∀[I:fset(ℕ)]. ∀[a:H(I)].  z(a) = 1 ∈ 𝕀(a) supposing (z=1)(a) = 1 ∈ Point(face_lattice(I))
Proof
Definitions occuring in Statement : 
face-one: (i=1), 
interval-type: 𝕀, 
cubical-term-at: u(a), 
cubical-term: {X ⊢ _:A}, 
cubical-type-at: A(a), 
face_lattice: face_lattice(I), 
I_cube: A(I), 
cubical_set: CubicalSet, 
dM1: 1, 
fset: fset(T), 
nat: ℕ, 
uimplies: b supposing a, 
uall: ∀[x:A]. B[x], 
equal: s = t ∈ T, 
lattice-1: 1, 
lattice-point: Point(l)
Definitions unfolded in proof : 
uall: ∀[x:A]. B[x], 
uimplies: b supposing a, 
face-one: (i=1), 
cubical-term-at: u(a), 
member: t ∈ T, 
subtype_rel: A ⊆r B, 
cubical-type-at: A(a), 
pi1: fst(t), 
interval-type: 𝕀, 
constant-cubical-type: (X), 
I_cube: A(I), 
functor-ob: ob(F), 
interval-presheaf: 𝕀, 
lattice-point: Point(l), 
record-select: r.x, 
dM: dM(I), 
free-DeMorgan-algebra: free-DeMorgan-algebra(T;eq), 
mk-DeMorgan-algebra: mk-DeMorgan-algebra(L;n), 
record-update: r[x := v], 
ifthenelse: if b then t else f fi , 
eq_atom: x =a y, 
bfalse: ff, 
free-DeMorgan-lattice: free-DeMorgan-lattice(T;eq), 
free-dist-lattice: free-dist-lattice(T; eq), 
mk-bounded-distributive-lattice: mk-bounded-distributive-lattice, 
mk-bounded-lattice: mk-bounded-lattice(T;m;j;z;o), 
btrue: tt, 
DeMorgan-algebra: DeMorganAlgebra, 
so_lambda: λ2x.t[x], 
prop: ℙ, 
and: P ∧ Q, 
guard: {T}, 
so_apply: x[s], 
uiff: uiff(P;Q), 
dM1: 1, 
lattice-1: 1, 
fset-singleton: {x}, 
cons: [a / b], 
bdd-distributive-lattice: BoundedDistributiveLattice, 
face-type: 𝔽, 
face-presheaf: 𝔽, 
face_lattice: face_lattice(I), 
face-lattice: face-lattice(T;eq), 
free-dist-lattice-with-constraints: free-dist-lattice-with-constraints(T;eq;x.Cs[x]), 
constrained-antichain-lattice: constrained-antichain-lattice(T;eq;P)
Lemmas referenced : 
dM-to-FL-eq-1, 
cubical-term-at_wf, 
interval-type_wf, 
subtype_rel_self, 
lattice-point_wf, 
dM_wf, 
subtype_rel_set, 
DeMorgan-algebra-structure_wf, 
lattice-structure_wf, 
lattice-axioms_wf, 
bounded-lattice-structure-subtype, 
DeMorgan-algebra-structure-subtype, 
subtype_rel_transitivity, 
bounded-lattice-structure_wf, 
bounded-lattice-axioms_wf, 
equal_wf, 
lattice-meet_wf, 
lattice-join_wf, 
DeMorgan-algebra-axioms_wf, 
face_lattice_wf, 
face-type_wf, 
face-one_wf, 
lattice-1_wf, 
I_cube_wf, 
fset_wf, 
nat_wf, 
cubical-term_wf, 
cubical_set_wf
Rules used in proof : 
sqequalSubstitution, 
sqequalTransitivity, 
computationStep, 
sqequalReflexivity, 
isect_memberFormation_alt, 
sqequalHypSubstitution, 
sqequalRule, 
cut, 
introduction, 
extract_by_obid, 
isectElimination, 
thin, 
hypothesisEquality, 
hypothesis, 
applyEquality, 
instantiate, 
lambdaEquality_alt, 
productEquality, 
cumulativity, 
because_Cache, 
independent_isectElimination, 
isectEquality, 
universeIsType, 
productElimination, 
equalityIstype, 
setElimination, 
rename, 
inhabitedIsType, 
equalityTransitivity, 
equalitySymmetry
Latex:
\mforall{}[H:j\mvdash{}].  \mforall{}[z:\{H  \mvdash{}  \_:\mBbbI{}\}].  \mforall{}[I:fset(\mBbbN{})].  \mforall{}[a:H(I)].    z(a)  =  1  supposing  (z=1)(a)  =  1
Date html generated:
2020_05_20-PM-02_44_24
Last ObjectModification:
2020_04_04-PM-04_58_36
Theory : cubical!type!theory
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