Nuprl Lemma : face-zero-interval-0

∀[H:j⊢]. ((0(𝕀)=0) = 1(𝔽) ∈ {H ⊢ _:𝔽})


Proof




Definitions occuring in Statement :  face-zero: (i=0),  face-1: 1(𝔽),  face-type: 𝔽,  interval-0: 0(𝕀),  cubical-term: {X ⊢ _:A},  cubical_set: CubicalSet,  uall: ∀[x:A]. B[x],  equal: s = t ∈ T
Definitions unfolded in proof :  uall: ∀[x:A]. B[x],  face-1: 1(𝔽),  interval-0: 0(𝕀),  face-zero: (i=0),  cubical-term-at: u(a),  member: t ∈ T,  uimplies: b supposing a,  dm-neg: ¬(x),  lattice-extend: lattice-extend(L;eq;eqL;f;ac),  lattice-fset-join: \/(s),  reduce: reduce(f;k;as),  list_ind: list_ind,  fset-image: f"(s),  f-union: f-union(domeq;rngeq;s;x.g[x]),  list_accum: list_accum,  dM0: 0,  lattice-0: 0,  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,  empty-fset: {},  nil: [],  it: ⋅,  opposite-lattice: opposite-lattice(L),  lattice-1: 1,  fset-singleton: {x},  cons: [a / b],  dM1: 1,  subtype_rel: A ⊆r B,  lattice-point: Point(l),  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),  cubical-type-at: A(a),  pi1: fst(t),  face-type: 𝔽,  constant-cubical-type: (X),  I_cube: A(I),  functor-ob: ob(F),  face-presheaf: 𝔽
Lemmas referenced :  I_cube_wf,  fset_wf,  nat_wf,  cubical-term-equal,  face-type_wf,  face-zero_wf,  interval-0_wf,  cubical_set_wf,  dM-to-FL-dM1,  subtype_rel_self,  cubical-type-at_wf_face-type
Rules used in proof :  sqequalSubstitution,  sqequalTransitivity,  computationStep,  sqequalReflexivity,  isect_memberFormation_alt,  cut,  functionExtensionality,  sqequalRule,  introduction,  extract_by_obid,  sqequalHypSubstitution,  isectElimination,  thin,  hypothesisEquality,  hypothesis,  equalityTransitivity,  equalitySymmetry,  independent_isectElimination,  universeIsType,  instantiate,  applyEquality,  Error :memTop

Latex:
\mforall{}[H:j\mvdash{}].  ((0(\mBbbI{})=0)  =  1(\mBbbF{}))



Date html generated: 2020_05_20-PM-02_43_45
Last ObjectModification: 2020_04_04-PM-04_57_28

Theory : cubical!type!theory


Home Index