Nuprl Lemma : l_tree_node?_wf

∀[L,T:Type]. ∀[v:l_tree(L;T)].  (l_tree_node?(v) ∈ 𝔹)


Proof




Definitions occuring in Statement :  l_tree_node?: l_tree_node?(v),  l_tree: l_tree(L;T),  bool: 𝔹,  uall: ∀[x:A]. B[x],  member: t ∈ T,  universe: Type
Definitions unfolded in proof :  uall: ∀[x:A]. B[x],  member: t ∈ T,  ext-eq: A ≡ B,  and: P ∧ Q,  subtype_rel: A ⊆r B,  all: ∀x:A. B[x],  implies: P ⇒ Q,  bool: 𝔹,  unit: Unit,  it: ⋅,  btrue: tt,  uiff: uiff(P;Q),  uimplies: b supposing a,  sq_type: SQType(T),  guard: {T},  eq_atom: x =a y,  ifthenelse: if b then t else f fi ,  l_tree_leaf: l_tree_leaf(val),  l_tree_node?: l_tree_node?(v),  pi1: fst(t),  bfalse: ff,  exists: ∃x:A. B[x],  prop: ℙ,  or: P ∨ Q,  bnot: ¬bb,  assert: ↑b,  false: False,  l_tree_node: l_tree_node(val;left_subtree;right_subtree)
Lemmas referenced :  l_tree-ext,  eq_atom_wf,  bool_wf,  eqtt_to_assert,  assert_of_eq_atom,  subtype_base_sq,  atom_subtype_base,  bfalse_wf,  eqff_to_assert,  equal_wf,  bool_cases_sqequal,  bool_subtype_base,  assert-bnot,  neg_assert_of_eq_atom,  btrue_wf,  l_tree_wf
Rules used in proof :  sqequalSubstitution,  sqequalTransitivity,  computationStep,  sqequalReflexivity,  isect_memberFormation,  cut,  lemma_by_obid,  sqequalHypSubstitution,  isectElimination,  thin,  hypothesisEquality,  promote_hyp,  productElimination,  hypothesis_subsumption,  hypothesis,  applyEquality,  sqequalRule,  tokenEquality,  lambdaFormation,  unionElimination,  equalityElimination,  equalityTransitivity,  equalitySymmetry,  independent_isectElimination,  instantiate,  cumulativity,  atomEquality,  dependent_functionElimination,  independent_functionElimination,  because_Cache,  dependent_pairFormation,  voidElimination,  equalityEquality,  universeEquality

Latex:
\mforall{}[L,T:Type].  \mforall{}[v:l\_tree(L;T)].    (l\_tree\_node?(v)  \mmember{}  \mBbbB{})



Date html generated: 2016_05_16-AM-08_43_22
Last ObjectModification: 2015_12_28-PM-06_41_51

Theory : labeled!trees


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