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Proofgold Proof

pf
Let x0 of type ι be given.
Let x1 of type ι be given.
Assume H0: PER x0.
Assume H1: PER x1.
Apply unknownprop_c1d3826129d2eb54a8f1e40a6116497a0cdb00a6ee455a0b01d56d09477d50d0 with x0, λ x2 . PER (BinReln_product x2 x1) leaving 2 subgoals.
The subproof is completed by applying H0.
Let x2 of type ι be given.
Let x3 of type ιιο be given.
Assume H2: ∀ x4 . x4x2∀ x5 . x5x2x3 x4 x5x3 x5 x4.
Assume H3: ∀ x4 . x4x2∀ x5 . x5x2∀ x6 . x6x2x3 x4 x5x3 x5 x6x3 x4 x6.
Apply unknownprop_c1d3826129d2eb54a8f1e40a6116497a0cdb00a6ee455a0b01d56d09477d50d0 with x1, λ x4 . PER (BinReln_product (pack_r x2 x3) x4) leaving 2 subgoals.
The subproof is completed by applying H1.
Let x4 of type ι be given.
Let x5 of type ιιο be given.
Assume H4: ∀ x6 . x6x4∀ x7 . x7x4x5 x6 x7x5 x7 x6.
Assume H5: ∀ x6 . x6x4∀ x7 . x7x4∀ x8 . x8x4x5 x6 x7x5 x7 x8x5 x6 x8.
Apply unknownprop_efcdca50692a8e5dea3b2dabd19b7c98b28ec0cd127c886a2f9539f6c2a2ba01 with x2, x3, x4, x5, λ x6 x7 . PER x7.
Apply unknownprop_b2515235786361aea7c15ac6711d5751cd13b11988163a3b347abdb56aff828a with setprod x2 x4, λ x6 x7 . and (x3 (ap x6 0) (ap x7 0)) (x5 (ap x6 1) (ap x7 1)) leaving 2 subgoals.
Let x6 of type ι be given.
Assume H6: x6setprod x2 x4.
Let x7 of type ι be given.
Assume H7: x7setprod x2 x4.
Assume H8: and (x3 (ap x6 0) (ap x7 0)) (x5 (ap x6 1) (ap x7 1)).
Apply H8 with (λ x8 x9 . and (x3 (ap x8 0) (ap x9 0)) (x5 (ap x8 1) (ap x9 1))) x7 x6.
Assume H9: x3 (ap x6 0) (ap x7 0).
Assume H10: x5 (ap x6 1) (ap x7 1).
Apply andI with x3 (ap x7 0) (ap x6 0), x5 (ap x7 1) (ap x6 1) leaving 2 subgoals.
Apply H2 with ap x6 0, ap x7 0 leaving 3 subgoals.
Apply ap0_Sigma with x2, λ x8 . x4, x6.
The subproof is completed by applying H6.
Apply ap0_Sigma with x2, λ x8 . x4, x7.
The subproof is completed by applying H7.
The subproof is completed by applying H9.
Apply H4 with ap x6 1, ap x7 1 leaving 3 subgoals.
Apply ap1_Sigma with x2, λ x8 . x4, x6.
The subproof is completed by applying H6.
Apply ap1_Sigma with x2, λ x8 . x4, x7.
The subproof is completed by applying H7.
The subproof is completed by applying H10.
Let x6 of type ι be given.
Assume H6: x6setprod x2 x4.
Let x7 of type ι be given.
Assume H7: x7setprod x2 x4.
Let x8 of type ι be given.
Assume H8: x8setprod x2 x4.
Assume H9: (λ x9 x10 . and (x3 (ap x9 0) (ap x10 0)) (x5 (ap x9 1) (ap x10 1))) x6 x7.
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