let z be non constant standard clockwise_oriented special_circular_sequence; ( z /. 1 = S-min (L~ z) implies (N-min (L~ z)) .. z < (N-max (L~ z)) .. z )
set g = Rotate z,(S-max (L~ z));
A1:
L~ z = L~ (Rotate z,(S-max (L~ z)))
by REVROT_1:33;
S-max (L~ z) in rng z
by SPRECT_2:46;
then
(Rotate z,(S-max (L~ z))) /. 1 = S-max (L~ (Rotate z,(S-max (L~ z))))
by A1, FINSEQ_6:98;
then A2:
( (N-min (L~ (Rotate z,(S-max (L~ z))))) .. (Rotate z,(S-max (L~ z))) < (N-max (L~ (Rotate z,(S-max (L~ z))))) .. (Rotate z,(S-max (L~ z))) & (S-min (L~ (Rotate z,(S-max (L~ z))))) .. (Rotate z,(S-max (L~ z))) < (N-min (L~ (Rotate z,(S-max (L~ z))))) .. (Rotate z,(S-max (L~ z))) )
by Lm25, Th35;
A3:
S-min (L~ (Rotate z,(S-max (L~ z)))) in rng (Rotate z,(S-max (L~ z)))
by SPRECT_2:45;
assume A4:
z /. 1 = S-min (L~ z)
; (N-min (L~ z)) .. z < (N-max (L~ z)) .. z
for i being Element of NAT st 1 < i & i < len z holds
z /. i <> z /. 1
by GOBOARD7:38;
then A5:
Rotate (Rotate z,(S-max (L~ z))),(S-min (L~ z)) = z
by A4, REVROT_1:16;
( N-min (L~ (Rotate z,(S-max (L~ z)))) in rng (Rotate z,(S-max (L~ z))) & N-max (L~ (Rotate z,(S-max (L~ z)))) in rng (Rotate z,(S-max (L~ z))) )
by SPRECT_2:43, SPRECT_2:44;
hence
(N-min (L~ z)) .. z < (N-max (L~ z)) .. z
by A1, A5, A3, A2, Th5; verum