Step |
Hyp |
Ref |
Expression |
1 |
|
mapdh.q |
|- Q = ( 0g ` C ) |
2 |
|
mapdh.i |
|- I = ( x e. _V |-> if ( ( 2nd ` x ) = .0. , Q , ( iota_ h e. D ( ( M ` ( N ` { ( 2nd ` x ) } ) ) = ( J ` { h } ) /\ ( M ` ( N ` { ( ( 1st ` ( 1st ` x ) ) .- ( 2nd ` x ) ) } ) ) = ( J ` { ( ( 2nd ` ( 1st ` x ) ) R h ) } ) ) ) ) ) |
3 |
|
mapdh.h |
|- H = ( LHyp ` K ) |
4 |
|
mapdh.m |
|- M = ( ( mapd ` K ) ` W ) |
5 |
|
mapdh.u |
|- U = ( ( DVecH ` K ) ` W ) |
6 |
|
mapdh.v |
|- V = ( Base ` U ) |
7 |
|
mapdh.s |
|- .- = ( -g ` U ) |
8 |
|
mapdhc.o |
|- .0. = ( 0g ` U ) |
9 |
|
mapdh.n |
|- N = ( LSpan ` U ) |
10 |
|
mapdh.c |
|- C = ( ( LCDual ` K ) ` W ) |
11 |
|
mapdh.d |
|- D = ( Base ` C ) |
12 |
|
mapdh.r |
|- R = ( -g ` C ) |
13 |
|
mapdh.j |
|- J = ( LSpan ` C ) |
14 |
|
mapdh.k |
|- ( ph -> ( K e. HL /\ W e. H ) ) |
15 |
|
mapdhc.f |
|- ( ph -> F e. D ) |
16 |
|
mapdh.mn |
|- ( ph -> ( M ` ( N ` { X } ) ) = ( J ` { F } ) ) |
17 |
|
mapdhcl.x |
|- ( ph -> X e. ( V \ { .0. } ) ) |
18 |
|
mapdh.p |
|- .+ = ( +g ` U ) |
19 |
|
mapdh.a |
|- .+b = ( +g ` C ) |
20 |
|
mapdh6i.xn |
|- ( ph -> -. X e. ( N ` { Y , Z } ) ) |
21 |
|
mapdh6i.y |
|- ( ph -> Y e. ( V \ { .0. } ) ) |
22 |
|
mapdh6i.z |
|- ( ph -> Z e. ( V \ { .0. } ) ) |
23 |
14
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> ( K e. HL /\ W e. H ) ) |
24 |
15
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> F e. D ) |
25 |
16
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> ( M ` ( N ` { X } ) ) = ( J ` { F } ) ) |
26 |
17
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> X e. ( V \ { .0. } ) ) |
27 |
20
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> -. X e. ( N ` { Y , Z } ) ) |
28 |
21
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> Y e. ( V \ { .0. } ) ) |
29 |
22
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> Z e. ( V \ { .0. } ) ) |
30 |
|
simpr |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> ( N ` { Y } ) = ( N ` { Z } ) ) |
31 |
1 2 3 4 5 6 7 8 9 10 11 12 13 23 24 25 26 18 19 27 28 29 30
|
mapdh6iN |
|- ( ( ph /\ ( N ` { Y } ) = ( N ` { Z } ) ) -> ( I ` <. X , F , ( Y .+ Z ) >. ) = ( ( I ` <. X , F , Y >. ) .+b ( I ` <. X , F , Z >. ) ) ) |
32 |
14
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> ( K e. HL /\ W e. H ) ) |
33 |
15
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> F e. D ) |
34 |
16
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> ( M ` ( N ` { X } ) ) = ( J ` { F } ) ) |
35 |
17
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> X e. ( V \ { .0. } ) ) |
36 |
21
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> Y e. ( V \ { .0. } ) ) |
37 |
22
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> Z e. ( V \ { .0. } ) ) |
38 |
20
|
adantr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> -. X e. ( N ` { Y , Z } ) ) |
39 |
|
simpr |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> ( N ` { Y } ) =/= ( N ` { Z } ) ) |
40 |
|
eqidd |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> ( I ` <. X , F , Y >. ) = ( I ` <. X , F , Y >. ) ) |
41 |
|
eqidd |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> ( I ` <. X , F , Z >. ) = ( I ` <. X , F , Z >. ) ) |
42 |
1 2 3 4 5 6 7 8 9 10 11 12 13 32 33 34 35 18 19 36 37 38 39 40 41
|
mapdh6aN |
|- ( ( ph /\ ( N ` { Y } ) =/= ( N ` { Z } ) ) -> ( I ` <. X , F , ( Y .+ Z ) >. ) = ( ( I ` <. X , F , Y >. ) .+b ( I ` <. X , F , Z >. ) ) ) |
43 |
31 42
|
pm2.61dane |
|- ( ph -> ( I ` <. X , F , ( Y .+ Z ) >. ) = ( ( I ` <. X , F , Y >. ) .+b ( I ` <. X , F , Z >. ) ) ) |