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Theorem dalem16 34965
Description: Lemma for dath 35022. The atoms 𝐷, 𝐸, and 𝐹 form a line of perspectivity. This is Desargue's Theorem for the special case where planes 𝑌 and 𝑍 are different. (Contributed by NM, 7-Aug-2012.)
Hypotheses
Ref Expression
dalema.ph (𝜑 ↔ (((𝐾 ∈ HL ∧ 𝐶 ∈ (Base‘𝐾)) ∧ (𝑃𝐴𝑄𝐴𝑅𝐴) ∧ (𝑆𝐴𝑇𝐴𝑈𝐴)) ∧ (𝑌𝑂𝑍𝑂) ∧ ((¬ 𝐶 (𝑃 𝑄) ∧ ¬ 𝐶 (𝑄 𝑅) ∧ ¬ 𝐶 (𝑅 𝑃)) ∧ (¬ 𝐶 (𝑆 𝑇) ∧ ¬ 𝐶 (𝑇 𝑈) ∧ ¬ 𝐶 (𝑈 𝑆)) ∧ (𝐶 (𝑃 𝑆) ∧ 𝐶 (𝑄 𝑇) ∧ 𝐶 (𝑅 𝑈)))))
dalemc.l = (le‘𝐾)
dalemc.j = (join‘𝐾)
dalemc.a 𝐴 = (Atoms‘𝐾)
dalem16.m = (meet‘𝐾)
dalem16.o 𝑂 = (LPlanes‘𝐾)
dalem16.y 𝑌 = ((𝑃 𝑄) 𝑅)
dalem16.z 𝑍 = ((𝑆 𝑇) 𝑈)
dalem16.d 𝐷 = ((𝑃 𝑄) (𝑆 𝑇))
dalem16.e 𝐸 = ((𝑄 𝑅) (𝑇 𝑈))
dalem16.f 𝐹 = ((𝑅 𝑃) (𝑈 𝑆))
Assertion
Ref Expression
dalem16 ((𝜑𝑌𝑍) → 𝐹 (𝐷 𝐸))

Proof of Theorem dalem16
StepHypRef Expression
1 dalema.ph . . . 4 (𝜑 ↔ (((𝐾 ∈ HL ∧ 𝐶 ∈ (Base‘𝐾)) ∧ (𝑃𝐴𝑄𝐴𝑅𝐴) ∧ (𝑆𝐴𝑇𝐴𝑈𝐴)) ∧ (𝑌𝑂𝑍𝑂) ∧ ((¬ 𝐶 (𝑃 𝑄) ∧ ¬ 𝐶 (𝑄 𝑅) ∧ ¬ 𝐶 (𝑅 𝑃)) ∧ (¬ 𝐶 (𝑆 𝑇) ∧ ¬ 𝐶 (𝑇 𝑈) ∧ ¬ 𝐶 (𝑈 𝑆)) ∧ (𝐶 (𝑃 𝑆) ∧ 𝐶 (𝑄 𝑇) ∧ 𝐶 (𝑅 𝑈)))))
2 dalemc.l . . . 4 = (le‘𝐾)
3 dalemc.j . . . 4 = (join‘𝐾)
4 dalemc.a . . . 4 𝐴 = (Atoms‘𝐾)
5 dalem16.m . . . 4 = (meet‘𝐾)
6 dalem16.o . . . 4 𝑂 = (LPlanes‘𝐾)
7 dalem16.y . . . 4 𝑌 = ((𝑃 𝑄) 𝑅)
8 dalem16.z . . . 4 𝑍 = ((𝑆 𝑇) 𝑈)
9 eqid 2622 . . . 4 (𝑌 𝑍) = (𝑌 𝑍)
10 dalem16.f . . . 4 𝐹 = ((𝑅 𝑃) (𝑈 𝑆))
111, 2, 3, 4, 5, 6, 7, 8, 9, 10dalem12 34961 . . 3 (𝜑𝐹 (𝑌 𝑍))
1211adantr 481 . 2 ((𝜑𝑌𝑍) → 𝐹 (𝑌 𝑍))
13 dalem16.d . . . . . 6 𝐷 = ((𝑃 𝑄) (𝑆 𝑇))
141, 2, 3, 4, 5, 6, 7, 8, 9, 13dalem10 34959 . . . . 5 (𝜑𝐷 (𝑌 𝑍))
15 dalem16.e . . . . . 6 𝐸 = ((𝑄 𝑅) (𝑇 𝑈))
161, 2, 3, 4, 5, 6, 7, 8, 9, 15dalem11 34960 . . . . 5 (𝜑𝐸 (𝑌 𝑍))
171dalemkelat 34910 . . . . . 6 (𝜑𝐾 ∈ Lat)
181, 2, 3, 4, 5, 6, 7, 8, 13dalemdea 34948 . . . . . . 7 (𝜑𝐷𝐴)
19 eqid 2622 . . . . . . . 8 (Base‘𝐾) = (Base‘𝐾)
2019, 4atbase 34576 . . . . . . 7 (𝐷𝐴𝐷 ∈ (Base‘𝐾))
2118, 20syl 17 . . . . . 6 (𝜑𝐷 ∈ (Base‘𝐾))
221, 2, 3, 4, 5, 6, 7, 8, 15dalemeea 34949 . . . . . . 7 (𝜑𝐸𝐴)
2319, 4atbase 34576 . . . . . . 7 (𝐸𝐴𝐸 ∈ (Base‘𝐾))
2422, 23syl 17 . . . . . 6 (𝜑𝐸 ∈ (Base‘𝐾))
251, 6dalemyeb 34935 . . . . . . 7 (𝜑𝑌 ∈ (Base‘𝐾))
261dalemzeo 34919 . . . . . . . 8 (𝜑𝑍𝑂)
2719, 6lplnbase 34820 . . . . . . . 8 (𝑍𝑂𝑍 ∈ (Base‘𝐾))
2826, 27syl 17 . . . . . . 7 (𝜑𝑍 ∈ (Base‘𝐾))
2919, 5latmcl 17052 . . . . . . 7 ((𝐾 ∈ Lat ∧ 𝑌 ∈ (Base‘𝐾) ∧ 𝑍 ∈ (Base‘𝐾)) → (𝑌 𝑍) ∈ (Base‘𝐾))
3017, 25, 28, 29syl3anc 1326 . . . . . 6 (𝜑 → (𝑌 𝑍) ∈ (Base‘𝐾))
3119, 2, 3latjle12 17062 . . . . . 6 ((𝐾 ∈ Lat ∧ (𝐷 ∈ (Base‘𝐾) ∧ 𝐸 ∈ (Base‘𝐾) ∧ (𝑌 𝑍) ∈ (Base‘𝐾))) → ((𝐷 (𝑌 𝑍) ∧ 𝐸 (𝑌 𝑍)) ↔ (𝐷 𝐸) (𝑌 𝑍)))
3217, 21, 24, 30, 31syl13anc 1328 . . . . 5 (𝜑 → ((𝐷 (𝑌 𝑍) ∧ 𝐸 (𝑌 𝑍)) ↔ (𝐷 𝐸) (𝑌 𝑍)))
3314, 16, 32mpbi2and 956 . . . 4 (𝜑 → (𝐷 𝐸) (𝑌 𝑍))
3433adantr 481 . . 3 ((𝜑𝑌𝑍) → (𝐷 𝐸) (𝑌 𝑍))
351dalemkehl 34909 . . . . 5 (𝜑𝐾 ∈ HL)
3635adantr 481 . . . 4 ((𝜑𝑌𝑍) → 𝐾 ∈ HL)
371, 2, 3, 4, 5, 6, 7, 8, 13, 15dalemdnee 34952 . . . . . 6 (𝜑𝐷𝐸)
38 eqid 2622 . . . . . . 7 (LLines‘𝐾) = (LLines‘𝐾)
393, 4, 38llni2 34798 . . . . . 6 (((𝐾 ∈ HL ∧ 𝐷𝐴𝐸𝐴) ∧ 𝐷𝐸) → (𝐷 𝐸) ∈ (LLines‘𝐾))
4035, 18, 22, 37, 39syl31anc 1329 . . . . 5 (𝜑 → (𝐷 𝐸) ∈ (LLines‘𝐾))
4140adantr 481 . . . 4 ((𝜑𝑌𝑍) → (𝐷 𝐸) ∈ (LLines‘𝐾))
421, 2, 3, 4, 5, 38, 6, 7, 8, 9dalem15 34964 . . . 4 ((𝜑𝑌𝑍) → (𝑌 𝑍) ∈ (LLines‘𝐾))
432, 38llncmp 34808 . . . 4 ((𝐾 ∈ HL ∧ (𝐷 𝐸) ∈ (LLines‘𝐾) ∧ (𝑌 𝑍) ∈ (LLines‘𝐾)) → ((𝐷 𝐸) (𝑌 𝑍) ↔ (𝐷 𝐸) = (𝑌 𝑍)))
4436, 41, 42, 43syl3anc 1326 . . 3 ((𝜑𝑌𝑍) → ((𝐷 𝐸) (𝑌 𝑍) ↔ (𝐷 𝐸) = (𝑌 𝑍)))
4534, 44mpbid 222 . 2 ((𝜑𝑌𝑍) → (𝐷 𝐸) = (𝑌 𝑍))
4612, 45breqtrrd 4681 1 ((𝜑𝑌𝑍) → 𝐹 (𝐷 𝐸))
Colors of variables: wff setvar class
Syntax hints:  ¬ wn 3  wi 4  wb 196  wa 384  w3a 1037   = wceq 1483  wcel 1990  wne 2794   class class class wbr 4653  cfv 5888  (class class class)co 6650  Basecbs 15857  lecple 15948  joincjn 16944  meetcmee 16945  Latclat 17045  Atomscatm 34550  HLchlt 34637  LLinesclln 34777  LPlanesclpl 34778
This theorem was proved from axioms:  ax-mp 5  ax-1 6  ax-2 7  ax-3 8  ax-gen 1722  ax-4 1737  ax-5 1839  ax-6 1888  ax-7 1935  ax-8 1992  ax-9 1999  ax-10 2019  ax-11 2034  ax-12 2047  ax-13 2246  ax-ext 2602  ax-rep 4771  ax-sep 4781  ax-nul 4789  ax-pow 4843  ax-pr 4906  ax-un 6949
This theorem depends on definitions:  df-bi 197  df-or 385  df-an 386  df-3or 1038  df-3an 1039  df-tru 1486  df-ex 1705  df-nf 1710  df-sb 1881  df-eu 2474  df-mo 2475  df-clab 2609  df-cleq 2615  df-clel 2618  df-nfc 2753  df-ne 2795  df-ral 2917  df-rex 2918  df-reu 2919  df-rab 2921  df-v 3202  df-sbc 3436  df-csb 3534  df-dif 3577  df-un 3579  df-in 3581  df-ss 3588  df-nul 3916  df-if 4087  df-pw 4160  df-sn 4178  df-pr 4180  df-op 4184  df-uni 4437  df-iun 4522  df-br 4654  df-opab 4713  df-mpt 4730  df-id 5024  df-xp 5120  df-rel 5121  df-cnv 5122  df-co 5123  df-dm 5124  df-rn 5125  df-res 5126  df-ima 5127  df-iota 5851  df-fun 5890  df-fn 5891  df-f 5892  df-f1 5893  df-fo 5894  df-f1o 5895  df-fv 5896  df-riota 6611  df-ov 6653  df-oprab 6654  df-preset 16928  df-poset 16946  df-plt 16958  df-lub 16974  df-glb 16975  df-join 16976  df-meet 16977  df-p0 17039  df-lat 17046  df-clat 17108  df-oposet 34463  df-ol 34465  df-oml 34466  df-covers 34553  df-ats 34554  df-atl 34585  df-cvlat 34609  df-hlat 34638  df-llines 34784  df-lplanes 34785  df-lvols 34786
This theorem is referenced by:  dalem63  35021
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