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Mirrors > Home > MPE Home > Th. List > lspprcl | Structured version Visualization version GIF version |
Description: The span of a pair is a subspace (frequently used special case of lspcl 20853). (Contributed by NM, 11-Apr-2015.) |
Ref | Expression |
---|---|
lspval.v | ⊢ 𝑉 = (Base‘𝑊) |
lspval.s | ⊢ 𝑆 = (LSubSp‘𝑊) |
lspval.n | ⊢ 𝑁 = (LSpan‘𝑊) |
lspprcl.w | ⊢ (𝜑 → 𝑊 ∈ LMod) |
lspprcl.x | ⊢ (𝜑 → 𝑋 ∈ 𝑉) |
lspprcl.y | ⊢ (𝜑 → 𝑌 ∈ 𝑉) |
Ref | Expression |
---|---|
lspprcl | ⊢ (𝜑 → (𝑁‘{𝑋, 𝑌}) ∈ 𝑆) |
Step | Hyp | Ref | Expression |
---|---|---|---|
1 | lspprcl.w | . 2 ⊢ (𝜑 → 𝑊 ∈ LMod) | |
2 | lspprcl.x | . . 3 ⊢ (𝜑 → 𝑋 ∈ 𝑉) | |
3 | lspprcl.y | . . 3 ⊢ (𝜑 → 𝑌 ∈ 𝑉) | |
4 | 2, 3 | prssd 4821 | . 2 ⊢ (𝜑 → {𝑋, 𝑌} ⊆ 𝑉) |
5 | lspval.v | . . 3 ⊢ 𝑉 = (Base‘𝑊) | |
6 | lspval.s | . . 3 ⊢ 𝑆 = (LSubSp‘𝑊) | |
7 | lspval.n | . . 3 ⊢ 𝑁 = (LSpan‘𝑊) | |
8 | 5, 6, 7 | lspcl 20853 | . 2 ⊢ ((𝑊 ∈ LMod ∧ {𝑋, 𝑌} ⊆ 𝑉) → (𝑁‘{𝑋, 𝑌}) ∈ 𝑆) |
9 | 1, 4, 8 | syl2anc 583 | 1 ⊢ (𝜑 → (𝑁‘{𝑋, 𝑌}) ∈ 𝑆) |
Colors of variables: wff setvar class |
Syntax hints: → wi 4 = wceq 1534 ∈ wcel 2099 ⊆ wss 3944 {cpr 4626 ‘cfv 6542 Basecbs 17173 LModclmod 20736 LSubSpclss 20808 LSpanclspn 20848 |
This theorem was proved from axioms: ax-mp 5 ax-1 6 ax-2 7 ax-3 8 ax-gen 1790 ax-4 1804 ax-5 1906 ax-6 1964 ax-7 2004 ax-8 2101 ax-9 2109 ax-10 2130 ax-11 2147 ax-12 2164 ax-ext 2698 ax-rep 5279 ax-sep 5293 ax-nul 5300 ax-pow 5359 ax-pr 5423 ax-un 7734 ax-cnex 11188 ax-resscn 11189 ax-1cn 11190 ax-icn 11191 ax-addcl 11192 ax-addrcl 11193 ax-mulcl 11194 ax-mulrcl 11195 ax-mulcom 11196 ax-addass 11197 ax-mulass 11198 ax-distr 11199 ax-i2m1 11200 ax-1ne0 11201 ax-1rid 11202 ax-rnegex 11203 ax-rrecex 11204 ax-cnre 11205 ax-pre-lttri 11206 ax-pre-lttrn 11207 ax-pre-ltadd 11208 ax-pre-mulgt0 11209 |
This theorem depends on definitions: df-bi 206 df-an 396 df-or 847 df-3or 1086 df-3an 1087 df-tru 1537 df-fal 1547 df-ex 1775 df-nf 1779 df-sb 2061 df-mo 2529 df-eu 2558 df-clab 2705 df-cleq 2719 df-clel 2805 df-nfc 2880 df-ne 2936 df-nel 3042 df-ral 3057 df-rex 3066 df-rmo 3371 df-reu 3372 df-rab 3428 df-v 3471 df-sbc 3775 df-csb 3890 df-dif 3947 df-un 3949 df-in 3951 df-ss 3961 df-pss 3963 df-nul 4319 df-if 4525 df-pw 4600 df-sn 4625 df-pr 4627 df-op 4631 df-uni 4904 df-int 4945 df-iun 4993 df-br 5143 df-opab 5205 df-mpt 5226 df-tr 5260 df-id 5570 df-eprel 5576 df-po 5584 df-so 5585 df-fr 5627 df-we 5629 df-xp 5678 df-rel 5679 df-cnv 5680 df-co 5681 df-dm 5682 df-rn 5683 df-res 5684 df-ima 5685 df-pred 6299 df-ord 6366 df-on 6367 df-lim 6368 df-suc 6369 df-iota 6494 df-fun 6544 df-fn 6545 df-f 6546 df-f1 6547 df-fo 6548 df-f1o 6549 df-fv 6550 df-riota 7370 df-ov 7417 df-oprab 7418 df-mpo 7419 df-om 7865 df-1st 7987 df-2nd 7988 df-frecs 8280 df-wrecs 8311 df-recs 8385 df-rdg 8424 df-er 8718 df-en 8958 df-dom 8959 df-sdom 8960 df-pnf 11274 df-mnf 11275 df-xr 11276 df-ltxr 11277 df-le 11278 df-sub 11470 df-neg 11471 df-nn 12237 df-2 12299 df-sets 17126 df-slot 17144 df-ndx 17156 df-base 17174 df-plusg 17239 df-0g 17416 df-mgm 18593 df-sgrp 18672 df-mnd 18688 df-grp 18886 df-minusg 18887 df-sbg 18888 df-mgp 20068 df-ur 20115 df-ring 20168 df-lmod 20738 df-lss 20809 df-lsp 20849 |
This theorem is referenced by: lspprid1 20874 lspprvacl 20876 lsmelpr 20969 lspexch 21010 lspindpi 21013 lsppratlem4 21031 lsatfixedN 38470 dvh3dim2 40910 dvh3dim3N 40911 lclkrlem2v 40990 lcfrlem23 41027 lcfrlem25 41029 mapdindp 41133 baerlem3lem1 41169 baerlem5alem1 41170 baerlem5blem1 41171 baerlem5amN 41178 baerlem5bmN 41179 baerlem5abmN 41180 mapdh6aN 41197 mapdh6b0N 41198 mapdh6iN 41206 lspindp5 41232 mapdh8ab 41239 mapdh8ad 41241 mapdh8e 41246 mapdh9a 41251 mapdh9aOLDN 41252 hdmap1l6a 41271 hdmap1l6b0N 41272 hdmap1l6i 41280 hdmap1eulemOLDN 41285 hdmapval0 41295 hdmapval3lemN 41299 hdmap10lem 41301 hdmap11lem1 41303 hdmap11lem2 41304 hdmap14lem11 41340 |
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