| Step | 
						Hyp | 
						Ref | 
						Expression | 
					
						
							| 1 | 
							
								
							 | 
							cdlemef47.b | 
							⊢ 𝐵  =  ( Base ‘ 𝐾 )  | 
						
						
							| 2 | 
							
								
							 | 
							cdlemef47.l | 
							⊢  ≤   =  ( le ‘ 𝐾 )  | 
						
						
							| 3 | 
							
								
							 | 
							cdlemef47.j | 
							⊢  ∨   =  ( join ‘ 𝐾 )  | 
						
						
							| 4 | 
							
								
							 | 
							cdlemef47.m | 
							⊢  ∧   =  ( meet ‘ 𝐾 )  | 
						
						
							| 5 | 
							
								
							 | 
							cdlemef47.a | 
							⊢ 𝐴  =  ( Atoms ‘ 𝐾 )  | 
						
						
							| 6 | 
							
								
							 | 
							cdlemef47.h | 
							⊢ 𝐻  =  ( LHyp ‘ 𝐾 )  | 
						
						
							| 7 | 
							
								
							 | 
							cdlemef47.v | 
							⊢ 𝑉  =  ( ( 𝑄  ∨  𝑃 )  ∧  𝑊 )  | 
						
						
							| 8 | 
							
								
							 | 
							cdlemef47.n | 
							⊢ 𝑁  =  ( ( 𝑣  ∨  𝑉 )  ∧  ( 𝑃  ∨  ( ( 𝑄  ∨  𝑣 )  ∧  𝑊 ) ) )  | 
						
						
							| 9 | 
							
								
							 | 
							cdlemefs47.o | 
							⊢ 𝑂  =  ( ( 𝑄  ∨  𝑃 )  ∧  ( 𝑁  ∨  ( ( 𝑢  ∨  𝑣 )  ∧  𝑊 ) ) )  | 
						
						
							| 10 | 
							
								
							 | 
							cdlemef47.g | 
							⊢ 𝐺  =  ( 𝑎  ∈  𝐵  ↦  if ( ( 𝑄  ≠  𝑃  ∧  ¬  𝑎  ≤  𝑊 ) ,  ( ℩ 𝑐  ∈  𝐵 ∀ 𝑢  ∈  𝐴 ( ( ¬  𝑢  ≤  𝑊  ∧  ( 𝑢  ∨  ( 𝑎  ∧  𝑊 ) )  =  𝑎 )  →  𝑐  =  ( if ( 𝑢  ≤  ( 𝑄  ∨  𝑃 ) ,  ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) ) ,  ⦋ 𝑢  /  𝑣 ⦌ 𝑁 )  ∨  ( 𝑎  ∧  𝑊 ) ) ) ) ,  𝑎 ) )  | 
						
						
							| 11 | 
							
								
							 | 
							simp11 | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 ) )  | 
						
						
							| 12 | 
							
								
							 | 
							simp13 | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  | 
						
						
							| 13 | 
							
								
							 | 
							simp12 | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 ) )  | 
						
						
							| 14 | 
							
								
							 | 
							simp2 | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 ) )  | 
						
						
							| 15 | 
							
								
							 | 
							simp3 | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  𝑋  ≤  𝑌 )  | 
						
						
							| 16 | 
							
								
							 | 
							vex | 
							⊢ 𝑢  ∈  V  | 
						
						
							| 17 | 
							
								
							 | 
							eqid | 
							⊢ ( ( 𝑢  ∨  𝑉 )  ∧  ( 𝑃  ∨  ( ( 𝑄  ∨  𝑢 )  ∧  𝑊 ) ) )  =  ( ( 𝑢  ∨  𝑉 )  ∧  ( 𝑃  ∨  ( ( 𝑄  ∨  𝑢 )  ∧  𝑊 ) ) )  | 
						
						
							| 18 | 
							
								8 17
							 | 
							cdleme31sc | 
							⊢ ( 𝑢  ∈  V  →  ⦋ 𝑢  /  𝑣 ⦌ 𝑁  =  ( ( 𝑢  ∨  𝑉 )  ∧  ( 𝑃  ∨  ( ( 𝑄  ∨  𝑢 )  ∧  𝑊 ) ) ) )  | 
						
						
							| 19 | 
							
								16 18
							 | 
							ax-mp | 
							⊢ ⦋ 𝑢  /  𝑣 ⦌ 𝑁  =  ( ( 𝑢  ∨  𝑉 )  ∧  ( 𝑃  ∨  ( ( 𝑄  ∨  𝑢 )  ∧  𝑊 ) ) )  | 
						
						
							| 20 | 
							
								
							 | 
							eqid | 
							⊢ ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) )  =  ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) )  | 
						
						
							| 21 | 
							
								
							 | 
							eqid | 
							⊢ if ( 𝑢  ≤  ( 𝑄  ∨  𝑃 ) ,  ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) ) ,  ⦋ 𝑢  /  𝑣 ⦌ 𝑁 )  =  if ( 𝑢  ≤  ( 𝑄  ∨  𝑃 ) ,  ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) ) ,  ⦋ 𝑢  /  𝑣 ⦌ 𝑁 )  | 
						
						
							| 22 | 
							
								
							 | 
							eqid | 
							⊢ ( ℩ 𝑐  ∈  𝐵 ∀ 𝑢  ∈  𝐴 ( ( ¬  𝑢  ≤  𝑊  ∧  ( 𝑢  ∨  ( 𝑎  ∧  𝑊 ) )  =  𝑎 )  →  𝑐  =  ( if ( 𝑢  ≤  ( 𝑄  ∨  𝑃 ) ,  ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) ) ,  ⦋ 𝑢  /  𝑣 ⦌ 𝑁 )  ∨  ( 𝑎  ∧  𝑊 ) ) ) )  =  ( ℩ 𝑐  ∈  𝐵 ∀ 𝑢  ∈  𝐴 ( ( ¬  𝑢  ≤  𝑊  ∧  ( 𝑢  ∨  ( 𝑎  ∧  𝑊 ) )  =  𝑎 )  →  𝑐  =  ( if ( 𝑢  ≤  ( 𝑄  ∨  𝑃 ) ,  ( ℩ 𝑏  ∈  𝐵 ∀ 𝑣  ∈  𝐴 ( ( ¬  𝑣  ≤  𝑊  ∧  ¬  𝑣  ≤  ( 𝑄  ∨  𝑃 ) )  →  𝑏  =  𝑂 ) ) ,  ⦋ 𝑢  /  𝑣 ⦌ 𝑁 )  ∨  ( 𝑎  ∧  𝑊 ) ) ) )  | 
						
						
							| 23 | 
							
								1 2 3 4 5 6 7 19 8 9 20 21 22 10
							 | 
							cdleme32le | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  ( 𝐺 ‘ 𝑋 )  ≤  ( 𝐺 ‘ 𝑌 ) )  | 
						
						
							| 24 | 
							
								11 12 13 14 15 23
							 | 
							syl311anc | 
							⊢ ( ( ( ( 𝐾  ∈  HL  ∧  𝑊  ∈  𝐻 )  ∧  ( 𝑃  ∈  𝐴  ∧  ¬  𝑃  ≤  𝑊 )  ∧  ( 𝑄  ∈  𝐴  ∧  ¬  𝑄  ≤  𝑊 ) )  ∧  ( 𝑋  ∈  𝐵  ∧  𝑌  ∈  𝐵 )  ∧  𝑋  ≤  𝑌 )  →  ( 𝐺 ‘ 𝑋 )  ≤  ( 𝐺 ‘ 𝑌 ) )  |