Difference between revisions of "CxLL Pi U"

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== Pi U ==
 
== Pi U ==
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Most algorithms that solves [[OLL#OLL 22|OLL 22]] can be used for this COLL, same goes for CLL but then also [[OLL#OLL 2|OLL 2]], [[OLL#OLL 47|OLL 47-50]] and [[OLL#OLL 51|OLL 51-52]] may be useful.
  
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Because of the symetry of this case most algorithms given also has got mirrors that can be used to solve the case.
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<br><hr>
 
{|  
 
{|  
|| [[image:CxLL Pi U imp.jpg|80px|]]
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|| [[image:CxLL Pi U imp.jpg|128px|]]
| valign="top"| Text describing recognition for the case...
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| valign="top"| As for all Pi cases you only look at the stickers in the U-face. Here it is two of the same colour in a bar at the side where two corners are pointing away from each other and on the side where the corners are pointing in the same direction the bar has got opposite colours.
 
|}
 
|}
  
 
===COLL===
 
===COLL===
(y) R U2 R2 U' R2 U' R2 U2 R <br>
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* (y) R U2 R2 U' R2 U' R2 U2 R ... the standard [[OLL]] for this case, ([[Bruno]]).
(y') F U R U' R' F2 L' U' L U F
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* (y') F U R U' R' F2 L' U' L U F
  
 
===CLL===
 
===CLL===
(y') F U R  U' R' U R U' R' F' <br>
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* (y') F U R  U' R' U R U' R' F'
(y) F R U R' U' R U R' U' F'
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* (y) F R U R' U' R U R' U' F'
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* (y') R' F R2 F' U2 F' U2 F R'
  
 
===CMLL===
 
===CMLL===
R U R' l' U' L r F U2 F' U R'
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* R U (R' l') U' (L r) F U2 F' U R'
  
===CF / 2x2x2===
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===CLLEF===
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* r' U' r U2 r' U2 R U2 R' U r ... ([[Bruno]]) from B using double layer moves
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* y F R U R' U' F' f R U R' U' f'
  
===Ortega===
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===CF / 2x2x2 (Waterman)===
See [[CxLL Pi O|Pi]]
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* ...
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===EG===
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'''EG 2''' --> 2x2x2
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'''EG 1'''
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* R U B2 R2 U' B2 U' B'
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* R U (R' L') U' (L R) U L U2 (L' R')
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* R U Ra' U' Ra U L U2 Ra' ... same but Ra notation
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* R U R' F' R U2 R' F' U2 F
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'''EG 0'''
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* ...
  
 
==Navigator==
 
==Navigator==
 
{{CxLLnav}}
 
{{CxLLnav}}

Latest revision as of 20:32, 16 January 2010

Pi U

Most algorithms that solves OLL 22 can be used for this COLL, same goes for CLL but then also OLL 2, OLL 47-50 and OLL 51-52 may be useful.

Because of the symetry of this case most algorithms given also has got mirrors that can be used to solve the case.



CxLL Pi U imp.jpg As for all Pi cases you only look at the stickers in the U-face. Here it is two of the same colour in a bar at the side where two corners are pointing away from each other and on the side where the corners are pointing in the same direction the bar has got opposite colours.

COLL

  • (y) R U2 R2 U' R2 U' R2 U2 R ... the standard OLL for this case, (Bruno).
  • (y') F U R U' R' F2 L' U' L U F

CLL

  • (y') F U R U' R' U R U' R' F'
  • (y) F R U R' U' R U R' U' F'
  • (y') R' F R2 F' U2 F' U2 F R'

CMLL

  • R U (R' l') U' (L r) F U2 F' U R'

CLLEF

  • r' U' r U2 r' U2 R U2 R' U r ... (Bruno) from B using double layer moves
  • y F R U R' U' F' f R U R' U' f'

CF / 2x2x2 (Waterman)

  • ...

EG

EG 2 --> 2x2x2

EG 1

  • R U B2 R2 U' B2 U' B'
  • R U (R' L') U' (L R) U L U2 (L' R')
  • R U Ra' U' Ra U L U2 Ra' ... same but Ra notation
  • R U R' F' R U2 R' F' U2 F

EG 0

  • ...

Navigator

CxLL
edit
CxLL O U.jpg
U
CxLL O D.jpg
D
CxLL O R.jpg
R
CxLL O L.jpg
L
CxLL O F.jpg
F
CxLL O B.jpg
B
CxLL U.jpg
U
CxLL U U.jpg
U U
CxLL U D.jpg
U D
CxLL U R.jpg
U R
CxLL U L.jpg
U L
CxLL U F.jpg
U F
CxLL U B.jpg
U B
CxLL T.jpg
T
CxLL T U.jpg
T U
CxLL T D.jpg
T D
CxLL T R.jpg
T R
CxLL T L.jpg
T L
CxLL T F.jpg
T F
CxLL T B.jpg
T B
CxLL L.jpg
L
CxLL L U.jpg
L U
CxLL L D.jpg
L D
CxLL L R.jpg
L R
CxLL L L.jpg
L L
CxLL L F.jpg
L F
CxLL L B.jpg
L B
CxLL S.jpg
S
CxLL aS U.jpg
S U
CxLL aS D.jpg
S D
CxLL aS R.jpg
S R
CxLL aS L.jpg
S L
CxLL aS F.jpg
S F
CxLL aS B.jpg
S B
CxLL aS.jpg
-S
CxLL S U.jpg
-S U
CxLL S D.jpg
-S D
CxLL S R.jpg
-S R
CxLL S L.jpg
-S L
CxLL S F.jpg
-S F
CxLL S B.jpg
-S B
CxLL Pi.jpg
Pi
CxLL Pi U imp.jpg
Pi U
CxLL pi D.jpg
Pi D
CxLL pi R.jpg
Pi R
CxLL pi L.jpg
Pi L
CxLL pi F.jpg
Pi F
CxLL pi B.jpg
Pi B
CxLL H.jpg
H
CxLL H U.jpg
H U
CxLL H D.jpg
H D
CxLL H R.jpg
H R
CxLL H L.jpg
H L
CxLL H F.jpg
H F
CxLL H B.jpg
H B
Hyper CLL
edit
CxLL O U.jpg
U
CxLL O D.jpg
D
CxLL O R.jpg
R
CxLL O L.jpg
L
CxLL O F.jpg
F
CxLL O B.jpg
B
Hyper CxLL U O.jpg
U
Hyper CxLL U U.jpg
U U
Hyper CxLL U D.jpg
U D
Hyper CxLL U R.jpg
U R
Hyper CxLL U L.jpg
U L
Hyper CxLL U F.jpg
U F
Hyper CxLL U B.jpg
U B
Hyper CxLL T O.jpg
T
Hyper CxLL T U.jpg
T U
Hyper CxLL T D.jpg
T D
Hyper CxLL T R.jpg
T R
Hyper CxLL T L.jpg
T L
Hyper CxLL T F.jpg
T F
Hyper CxLL T B.jpg
T B
Hyper CxLL L O.jpg
L
Hyper CxLL L U.jpg
L U
Hyper CxLL L D.jpg
L D
Hyper CxLL L R.jpg
L R
Hyper CxLL L L.jpg
L L
Hyper CxLL L F.jpg
L F
Hyper CxLL L B.jpg
L B
Hyper CxLL S O.jpg
S
Hyper CxLL S U.jpg
S U
Hyper CxLL S D.jpg
S D
Hyper CxLL S R.jpg
S R
Hyper CxLL S L.jpg
S L
Hyper CxLL S F.jpg
S F
Hyper CxLL S B.jpg
S B
Hyper CxLL aS O.jpg
-S
Hyper CxLL aS U.jpg
-S U
Hyper CxLL aS D.jpg
-S D
Hyper CxLL aS R.jpg
-S R
Hyper CxLL aS L.jpg
-S L
Hyper CxLL aS F.jpg
-S F
Hyper CxLL aS B.jpg
-S B
Hyper CxLL Pi O.jpg
Pi
Hyper CxLL Pi U.jpg
Pi U
Hyper CxLL Pi D.jpg
Pi D
Hyper CxLL Pi R.jpg
Pi R
Hyper CxLL Pi L.jpg
Pi L
Hyper CxLL Pi F.jpg
Pi F
Hyper CxLL Pi B.jpg
Pi B
Hyper CxLL H O.jpg
H
Hyper CxLL H U.jpg
H U
Hyper CxLL H D.jpg
H D
Hyper CxLL H R.jpg
H R
Hyper CxLL H L.jpg
H L
Hyper CxLL H F.jpg
H F
Hyper CxLL H B.jpg
H B