Difference between revisions of "OLL cube state"

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* A previous state of this one is the [[F2L-1CO cube state]]. Use the [[I, Im, OCLL]] step to have the '''LL:EO+CO cube state''', as in the [[PetRock method]].
 
* A previous state of this one is the [[F2L-1CO cube state]]. Use the [[I, Im, OCLL]] step to have the '''LL:EO+CO cube state''', as in the [[PetRock method]].
  
* A previous state of this one is the [[Oriented + Belt cube state]]. Use the [[1x2x3 on D -> 1x3x3 on D]] step to have the '''LL:EO+CO cube state''', as in the [[LCBM method]].
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* A previous state of this one is the [[Oriented + Belt cube state]]. Use the [[1x2x3 on D to 1x3x3 on D]] step to have the '''LL:EO+CO cube state''', as in the [[LCBM method]].
  
 
* A previous state of this one is the [[F2L-1 + pair + EO cube state]]. Use the [[Winter Varition]] step to have the '''LL:EO+CO cube state'''.
 
* A previous state of this one is the [[F2L-1 + pair + EO cube state]]. Use the [[Winter Varition]] step to have the '''LL:EO+CO cube state'''.
  
* A previous state of this one is the [[LL:EO cube state]]. Use the [[CO Ignore perm]] step to have the '''LL:EO+CO cube state'''.
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[[Image:ZBLL.png|120px|link=CO Ignore perm]] * A previous state of this one is the [[LL:EO cube state]]. Use the [[CO Ignore perm]] step to have the '''LL:EO+CO cube state'''.
  
* A previous state of this one is the [[LL:EO cube state]]. Use the [[OCLL]] (also called [[OLL-C]]) step to have the '''LL:EO+CO cube state'''.
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[[Image:ZBLL.png|120px|link=OCLL]] * A previous state of this one is the [[LL:EO cube state]]. Use the [[OCLL]] (also called [[OLL-C]]) step to have the '''LL:EO+CO cube state'''.
  
* A previous state of this one is the [[LL:EO cube state]]. Use the [[Compound OLL-E]] step to have the '''LL:EO+CO cube state''', as in the [[XG Method]].
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[[Image:ZBLL.png|120px|link=Compound OLL-E]] * A previous state of this one is the [[LL:EO cube state]]. Use the [[Compound OLL-E]] step to have the '''LL:EO+CO cube state''', as in the [[XG Method]].
  
* A previous state of this one is the [[LL:EO cube state]]. Use the [[OL4C]] (also called [[OLC]]) step to have the '''LL:EO+CO cube state'''.
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[[Image:ZBLL.png|120px|link=OL4C]] * A previous state of this one is the [[LL:EO cube state]]. Use the [[OL4C]] (also called [[OLC]]) step to have the '''LL:EO+CO cube state'''.
  
* A previous state of this one is the [[LL:EO cube state]]. Use the [[OCLL-EPP]] step to have the '''LL:EO+CO cube state'''.
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[[Image:ZBLL.png|120px|link=OCLL-EPP]] * A previous state of this one is the [[LL:EO cube state]]. Use the [[OCLL-EPP]] step to have the '''LL:EO+CO cube state'''.
  
 
* A previous state of this one is the [[BarOLL cube state]]. Use the [[OCLL (BarOLL subs)]] step to have the '''LL:EO+CO cube state'''.
 
* A previous state of this one is the [[BarOLL cube state]]. Use the [[OCLL (BarOLL subs)]] step to have the '''LL:EO+CO cube state'''.
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* A previous state of this one is the [[F2L-1E (D) + EO cube state]]. Use the [[ELLC]] step to have the '''LL:EO+CO cube state''', as in the [[JTLE]] method.
 
* A previous state of this one is the [[F2L-1E (D) + EO cube state]]. Use the [[ELLC]] step to have the '''LL:EO+CO cube state''', as in the [[JTLE]] method.
  
* A previous state of this one is the [[Solvable with coupled R->R', U, Uw cube state]]. Use the [[Finish F2L(elrog OddF2L_EO)]] step to have the '''LL:EO+CO cube state'''.
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* A previous state of this one is the [[Solvable with coupled R-R', U, Uw cube state]]. Use the [[Finish F2L(elrog OddF2L_EO)]] step to have the '''LL:EO+CO cube state'''.
  
 
* A previous state of this one is the [[1x2x3 + OffBelt + Oriented D and U cube state]]. Use the [[F2L from 1x2x3 + OB + OU + OD]] step to have the '''LL:EO+CO cube state'''.
 
* A previous state of this one is the [[1x2x3 + OffBelt + Oriented D and U cube state]]. Use the [[F2L from 1x2x3 + OB + OU + OD]] step to have the '''LL:EO+CO cube state'''.

Revision as of 19:40, 5 February 2015

LL:EO+CO
OLLinfo.png
Information
Alt Names: OLL done
Subgroup:
Subgroup for edges:
Subgroup for corners:
Previous substeps (methods):
Next substeps (methods):
Steps before PLL (as OLL)

Steps before PLL (as OLL) -> LL:EO+CO cube state -> Steps after OLL (as PLL)


The LL:EO+CO cube state is the cube state between the Steps before PLL (as OLL) and the Steps after OLL (as PLL).

Steps after OLL (as PLL)

Previous Steps

OLLinfo.png * A previous state of this one is the F2L cube state. Use the OLL step to have the LL:EO+CO cube state, as in the CFOP method.

OLLinfo.png * A previous state of this one is the F2L cube state. Use the SuneOLL step to have the LL:EO+CO cube state.

OLLinfo.png * A previous state of this one is the F2L cube state. Use the 2-Look OLL step to have the LL:EO+CO cube state.

OLLinfo.png * A previous state of this one is the F2L cube state. Use the Compound OLL step to have the LL:EO+CO cube state.

OLLinfo.png * A previous state of this one is the F2L cube state. Use the SVOLL step to have the LL:EO+CO cube state.

OLLinfo.png * A previous state of this one is the F2L cube state. Use the 22LL (x2) step to have the LL:EO+CO cube state.

ZBLL.png * A previous state of this one is the LL:EO cube state. Use the CO Ignore perm step to have the LL:EO+CO cube state.

ZBLL.png * A previous state of this one is the LL:EO cube state. Use the OCLL (also called OLL-C) step to have the LL:EO+CO cube state.

ZBLL.png * A previous state of this one is the LL:EO cube state. Use the Compound OLL-E step to have the LL:EO+CO cube state, as in the XG Method.

ZBLL.png * A previous state of this one is the LL:EO cube state. Use the OL4C (also called OLC) step to have the LL:EO+CO cube state.

ZBLL.png * A previous state of this one is the LL:EO cube state. Use the OCLL-EPP step to have the LL:EO+CO cube state.

  • A previous state of this one is the LL:CO cube state. Use the EOLL step to have the LL:EO+CO cube state.
  • A previous state of this one is the F2L-1 cube state. Use one of the 8042 Full OLS algs, depending of the case to have the LL:EO+CO cube state.

Next Steps

PLLinfo.jpg * Use the PLL step to have the Solved cube state, as in the CFOP method.

  • Many others
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