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− | + | =Tips for solving the pentachoron with edge length 3= | |
− | + | You can solve the 5 face pieces (4 differently colored octahedra) without the need of macros or commutators. The 5 four-colored corners can be solved only using slice 3 twists. Finally comes the hard part, solving the 10 three-colored edge pieces. | |
− | + | ||
− | Most commutators of 2- | + | Most commutators of 2-slice twists only have effects on the edge pieces. With that you can place all edge pieces in their correct location, possibly flipped. |
− | With that you can place all | + | |
− | After that the two macros of Matthiew "flip" and "turn" are very helpfull. | + | After that the two macros of Matthiew "flip" and "turn" are very helpfull in properly orienting the edge pieces. |
Here is an illustration of these macros, their references r1 to r3 and their effect. | Here is an illustration of these macros, their references r1 to r3 and their effect. |
Revision as of 21:12, 16 February 2011
Tips for solving the pentachoron with edge length 3
You can solve the 5 face pieces (4 differently colored octahedra) without the need of macros or commutators. The 5 four-colored corners can be solved only using slice 3 twists. Finally comes the hard part, solving the 10 three-colored edge pieces.
Most commutators of 2-slice twists only have effects on the edge pieces. With that you can place all edge pieces in their correct location, possibly flipped.
After that the two macros of Matthiew "flip" and "turn" are very helpfull in properly orienting the edge pieces.
Here is an illustration of these macros, their references r1 to r3 and their effect.
and here is the macro file macro.