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0:00 Pin orders 2:01 AUF skips 5:24 Basic corner skips 7:44 Forcing multiple corner skips 13:02 Parity 21:19 Slash skips 22:56 Misc 26:31 Example Solve Edge influencing tutorial: • How to Influence Edges on Clock Original parity proposal: • Clock has Parity?? (real) Corner skip table: UL: lefty cs (must not use D, must align UL to DR) pcs1 (must use D, must align UL to DR) UR: pcs1 (any order works) DR: righty cs (must not use L) pcs1 (must use L) DL: lefty cs (must use D with the down order) righty cs (must use L with the side order) lefty pcs (must use the down order) righty pcs (must use the side order) pcs1 (must use default order, can also do D and/or L) DL/UL: half cap skip on L (must not use L) pseudo half cap skip on L (must use L) DL/DR: half cap skip on D (must not use D, must align UL to DR) pseudo half cap skip on D (must use D, must align UL to DR) DL influencing: Let's say the dcsv are (x,y,z,w). Then the DL corner moves by the following distances (if the DL pin is UP for the AUF move): down order: w - x side order: w - y default order: w - z Some notes: when I say "the difference between X and Y" I generally mean "from X to Y" and not "X minus Y" monke skips are also possible from the other two angles by using the following pin orders: DR L UR U (hold the three participating edges on the right) D UL UR R (hold the three participating edges on the top) acs prediction only works if you preserve one corner, i.e. the pin order on the first side doesn't use any D or L move acsv for the line case are easy: UL and DL are moved by the value of L, UR and DR are moved by the value of R half cap skips are also possible on UR but the calculations are annoying and they require very specific pin orders, so they're probably not viable Ideas and techniques by Johanna Szczesny, Konstantin Jaehne and Luis Kleinheinz.