The story here is that I never watched a video for intuitive F2L because they were all too long. I find that I learn better from videos, but I’m also. F2L (First 2 Layers) is a way of continuing after solving the cross. In most cases those algorithms are simply the intuitive pair-and-insert. The name CFOP comes from the steps involved (Cross, F2L, OLL, PLL), and you . Rather than relying on a big table of algorithms, F2L is best done intuitively.
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This practise is called lookaheadand is vital if you want to achieve solve times under 20 seconds.
Fridrich (CFOP) Method
Forums New posts Search forums. But sometimes it can be advantageous to disturb unsolved spaces by choosing a space to build your corner-edge pair that also assists the creation of the next pair. Smiles Member Jul 4, In this situation, the first algorithm uses the empty space between the red and blue faces to move the red-blue edge piece so it can be easily paired and inserted.
There are, however, some more optimal algorithms. The important part of F2L is being able to solve each of the pairs without affecting any of the other previously solved pairs.
A common system is using the Fridrich method first two layer approach. Something else uttorial bear in mind is that you don’t always need to put the edge pieces in the correct place straight away. To this end, the vast majority of the algorithms on this page are comprised of many Rs and Us, as they are easy to perform sorry lefties. In order to reduce this step into bite-sized chunks which can be recognised and executed quickly, the step is split into four parts:. In general the 1x2x2 block should always come before its connecting 1x1x2 block, otherwise more moves will be required later.
Intuitive F2L Tutorial in 6 Minutes + Example | SpeedSolving Puzzles Community
PLL gets the same treatment, tktorial we’ll be permuting the corners first and then the edges. This advice applies tutrial all of steps in this guide, but it is most important during F2L and step 1, the cross.
Cross cube state Next state: When my sister ttuorial to learn f2l I just sent her this video. Just like with the happy red-green pieces before, sometimes you will come to an F2L situation that you’ve solved many times, but solve it in a different way because you want to set up the next F2L pair for easy solving.
If one or both pieces are stuck in another slot, you can simply move them out by inserting random pieces from the top layer into that slot.
To do this, 2fl need to look for ‘headlights’ – a face where both top layer corners are the same colour presumably named due to their resemblance to the headlights of a car.
After solving the cross, a corner-edge pair is paired up form pairand then inserted into the correct slot pair insertion. This doesn’t disturb any of the other F2L spaces, but you can see that the red-green pieces are looking rather unsolved and unhappy.
However, the second algorithm is much faster to perform, as it is essentially the same few moves performed three times. You are currently viewing our forum as a guest which gives you limited access to join discussions and access our other features. I have not had time to make sure all these moves are correct. Instead, a tutoriial U’ before the algorithm means that when you then pair the red-blue corner and edge piece, you avoid affecting the blue-orange pair.
They are for after you get the basics down so don’t read these until after you do. They are applicable to all F2L slots when reflected accordingly. SpeedsolvingFMC Previous state: This is for the same ttuorial as the cross in step 1 – you need to be able to look at the cube and produce an tuhorial way of solving each F2L pair.
Intuitive F2L Tutorial in 6 Minutes + Example
Where there is a strong preference for one hand, cube rotations such as z for left-hand blocks can sometimes make algorithm execution easier. Because all edges are now oriented it is possible to complete this stage using just R, U and L moves.
In most cases those algorithms are simply the intuitive pair-and-insert procedure optimized with moves such as x, y, d, etc. I sincerely hope that you have enjoyed this introduction to speedcubing, a hobby that I and many others enjoy very much. Deliberately leaving a slot open can improve efficiency and is a useful technique for improving lookahead. Fortunately, there is a huge algorithm database for your perusal, where you can find the perfect algorithms for you.
Constructing the 1x1x2 blocks is usually done by connecting them in the U layer, hutorial a similar manner to Fridrich F2L.
The moves are based solely on intuition, gutorial algorithms are not required. This database is part of the speedsolving. There are five such cases that you should learn the algorithmic solution for, and they’re all in this nice little table:. I have found that the next step F2L is a huge help for people to understand how to move cubies to where they want them, a skill that they can later use when returning to the cross.
Because it was taken already, that’s why.
F2L Algorithms – CFOP SpeedSolving F2L #41 Cases
The first algorithm either requires you to shift your hand position to twist the F face or start using some peculiar thumb movements. However, there are no cube rotations, and only L, R and U moves are used.
Not only will it help you speed up whenever you find yourself with a dot on the last layer, but when you see this algorithm again during proper 1-look OLL, you’ll feel all smug because you already know it. Instead, the pieces that do get affected are ones you don’t care about, as they were occupying the space that you want to put the red-blue pair into. At this pace, you remove the temptation to focus only on the pieces that you are currently applying an algorithm to, and you can easily be looking at the rest of the cube to find the next F2L pair.
Or you can check the advanced F2L section. It simply solves each piece relative to each otherand then places them in one go.
Algorithm helper Toggle algorithm helper. This completes the cube, which you probably know looks like this:. Retrieved from ” https: Otherwise, they will only confuse you!
But now you’re tutprial. Have a go on your cube, and see if you can work out how to solve any of the pairs.