

An Algorithm (algo for short) is a sequence of moves thatĬauses certain pieces on the cube to move or rotate in certain ways. In the diagrams I use for examples, I will use the following face positions:Ĭube Notation is basically the language of algorithms. Just remember that the bottom face isn’t B or else you’ll have 2 B faces. The bottom is D for Down face.Īnd the back face is B for Back. R standing for Right and L standing for Left. The cube faces on the right and left side of the cube are the R and L faces.

Now if you hold your cube strait in front of your face, the face of the cube directly in front of you is called the F face, which stands for Front. If you can already solve a 3×3 Rubik’s cube or are familiar with notation and face names, then you can skip this part.įace names are very simple to understand and they let you know which face to turn while reading cube notation.
RUBIX CUBE FLIP SIDE PIECE HOW TO
Before we start getting into solving the first layer, there are some important things you should learn like how to read cube notation and learning the names of the faces on the cube. This may sound very confusing to you (or not make sense at all) but don’t worry, everything will be explained in theįollowing pages. So first, you solve the first layer, then you orient the last layer, then you permute the last layer. This tutorial uses the same method used in the “Ryan’s Guild to Speed Cubing” except without any steps involving edges.

When a 2×2 cube is solved, the colour scheme will always remain the same no matter how many times you solve.It’s recommended that you read (or at least look over) the “Ryan’s Guild to Speed Cubing” before reading this due to the fact that the method and algorithms are insanely close to being the same.The 2×2 is like a 3×3 cube without edge or center pieces (displayed in picture below) This is because solving a 2×2 cube is very closely related to solving a 3×3. It’s strongly advised (but not necessary) to have complete, or at least partial, knowledge of how to solve a 3×3 cube.First of all, you’ll need a 2×2 Rubik’s cube, which you obviously have or you.Consequently, a corner has 3 colors, so its position will be between the centers that have those colors.Before you start learning to solve, there are a few things you should have, and a few For example, the edge that goes between the green center and the red one is the green and red edge, and being well oriented when its green color is beside the green center and the red beside the red center. To know the pieces position and orientation we focus our attention in the centers, which as we’ve said are fixed. Our objective is to put all the pieces into their correct place, and with the correct orientation. What I mean to say is that each piece is of one type and that type can’t change (an edge will always be an edge). If we rotate one face, we see that the centers stay in the same place, while edges change to positions where there were edges, and corners change to where there were corners. In total there are 20 pieces “moveable” (12 edges and 8 corners) in the Rubik’s Cube, being all of them different from each other. There are 12 edges in the Cube, each one with two different colors. Edges: they are the pieces between the corners (in pale blue in the image).Corners: there are 8 (in purple in the image), each one with three different colors.They rotate around themselves and they don’t change their position, so they are always “in the correct position”. The center pieces: there are 6 (in brown in this image), one for each face, and there’s only one of each color.The Rubik’s Cube (please, do not write Rubic, Rubick, Rubrik or Rubix) is a mechanical 3D puzzle that has 6 colors (one for each face) and it’s made of three different types of pieces:
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If you want, you can also download the Rubiks Cube solutions in PDF. So, you know, solving the Rubik’s Cube is in your hands! Have you given up solving the Rubik’s Cube? Or worse, have you end up changing the stickers’ places? In this solution we’ll explain step by step all you have to do to turn your chaotic Cube into a solved one.
