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  1. Learn the steps and algorithms to solve the 2x2 Rubik's cube, also known as the Pocket Cube, with this guide. You will need to solve the first layer, orient the last layer pieces, and permute the last layer pieces using the same moves as the 3x3 cube.

    • OLL Algorithms

      A.k.a the Pocket Cube, Learn How to solve a 2x2 Rubik's...

    • 4x4 Cube

      The 4x4x4 cube is the next puzzle in the Rubik's cube...

    • Best 2x2 Speed Cubes

      This cube is MoYu's best 2x2 cube. It is the next generation...

  2. This is an easy 2x2 Rubik's Cube tutorial, where you don't need to learn move notation or long algorithms. With some practice, you should easily be able to solve the cube in under 1 minute. If you want to get even faster, you should learn How to do Finger Tricks and Advanced 2x2 Methods.

  3. 27 cze 2024 · If you’re new to Rubik’s puzzles, the 2x2 Rubik’s Cube is a great starting point. All you need are some simple algorithms to master the two-layered "Pocket Cube" or "Mini Cube." Here, we’ll explain what the algorithm notations mean, then walk you through how to use those algorithms to solve the beginner-friendly 2x2 Rubik's Cube.

  4. A 2x2 is a six sided cubic puzzle similar to the 3x3 Rubik's cube, but it only has two layers, with 4 corners on each layer. There are no center or edge pieces. You can use the same steps to solve a 2x2 as you use for the corners of a 3x3.

  5. Learn how to solve the 2x2x2 Rubik's Cube with a simple method and step-by-step algorithms. Find out how to deal with different cases of swapped pieces and orient yellow corners.

  6. You can change a case's status by clicking on its picture in the algorithm list. Only your slowest cases (by average) will appear in the trainer. Note: You may need to reload the page if your slowest cases change. Each selected case is guaranteed to appear equally often.

  7. The Ortega Method has 12 algorithms and 3 steps: Make 1 face (not necessarily a solved layer) of any color. OLL (7 algorithms) solves the top face. PBL (5 algorithms) solves the rest of the cube. These algorithms are also useful in the more advanced methods below.

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