About Balicube 3x3 Tutorials
Hello, my name is David and I am a speedcuber! I love solving 3x3 rubik's cubes and I made this series of 3x3 rubik's cube tutorials to teach a range of beginners-advanced Rubik's cubers with step by step guilds and Video tutorials to escalate this experience! If you are learning algorithms, I also added tools such as algorithm timers to help you achieve your speedy goals!
Our tools and Tutorials!
Beginners Tutorial!
If you want to learn how to solve a rubik's cube, then the beginners tutorial is perfect for you! Step-by-step with videos to engage you in this learning experience!
Intermediate Tutorial (beginner CFOP method)
Wanna step up your speed and upgrade to a better and harder method? Try learning beginner CFOP, the crossing bridge from beginner CFOP and advanced CFOP! Step by step guide ingtegrated with videos enhancing your learning experience and comprehension!
Cube Notation!
You wanna learn algorithms for rubik's cubes right? Only one thing stands between you and that, and that is Cube Notation! You see cubers have found a simple way to represent moves as letters such as R and R' and to understand that, you need a good tutorial! We have one!
Advanced CFOP
Finally, you have hit the last level, the barrier blocking you from sub 30 to sub 10. CFOP is the advanced method to solving a rubiks cube. Once you have learned intermediate CFOP, you should have a bit of algorithm knowledge, with CFOP, you will learn all of the algorithms with visual representations of every case!
CFOP algorithm Chart!
You wanna learn CFOP and the algorithms it has but you don't know where to find the algorithms. We have a file here with the best CFOP algorithms used by world champions. In this page you can find every OLL and PLL case with its own visual representation and algorithm!
CFOP algorithm Chart!
You wanna learn CFOP and the algorithms it has but you don't know where to find the algorithms. We have a file here with the best CFOP algorithms used by world champions. In this page you can find every OLL and PLL case with its own visual representation and algorithm!