RUCubes

RUcube is all about solutions to fix various types of cubes ( mostly known as Rubik's Cube) with details. It will be demonstrating 3x3x3, 2x2x2, 4x4x4 and some other cubes. It is almost entertaining to share how to fix with respective images which are easy to understand for anyone who tries to learn from this. 3x3x3 is the most common type of Rubik's Cube in the world. by using several algorithms and practice, the speed of fixing the cube is very short of time. Resolve imparity and swap issue

ads

3x3x3 Rubik's Cube - Cube Patterns

 3x3x3 Rubik's Cube - Cube Patterns

So many extraordinary patterns will make a Rubik's cube with beautiful designs inside. After solving the cube we can use them to decorate with these patterns for fun. it is not easy to remember those in seconds but by practising, it will be memorized and remember how to do all these in a second.

" Rubik Cube was invented in 1974 by Hungarian architecture professor Erno Rubik." 


for the time being, there are many people who have made their stories about solving this amazing extraordinary puzzle with their unique talent and the time to solve it by a few seconds. 

Beyond that, they have spent a lot of time making beautiful patterns out of Rubik's cube by algorithms.

Here you can see various types of cube patterns that you can fascinating cube and enjoy by doing and creating beautiful designs inside a cube. cube-in-cube, cube-in-cube-in-cube, perpendicular lines etc.

1. Cube-in-Cube

we can use the following algorithm to design a cube in the cube

(F L F) (U' R U) (F2 L2 U' L') (B D' B') (L2 U)

2. Cube-in-Cube-in-Cube

we can use the following algorithm to design a cube in the cube in the cube

(U' L' U' F') (R2 B' R) (F U) (B2 U B') 

(L U' F) (U R F')

3. All centres change to other

we can use the following algorithm to make all centres swapped with opposite centres.

U  (D' R L') F (B' U D')

4. H  - front & back ( Double edges swap)

use the following algorithm to make H in the front and the Back sides with opposite colours.

M2 U2 M2 U2

5. Cuboid in the Cube

use the following algorithm to make a cuboid in the cube. we can get 2x2x3 cuboid and 2x2x1 cuboid in same 3x3x3 cube as shown.

L2 B2 D' B2 D L2 U R2 D R2 

B U R' F2  R U' B' U'


2x2x3 cuboid in 3x3x3 cube on the left side and the other side of the cube is on the right side

2x2x3 cuboid in 3x3x3 cube on the left side and the other side of the cube is on the right side.

Left side    - 2x2x3 cuboid in 3x3x3 cube
Right side - 2x2x1 cuboid in 3x3x3 cube


6. Checkerboard in the cube 



BD F'B'D (L2) ULU' BD' RBR D'RL' F(U2)D



7. TOP_Right-FRONT and Bottom-Left-BACK corner swap

If we want to swap the Front-TOP-Right corner with the BOTTOM-Left-Back corner, we need to do the following algorithm. 

UBD' F2DB'U' R2DF2D' R2DF2  D'R2

8. Vertical Stripes on FRONT, BACK, LEFT AND RIGHT SIDES.

we can use the following patterns to make vertical strips in a cube. in this algorithm, only side layers are affected. TOP and BOTTOM layers are not mixed.

            

FUF RL2 BD'R D2LD' BR2 LFUF

9. Gift Box Pattern - Vertical Stripes with TOP and BOTTOM crosses

UB2 (R2B2L2F2R2) D' 

F2L2 (BF'L) F2 DU' R2 F'L'R'

12.  Four Crosses in a Cube 

By using the following algorithm, we can get 4 crosses along the Front, Left, Right and Back sides. 



U2R2L2  F2B2D2  L2R2  F2B2

13. Anaconda, Snake or L shape pattern 

By using the following algorithm we can get an Anaconda, Snake or L shape pattern on all sides of the Rubik's cube


L U B' U' R L' B R' F B' D R D' F'


14. Crosses everywhere - how to make crosses on every side?

By using the following algorithm, we can make crosses on each side of the Rubik's cube or it is called Union Jack


U F B' L2 U2 L2 F' B U2 L2 U

15. Flower pattern

By using the following algorithm, we can make a flower pattern. it is made of cross TOP and BOTTOM layers with the FRONT and the BACK two edges swapped like the stem of the flower.

R2 D2 R2 U2 R2 F2 U2 D2 F2 U2


16. Opposite corners - with TOP and BOTTOM centre swapped. 


R L U2 F2 D2 F2 R L F2 D2 B2 D2


17. Four spots - There are two algorithms to swap opposite centres but slight differences.

Algorithm 1 - F2 B2 U D' R2 L2 U D' -  RIGHT-LEFT, FRONT-BACK center swapped



Algorithm 2 (Rr U R'U') X6 - six times - TOP BOTTOM, FRONT-BACK centre swapped


18. Phyton Pattern 

TOP and BOTTOM layers with straight lines connected through via L shapes on the other 4 sides. just like a phyton.


F2 R' B' U R' L F' L F' B D' R B L2

19. Black Mamba - 3L shapes with 3 Lines


R D L F' R L' D R' U D' B U' R' D'



No comments:

Post a Comment