
Learn how to solve the three by three original Rubik's Cube, a great starting point that forms the foundation for solving all other cube sizes.
Learn essential cube notations and movements by identifying the six faces—front, top, left, right, bottom, back—where centers stay fixed, and perform regular and inverted turns (clockwise and counterclockwise).
Select a side and build the white cross by locating edge pieces and aligning them with the matching center colors, then insert the corners using front inverted and up moves.
Locate white corners and match them with their colors, then apply the described corner algorithm to move each piece into place, solving the top layer and completing the front face.
Master the middle layer of the 3x3x3 Rubik's cube by inserting edge pieces to their correct positions using step-by-step algorithms, while preserving the yellow center.
Master forming the yellow cross on the top layer by recognizing line, cross, or backwards L shapes and applying the front-right algorithm until the cross appears.
Learn a quick algorithm to align the cross on the yellow faces, ensuring two edges line up on the side and back, then complete the cross on the top.
Locate all corners in their correct spots, even if scrambled, and use a single algorithm to place them; then twist from a corner to move a piece to the top.
Delve into the four by four Rubik's cube, learn to shrink it to a three by three by solving centers, edges, and corners, and note parity on even-order cubes.
Select blue as the target color and assemble the first centers, then solve the opposite green face by aligning green centerpieces while keeping the blue centers stable with simple twists.
Solve the remaining centers by aligning yellows, then place red, orange, and white pieces without disturbing solved centers, following the sequence: down over down back over up.
Master edge pairing by matching color pairs, using guided twists to align edges without disturbing centers, then form 3x3-like edge pairs and restore the setup.
Finish solving the four by four cube by applying the three by three solving principles, using the last corner algorithm to place correct corners and complete the top and sides.
Identify edge parity on higher-order cubes and finish the top layer like a 3x3, then use a concise move sequence with a front-face twist to correct the parity.
Understand corner parity on larger cubes and solve it with a three-step sequence that moves layers twice, fixes corner positions, and then aligns edges to finish like a 3x3.
Learn to solve five by five rubik's cube using three by three and four by four methods, noting parity, extra edge steps, and focusing on piece positions over notations.
learn to solve the first face by fixing the center outwards, aligning edges and corners, and using rotations to bring pieces into place across adjacent faces for beginner-level cubes.
Solve the opposite yellow face by applying the same four-by-four principles: move pieces on the top, rotate away, and bring them back down while matching the center piece and corners.
First solve blue and orange faces, then swap red and green pieces with the four-by-four algorithm down, over, down, over, up, over, up, over.
Pair edges on a 5x5 by matching two edge pieces to form a 4x4, using color pairing, and execute a sequence to place edges without disturbing centers.
The five by five edge pairing follows the four by four method with an extra step, using a new algorithm to align mismatched edge pairs and rotate the cube.
Learn to fix edge parity on a 5x5 by using T shapes to flip two edges, manage the even layers, and gather the mess into a single strip before finishing.
Complete the centerpieces and edges, then solve the corners using the 3x3 method, handling the five-by-five parity with one extra algorithm to merge three 3x3 pieces into one.
Explore solving the six by six cube by solving the centerpieces first, then the edges, and finish as a three by three, addressing edge and corner parity.
Select a color and solve centers on 6x6 cube, building an orange center with one line, two lines, and three lines, then a final long strip using basic, algorithm-free moves.
Learn to place the red opposite the orange on the cube’s opposite centre face, then align edge pieces and use up-rotate-around-down moves to build and complete solved strips.
Complete the four sides by finishing blue and yellow, then green and white, and apply the town over, down, back, over, up, over, back, over algorithm to solve the centerpieces.
Learn edge pairing on even-number rubik's cubes after solving centers, aligning two edges at once with a half-turn sequence: cut, right up, front back.
Pair edge pieces on a six by six, treating the puzzle as one, two, and three layers, using the five by five style to align blue-orange, blue-red, and green-orange edges.
Learn to resolve edge parity on odd-layered Rubik's cube by aligning mispaired edges, using a T-like parity move, and mirroring the five-by-five method.
Turn a six by six cube into a 3x3 by solving the centerpieces and edges, then finish by solving the edge parity and aligning two strips to complete the puzzle.
Explore corner parity on larger cubes by flipping misaligned corners with targeted algorithms, then reuse three-by-three techniques to align and complete the final corner solve.
Explore seven by seven pillared cube with a fixed center on the black face, note edge parity, and build skill from 3x3 to 5x5 and 6x6 by tracking piece movements.
Solve the inner center by building a black centerpiece strip by strip on the five by five face inside the seven by seven, aligning middle centerpieces while preserving solved strips.
Proceed to solve the opposite center on a 7x7 by applying the same center-solving principles as black, finishing yellow with strip-by-strip methods and a gap strategy to complete the face.
Shows solving the four inner centres of a 7x7x7 cube by tackling centers clockwise or counterclockwise, using the down-over-down-back-over algorithm to swap pieces.
Master edge pairing by matching color pairs, aligning edges from the center outward, and using careful moves that preserve solved centers while linking edge pieces.
Solve edge parity on a 7x7 cube by reducing to a 5x5 approach, forming two T shapes, aligning edge pieces with controlled front and top layer moves, ensuring edge pairing.
Solve the seven by seven cube by fixing the messed up edges, aligning edge strips, and reducing it to a three by three for final solving.
In this course you will not only learn how to solve any standard Rubik's cube ( from 3x3x3 to 7x7x7 ) but you will learn how to do it very fast using smart ways to avoid hard cases of the cube. There will be a section for every cube start from 3x3x3 to 7x7x7 and every section will contain a detailed explanation for solving the cube. After learning the 4x4x4 and the 5x5x5 Rubik's cube you will be able to solve any other standard Rubik's cube without knowing anything more, but to make sure you understand everything well I made a detailed explanation for the 6x6x6 & the 7x7x7.
You will have any algorithm you are going to need in solving any standard Rubik's cube on the video itself. I am not using any software inn explanation, just the cube to make sure you see it very well and observe how I am solving it.
Don't worry about the duration of the course, that's because I made a detailed explanation for every cube and a walk through tutorial for every cube .
If you don't have a Rubiks Cube, you can still follow along by remembering the algorithms and various stages/patterns required to solve the Cube.
Thanks for checking this course out!