Rubiks Cube Quiz

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Welcome to the ultimate Rubik’s Cube Quiz!

Are you ready to twist and turn your way through a series of mind-bending challenges?

Dive into our Free Online Rubik’s Cube Quiz and put your problem-solving skills to the test. Whether you’re a beginner or a seasoned solver, this interactive quiz is designed to challenge and entertain you.

Uncover fascinating facts, master new solving techniques, and receive personalized tips to improve your speed and agility. It’s engaging, informative, and best of all, it’s free!

Why wait? Embark on your Rubik’s Cube journey today and become a true puzzle-solving maestro!

Disclaimer: The hard questions in the Rubiks Cube Quiz are challenging. To finish the game and reaching the master level typically requires a significant amount of grit, determination and perseverance. I you want to learn more about rubiks cube check out our article about Rubiks Cube as a passion.

Question 1:

How many colored stickers are on a standard 3x3 Rubik's Cube?

Click to see Hint ⬇
The number of stickers is a multiple of 9.
Click to see Answer ⬇
54 - A standard 3x3 Rubik's Cube has 6 center stickers, 8 corner stickers, and 12 edge stickers, making a total of 54 colored stickers.

Question 2:

What is the maximum number of moves required to solve any 3x3 Rubik's Cube?

Click to see Hint ⬇
The maximum number of moves is a multiple of 5.
Click to see Answer ⬇
20 - It has been mathematically proven that any 3x3 Rubik's Cube can be solved in 20 moves or fewer.

Question 3:

Which color is opposite to yellow on a standard 3x3 Rubik's Cube?

Click to see Hint ⬇
Opposite colors are complementary.
Click to see Answer ⬇
White - On a standard 3x3 Rubik's Cube, yellow is always opposite to white, and red is always opposite to orange.

Question 4:

Which part of the Rubik's Cube remains stationary while the rest of the cube is twisted and turned?

Click to see Hint ⬇
These pieces are fixed in place.
Click to see Answer ⬇
Center pieces - The center pieces of a Rubik's Cube do not move relative to each other, providing a reference for the other pieces.

Question 5:

What is the minimum number of moves required to solve a standard 2x2 Rubik's Cube?

Click to see Hint ⬇
The minimum number of moves is a single digit.
Click to see Answer ⬇
5 - A standard 2x2 Rubik's Cube can be solved in 5 moves or fewer, making it simpler than the 3x3 version.

Question 6:

What is the standard number of stickers on a 4x4 Rubik's Cube?

Click to see Hint ⬇
Think about the number of stickers on each face of the 4x4 Rubik's Cube.
Click to see Answer ⬇
56 - A standard 4x4 Rubik's Cube has 56 stickers, with 8 stickers on each face.

Question 7:

Which Rubik's Cube layer is typically solved first in the CFOP method?

Click to see Hint ⬇
The initial step involves creating a cross on one face.
Click to see Answer ⬇
Cross - In the CFOP method, the first step is to solve the cross on one face of the Rubik's Cube.

Question 8:

Which Rubik's Cube algorithm is used to swap two adjacent edge pieces on the last layer?

Click to see Hint ⬇
This algorithm involves a series of R and U moves.
Click to see Answer ⬇
R U R' U R U2 R' - The algorithm R U R' U R U2 R' is commonly used to swap two adjacent edge pieces on the last layer of the Rubik's Cube.

Question 9:

What is the name of the Rubik's Cube world record holder for the fastest single solve?

Click to see Hint ⬇
The record holder is known for an incredibly fast solve time.
Click to see Answer ⬇
Yusheng Du - Yusheng Du set the world record for the fastest single Rubik's Cube solve with a time of 3.47 seconds.

Question 10:

In the Roux method, what is the first step after solving the first two layers?

Click to see Hint ⬇
This step involves directly solving the last layer in one look.
Click to see Answer ⬇
1-Look Last Layer - After solving the first two layers in the Roux method, the next step is to 1-Look Last Layer to orient and permute the last layer in one step.

Question 11:

What is the name of the Rubik's Cube world record holder for the fastest average solve?

Click to see Hint ⬇
This speedcuber set the record in 2018.
Click to see Answer ⬇
Max Park - Max Park set the world record for the fastest average solve of the Rubik's Cube with a time of 6.39 seconds at the WCA Red Bull World Championship 2018.

Question 12:

Which Rubik's Cube method involves solving the edges of the last layer before the corners?

Click to see Hint ⬇
This method prioritizes edge solving over corner solving.
Click to see Answer ⬇
ZZ Method - The ZZ Method is a speedcubing method that focuses on solving the edges of the last layer before the corners to reduce the number of algorithms needed to complete the solve.

Question 13:

Which Rubik's Cube method involves solving the first two layers simultaneously before solving the last layer?

Click to see Hint ⬇
This method emphasizes simultaneous layer solving.
Click to see Answer ⬇
Petrus Method - The Petrus Method is a popular speedcubing method that focuses on building a 2x2x2 block and then extending it to solve the first two layers simultaneously before moving on to the last layer.

Question 14:

Which Rubik's Cube method involves solving the last layer corners before the last layer edges?

Click to see Hint ⬇
This method has a distinctive approach to last layer solving.
Click to see Answer ⬇
Heise Method - The Heise Method is a method for solving the Rubik's Cube that focuses on solving the last layer corners before the last layer edges, providing a unique approach to solving the puzzle.

Question 15:

What is the name of the Rubik's Cube algorithm used to orient the last layer edges in the CFOP method?

Click to see Hint ⬇
It stands for Orienting the Last Layer.
Click to see Answer ⬇
OLL - OLL is the step in the CFOP method where the last layer edges are oriented to proceed to the next step, PLL (Permuting the Last Layer).

Question 16:

In the Roux method, what is the last step after solving the first two layers?

Click to see Hint ⬇
It involves the last six edges.
Click to see Answer ⬇
LSE - LSE is the final step in the Roux method where the last six edges are oriented and permuted.