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Last updated on May 26th, 2025

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Cube of 321

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When a number is multiplied by itself thrice, the resultant number is called the cube of a number. Cubing is used when comparing sizes of objects or things with cubic measurements. In this topic, we shall learn about the cube of 321.

Cube of 321 for US Students
Professor Greenline from BrightChamps

Cube of 321

A cube number is a value obtained by raising a number to the power of 3, or by multiplying the number by itself three times. When you cube a positive number, the result is always positive. When you cube a negative number, the result is always negative. This is because a negative number multiplied by itself three times results in a negative number.

 

The cube of 321 can be written as 321³, which is the exponential form. Or it can also be written in arithmetic form as, 321 × 321 × 321.

 

cube of 321

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How to Calculate the Value of Cube of 321

To check whether a number is a cube number or not, we can use the following three methods: multiplication method, a factor formula (a³), or by using a calculator. These three methods will help students to cube numbers faster and easier without feeling confused or stuck while evaluating the answers.

 

  1. By Multiplication Method
  2. Using a Formula
  3. Using a Calculator
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By Multiplication Method

The multiplication method is a process in mathematics used to find the product of two numbers or quantities by combining them through repeated addition. It is a fundamental operation that forms the basis for more complex mathematical concepts.

 

Step 1: Write down the cube of the given number. 321³ = 321 × 321 × 321

 

Step 2: Calculate the product. You get 33,161,041 as the answer. Hence, the cube of 321 is 33,161,041.

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Using a Formula (a³)

The formula (a + b)³ is a binomial formula for finding the cube of a number. The formula is expanded as a³ + 3a²b + 3ab² + b³.

 

Step 1: Split the number 321 into two parts, as 300 and 21. Let a = 300 and b = 21, so a + b = 321

 

Step 2: Now, apply the formula (a + b)³ = a³ + 3a²b + 3ab² + b³

 

Step 3: Calculate each term

 

a³ = 300³

3a²b = 3 × 300² × 21

3ab² = 3 × 300 × 21²

b³ = 21³

 

Step 4: Add all the terms together:

 

(a + b)³ = a³ + 3a²b + 3ab² + b³

(300 + 21)³ = 300³ + 3 × 300² × 21 + 3 × 300 × 21² + 21³

321³ = 27,000,000 + 5,670,000 + 396,900 + 9,261

321³ = 33,161,041

 

Step 5: Hence, the cube of 321 is 33,161,041.

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Using a Calculator

To find the cube of 321 using a calculator, input the number 321 and use the cube function (if available) or multiply 321 × 321 × 321. This operation calculates the value of 321³, resulting in 33,161,041. It’s a quick way to determine the cube without manual computation.

 

Step 1: Ensure the calculator is functioning properly.

 

Step 2: Press 3 followed by 2 and 1.

 

Step 3: If the calculator has a cube function, press it to calculate 321³.

 

Step 4: If there is no cube function on the calculator, simply multiply 321 three times manually.

 

Step 5: The calculator will display 33,161,041.

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Tips and Tricks for the Cube of 321

  • The cube of any even number is always even, while the cube of any odd number is always odd.

 

  • The product of two or more perfect cube numbers is always a perfect cube.

 

  • A perfect cube can always be expressed as the product of three identical groups of equal prime factors.
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Common Mistakes to Avoid When Calculating the Cube of 321

There are some typical errors that kids might make during the process of cubing a number. Let us take a look at five of the major mistakes that kids might make:

Mistake 1

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Incorrect Multiplication

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Kids might multiply the numbers only twice. That is, 321 × 321 and not 321 × 321 × 321. Always remember that 321³ = 321 × 321 × 321.

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Solved Examples on Cube of 321

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Problem 1

What is the cube and cube root of 321?

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The cube of 321 is 33,161,041, and the cube root of 321 is approximately 6.866.

Explanation

First, let’s find the cube of 321.

 

We know that the cube of a number, such that x³ = y Where x is the given number, and y is the cubed value of that number

 

So, we get 321³ = 33,161,041

 

Next, we must find the cube root of 321 We know that the cube root of a number ‘x’, such that ∛x = y Where ‘x’ is the given number, and y is the cube root value of the number

 

So, we get ∛321 ≈ 6.866

 

Hence, the cube of 321 is 33,161,041 and the cube root of 321 is approximately 6.866.

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Problem 2

If the side length of the cube is 321 cm, what is the volume?

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The volume is 33,161,041 cm³.

Explanation

Use the volume formula for a cube V = Side³.

 

Substitute 321 for the side length: V = 321³ = 33,161,041 cm³.

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Problem 3

How much larger is 321³ than 300³?

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321³ – 300³ = 6,161,041.

Explanation

First, find the cube of 321³, which is 33,161,041

 

Next, find the cube of 300³, which is 27,000,000 Now, find the difference between them using the subtraction method.

 

33,161,041 – 27,000,000 = 6,161,041

 

Therefore, 321³ is 6,161,041 larger than 300³.

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Problem 4

If a cube with a side length of 321 cm is compared to a cube with a side length of 21 cm, how much larger is the volume of the larger cube?

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The volume of the cube with a side length of 321 cm is 33,161,041 cm³.

Explanation

To find its volume, we multiply the side length by itself three times (since it’s a 3-dimensional object).

 

Cubing 321 means multiplying 321 by itself three times: 321 × 321 = 103,041, and then 103,041 × 321 = 33,161,041.

 

The unit of volume is cubic centimeters (cm³), because we are calculating the space inside the cube.

 

Therefore, the volume of the cube is 33,161,041 cm³.

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Problem 5

Estimate the cube of 320 using the cube of 321.

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The cube of 320 is approximately 32,768,000.

Explanation

First, identify the cube of 321.

 

The cube of 321 is 321³ = 33,161,041.

 

Since 320 is slightly less than 321, the cube of 320 will be somewhat less than the cube of 321.

 

The cube of 320 is approximately 32,768,000 because the difference between 320 and 321 is small.

 

So, we can approximate the value as slightly under 33,161,041.

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FAQs on Cube of 321

1.What are the perfect cubes up to 321?

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2.How do you calculate 321³?

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3.What is the meaning of 321³?

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4.What is the cube root of 321?

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5.Is 321 a perfect cube?

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6.How does learning Algebra help students in United States make better decisions in daily life?

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7.How can cultural or local activities in United States support learning Algebra topics such as Cube of 321?

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8.How do technology and digital tools in United States support learning Algebra and Cube of 321?

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9.Does learning Algebra support future career opportunities for students in United States?

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Important Glossaries for Cube of 321

  • Binomial Formula: It is an algebraic expression used to expand the powers of a number, written as (a + b)ⁿ, where ‘n’ is a positive integer raised to the base. The formula is used to find the square and cube of a number.

 

  • Cube of a Number: Multiplying a number by itself three times is called the cube of a number.

 

  • Exponential Form: It is a way of expressing numbers using a base and an exponent (or power), where the exponent value indicates how many times the base is multiplied by itself. For example, 2³ represents 2 × 2 × 2 equals 8.

 

  • Perfect Cube: A number that can be expressed as the cube of an integer.

 

  • Volume: The amount of space that a substance or object occupies, typically measured in cubic units for three-dimensional objects.
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About BrightChamps in United States

At BrightChamps, we believe algebra is more than just symbols—it’s a gateway to endless possibilities! Our goal is to support kids all across the United States in mastering essential math concepts, like today’s focus on the Cube of 321, especially the fascinating world of cubes—in a way that’s engaging, clear, and enjoyable. Whether your child is calculating how quickly a roller coaster zooms through Disney World, tracking scores at a Little League baseball game, or budgeting their allowance for new gadgets, understanding algebra builds the confidence they need for daily life. Our hands-on lessons make math both accessible and fun. Since children in the USA learn in diverse ways, we customize our teaching to match each student’s learning style. From the energetic streets of New York City to the sunny beaches of California, BrightChamps brings algebra to life, making it exciting and relevant across America. Let’s make cubes an exciting part of every child’s math journey!
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Jaskaran Singh Saluja

About the Author

Jaskaran Singh Saluja is a math wizard with nearly three years of experience as a math teacher. His expertise is in algebra, so he can make algebra classes interesting by turning tricky equations into simple puzzles.

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Fun Fact

: He loves to play the quiz with kids through algebra to make kids love it.

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