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# Density of a Cube Calculator Online

The Density of a Cube Calculator is a handy tool used to determine the density of a cube based on its mass and volume. This tool is particularly useful for scientists, engineers, students, and anyone working with three-dimensional objects where density plays a crucial role.

## Formula of Density of a Cube Calculator

The formula used by the Density of a Cube Calculator is:

`ρ = m / V`

Where:

• ρ is the density of the cube (in kg/m³).
• m is the mass of the cube (in kilograms).
• V is the volume of the cube (in cubic meters).

The volume (V) of a cube can be calculated using the formula:

`V = s^3`

Where:

• s is the length of one side of the cube (in meters).

Now let’s delve deeper into the significance of this calculator and how it can be applied in real-world scenarios.

## Table of General Terms

This table provides a quick reference guide for users to understand key terms related to the Density of a Cube Calculator, enhancing their overall understanding and usability of the tool.

## Example of Density of a Cube Calculator

Let’s consider an example to illustrate how the Density of a Cube Calculator works:

Suppose we have a cube with a mass of 10 kilograms and a side length of 2 meters. Using the Density of a Cube Calculator, we can determine the density as follows:

1. Calculate the volume of the cube using the formula: V = s^3 V = 2^3 = 8 cubic meters.
2. Now, apply the formula for density: ρ = m / V ρ = 10 kg / 8 m³ = 1.25 kg/m³.

Therefore, the density of the cube is 1.25 kg/m³.

## Most Common FAQs

Q: How does density affect buoyancy?

A: Density plays a crucial role in determining whether an object sinks or floats in a fluid. Objects with higher density than the fluid will sink, while those with lower density will float.

Q: Can density change with temperature?

A: Yes, density can change with temperature. In general, as temperature increases, the density of a substance decreases, and vice versa. This is due to the expansion or contraction of the substance’s particles.