Some examples of spheres that we see in daily life includes balls, globes, decorative lights, oranges, etc. The simplest measurement that can be made on a sphere is its radius. The volume of the sphere is calculated using its radius.

- This space occupied depends on the shape of the object.
- An important check before calculating the volume of any shape should be that all measurements are in the same unit.
- A polygon mesh is a representation of the object’s surface, using polygons.
- Since different three-dimensional objects have different shapes, their volumes are also variable.

The volume mesh explicitly define its volume and surface properties. The amount of 3-dimensional space something takes up. These are words often used in combination with volume.

## Commonly Misspelled Words

All these dimensions are used to calculate the volume of a cuboid. Common examples of cuboids are books, shoe boxes, bricks, mattresses, etc. Cuboid shape is also referred to as the rectangular prism.

An important check before calculating the volume of any shape should be that all measurements are in the same unit. If one measurement is provided in cm and the other in m, convert both into cm or m before calculating the volume. Check out the articles related to the volume of different solid shapes. This space occupied depends on the shape of the object. The best way to understand is by examining different objects and finding the volume occupied by them. If you need to calculate the volume of a shape that is not one of the regular three-dimensional shapes, break up the irregular shape into different regular shapes.

## Volume Examples

If the measurements are in meters, the volume is measured in cubic meters (m3). Volume is defined as a capacity occupied by a three-dimensional solid shape. In any shape, it is hard to visualize but can be compared between shapes. For example, the volume of a compass box is greater than the volume of an eraser placed inside it.

Add the individual volumes of these shapes to get the overall volume. Since a ball is a sphere, its volume will be calculated using the formula for the volume of a sphere. The formula for the volume of a sphere is 4/3 πr³, where ‘r’ is the radius of the sphere.

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Given below is a detailed tabular list of volume formulas in a nutshell describing volume formulas for all the possible 3-D (solid) shapes. A cone is a three-dimensional shape that we commonly see around us. An ice-cream cone, a party hat, a funnel, or a Christmas tree, all of these are examples of a cone. A cone is a distinctive three-dimensional geometric figure that has a flat surface and a curved surface, pointed towards the top.

## Volume Calculator

Every object in our surroundings has a nature of occupying space. These real-life objects can be easily compared with the basic 3-D shapes. Let us have a look at the volume of these solid shapes in detail. Since different three-dimensional objects have different shapes, their volumes are also variable. Let us look at some three-dimensional shapes and learn how to calculate their volume(V). As a measure of the Euclidean three-dimensional space, volume cannot be physically measured as a negative value, similar to length and area.

## What is the Volume of a ball?

Let say, if a cup can hold 1000 ml of juice, its volume is said to be 1000 ml. In this case, volume can also be defined as the amount of juice occupied by a cup. Volume is always calculated by dividing the capacity of shapes into equal cubical units. Yes, a volume of rectangular prism is the same as a volume of cuboid. Its volume is calculated using the formula l x b x h, where l, b, and hare the different measurements of the shape.

The area is the space occupied by the surface of a flat shape. A cylinder is also a three-dimensional shape with circular bases and a height separating the two bases. Everyday objects that are cylindrical include water bottles, buckets, candles, cans, etc. The volume of a cylinder is calculated by measuring the radius of the base and the height. Volume is the measure of the capacity that an object holds.