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Volume of a sphere = 4/3*pi*radius3 measured in cubic units

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Q: How can you find the volume of a small sphere?
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How do you find volume of a sphere?

The volume of a sphere is 4 / 3 * pi * r3


How to find the volume of a sphere?

Volume of a sphere = 4/3*pi*radius3


How do you find the volume of a sphere?

use the formula 4/3*π*radius3 to find the volume of a sphere.


How do you find the volume on a half-sphere?

Calculate the volume of a full sphere, then divide that by 2.


How do you find the height of a sphere when you have the volume 1232 and radius 7?

If the radius is 7 and the volume is 1232 the shape cannot be a sphere so you cannot find the height of a sphere when the shape is not a sphere!


Find the volume of a sphere?

The formula for the volume of a sphere is based on the radius of the sphere. It is equal to 4/3 multiplied by pi, multiplied by the radius cubed.


How do you find out FORMULA volume of a sphere?

Formula for volume of a sphere = 4/3*pi*radius3 measured in cubic units.


Suppose the sphere below with radius r has a volume equal to 50 units3 Find the volume of the sphere with twice the radius?

A sphere with a volume of 50 units3 has a radius of 2.29 units. A sphere with twice the radius (4.58 units) has a volume of 402 units3.


What is the volume of a sphere with a radius of 2.4 meters?

You can find the volume of a sphere by V = (4/3)*pi*r3 where r is the radius of the sphere. So in your case, the volume would be approximately 57.90583579 m3


How do you find volume of a sphere if you only have the volume?

This question makes no sense. You already have the volume, right?


What is the volume of a sphere with a radius of 10.2?

The formula to find the volume of a sphere us V = 4/3πr3, where V is volume, π is pi, which can be rounded to 3.14, and r is the radius. In order to find the volume of your sphere, the radius has to have a length unit, such as 10.2 cm or 10.2 inches.


How the volume of the sphere is deduced?

By integration. That means that in theory, the sphere is divided into many small pieces - for example, flat slabs, and the volume of each one is approximated.