V = volume, R = radius, H = height, π = pi
V = πR2H
H = V/πR2
You can work the problem for yourself with that equation, keeping in mind that
1 cm3 = 1 mL
Canister holds 3 tennis balls the diameter of the balls is the same as the diameter of the cylinder 6 cm how much space in the cylinder is not taken? Since 3 tennis balls fit in the cylinder, the height of the cylinder is 3 * the diameter of a tennis ball Volume of Sphere = 4/3 * Π radius^3 Volume of Cylinder = height * Π radius^2 The diameter of a tennis ball is 6 cm The radius is 3 cm. Volume of 3 balls = 3* 4/3 * Π * radius^3 Volume of 3 balls = 3* 4/3 * Π * 3^3 Height of Cylinder = 3 * 6 cm = 18 cm Volume of cylinder = 18 * Π * 3^2 Space in the cylinder is not taken = Volume of cylinder - Volume of 3 balls Do the math, you should get 169.6 cc for the space in the cylinder is not taken.
2.6667 litres
6 times 950 liters / 150 liters = 6.33 times = 6
16 US gallons = 60 liters 16 UK gallons = 72 liters
I assume the volume is 100 cubic cm and NOT 100 cm. The volume of a cylinder is cross-sectional area * height 100 = cross sectional area * 30 so that the area of the bottom, or cross section, is 100/30 = 3.333... sq cm
To calculate the volume of a cylinder, you need to use the formula V = πr^2h, where V is the volume, π is a constant (approximately 3.14159), r is the radius of the cylinder, and h is the height of the cylinder. Since you have the volume in liters, you will need to convert it to cubic units (1 liter = 1 cubic decimeter). Once you have the volume in cubic units, you can plug it into the formula along with the radius and height of the cylinder to find the volume.
The cylinder's diameter will be about 32.58m
There are an infinite number of cylinders that hold one gallon. The volume of a cylinder is a function of its height as well as its diameter. If you double the height, you double its capacity. If you double the radius, you quadruple the capacity. So, you could have a very tall, thin cylinder or a short, wide one.
Canister holds 3 tennis balls the diameter of the balls is the same as the diameter of the cylinder 6 cm how much space in the cylinder is not taken? Since 3 tennis balls fit in the cylinder, the height of the cylinder is 3 * the diameter of a tennis ball Volume of Sphere = 4/3 * Π radius^3 Volume of Cylinder = height * Π radius^2 The diameter of a tennis ball is 6 cm The radius is 3 cm. Volume of 3 balls = 3* 4/3 * Π * radius^3 Volume of 3 balls = 3* 4/3 * Π * 3^3 Height of Cylinder = 3 * 6 cm = 18 cm Volume of cylinder = 18 * Π * 3^2 Space in the cylinder is not taken = Volume of cylinder - Volume of 3 balls Do the math, you should get 169.6 cc for the space in the cylinder is not taken.
2.6667 litres
Is this a trick question? If you have a narrow bucket that holds 60 liters than it would seem very tall but if you have a wide flat bucket that holds 60 liters, it would be a different height or how wide.
A C oxygen cylinder typically holds about 3400 liters of oxygen. At a flow rate of 2 liters per minute, it will last for approximately 28 hours.
An H cylinder typically holds about 7,000 liters of medical nitrous oxide.
A size E oxygen cylinder typically holds around 6800 liters of oxygen. At a flow rate of 4 liters per minute, the cylinder would last for approximately 1700 minutes, or about 28 hours.
The duration a size E oxygen cylinder will last depends on the flow rate in liters per minute set on the regulator. A size E cylinder typically holds around 680 liters of oxygen. At a flow rate of 2.0 liters per minute, the cylinder would last approximately 340 minutes, which is about 5.7 hours.
A 59.5-inch diameter cylinder holds 1,733 gallons per inch of length/height.
A standard C size oxygen cylinder typically holds around 1700 liters of oxygen. To calculate the duration, divide the cylinder's capacity (1700 liters) by the flow rate (8 liters per minute) to get the total minutes. In this case, the C size oxygen cylinder would last approximately 212.5 minutes (1700 / 8 = 212.5 minutes).