With a 6 inch diameter and with 1 mile = 5280 ft = 63360 inches.
Volume = (cross sectional area) x ( length) = pi * r2 * length = pi*(3 in)2 * 63360 in = 1791461.79 cubic inches.
1 gallon = 231 cubic inches, so it is 7755.25 gallons
The pure water surrounding the carrot has a higher water potential. A net gain of water will enter the plant cells, swelling the cells. Water will rise in the tube.
The radius would be 6 cm because the diameter is 2 times bigger than the radius.
circumference = π d (pi x diameter)= 1256.6 feet
If you mean a circumference of 56.55 meteres then its diameter is 56.55/pi = 18 meters
32"
There need not be any water in the hose! Its capacity is approx 163461 cm3 or 163.5 litres.
The capacity of a 25 ft hose with a diameter of 3 inches is 1.23 cubic feet. That is the maximum volume of water in the hose: there need not be any!
The longest water hose was made in Germany. It is painted with red polyurethane enamel. It measures 410ft. long and 20in. in diameter. It connects to a faucet that is 35ft. 5in. in height.
The maximum length of a water hose you can use on a pressure washer typically ranges from 50 to 100 feet, depending on the pressure washer's specifications and the diameter of the hose. A longer hose can reduce water pressure, so it's essential to use a high-quality, larger diameter hose to minimize pressure loss. Always check the manufacturer's guidelines for your specific pressure washer model to ensure optimal performance.
Take a 3/4" clear plastic hose about 30ft long + or - hold the two ends together fill with water 3ft from top or overflow. Hold one end of the hose water level at the desired height of the structure The opposite end of the hose will be level to the exact same at the other end 6 ,10 ,15 or 20ft away for example. The hose Dock
8.8 gallons of water.
432pi. formula:π(r^2)h
A 2.5 inch fire hose has a capacity of approximately 60 gallons per 100 ft. Therefore, a 50 ft hose would hold around 30 gallons of water.
There are many different types of fire hoses, but the type you're probably picturing is called an "attack hose" that's the hose that takes water from the pumping system to the nozzle. It's the business end of the operation. The typical attack hose is 1530 cm long and has an inner diameter of as much as 7.6 cm. The volume of a hose is the length of the hose, times the area of its circular cross-section. With an inner diameter of 7.6 cm, an attack hose has a cross-section of πr2=3.14*3.8^2= 45.34 square cm. So, the volume of water in a full attack hose is 1530*45.34= 69370.2 cubic cm. That's about 18.32 gallons.
as long s you like however the longer they are the more water turnover you lose as a result of the friction in the hose or pipe, If you need to move water over a long distance make the diameter of the pipe as large as possible.
Area CalculationThe area of the hose section is equal to pi (3.1416) multiplied by the square of the radius. Garden hose comes in a variety of sizes, from 1/2-inch to 1-inch. 3/4-inch hose is typical. Using that as an example, the square of the radius (.375 multiplied by .375) equals .140625. That result multiplied times pi equals .4417875 square inches.Volume CalculationTo calculate the volume, the length of the hose must first be converted to the same measurement standard. 100 feet of garden hose is 1,200 inches. 1,200 times .4417875 equals 530.145 cubic inches.Volume ConversionTo state the volume in a more meaningful manner, cubic inches should be converted to a more common measure of liquid volume. One gallon of water contains 231 cubic inches. So, the 100-foot long, 3/4-inch diameter garden hose holds 2.3 gallons of water (530.145 divided by 231).
The heater hose for a 2004 F-150 Heritage is 21 inches long. End number one has an inner diameter of 0.78 inches and an outer diameter of 1-inch. End number two has an inner diameter of 0.75 inches and an outer diameter of 0.78 inches.