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The average molecular weight of naphtha is 157.5 g/mol. Each molecule of naphtha can have vastly different weight because naphtha is a mixture of many different volatile hydrocarbons.
There are approximately 7.33 barrels of naphtha in a tonne. This conversion can vary slightly based on the specific density of the naphtha, as it can range from 0.7 to 0.8 kg/liter. Generally, using an average density allows for this approximation. Always check specific density for precise calculations.
Naphtha will typically float on water due to its lighter density compared to water. This is because naphtha is a hydrocarbon-based liquid which is less dense than water.
One metric ton of light naphtha is approximately equal to 7.33 barrels. This conversion can vary slightly based on the specific density of the naphtha, but 7.33 barrels is a commonly used estimate for light naphtha.
To convert metric tons of naphtha to US gallons, you need to know the density of naphtha, which is typically around 0.7 to 0.8 kg/L. Using an average density of 0.75 kg/L, 1 metric ton (1,000 kg) of naphtha would be approximately 1,333 liters. Since 1 US gallon is about 3.785 liters, this equals roughly 352 US gallons in 1 metric ton of naphtha.
To calculate the flow rate in a pipeline, you can use the formula Q = A * V, where Q is the flow rate (volume per unit time), A is the cross-sectional area of the pipeline, and V is the velocity of the fluid in the pipeline. The units of flow rate are typically volume per unit time (e.g., cubic meters per second). You may need to know the density of the fluid flowing in the pipeline to convert the flow rate to a mass flow rate.
MOPS stands for Mean of Platts Singapore... MOPS Naphtha is Singapore Naphtha. Japan Naphtha is MOPJ Naphtha.
You can't. It's impossible.
It means: * Calculate the density of an object * Calculate the density of its pieces * Compare
To calculate the quantity of nitrogen gas needed for purging a pipeline, you would first need to determine the volume of the pipeline. Once you have the volume, you can use the ideal gas law (PV = nRT) to calculate the amount of nitrogen gas required. Make sure to consider factors such as the desired flow rate, pressure, and temperature during the purging process.
You can calculate the mass of an object by multiplying its density by its volume. The formula to calculate mass is: mass = density x volume.
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