It will be a quart.
To determine how many liters of oxygen represents 40 percent, you need to know the total volume of the mixture. For example, if you have 100 liters of gas, then 40 percent of that would be 40 liters of oxygen. Thus, the specific volume of oxygen depends on the total volume you’re considering.
The secret is that copper packs more mass than wood or plastic do into the same volume.
2 milliliters
If you cannot estimate the height then, unless it is a very specific shape, you cannot calculate the volume.
To estimate the volume that 30 pennies would fill, we can use the dimensions of a penny, which is approximately 1.9 cm in diameter and 0.15 cm in thickness. The volume of a single penny is about 0.36 cm³. Therefore, 30 pennies would have a total volume of approximately 10.8 cm³. This is a rough estimate, as actual packing and arrangement can affect the total volume occupied.
You can estimate the volume of oxygen generated in a plastic bag by knowing the concentration of the oxygen generated and the total volume of the bag. Multiply the concentration of oxygen by the total volume of the bag to get an estimate of the volume of oxygen generated.
The decomposition of water (H₂O) into hydrogen and oxygen gas occurs in a 2:1 volume ratio. This means that for every two volumes of hydrogen gas produced, one volume of oxygen gas is generated. This ratio is consistent with the chemical reaction 2 H₂O → 2 H₂ + O₂. Therefore, in terms of gas volumes, hydrogen is produced twice as much as oxygen.
oxygen is used ... volume decreases.
To estimate the volume of the pot.
Divide 225ml by 20.9, then multiply by 100.
if this is math and your asking what gas has a percent by volume 78.09 it is nitrogen
The volume of hydrogen gas compares to the volume of oxygen gas based on their stoichiometric ratio in chemical reactions, particularly in the formation of water. In the reaction 2H₂ + O₂ → 2H₂O, two volumes of hydrogen gas react with one volume of oxygen gas. This means that for every two volumes of hydrogen, there is one volume of oxygen. Therefore, the volume of hydrogen gas is twice that of oxygen gas in this specific reaction.
Oxygen makes up 21 percent of the air by volume.
20 cups
Oxygen packing density refers to the amount of molecular oxygen that can be contained in a given volume or space. It is commonly used in the context of oxygen storage systems, such as oxygen tanks or containers, to determine how much oxygen can be stored in a specific volume. The higher the oxygen packing density, the more oxygen that can be stored in a smaller space.
About 20% of the volume of the air in the room is oxygen.
it increase as a result of pressure generated from the heat