Since volumes of gases change with temperature and pressure, a standard value of temperature and pressuure is chosen to which gas volumes are referred. Hence volumes of gases are converted into S.T.P. conditions and then compared easily.
Avogadro's Law states that equal volumes of gases at the same temperature and pressure contain equal numbers of molecules. This relationship allows for the comparison of different gases under the same conditions.
This law give the variation in volume of a gas with amount of the gas. It states that equal volumes of all gases under similar conditions of temperature and pressure contain equal number of molecules.
The law of combining volumes states that the ratios of volumes of reacting gases can be expressed as small whole number ratios. This law is based on the assumption that gases behave ideally, meaning they occupy the same amount of space as predicted by the ideal gas law. Therefore, this law does not apply to the volumes of liquids or solids.
The property of gases being compressible allows them to be densely packed into small volumes, such as cylinders. This means that gas particles can be squeezed close together, reducing the overall size of the gas. This compressibility allows for the storage of large volumes of gases in relatively small containers.
Avogadro's Law states that equal volumes of gases, at the same temperature and pressure, contain equal numbers of molecules. Therefore, for a chemical reaction involving gases, you can use Avogadro's equation to predict the volume of the product gas produced based on the volume of the reactant gases consumed. The equation is V1/n1 = V2/n2, where V1 and V2 are the initial and final volumes of the gases, and n1 and n2 are the number of moles of the gases.
Equal volumes of gases under the same conditions of temperature and pressure have an equal number of molecules, according to Avogadro's Law. This relationship allows for direct comparisons of the amounts of different gases.
Avogadro's Law states that equal volumes of gases at the same temperature and pressure contain equal numbers of molecules. This relationship allows for the comparison of different gases under the same conditions.
The ratio between reactant gases and product gases are simple integers.
This law give the variation in volume of a gas with amount of the gas. It states that equal volumes of all gases under similar conditions of temperature and pressure contain equal number of molecules.
compressibility
Avogadro's hypothesis states that equal volumes of gases at the same temperature and pressure contain the same number of molecules. This principle helped establish the concept of the mole as a unit for measuring the amount of substance.
It is a process where solid directly converted in gases & gases directly converted in solid without going in liquid it is known as sublimation.
The law of combining volumes states that the ratios of volumes of reacting gases can be expressed as small whole number ratios. This law is based on the assumption that gases behave ideally, meaning they occupy the same amount of space as predicted by the ideal gas law. Therefore, this law does not apply to the volumes of liquids or solids.
A law stating that the volumes of gases undergoing a reaction at constant pressure and temperature are in a simple ratio to each other and to that of the product.Gay-Lussac's law, known as the law of combining volumes, states that: The ratio between the combining volumes of gases and the product, if gaseous, can be expressed in small whole numbers
Yes, with sufficient cooling.
the gases are converted to less harmful gases as nox to no2
Avogadro's law states that equal volumes of gases at the same temperature and pressure will contain an equal number of molecules. This implies that the volume of a gas is directly proportional to the number of molecules present. It is a fundamental principle in understanding the behavior of gases.