0.982 grams of n2o, nitrous oxide, are contained in 500. ml of the gas at stp.
PV= NRT,, P= pressure , V= volume , N= number of moles,R= gas constant , T= Temperature.1 atm x 500gt) = x (0.082) x 273K, 1/2atmlt = m/449/mot X (0·082) X 273 .m= 1/2x44x1/0.082X273= 0.982grams . The Ideal Gas Law. PV = nRT. The pressure of a gas multiplied by its quantity corresponds to the number of moles of gas magnified by a constant (R) multiplied by the the gas's temperature. Because it relates the quantity of a gas (moles) to its pressure, volume, as well as temperature, the ideal gas law is indeed the final and the most useful affirmation of the gas laws. The ideal gas law, also known as the universal gas equation, is the state equation of a purely theoretical thermodynamic equilibrium. Although it has several limitations, it is a decent indicator of the behaviour of many gases under so many conditions. The mass in grammes of one molarity of a single - molecule substance is known as the gramme molecular mass. Molar mass and gramme molecular mass are same thing.
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