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Ideal and Real Gases
An ideal gas is one, which obeys the general gas equation of PV = nRT and other gas laws at all temperatures and pressures. A real gas, does not obey the general gas equation and other gas ..
The Ideal Gas Equation
o t , because later on in the chapter, we use m for the mass of one molecule. Measurements of the behavior of various gases lead to several conclusions. First, the volume V is proportional to the number of moles n. If we double the number of moles, keeping pressure and temperature constant, th..
Ideal Gas Equation
). This means that 'K' is directly proportional to the number of moles, 'n', i.e., K n or K = nR, where 'R' is the universal gas constant of proportionality. The value of 'R' is same for all gases. However, the numerical value of 'R' varies with the units in which pressure and volume are ..
Ideal and Real Gases
An ideal gas is one, which obeys the general gas equation of PV = nRT and other gas laws at all temperatures and pressures. A real gas, does not obey the general gas equation and other gas..
Ideal Gas Equation
By combining Boyle's and Charles' laws, an equation can be derived that gives the simultaneous effect of the changes of pressure and temperature on the volume of the gas. This is known as combined Ideal Gas Equation..
Average kinetic energy of a gas
From the kinetic model of gases, For an ideal gas,..
Universal gas constant (R)
From the above ideal gas equation: ..
From the above ideal gas equation: ..Equilibrium Between a Gas and its Solution
. The dependence of solubility of a gas and its pressure above the solvent is given by a law known as Henry's law. This law states that 'the mass of a gas dissolved in a given mass of a solvent at a particular temperature is proportional to the pressure of the gas in e..
. The dependence of solubility of a gas and its pressure above the solvent is given by a law known as Henry's law. This law states that 'the mass of a gas dissolved in a given mass of a solvent at a particular temperature is proportional to the pressure of the gas in e..Gay-lussac's law states that at fixed volume, for a given amount of id..
Gay-lussac's law states that at fixed volume, for a given amount of ideal gas the pressure(P) is directly proportional to the absolute temperature(T). Which of the following curves represents the relationship between P and T. => Graph B or Graph C or Graph A..
Effect of pressure
All gases are known to exist as real gases and show ideal behaviour only to some extent under certain conditions. When PV = nRT for ideal gases, then the ratio..
All gases are known to exist as real gases and show ideal behaviour only to some extent under certain conditions. When PV = nRT for ideal gases, then the ratio.. Result
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