Another popular choice in the determination of the Boltzmann constant is using Johnson Noise Thermometry (JNT). The dielectric constant gas thermometry is a method that measures the responses of gas to an electric field change. JNT uses the information that the speed of sound in a gas is depend...
Assuming the cylinder is rigid and doesn't expand when filled with oxygen, we can use the ideal gas law to calculate the mass of oxygen in the cylinder:PV = nRT where P is the pressure, V is the volume, n is the number of moles, R is the universal gas constant, and T...
(a) What is the value of the compressibility for an ideal gas? (b) Does the value vary with p, V, T, or n? Explain your answer. When using the Ideal Gas Law, PV = nRT, in this experiment, the variable n represents: (blank...
How many moles of oxygen gas must be in a 12.2 L container to exert a pressure of 0.877 atm at a temperature of 35.0 degree C (the ideal gas constant, in this case, is 0.0821 L atm/mole K)? A 45.0 L container holds 38.0 mole...
In the equation of state of an ideal gas PV =nRT , the value of the universal gas constant is not correct : View Solution Exams IIT JEE NEET UP Board Bihar Board CBSE Free Textbook Solutions KC Sinha Solutions for Maths Cengage Solutions for Maths ...
The units which are used in this equation are independent of each other.Complete answer: The ideal gas equation for the ideal conditions is given by:$PV{\text{ = nRT}}$At a constant temperature the product of pressure and volume of the same number of moles of gas is always cons...
From my point of view, regarding the gas molecules as charge particles, in a constant volume, when temperature increases, the electron clouds of gas molecules are being affected (but don't know how). This effect will increase the "charge" (nucleus-nucleus / electron-electron repulsions) of ...
n = moles of the substance (mol) (it's a number that is dependent on the molecular weight of a substance) R = gas constant = 0.0821 L-atm/mol-K T= temperature in Kelvin (K) To solve for temperature, you rearrange the equation (pV = nRT) above to get temperature by itself. So,...
PV=nRTPV=nRT In this equation, P is the pressure, V is the volume, T is the temperature, R is the ideal gas constant, and n is the amount of gas in units of moles. An example of gas exerting pressure is the pressure from our atmosphere, referred to as atmospheric pressure. Our bo...
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