Tag: isothermal and adiabatic processes
Questions Related to isothermal and adiabatic processes
For an isothermal expansion of an ideal gas, mark wrong statement
If a given mass of gas occupies a volume of 10 cc at 1 atmospheric pressure and temperature 100$^o$C. What will be its volume at 4 atmospheric pressure, the temperature being the same?
The cyclic process from X to Y is an isothermal process.
If the pressure of the gas at X is 4.0 kPa, and the volume is 6.0 cubic meters, and if the pressure at Y is 8.0 kPa, what is the volume of the gas at Y?
The work done y a gas is an isothermal change where 1 refers to initial state and 2 refers to final state is
A thin tube of uniform cross-section is sealed at both ends. When it lies horizontally, the middle $5$cm length contains mercury and the two equal ends contain air at the same pressure P. When the tube is held at an angle of $60^o$ with the vertical, then the lengths of the air columns above and below the mercury column are $46$cm and $44.5$cm respectively. Calculate the pressure P in cm of mercury. The temperature of the system is kept at $30^o$C.
An ideal gas system undergoes an isothermal process, then the work done during the process is:
A vertical cyclinder with heat - conducting with heat conducting walls is closed at the bottom and its fitted with a smooth light piston. It contains one mole of an ideal gas. The temperature of the gas is always equal to the surrounding's temperature $T _o$ . The piston is moved up slowly to increase the volume of the gas to $n$ times. Which of the following is incorrect?
Two moles of a gas is expanded to double its volume by two different processors. One is isobaric and the other is isothermal. If ${w} _{1}$ and ${w} _{2}$ are the works done respectively, then
Let $ \triangle W _a and \triangle W _b $ the work done by the system A and B respectively in the previous question
In an adiabatic change, the pressure $P$ and temperature $T$ of a diatomic gas are related by the relation $P\ \propto \ T^{c}$, where $C$ equals to: