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Calculate the ratio of KE of molecule of...

Calculate the ratio of KE of molecule of oxygen and neon gas at `27^(@)C.`

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To calculate the ratio of the kinetic energy (KE) of a molecule of oxygen (O₂) and neon (Ne) gas at 27°C, we can follow these steps: ### Step 1: Convert Celsius to Kelvin First, we need to convert the temperature from Celsius to Kelvin because the kinetic energy formula uses absolute temperature (Kelvin). \[ T = 27 + 273 = 300 \, K \] ...
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DC PANDEY ENGLISH-THERMOMETRY THERMAL EXPANSION AND KINETIC THEORY OF GASES-Medical entrance gallary
  1. Calculate the ratio of KE of molecule of oxygen and neon gas at 27^(@)...

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  2. A sample of an ideal gas occupies a volume V at pressure P and absolut...

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  3. Two rods, one of aluminum and the other made of steel, having initial ...

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  4. The molecules of a given mass of a gas have rms velocity of 200 m/s a...

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  5. The rms speed of oxygen molecule in a gas at 27^(@)C would be given by

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  6. The pressure of an ideal gas is directly proportional to

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  7. Two different wires having lengths L(1) and L(2) and respective t...

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  8. The ratio of rms speed of an ideal gas molecules at pressure p to that...

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  9. The rms speed of oxygen molecules in a gas in a gas is v. If the tempe...

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  10. The deviation of a real gas from the ideal one is minimum at

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  11. (a) Calculate (i) root-mean-square speed and (ii) the mean energy of 1...

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  12. The value of coefficient of volume expansion of glycerin is 5 xx 10^(-...

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  13. Pressure remaining the constant, the volume of a given mass of an idea...

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  14. When water is heated from 0^(@)C to 10^(@)C , its volume

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  15. The length of s steel rod exceeds that of a brass rod by 5 cm. If the ...

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  16. The density of water is maximum at:

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  17. A metal rod if fixed rigidly at two ends so as to prevent its thermal ...

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  18. Which one of the following is a wrong statement in kinetic theory of g...

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  19. The mean free path of molecules of a gas (radius r) is inversely propo...

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  20. Prove that the pressure of an ideal gas is numerically equal to two th...

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  21. According to equipartition law of energy each particle in a system of ...

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