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A container of neon gas has the following properties: (1) 0.5 moles (2) t = 432 k (3) p = 1.9 atm. Calculate the entropy in J K-1 as a number in normal form accurate to 1 decimal place (x.x or xx.x, etc.). Do not include units in your answer.

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Final answer:

Use the ideal gas law and thermodynamics equations to calculate the entropy of neon gas, considering similar calculations from reference examples.

Step-by-step explanation:

To calculate the entropy of neon gas with the given properties of 0.5 moles, a temperature of 432 K, and a pressure of 1.9 atm, we use the ideal gas law and thermodynamic equations. This question is closely related to the concepts of thermodynamics and the behavioral study of gases, which often involves calculations of state functions like entropy, enthalpy, and internal energy changes in a system.

The provided information and exercises from other related problems offer instances of entropy change calculations under various conditions, including adiabatic processes and constant pressure scenarios. These exercises serve as reference examples to guide us in calculating entropy change accurately under the specified conditions for neon gas.

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