Question: Using Matlab Problem 4: The ideal gas law describes the relationship between pressure (P), temperature (T), volume (V), and the number of moles of gas

Using Matlab

Using Matlab Problem 4: The ideal gas law describes the relationship between

Problem 4: The ideal gas law describes the relationship between pressure (P), temperature (T), volume (V), and the number of moles of gas (n). PV=nRT The additional symbol, R, represents the ideal gas constant. The ideal gas law is a good approximation of the behavior of gases when the pressure is low and the temperature is high. (What constitutes low pressure and high temperature varies with different gases.) In 1873, Johannes Diderik van der Waals proposed a modified version of the ideal gas law that better models the behavior of real gases over a wider range of temperature and pressure. Page 2 of 3 (P+V2n2a)(Vnb)=nRT In this equation the additional variables a and b represent values characteristic of individual gases. Use both the ideal gas law and van der Waals' equation to calculate the temperature (T), given the following data, for: *Source: Weast, R. C. (Ed.), Handbook of Chemistry and Physics (53rd Edn.), Cleveland: Chemical Rubber Co., 1972. (a) 10 values of pressure from 0 bar to 400 bar for volume of 1L (b) 10 values of volume from 0.1L to 10L for a pressure of 220bar Problem 4: The ideal gas law describes the relationship between pressure (P), temperature (T), volume (V), and the number of moles of gas (n). PV=nRT The additional symbol, R, represents the ideal gas constant. The ideal gas law is a good approximation of the behavior of gases when the pressure is low and the temperature is high. (What constitutes low pressure and high temperature varies with different gases.) In 1873, Johannes Diderik van der Waals proposed a modified version of the ideal gas law that better models the behavior of real gases over a wider range of temperature and pressure. Page 2 of 3 (P+V2n2a)(Vnb)=nRT In this equation the additional variables a and b represent values characteristic of individual gases. Use both the ideal gas law and van der Waals' equation to calculate the temperature (T), given the following data, for: *Source: Weast, R. C. (Ed.), Handbook of Chemistry and Physics (53rd Edn.), Cleveland: Chemical Rubber Co., 1972. (a) 10 values of pressure from 0 bar to 400 bar for volume of 1L (b) 10 values of volume from 0.1L to 10L for a pressure of 220bar

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