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For the real gases reaction 2CO(g)+O(2)(...

For the real gases reaction `2CO(g)+O_(2)(g)rarr2CO_(2)(g)` : `DeltaH=-560kJ` . In a 10 litre rigid vesel at `500K` , the initial pressure is 70 bar and after the reaction it becomes 40 bar. The change in internal energy is:

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For the real gases reaction, 2CO(g)+O_(2)(g)to2CO_(2)(g),DeltaH=-560 kJ. In 10 litre rigid vessel at 500 K the initial pressure is 70 bar and after the reaction it becomes 40 bar. The change in internal energy is :

For the real gases reaction, 2CO(g)+O_(2)(g)to2CO_(2)(g),DeltaH=-560 kJ. In 10 litre rigid vessel at 500 K the initial pressure is 70 bar and after the reaction it becomes 40 bar. The change in internal energy is :

For the real gases reaction, 2CO(g)+O_(2)(g)to2CO_(2)(g),DeltaH=-560 kJ. In 10 litre rigid vessel at 500 K the initial pressure is 70 bar and after the reaction it becomes 40 bar. The change in internal energy is :

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For the real gas reaction, 2A(g)+B(g)to2C(g) deltaH=-440kJ//mol If the reaction is carried out in 10 litre rigid vessol, the initial pressure is 50"bar" bar which decreses to 20"bar" in the course of reactioin. The change in internal energy for the reaction is:

In the reaction CO_(2)(g)+H_(2)(g)rarrCO(g)+H_(2)O(g), DeltaH=2.8 kJ DeltaH represents