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[" Calculate the work done (in "J)" when "4.5" of "H_(2)O_(2)" reacts against a pressure of "1.0" atm at "25^(@)C],[qquad 2H_(2)O_(2)(l)longrightarrow O_(2)(g)+2H_(2)O(l)],[[-1.63times10^(2)," (b) "4.5times10^(2)," (c) "3.2times10^(2)," (d) "-6.1times10^(2)]]

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Calculate the work done (in J) when 4.5 g of H_(2)O_(2) reacts against a pressure of 1.0 atm at 25^(@)C 2H_(2)O_(2)(l)rarr O_(2)(g) +2H_(2)O(l)

Calculate the work done (in J) when 4.5 g of H_(2)O_(2) reacts against a pressure of 1.0 atm at 25^(@)C 2H_(2)O_(2)(l)rarr O_(2)(g) +2H_(2)O(l)

For the process, H_(2)O(l) to H_(2)O(g)

For the process, H_(2)O(l) to H_(2)O(g)

If 100 mole of H_(2)O_(2) decompose at 1 bar and 300 K, the work done (kJ) by one mole of O_(2)(g) as it expands against 1 bar pressure is 2H_(2)O_(2) (l) overset(rarr)(larr) 2H_(2)O(l)+O_(2) (g) (R=8.3 JK^(-1) mol^(-1))

If 100 mole of H_(2)O_(2) decompose at 1 bar and 300 K, the work done (kJ) by one mole of O_(2)(g) as it expands against 1 bar pressure is 2H_(2)O_(2) (l) overset(rarr)(larr) 2H_(2)O(l)+O_(2) (g) (R=8.3 JK^(-1) mol^(-1))

Decomposition of H_(2)O_(2) is retarded by : 2H_(2)O_(2)(l) rarr 2H_(2)O(l)+O_(2)(g)

Decomposition of H_(2)O_(2) is retarded by : 2H_(2)O_(2)(l) rarr 2H_(2)O(l)+O_(2)(g)