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Chemistry
Bond dissociation energy of O2(g) is x kJ mol-1. This means that
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Q. Bond dissociation energy of $O_2(g) \, is \, x \, kJ \, mol^{-1}$. This means that
Thermodynamics
A
x kJ of energy is required to break one $O_2$ molecule into atom
12%
B
x kJ of energy is required to break 1 mole of O = O bond in gaseous state
69%
C
x kJ of energy is needed to convert $O(g) in O^{-1}(g)$
9%
D
x kJ of energy is required to break 0=0 bonds in 16g of $O_2$ gas
9%
Solution:
Based upon definition