3. Given the following thermochemical equations, 4B(s) + 30:(g) → 2B,0;(s) AHO= -2543.8 kJ H2 (g) + ½02(g) → H2O (g) AHO= -241.8 kJ B,H6(s) + 302(g) → B20;(s) + 3H2O (g) AHO= -2032.9 kJ Calculate the AH° for the decomposition of B2H6 into its elements.

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3. Given the following thermochemical equations,
4B(s) + 302(g) → 2B2O;(s)
AHO= -2543.8 kJ
H2 (g) + ½ O2(g) → H20 (g)
AHO= -241.8 kJ
B2H(s) + 302(g) → B2O3(s) + 3H2O (g)
AHO= -2032.9 kJ
Calculate the AH° for the decomposition of B2H6 into its elements.
Transcribed Image Text:3. Given the following thermochemical equations, 4B(s) + 302(g) → 2B2O;(s) AHO= -2543.8 kJ H2 (g) + ½ O2(g) → H20 (g) AHO= -241.8 kJ B2H(s) + 302(g) → B2O3(s) + 3H2O (g) AHO= -2032.9 kJ Calculate the AH° for the decomposition of B2H6 into its elements.
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