Given the following equations and AH° values, determine the heat of reaction (kJ) at 298 K for the reaction: B2Ho(g) + 6 C2(g) -> 2 BCI,(g) + 6 HCI(g) H,BO3(g) + 3 HCI(g) 2H,BO3(s) + 6 H2(g) BCI(g) + 3 H,0(1) AHO/kJ = -112.5 B2H6(g) + 6 H20(1) AH/kJ = -493.4 AHO/kJ = -92.3 1/2 H2(g) + 1/2 Cl(g) → HCI(g)

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Given the following equations and AH° values, determine the heat of reaction (kJ) at
298 K for the reaction:
B,He(g) + 6 Cl2(g)
->
2 BCI,(g) + 6 HCI(g)
BCI,(g) + 3 H,O(1)
B2H6(g) + 6 H20(1)
1/2 H2(g) + 1/2 Cl2(g)
H;BO3(g) + 3 HCI(g)
2H;BO,(s) + 6 H2(g)
AH/kJ = -112.5
AHO/kJ = -493.4
AHO/kJ = -92.3
HCI(g)
Transcribed Image Text:Given the following equations and AH° values, determine the heat of reaction (kJ) at 298 K for the reaction: B,He(g) + 6 Cl2(g) -> 2 BCI,(g) + 6 HCI(g) BCI,(g) + 3 H,O(1) B2H6(g) + 6 H20(1) 1/2 H2(g) + 1/2 Cl2(g) H;BO3(g) + 3 HCI(g) 2H;BO,(s) + 6 H2(g) AH/kJ = -112.5 AHO/kJ = -493.4 AHO/kJ = -92.3 HCI(g)
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