Sulfur (2.22 g) was burned in a constant volume calorimeter with excess O₂(g). The temperature increased from 21.08 °C to 26.70 °C. The bomb has a heat capacity of 802 J/K, and the calorimeter contained 682 g of water. (Specific heat capacity of water is 4.184 J/g. K.) Calculate AU per mole of SO₂ formed for the reaction. Ss (s) + 8 O2(g) → 8 SO₂ (g)

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S8 (s) + 8 02 (g) → 8 SO2 (g)
W
G
east.cengagenow.com
Sulfur burns in oxygen with a bright blue flame to give SO2 (g).
AU =
kJ/mol
SO2
Jom
Ⓒ
attempts remaining
[References]
Sulfur (2.22 g) was burned in a constant volume calorimeter with excess
O2 (g). The temperature increased from 21.08 °C to 26.70 °C. The bomb has a heat capacity of 802 J/K, and the calorimeter contained 682 g of water. (Specific heat
capacity of water is 4.184 J/g. K.) Calculate
AU per
mole of
SO2 formed for the reaction.
H
a 8
Thu Oct 27
Transcribed Image Text:View ect. 6) History Bookmarks Window COWLv2 ... Help S8 (s) + 8 02 (g) → 8 SO2 (g) W G east.cengagenow.com Sulfur burns in oxygen with a bright blue flame to give SO2 (g). AU = kJ/mol SO2 Jom Ⓒ attempts remaining [References] Sulfur (2.22 g) was burned in a constant volume calorimeter with excess O2 (g). The temperature increased from 21.08 °C to 26.70 °C. The bomb has a heat capacity of 802 J/K, and the calorimeter contained 682 g of water. (Specific heat capacity of water is 4.184 J/g. K.) Calculate AU per mole of SO2 formed for the reaction. H a 8 Thu Oct 27
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