The reaction of sulfur trioxide with atmospheric water droplets results in sulfuric acid, a contributor to acid rain. According to the equation below, how many moles of sulfuric acid can you predict will be formed from 58.0 g of SO3 and an excess of water? SO3(g) + H₂O()→ H₂SO4(aq) A. 0.724 mol B. 0.242 mol C. 0.592 mol OD. 1.45 mol

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The reaction of sulfur trioxide with atmospheric water droplets results in
sulfuric acid, a contributor to acid rain. According to the equation below,
how many moles of sulfuric acid can you predict will be formed from 58.0 g
of SO3 and an excess of water?
SO3(g) + H₂O()→ H₂SO4(aq)
OA. 0.724 mol
OB. 0.242 mol
OC. 0.592 mol
OD. 1.45 mol
Transcribed Image Text:The reaction of sulfur trioxide with atmospheric water droplets results in sulfuric acid, a contributor to acid rain. According to the equation below, how many moles of sulfuric acid can you predict will be formed from 58.0 g of SO3 and an excess of water? SO3(g) + H₂O()→ H₂SO4(aq) OA. 0.724 mol OB. 0.242 mol OC. 0.592 mol OD. 1.45 mol
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