What is the molecular shape of BrF5? a) linear Ob) square planar c) octahedral d) square pyramidal e) trigonal bipyramidal Gases emitted during volcanic activity often contain high concentrations of hydrogen sulfide and sulfur dioxide. These gases may react to produce deposits of sulfur according to the equation: 2 H₂S(g) + SO₂(g) → 3 S(s) + 2 H₂O(g) - For the complete reaction of 6.41 mol of hydrogen sulfide: a) 231 g of water vapor is produced b) 308 g of sulfur is formed c) 628 g of total reactants are consumed d) 410 g of sulfur dioxide is consumed e) 320 g of total products result

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Chapter1: Chemical Foundations
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What is the molecular shape of BrF5?
a) linear
Ob) square planar
c) octahedral
d) square pyramidal
e) trigonal bipyramidal
Transcribed Image Text:What is the molecular shape of BrF5? a) linear Ob) square planar c) octahedral d) square pyramidal e) trigonal bipyramidal
Gases emitted during volcanic activity often contain high concentrations of hydrogen
sulfide and sulfur dioxide. These gases may react to produce deposits of sulfur
according to the equation:
2 H₂S(g) + SO₂(g) → 3 S(s) + 2 H₂O(g)
-
For the complete reaction of 6.41 mol of hydrogen sulfide:
a) 231 g of water vapor is produced
b) 308 g of sulfur is formed
c) 628 g of total reactants are consumed
d) 410 g of sulfur dioxide is consumed
e) 320 g of total products result
Transcribed Image Text:Gases emitted during volcanic activity often contain high concentrations of hydrogen sulfide and sulfur dioxide. These gases may react to produce deposits of sulfur according to the equation: 2 H₂S(g) + SO₂(g) → 3 S(s) + 2 H₂O(g) - For the complete reaction of 6.41 mol of hydrogen sulfide: a) 231 g of water vapor is produced b) 308 g of sulfur is formed c) 628 g of total reactants are consumed d) 410 g of sulfur dioxide is consumed e) 320 g of total products result
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