For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.310 moles of the first reactant. Co(s) + F2(9) → COF3(s) |mol F2 Submit b For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.192 moles of the first reactant. Al(s) + H2SO, (ag) → Al (SO,)s(s) + H2 (9) |mol H,SO4 For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.424 moles of the first reactant. K(s) + H30(1) → KOH(ag) + H2(9) |mol H20 d For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.588 moles of the first reactant. Cu(s) + O2 (9) → CugO(s) mol O2

Chemistry for Engineering Students
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Chapter3: Molecules, Moles, And Chemical Equations
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Problem 3.75PAE: 3.75 The following pictures show a molecular-scale view of a chemical reaction between the compounds...
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For the following balanced chemical equation, calculate how many moles of products would be produced if 

For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.310 moles of the first reactant.
Co(s) + F2(9) → CoF;(s)
mol F2
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b For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.192 moles of the first reactant.
Al(s) + H2SO, (ag) + Alz (SO4)3(s) + H2 (9)
mol H, SO,
For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.424 moles of the first reactant.
К() + Н,о() — кон(ад) + Hа (9)
mol H20
d For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.588 moles of the first reactant.
Cu(s) + 02 (g) -→ CuzO(s)
mol O2
Transcribed Image Text:For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.310 moles of the first reactant. Co(s) + F2(9) → CoF;(s) mol F2 Submit b For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.192 moles of the first reactant. Al(s) + H2SO, (ag) + Alz (SO4)3(s) + H2 (9) mol H, SO, For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.424 moles of the first reactant. К() + Н,о() — кон(ад) + Hа (9) mol H20 d For the following unbalanced equation, calculate how many moles of the second reactant would be required to react completely with 0.588 moles of the first reactant. Cu(s) + 02 (g) -→ CuzO(s) mol O2
For the following balanced chemical equation, calculate how many grams of the products would be produced by complete reaction of 0.285 mol of the first reactant.
AGNO, (ag) + LIOH(ag) → AGOH(s) + LINO3 (ag)
]g AgOH
g LINOS
Submit
b For the following balanced chemical equation, calculate how many grams of the products would be produced by complete reaction of 0.105 mol of the first reactant.
Al3 (SO,)s (ag) + 3CaCl, (ag) → 2AICl (ag) + 3CaSO,(s)
g AICI3
|g CaSO4
C For the following balanced chemical equation, calculate how many grams of the products would be produced by complete reaction of 0.155 mol of the first reactant.
CaCO: (s) + 2HCI(ag) + CaCl2 (ag) + CO2 (g) + H0(1)
g CaCl2
g CO2
g H20
Transcribed Image Text:For the following balanced chemical equation, calculate how many grams of the products would be produced by complete reaction of 0.285 mol of the first reactant. AGNO, (ag) + LIOH(ag) → AGOH(s) + LINO3 (ag) ]g AgOH g LINOS Submit b For the following balanced chemical equation, calculate how many grams of the products would be produced by complete reaction of 0.105 mol of the first reactant. Al3 (SO,)s (ag) + 3CaCl, (ag) → 2AICl (ag) + 3CaSO,(s) g AICI3 |g CaSO4 C For the following balanced chemical equation, calculate how many grams of the products would be produced by complete reaction of 0.155 mol of the first reactant. CaCO: (s) + 2HCI(ag) + CaCl2 (ag) + CO2 (g) + H0(1) g CaCl2 g CO2 g H20
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