Part A Notice that "SO4" appears in two different places in this chemical equation. SO, is a polyatomic ion called "sulfate." What number should be placed in front of CaSO, to give the same total number of sulfate ions on each side of the equation? ?CASO4 + AlCl3→CaCl2 + Al2(SO4)3 Express your answer numerically as an integer. > View Available Hint(s) Submit

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Part A
Notice that "SO4" appears in two different places in this chemical equation. SO, is a polyatomic ion called "sulfate." What number should be placed in front of
CaSO, to give the same total number of sulfate ions on each side of the equation?
?CASO4 + AlCl3→CaCl2 + Al2(SO4)3
Express your answer numerically as an integer.
> View Available Hint(s)
Submit
Transcribed Image Text:Part A Notice that "SO4" appears in two different places in this chemical equation. SO, is a polyatomic ion called "sulfate." What number should be placed in front of CaSO, to give the same total number of sulfate ions on each side of the equation? ?CASO4 + AlCl3→CaCl2 + Al2(SO4)3 Express your answer numerically as an integer. > View Available Hint(s) Submit
Learning Goal:
According to the law of conservation of mass, matter cannot be
created or destroyed. Therefore, a chemical equation must show the
same number of each kind of atom in the reactants as it does in the
products. As shown in the figure, the balanced equation
3H2 + N2+2NH3 has 6 atoms of hydrogen and 2 atoms of nitrogen
on each side of the arrow.
3 H2
N2
2 NH3
H
H
N
H
H H
HH
NN
HH
H
H
H
One is often presented with unbalanced chemical equations for which
one must supply the coefficients.
Transcribed Image Text:Learning Goal: According to the law of conservation of mass, matter cannot be created or destroyed. Therefore, a chemical equation must show the same number of each kind of atom in the reactants as it does in the products. As shown in the figure, the balanced equation 3H2 + N2+2NH3 has 6 atoms of hydrogen and 2 atoms of nitrogen on each side of the arrow. 3 H2 N2 2 NH3 H H N H H H HH NN HH H H H One is often presented with unbalanced chemical equations for which one must supply the coefficients.
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