1. Write the charge balance for a MgSO4 and NaNO3 solution that contains H+, OH, Mg2+, HSO4, SO²-4, MgHSO*4, MgOH+, Na+, and NO 3. A. [SO2-4]+[Mg2+]=[OH-]+[HSO−4]+[H+]+[NO−3]+[MgHSO+4]+[MgOH+]+[Na+] B. [H+]+2[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+2[SO2-4]+[NO-3] [H+]+[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+[SO2-4]+[NO-3] C. D. [Mg2+]+[MgHSO+4]+[MgOH+]=[OH-]+[HSO-4]+[SO2−4]+[NO−3] +[H+]+[Na+]
1. Write the charge balance for a MgSO4 and NaNO3 solution that contains H+, OH, Mg2+, HSO4, SO²-4, MgHSO*4, MgOH+, Na+, and NO 3. A. [SO2-4]+[Mg2+]=[OH-]+[HSO−4]+[H+]+[NO−3]+[MgHSO+4]+[MgOH+]+[Na+] B. [H+]+2[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+2[SO2-4]+[NO-3] [H+]+[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+[SO2-4]+[NO-3] C. D. [Mg2+]+[MgHSO+4]+[MgOH+]=[OH-]+[HSO-4]+[SO2−4]+[NO−3] +[H+]+[Na+]
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Chapter1: Chemical Foundations
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![1. Write the charge balance for a MgSO4 and NaNO3 solution that contains Ht, OH, Mg²+, HSO4, SO²-4, MgHSO*4,
MgOH+, Na+, and NO 3.
A. [SO2-4]+[Mg2+]=[OH-]+[HSO−4]+[H+]+[NO−3]+[MgHSO+4]+[MgOH+]+[Na+]
B. [H+]+2[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+2[SO2-4]+[NO-3]
C. [H+]+[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+[SO2-4]+[NO-3]
D. [Mg2+]+[MgHSO+4]+[MgOH+]=[OH-]+[HSO−4]+[SO2−4]+[NO−3] +[H+]+[Na+]
2. Select each side of the mass balance equation for an Fe3(PO4)2 solution where the species in solution are Fe2+, PO3-4,
HPO42-, H2PO4-, H3PO4, and FeOH+.
A. 3([Fe2+]+[FeOH+])=3[PO3-4]+2[HPO2-4]+[H2PO-4]
B. 3([Fe2+]+[FeOH+])=[PO3-4]+[HPO2-4]+[H2PO-4]+[H3PO4]
C.
[Fe2+]+[FeOH+]=2([PO3—4]+[HPO2-4]+[H2PO-4]+[H3PO4])
D. 2([Fe2+]+[FeOH+]) = 3([PO3-4]+[HPO2-4]+[H2PO-4]+[H3PO4])
3. Determine the molar solubility (S) of Ag2CO3 in a buffered solution with a pH of 5.541 using the systematic treatment of
equilibrium. Ksp(Ag2CO3)=8.46x10-12; Ka1(H2CO3)=4.45x10-7; Ka2(H2CO3)=4.69x10-11
Use the systematic treatment of equilibrium to solve this problem
Please & Thank you in advance!](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb6e127af-34ce-4450-873f-027039bcf181%2F6a73dec0-ee47-4a9f-91aa-4e6d0f576bfe%2Fsazj92b_processed.png&w=3840&q=75)
Transcribed Image Text:1. Write the charge balance for a MgSO4 and NaNO3 solution that contains Ht, OH, Mg²+, HSO4, SO²-4, MgHSO*4,
MgOH+, Na+, and NO 3.
A. [SO2-4]+[Mg2+]=[OH-]+[HSO−4]+[H+]+[NO−3]+[MgHSO+4]+[MgOH+]+[Na+]
B. [H+]+2[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+2[SO2-4]+[NO-3]
C. [H+]+[Mg2+]+[MgHSO+4]+[MgOH+]+[Na+]=[OH-]+[HSO-4]+[SO2-4]+[NO-3]
D. [Mg2+]+[MgHSO+4]+[MgOH+]=[OH-]+[HSO−4]+[SO2−4]+[NO−3] +[H+]+[Na+]
2. Select each side of the mass balance equation for an Fe3(PO4)2 solution where the species in solution are Fe2+, PO3-4,
HPO42-, H2PO4-, H3PO4, and FeOH+.
A. 3([Fe2+]+[FeOH+])=3[PO3-4]+2[HPO2-4]+[H2PO-4]
B. 3([Fe2+]+[FeOH+])=[PO3-4]+[HPO2-4]+[H2PO-4]+[H3PO4]
C.
[Fe2+]+[FeOH+]=2([PO3—4]+[HPO2-4]+[H2PO-4]+[H3PO4])
D. 2([Fe2+]+[FeOH+]) = 3([PO3-4]+[HPO2-4]+[H2PO-4]+[H3PO4])
3. Determine the molar solubility (S) of Ag2CO3 in a buffered solution with a pH of 5.541 using the systematic treatment of
equilibrium. Ksp(Ag2CO3)=8.46x10-12; Ka1(H2CO3)=4.45x10-7; Ka2(H2CO3)=4.69x10-11
Use the systematic treatment of equilibrium to solve this problem
Please & Thank you in advance!
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