A chemist performs a gravimetric analysis. The chemist combines 1.00 L of 2.00 M AGNO3 (ag) with 1.00 L of 4.00M Nacl (ag) in an Erlenmeyer flask. Both the AgNO3 (ag) solution and the NaCl(ag) solution are colorless. After the mixture has been stirred, a cloudy white substance observed at the bottom of the flask. Which of the following is the net ionic equation for the reaction that occurs in the beaker? Ag* (aq) + Cl (ag) → AgCl (s) B) Nat (aq) + NO, (ag) → NANO3 (s) Ag+ (ag) + NO3 (ag) + Na* (ag) + Ci (ag) → AgCl(s) + Na* (ag) + NOS (ag) D) NaCl(aq) + AGNO, (ag) → Ag (s) + NANO3 (ag)

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A chemist performs a gravimetric analysis. The chemist combines 1.00 L of 2.00 M AGNO3 (ag) with 1.00 L of 4.00M Nacl (ag) in an Erlenmeyer flask. Both the AgNO3 (ag) solution and the NaCl(ag) solution are colorless. After
the mixture has been stirred, a cloudy white substance
observed at the bottom of the flask.
Which of the following is the net ionic equation for the reaction that occurs in the beaker?
Ag* (aq) + Cl (ag) → AgCl (s)
B) Nat (aq) + NO, (ag) → NANO3 (s)
Ag+ (ag) + NO3 (ag) + Na* (ag) + Ci (ag) → AgCl(s) + Na* (ag) + NOS (ag)
D) NaCl(aq) + AGNO, (ag) → Ag (s) + NANO3 (ag)
Transcribed Image Text:A chemist performs a gravimetric analysis. The chemist combines 1.00 L of 2.00 M AGNO3 (ag) with 1.00 L of 4.00M Nacl (ag) in an Erlenmeyer flask. Both the AgNO3 (ag) solution and the NaCl(ag) solution are colorless. After the mixture has been stirred, a cloudy white substance observed at the bottom of the flask. Which of the following is the net ionic equation for the reaction that occurs in the beaker? Ag* (aq) + Cl (ag) → AgCl (s) B) Nat (aq) + NO, (ag) → NANO3 (s) Ag+ (ag) + NO3 (ag) + Na* (ag) + Ci (ag) → AgCl(s) + Na* (ag) + NOS (ag) D) NaCl(aq) + AGNO, (ag) → Ag (s) + NANO3 (ag)
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