Which of the following most closely represents a state of "Electrical Equilibrium", in a system where one "mole" of salt (NaCI) is added to one side of a 1 liter chamber, filled with water and divided in half by a membrane permeable only to Na+. O When the system is in its "Chemical Equilibrium" OWhen one "mole" of salt (NaCI) is added to one side of a 1 liter chamber, but before any ions diffuses across the membrane When Na+ ions moving in one direction across the membrane are replaced by H2O molecules moving in the opposite direction When all of the Na+ ions are on one side of the membrane, and all of the CI- ions are on the other

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter16: Solubility And Precipitation Equilibria
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Which of the following most closely represents a state of "Electrical Equilibrium", in a
system where one "mole" of salt (NaCI) is added to one side of a 1 liter chamber, filled
with water and divided in half by a membrane permeable only to Na+.
When the system is in its "Chemical Equilibrium"
When one "mole" of salt (NaCI) is added to one side of a 1 liter chamber, but before
any ions diffuses across the membrane
When Na+ ions moving in one direction across the membrane are replaced by H2O
molecules moving in the opposite direction
When all of the Na+ ions are on one side of the membrane, and all of the Cl- ions are
on the other
Transcribed Image Text:Which of the following most closely represents a state of "Electrical Equilibrium", in a system where one "mole" of salt (NaCI) is added to one side of a 1 liter chamber, filled with water and divided in half by a membrane permeable only to Na+. When the system is in its "Chemical Equilibrium" When one "mole" of salt (NaCI) is added to one side of a 1 liter chamber, but before any ions diffuses across the membrane When Na+ ions moving in one direction across the membrane are replaced by H2O molecules moving in the opposite direction When all of the Na+ ions are on one side of the membrane, and all of the Cl- ions are on the other
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