K sp of given FeS should be calculated. Concept introduction: Electromotive force: The potential difference between two electros in the galvanic cell is known as electromotive force (EMF) and it is given by E cell = E cathode -E anode The loss of electron is oxidation and this is occurs in anode and gain of electron is reduction and this is occurs in cathode. If the EMF is positive the cell reaction will take place spontaneously, if the EMF is negative the cell reaction will not take place spontaneously. Solubility product: means the solubility product constant which is nothing but a equilibrium constant for salts that do not dissolve fully in a solvent. It is the product of the dissolved ion concentrations of a salt with their stoichiometric coefficients raised as its power. The equilibrium expression for the dissociation of salt is given as, When the value will be small, the solubility will be less
K sp of given FeS should be calculated. Concept introduction: Electromotive force: The potential difference between two electros in the galvanic cell is known as electromotive force (EMF) and it is given by E cell = E cathode -E anode The loss of electron is oxidation and this is occurs in anode and gain of electron is reduction and this is occurs in cathode. If the EMF is positive the cell reaction will take place spontaneously, if the EMF is negative the cell reaction will not take place spontaneously. Solubility product: means the solubility product constant which is nothing but a equilibrium constant for salts that do not dissolve fully in a solvent. It is the product of the dissolved ion concentrations of a salt with their stoichiometric coefficients raised as its power. The equilibrium expression for the dissociation of salt is given as, When the value will be small, the solubility will be less
Solution Summary: The author explains that electromotive force is a potential difference between two electros in the galvanic cell.
Definition Definition Number that is expressed before molecules, ions, and atoms such that it balances out the number of components present on either section of the equation in a chemical reaction. Stoichiometric coefficients can be a fraction or a whole number and are useful in determining the mole ratio among the reactants and products. In any equalized chemical equation, the number of components on either side of the equation will be the same.
Chapter 18, Problem 89E
Interpretation Introduction
Interpretation:
Ksp of given
FeS should be calculated.
Concept introduction:
Electromotive force:
The potential difference between two electros in the galvanic cell is known as electromotive force (EMF) and it is given by
Ecell=Ecathode-Eanode
The loss of electron is oxidation and this is occurs in anode and gain of electron is reduction and this is occurs in cathode.
If the EMF is positive the cell reaction will take place spontaneously, if the EMF is negative the cell reaction will not take place spontaneously.
Solubility product:
means the solubility product constant which is nothing but a equilibrium constant for salts that do not dissolve fully in a solvent. It is the product of the dissolved ion concentrations of a salt with their stoichiometric coefficients raised as its power.
The equilibrium expression for the dissociation of salt is given as,
When the value will be small, the solubility will be less
1. Determine the relationship between the following molecules as identical, diastereomers, or enantiomers (6
points, 2 points each).
OH
OH
OH
A-A
OH
HOT
HO-
ACHN
and
HO-
ACHN
OH
HO
HO
°
OH
and
OH
OH
SH
and
...SH
20,0
Complete the electron pushing mechanism to
y drawing the necomery unicaciones and carved on for
Step 1: Add curved arms for the tint step, traiment with NalilĻ. The Nation
458
Step 2: Added for the second step, inalment with), how the "counterion
bar
Step 3: Daw the products of the last simplom organic and one incoganic spacient, including all nonbonding
please provide the structure for this problem, thank you!
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell