Definition Definition State where the components involved in a reversible reaction, namely reactants and product, do not change concentration any further with time. Chemical equilibrium results when the rate of the forward reaction becomes equal to the rate of the reverse reaction.
Chapter 12, Problem 12.57PAE
Interpretation Introduction
To determine:
The equilibrium equation and Kspexpression for dissolution of silver bromide in water
Expert Solution
Explanation of Solution
When the salt is dissolved in water, it forms the ions. When AgBr is dissolved in water, it dissociates as;
AgBr(s)⇄Ag+(aq)+Br-(aq)
Applying Law of Chemical equilibrium, K=[Ag+(aq)][Br-(aq)][AgBr(s)]
Since dissociation of undissociated solid remains constant, so [AgBr(s)] = 1 and K here represents solubility for the salt, it is expressed as Ksp
So, Ksp=[Ag+][Br-]
Interpretation Introduction
To determine:
The equilibrium equation and Kspexpression for dissolution of copper hydroxide in water
Expert Solution
Explanation of Solution
Cu(OH)2 dissociates as :
Cu(OH)2(s)⇄Cu2+(aq)+2OH-(aq)
Applying Law of Chemical equilibrium,
K=[Cu2+(aq)][OH-(aq)]2[Cu(OH)2(s)]
Since dissociation of undissociated solid remains constant, so Cu(OH)2 (s)= 1 and K here represents solubility for the salt, it is expressed as Ksp
So, Ksp=[Cu2+][OH-]2
Interpretation Introduction
To determine:
The equilibrium equation and Kspexpression for dissolution of barium sulfate in water
Expert Solution
Explanation of Solution
BaSO4 dissociates as;
BaSO4(s)⇄Ba2+(aq)+SO42-(aq)
Applying Law of Chemical equilibrium, K=[Ba2+(aq)][SO42−(aq)][BaSO4(s)]
Since dissociation of undissociated solid remains constant, so BaSO4 (s)= 1 and K here represents solubility for the salt, it is expressed as Ksp
So, Ksp=[Ba2+][SO42-]
Interpretation Introduction
To determine:
To write equilibrium equation and Kspexpression for dissolution of lead chromate in water
Expert Solution
Explanation of Solution
PbCrO4 dissociates as;
PbCrO4(s)⇄Pb2+(aq)+CrO42-(aq)
Applying Law of Chemical equilibrium,
K=[Pb2+(aq)][CrO42-(aq)][PbCrO4(s)]
Since dissociation of undissociated solid remains constant, so PbCrO4 (s)= 1 and K here represents solubility for the salt, it is expressed as Ksp
So, Ksp = [Pb2+][CrO42-]
Interpretation Introduction
To determine:
To write equilibrium equation and Kspexpression for dissolution of magnesium phosphate in water
Expert Solution
Explanation of Solution
Mg3(PO4)2 dissociates as;
Mg3(PO4)2(s)⇄3Mg2+(aq)+2PO43-(aq)
Applying Law of Chemical equilibrium, K=[Mg2+(aq)]3[PO43−(aq)]2[Mg3(PO4)2(s)]
Since dissociation of undissociated solid remains constant, so Mg3(PO4)2 (s)= 1 and K here represents solubility for the salt, it is expressed as Ksp
So, Ksp=[Mg2+]3[PO43-]2
Conclusion
Ksp expression for each of the following equilibrium for dissolution of salts in water is written as;AgBr(s)⇄Ag+(aq)+Br-(aq)
Ksp=[Ag+][Br-]
Cu(OH)2(s)⇄Cu2+(aq)+2OH-(aq)
Ksp=[Cu2+][OH-]2
BaSO4(s)⇄Ba2+(aq)+SO42-(aq)
Ksp=[Ba2+][SO42-]
PbCrO4(s)⇄Pb2+(aq)+CrO42-(aq)
Ksp = [Pb2+][CrO42-]
Mg3(PO4)2(s)⇄3Mg2+(aq)+2PO43-(aq)
Ksp=[Mg2+]3[PO43-]2
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9. OA. Rank the expected boiling points of the compounds shown below from highest to lowest. Place your answer
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OH
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بر بد بدید
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There is an instrument in Johnson 334 that measures total-reflectance x-ray fluorescence (TXRF) to do elemental analysis (i.e., determine what elements are present in a sample). A researcher is preparing a to measure calcium content in a series of well water samples by TXRF with an internal standard of vanadium (atomic symbol: V). She has prepared a series of standard solutions to ensure a linear instrument response over the expected Ca concentration range of 40-80 ppm. The concentrations of Ca and V (ppm) and the instrument response (peak area, arbitrary units) are shown below. Also included is a sample spectrum. Equation 1 describes the response factor, K, relating the analyte signal (SA) and the standard signal (SIS) to their respective concentrations (CA and CIS).
Ca, ppm
V, ppm
SCa, arb. units
SV, arb. units
20.0
10.0
14375.11
14261.02
40.0
10.0
36182.15
17997.10
60.0
10.0
39275.74
12988.01
80.0
10.0
57530.75
14268.54
100.0…
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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