The molar conductivity of a {( oso okoj kbg )} ?? 1.5 M solution of an electrolyte is found to be 138.9 S cm2 mol-1. Calculate the conductivity of this solution.
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Answer:
Molar Conductivity, k=
Molar Conductivity, k= Concentration
Molar Conductivity, k= ConcentrationConductivity
Molar Conductivity, k= ConcentrationConductivity
Molar Conductivity, k= ConcentrationConductivity
Molar Conductivity, k= ConcentrationConductivity Λ
Molar Conductivity, k= ConcentrationConductivity Λ m
Molar Conductivity, k= ConcentrationConductivity Λ m
Molar Conductivity, k= ConcentrationConductivity Λ m =
Molar Conductivity, k= ConcentrationConductivity Λ m = c
Molar Conductivity, k= ConcentrationConductivity Λ m = ck
Molar Conductivity, k= ConcentrationConductivity Λ m = ck
Molar Conductivity, k= ConcentrationConductivity Λ m = ck
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C=
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1 )×1.5(mol/L)
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1 )×1.5(mol/L)
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1 )×1.5(mol/L)
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1 )×1.5(mol/L) =0.208Scm
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1 )×1.5(mol/L) =0.208Scm −1
Molar Conductivity, k= ConcentrationConductivity Λ m = ck Conductivity, ∈≡=Λ m ×C= 1000(CM 3 /L)138.9(Scm 2 mol −1 )×1.5(mol/L) =0.208Scm −1Explanation:
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