A metal forms the fluoride MF3. Electrolysis of the molten fluo- ride by a current of 3.86 A for 16.2 minutes deposits 1.25 g of the metal. Calculate the molar mass of the metal.
Ch.20 - Electrochemistry

20장, 문제 133
An MnO2(s)/Mn2+(aq) electrode in which the pH si 10.24 is prepared. Find the [Mn2+] necessary to lower the potential of the half-cell to 0.00 V (at 25°C)
검증된 단계별 안내1
Identify the half-reaction for the MnO2(s)/Mn2+(aq) electrode: \( \text{MnO}_2(s) + 4\text{H}^+(aq) + 2\text{e}^- \rightarrow \text{Mn}^{2+}(aq) + 2\text{H}_2\text{O}(l) \).
Use the Nernst equation to relate the cell potential to the concentrations and pH: \( E = E^0 - \frac{RT}{nF} \ln Q \), where \( Q \) is the reaction quotient.
Determine the standard reduction potential \( E^0 \) for the half-reaction from a standard reduction potential table.
Calculate the reaction quotient \( Q \) using \( Q = \frac{[\text{Mn}^{2+}]}{[\text{H}^+]^4} \). Given \( \text{pH} = 10.24 \), find \( [\text{H}^+] = 10^{-10.24} \).
Set \( E = 0.00 \) V and solve the Nernst equation for \( [\text{Mn}^{2+}] \) to find the concentration necessary to achieve the desired potential.

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6m주요 개념
질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.
Nernst Equation
The Nernst Equation relates the reduction potential of an electrochemical cell to the concentrations of the reactants and products. It is expressed as E = E° - (RT/nF) ln(Q), where E is the cell potential, E° is the standard potential, R is the gas constant, T is the temperature in Kelvin, n is the number of moles of electrons transferred, F is Faraday's constant, and Q is the reaction quotient. This equation is essential for calculating the potential of the half-cell under non-standard conditions.
추천 영상:
가이드 코스
The Nernst Equation
pH and its Effect on Electrochemical Reactions
pH is a measure of the hydrogen ion concentration in a solution, which can significantly influence the behavior of electrochemical reactions. In this case, a pH of 10.24 indicates a basic environment, affecting the solubility and speciation of manganese ions. Understanding how pH alters the equilibrium of the MnO2/Mn2+ system is crucial for determining the necessary concentration of Mn2+ to achieve the desired potential.
추천 영상:
가이드 코스
Cell Potential and Spontaneity
Equilibrium and Reaction Quotient (Q)
The reaction quotient (Q) is a measure of the relative concentrations of products and reactants at any point in a reaction. For the MnO2/Mn2+ half-cell, Q can be expressed as [Mn2+]/[MnO2]. At equilibrium, Q equals the equilibrium constant (K), and changes in concentration will shift the equilibrium position according to Le Chatelier's principle. This concept is vital for understanding how to manipulate [Mn2+] to achieve a specific cell potential.
추천 영상:
가이드 코스
Reaction Quotient Q
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