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Science (English Medium) Class 12 - CBSE Important Questions for Chemistry

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Chemistry
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The cell in which the following reaction occurs:

`2Fe^(3+) (aq) + 2I^(-) (aq) ---> 2Fe^(2+) (aq) + I_2 (s)` has `E_"cell"^@` = 0.236 V at  298 K. Calculate the standard Gibbs energy of the cell reaction. (Given : 1 F = 96,500 C mol−1)

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Nernst Equation >> Electrochemical Cell and Gibbs Energy of the Reaction

How many electrons flow through a metllic wire if a current of 0·5 A is passed for 2 hours? (Given : 1 F = 96,500 C mol−1)

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Electrochemical Cells

 Following reactions occur at cathode during the electrolysis of aqueous copper(II) chloride solution :

On the basis of their standard reduction electrode potential (E°) values, which reaction is feasible at the cathode and why ?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Electrolytic Cells and Electrolysis - Introduction

Although chlorine is an electron withdrawing group, yet it is ortho-, para- directing in electrophilic aromatic substitution reactions. Why?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Introduction to Electrochemistry

Calculate the emf of the following cell at 25°C :

\[{E^0}_\left( {Zn}^{2 +} /Zn \right) = - 0 . 76 V, {E^0}_\left( H^+ / H_2 \right) = 0 . 00 V\]

 

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Galvanic or Voltaic Cells - Introduction

Give reasons for the following observations :

 A delta is formed at the meeting point of sea water and river water.

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions - Introduction

 Write the reaction that occurs at anode on electrolysis of concentrated 2 4 H SO using platinum electrodes. 

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Introduction to Electrochemistry

What is the effect of temperature on ionic conductance? 

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions - Introduction

 Following reaction takes place in the cell: 
`Zn(s) + Ag_2O(s)+H_2O(l) -> Zn^{2+}(aq) + 2Ag (s) + 2OH^- (aq)`
Calculate `Delta_r G^0` of the reaction

[Given ; `E^0_(Zn^{2+}//Zn)` = -0.76V

`E_((Zn^{2+}//Zn)) = 0.76V`

`E_(Ag^4//Ag)^0 = 0.80V, 1F = 96,500 C mol^-1 ]`
          

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Nernst Equation >> Electrochemical Cell and Gibbs Energy of the Reaction

 How can you determine limiting molar conductivity,   0 m for strong electrolyte and weak electrolyte?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

A steady current of 2 amperes was passed through two electrolytic cells X and Y connected in series containing electrolytes FeSO4and ZnSO4 until 2.8g of Fe deposited at the cathode of cell X. How long did the current flow? Calculate the mass of Zn deposited at the cathode of cell Y. 
(Molar mass: Fe=56g mol-1,Zn=65.3g mol-1,1F=96500C mol-1)

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

In the plot of molar conductivity (∧m) vs square root of concentration (c1/2) following curves are obtained for two electrolytes A and B : 

Answer the following:
(i) predict the nature of electrolytes A and B.
(ii) What happens on the extrapolation of ∧m to concentration approaching for electrolytes A and B?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

cell for the given redox reaction is 2.71 V
Mg(s) + Cu2+ (0.01 M) → Mg2+ (0.001 M) + Cu(s)

Calculate Ecell for the reaction. Write the direction of flow of current when an external opposite potential applied is
(i) less than 2.71 V and
(ii) greater than 2.71 V

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Electrochemical Cells

Solve the following question.
A steady current of 2 amperes was passed through two electrolytic cells X and Y connected in series containing electrolytes FeSO4 and ZnSO4 until 2.8 g of Fe deposited at the cathode of cell X. How long did the current flow? Calculate the mass of Zn deposited at the cathode of cell Y.
(Molar mass : Fe = 56 g mol–1, Zn = 65.3 g mol–1, 1F = 96500 C mol–1)

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Electrolytic Cells and Electrolysis - Introduction

In the plot of molar conductivity (∧m) vs square root of concentration (c1/2), following curves are obtained for two electrolytes A and B:

Answer the following:
(i) Predict the nature of electrolytes A and B.
(ii) What happens on extrapolation of ∧m to concentration approaching zero for electrolytes A and B?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

Why on dilution the m Λm of \[\ce{CH3COOH}\] increases very fast, while that of \[\ce{CH3COONa}\] increases gradually?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

Solutions of two electrolytes ‘A’ and ‘B’ are diluted. The Λm of ‘B’ increases 1.5 times while that of A increases 25 times. Which of the two is a strong electrolyte? Justify your answer. Graphically show the behavior of ‘A’ and ‘B’.

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

Represent the cell in which the following reaction takes place.The value of E˚ for the cell is 1.260 V. What is the value of Ecell?

\[\ce{2Al (s) + 3Cd^{2+} (0.1M) -> 3Cd (s) + 2Al^{3+} (0.01M)}\]

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Galvanic or Voltaic Cells - Introduction

The molar conductivity of CH3COOH at infinite dilution is 390 Scm2/mol. Using the graph and given information, the molar conductivity of CH3COOK will be:

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Conductance of Electrolytic Solutions >> Variation of Conductivity and Molar Conductivity with Concentration

Why does the cell voltage of a mercury cell remain constant during its lifetime?

Appears in 1 question paper
Chapter: [2] Electrochemistry
Concept: Batteries >> Primary Batteries
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