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HSC Science (Computer Science) इयत्ता १२ वी - Maharashtra State Board Important Questions for Chemistry

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Chemistry
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Derive the relationship between standard cell potential and equilibrium constant of cell reaction.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Thermodynamics of Galvanic Cells

It is impossible to measure the potential of a single electrode. Comment.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Reference Electrodes

What are anode and cathode for Leclanche’ dry cell?

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Galvanic Cells Useful in Day-to-day Life

The molar conductivity and conductivity of AgNO3 solution is 121.4 Ω–1 cm2 mol–1 and 2.428 × 10–3 Ω–1 cm–1 at 25 °C. What is molar concentration of AgNO3 solution?

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrical Conductance of Solution

What are the functions of a salt bridge in a galvanic cell?

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Galvanic or Voltaic Cell

What is cell constant?

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electric Conduction

How many moles of electrons are required for reduction of 2 moles of Zn2+ to Zn?

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Chapter: [5] Electrochemistry
Concept: Electrochemical Cells

Draw a neat and well labelled diagram of Standard Hydrogen Electrode. Also write its one application.

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Chapter: [5] Electrochemistry
Concept: Reference Electrodes

Calculate the voltage of the cell Sn(s) / Sn2+(0.02 M) // Ag+ (0.01 M) / Ag(s) at 25 °C.

Given: `"E"_"Sn"^circ` = - 0.136, `"E"_"Ag"^circ` = 0.800 V

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrode Potential and Cell Potential

Write working of NICAD storage cell. Also write its applications.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Galvanic Cells Useful in Day-to-day Life

Calculate `"E"_"cell"^circ` of the following galvanic cell:

Mg(s) / Mg2+(1 M) // Ag+ (1 M) / Ag(s) if `"E"_"Mg"^circ` = – 2.37 V and `"E"_"Ag"^circ` = 0.8 V. Write cell reactions involved in the above cell. Also mention if cell reaction is spontaneous or not.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrode Potential and Cell Potential

The standard potential of the cell in the following reaction is ______.

\[\ce{Cd_{(s)} + Cu^{2+}_{(1M)} -> Cd^{2+}_{(1M)} + Cu_{(s)}}\]

`("E"_("Cd")^circ = - 0.403V, "E"_("Cu")^circ = 0.334V)`

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrode Potential and Cell Potential

The value of [H3O+] in mol lit–1 of 0.001 M acetic acid solution (Ka = 1.8 × 10–5) is ______.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrical Conductance of Solution

How many moles of electrons are required for reduction of 2 moles of Zn2+ to Zn? How many Faradays of electricity will be required?

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrolytic Cell

Draw a neat, labelled diagram of a standard hydrogen electrode (SHE).

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Reference Electrodes

Which cells is used as a source of power in flashlights?

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Galvanic Cells Useful in Day-to-day Life

Write electrode reactions and overall cell reaction when Leclanche's dry cell generates electricity.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Galvanic Cells Useful in Day-to-day Life

Calculate molar conductivity for 0.5 M BaCl2 if its conductivity at 298K is 0.01 Ω–1 cm–1.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Electrical Conductance of Solution

Calculate standard Gibbs energy change at 25°C for the cell reaction.

\[\ce{Cd_{(s)} + Sn^{2+}_{ (aq)} -> Cd^{2+}_{ (aq)} + Sn_{(s)}}\]

\[\ce{E^0_{cd}}\] = –0.403 V, \[\ce{E^0_{Sn}}\] = –0.136 V

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Thermodynamics of Galvanic Cells

Draw labelled diagram of H2 – O2 fuel cell.

Appears in 1 question paper
Chapter: [5] Electrochemistry
Concept: Fuel Cells
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