मराठी
Tamil Nadu Board of Secondary EducationHSC Science इयत्ता १२

HSC Science इयत्ता १२ - Tamil Nadu Board of Secondary Education Question Bank Solutions

Advertisements
[object Object]
[object Object]
विषय
मुख्य विषय
अध्याय

Please select a subject first

Advertisements
Advertisements
< prev  1001 to 1020 of 4894  next > 

Equal volumes of three acid solutions of pH 1, 2 and 3 are mixed in a vessel. What will be the H+ ion concentration in the mixture?

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

What is the pH of the resulting solution when equal volumes of 0.1 M NaOH and 0.01 M HCl are mixed?

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

Advertisements

The pH of 10−5 M KOH solution will be ____________.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

The pH of an aqueous solution is Zero. The solution is ____________.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

The concentration of hydroxide ion in a water sample is found to be 2.5 × 10−6 M. Identify the nature of the solution.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

A lab assistant prepared a solution by adding a calculated quantity of HCl gas at 25°C to get a solution with [H3O+]= 4 × 10−5 M. Is the solution neutral (or) acidic (or) basic.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

Calculate the pH of 0.04 M HNO3 solution.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

Calculate the pH of 1.5 × 10−3 M solution of Ba(OH)2.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

50 ml of 0.05 M HNO3 is added to 50 ml of 0.025 M KOH. Calculate the pH of the resultant solution.

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

The Ka value for HCN is 10−9. What is the pH of 0.4 M HCN solution?

[8] Ionic Equilibrium
Chapter: [8] Ionic Equilibrium
Concept: undefined >> undefined

Consider the following half cell reactions:

\[\ce{Mn^{2+} + 2e^- -> Mn}\] E0 = –1.18 V

\[\ce{Mn^{2+} -> Mn^{2+} + e^-}\] E0 = –1.51 V

The E0 for the reaction \[\ce{3Mn^{2+} -> Mn + 2Mn^{3+}}\], and the possibility of the forward reaction are respectively.

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

The button cell used in watches functions as follows.

\[\ce{Zn_{(s)} + Ag2O_{(s)} + H2O_{(l)} ⇌ 2Ag_{(s)} + Zn^{2+}_{( aq)} + 2OH^-_{( aq)}}\] the half cell potentials are \[\ce{Ag2O_{(s)} + H2O_{(l)} + 2e^- -> 2Ag_{(s)} + 2OH^-_{( aq)}}\] E0 = 0.34 V The cell potential will be

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

During electrolysis of molten sodium chloride, the time required to produce 0.1 mole of chlorine gas using a current of 3A is ___________.

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

The number of electrons delivered at the cathode during electrolysis by a current of 1A in 60 seconds is ____________.
(charge of electron = 1.6 × 10−19 C)

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

While charging lead storage battery

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

Among the following cells

I) Leclanche cell

II) Nickel – Cadmium cell

III) Lead storage battery

IV) Mercury cell

Primary cells are:

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

In \[\ce{H2 - O2}\] fuel cell the reaction occurs at cathode is:

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

For the cell reaction

\[\ce{2Fe^{3+}_{( aq)} + 2l^-_{( aq)} -> 2Fe^{2+}_{( aq)} + l2_{( aq)}}\]

\[\ce{E^0_{cell}}\] = at 298 K. The standard Gibbs energy (∆G°) of the cell reactions is:

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

State Faraday’s Laws of electrolysis.

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined

A current of 1.608A is passed through 250 mL of 0.5 M solution of copper sulphate for 50 minutes. Calculate the strength of Cu2+ after electrolysis assuming volume to be constant and the current efficiency is 100%.

[9] Electro Chemistry
Chapter: [9] Electro Chemistry
Concept: undefined >> undefined
< prev  1001 to 1020 of 4894  next > 
Advertisements
Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×