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SYLLABUS
BOOKS FOR REFERNCES
UNIT V
UNIT 5- ELECTROCHEMICAL METHOD
 ELECTROCHEMICAL METHODS:
Electrochemical methods are analytical techniques that use a
measurement of potential, charge or current to determine an
analyte concentration or to characterize an analytes chemical
Techniques.
 These methods are divided into 3 major groups
Conductometry
Potentiometry
Polarography
ANALYTE :SUBSTANCE WHOSE CHEMICAL CONSTITUENTS ARE BEING IDENTIFIED AND
MEASURED
CONDUCTOMETRY : INTRODUCTION, CONDUTIVITY CELL,
CONDUCTOMETRIC TITRATION & APPLICATION
INTRODUCTION:
 It is defined has as determination or measurement of the
electrical conductance of an electrolyte solution by means of a
conductometer is called as conductometery.
CONDUCTOMETERY= Conductance & Measurement
 Conductivity: It is ability of solution to pass an electrical
current.
 SI Unit of Conductivity: S/m (siemens per meter) in SI units.
FACTORS
 Electric conductivity of an electrolyte solution depends on:
1. Type of ions (cations, anions, singly or doubly charged )
2. Concentration of ions
3. Temperature
4. Mobility of ions
PRINCIPLE
 Based on the conductance of electrical current through electrolyte
solutions similar to metallic conductors.
 The electric conductance in accordance with ohms law which
states that the strength of current(I) passing through conductor is
directly proportional to potential difference(V) and inversely to
resistance(R).
 I=V/R
where,
I = strength of current
V= potential difference
R= resistance
Instrumentation : Conductivity Cell
CONDUCTOMETRIC TITRATION
CONDUCTOMETRIC TITRATION
PRINCIPLE
 When chemical reaction occurs, replacement or
substitution of ions take place and depending upon
ionic conductance of replacing and replaced ions
conductance will either increase or decrease.
 The principle of titration is based upon substitution
of ions of one mobility by ions of another mobility.
A+B-+ C+D- = A+D- + C+ B-
CONDUCTANCE OF IONS
STRONG ACID WITH STRONG BASE
STRONG
BASE
STRONG
ACID
A+B-+ C+D- = A+D- + C+ B-
STRONG ACID WITH WEAK BASE
WEAK
BASE
STRONG
ACID
WEAK ACID WITH STRONG BASE
STRONG
BASE
WEAK
ACID
WEAK ACID WITH WEAK BASE
WEAK
BASE
WEAK
ACID
Electrochemical Methods Conductometry
Electrochemical Methods Conductometry
Electrochemical Methods Conductometry
Electrochemical Methods Conductometry

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Electrochemical Methods Conductometry

  • 1.
  • 5. UNIT 5- ELECTROCHEMICAL METHOD  ELECTROCHEMICAL METHODS: Electrochemical methods are analytical techniques that use a measurement of potential, charge or current to determine an analyte concentration or to characterize an analytes chemical Techniques.  These methods are divided into 3 major groups Conductometry Potentiometry Polarography ANALYTE :SUBSTANCE WHOSE CHEMICAL CONSTITUENTS ARE BEING IDENTIFIED AND MEASURED
  • 6. CONDUCTOMETRY : INTRODUCTION, CONDUTIVITY CELL, CONDUCTOMETRIC TITRATION & APPLICATION INTRODUCTION:  It is defined has as determination or measurement of the electrical conductance of an electrolyte solution by means of a conductometer is called as conductometery. CONDUCTOMETERY= Conductance & Measurement  Conductivity: It is ability of solution to pass an electrical current.  SI Unit of Conductivity: S/m (siemens per meter) in SI units.
  • 7. FACTORS  Electric conductivity of an electrolyte solution depends on: 1. Type of ions (cations, anions, singly or doubly charged ) 2. Concentration of ions 3. Temperature 4. Mobility of ions
  • 8. PRINCIPLE  Based on the conductance of electrical current through electrolyte solutions similar to metallic conductors.  The electric conductance in accordance with ohms law which states that the strength of current(I) passing through conductor is directly proportional to potential difference(V) and inversely to resistance(R).  I=V/R where, I = strength of current V= potential difference R= resistance
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  • 20. PRINCIPLE  When chemical reaction occurs, replacement or substitution of ions take place and depending upon ionic conductance of replacing and replaced ions conductance will either increase or decrease.  The principle of titration is based upon substitution of ions of one mobility by ions of another mobility. A+B-+ C+D- = A+D- + C+ B-
  • 22. STRONG ACID WITH STRONG BASE STRONG BASE STRONG ACID A+B-+ C+D- = A+D- + C+ B-
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  • 24. STRONG ACID WITH WEAK BASE WEAK BASE STRONG ACID
  • 25. WEAK ACID WITH STRONG BASE STRONG BASE WEAK ACID
  • 26. WEAK ACID WITH WEAK BASE WEAK BASE WEAK ACID