Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Engineering
  • Department of Chemical Engineering
  • Course Structure Diagram with Credits
  • Analytical Chemistry
  • Learning Outcomes
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

  • expain the fundamentals of analytical chemistry and steps of a characteristic analysis.
  • expresses the role of analytical chemistry in science.
  • compare qualitative and quantitative analyses.
  • expresses the quantitative analysis methods.
  • expresses the qualitative analysis methods.
  • evaluate the analytical data in terms of statistics.
  • estimates kinds of errors in chemical analysis.
  • evaluates the effects of systematic errors on analytical results.
  • compare of the experimental mean with atrue value and two experimental means.
  • determine the detection limits.
  • interpret the statistical tests.
  • interpreted the sources of random errors and effects of random errors on analytical results.
  • explain the sources of random errors.
  • specifies the standard deviation of calculated results.
  • expresses the significant figures and rounding of data.
  • define the general properties of volumetry
  • employ the volumetric calculations.
  • identify quality of experimental measurements.
  • explain the confidence level and confidence limit.
  • identifies the detection limit.
  • interprets statistical tests.
  • describe the salts and the buffer solutions
  • define the different gravimetric methods.
  • defines the properties of precipitate and precipitating reagent.
  • uses the gravimetric calculations.
  • interpret the complexometric titrations.
  • interpret the redoks titrations.
  • express the titrimetric analysis methods.
  • expresses the terms such as standard solution, titration, back titration, equivalence point, end point, primary and secondary standard.
  • solves volumetric calculations.
  • defines the gravimetric titrimetry.
  • interpret aqueous solution chemistry.
  • expresses the terms such as electrolyte, acid, base, conjugate acid/base and autopyrolysis.
  • explains the chemical equilibrium and equilibrium constant types.
  • describes the activity coefficient and properties of activitycoefficient.
  • apply the equilibrium calculations to complex systems.
  • determines systematic method for solving the multiple-equilibrium problems.
  • identifies the solubility by the systematic method.
  • solves the problems related to ion separation by control of the concentration of the precipitating reagents.

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